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1 2 3 4 | Users Manual | September 03 2019 / September 20 2019 | ||||||
1 2 3 4 | Internal Photos | September 03 2019 / September 20 2019 | ||||||
1 2 3 4 | External Photos | September 03 2019 / September 20 2019 | ||||||
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Label Location | ID Label/Location Info | 107.01 KiB | March 09 2019 / October 09 2019 | |||
1 2 3 4 |
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2G3G Test Report | Test Report | 2.85 MiB | March 09 2019 / October 09 2019 | |||
1 2 3 4 | Antenna Specs | Operational Description | September 03 2019 | confidential | ||||
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Authorization Letter | Attestation Statements | 230.97 KiB | March 09 2019 / October 09 2019 | |||
1 2 3 4 | Block Diagram | Block Diagram | September 03 2019 | confidential | ||||
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Confidentiality Request Letter | Cover Letter(s) | 225.04 KiB | March 09 2019 / October 09 2019 | |||
1 2 3 4 | LTE CA Checklist | Operational Description | September 03 2019 | confidential | ||||
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LTE Test Report 1 | Test Report | 4.79 MiB | March 09 2019 / October 09 2019 | |||
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LTE Test Report 2 | Test Report | 4.90 MiB | March 09 2019 / October 09 2019 | |||
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LTE Test Report 3 | Test Report | 3.62 MiB | March 09 2019 / October 09 2019 | |||
1 2 3 4 | Operational Description | Operational Description | September 03 2019 | confidential | ||||
1 2 3 4 |
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Part 90 Test Report | Test Report | 1.62 MiB | March 09 2019 / October 09 2019 | |||
1 2 3 4 | Parts List | Parts List/Tune Up Info | September 03 2019 | confidential | ||||
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RF Exposure Info 1 | RF Exposure Info | 5.38 MiB | March 09 2019 / October 09 2019 | |||
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RF Exposure Info 2 | RF Exposure Info | 5.44 MiB | March 09 2019 / October 09 2019 | |||
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RF Exposure Info 3 | RF Exposure Info | 4.35 MiB | March 09 2019 / October 09 2019 | |||
1 2 3 4 | RT Correspondence | Operational Description | September 03 2019 | confidential | ||||
1 2 3 4 | Test Setup Photos | September 03 2019 / September 20 2019 | ||||||
1 2 3 4 | Schematics | Schematics | September 03 2019 | confidential | ||||
1 2 3 4 | Test Setup Photos | September 03 2019 / September 20 2019 | ||||||
1 2 3 4 | Tune Up Procedure | Parts List/Tune Up Info | September 03 2019 | confidential | ||||
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Bluetooth Test Report | Test Report | 3.18 MiB | March 09 2019 / October 09 2019 | |||
1 2 3 4 | Tune-Up Procedure | Parts List/Tune Up Info | September 03 2019 | confidential | ||||
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NFC Test Report | Test Report | 1.25 MiB | March 09 2019 / October 09 2019 | |||
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Bluetooth HDR Test Report | Test Report | 2.81 MiB | March 09 2019 / October 09 2019 | |||
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Bluetooth LE Test Report | Test Report | 2.74 MiB | March 09 2019 / October 09 2019 | |||
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WLAN Test Report | Test Report | 3.70 MiB | March 09 2019 / October 09 2019 |
1 2 3 4 | Label Location | ID Label/Location Info | 107.01 KiB | March 09 2019 / October 09 2019 |
Electronic Label Model A2157 EMC 3320 United States FCC ID: BCG-A2157 aes Canada IC: 579C-A2157 CAN ICES-3
(B)/NMB-3(B) The regulatory information is programmed in a secured manner. Users or third parties cannot modify the regulatory information page on the device. Instructions to user For regulatory information, certification, and compliance marks specific to Apple Watch, go to Settings > General > Regulatory on Apple Watch. Packaging Label FCC ID: BCG-A2157 IC: 579C-A2157 One Apple Park Way, Cupertino, CA 95014 USA
1 2 3 4 | 2G3G Test Report | Test Report | 2.85 MiB | March 09 2019 / October 09 2019 |
PCTEST ENGINEERING LABORATORY, INC. 18855 Adams Court, Morgan Hill, CA 95037 USA Tel. 410.290.6652 / Fax 410.290.6654 http://www.pctest.com MEASUREMENT REPORT WCDMA Date of Testing:
05/01/2019 - 08/09/2019 Test Site/Location:
PCTEST Lab. Morgan Hill, CA, USA Test Report Serial No.:
1C1905130011-02.BCG BCG-A2157 579C-A2157 Apple Inc. Certification A2157 Watch PCS Licensed Transmitter Worn on Body (PCT) 22, 24, 27 RSS-132, RSS-133, RSS-139 ANSI C63.26-2015, ANSI/TIA-603-E-2016, KDB 971168 D01 v03r01 Applicant Name:
Apple Inc. One Apple Park Way Cupertino, CA 95014 United States FCC ID:
IC:
APPLICANT:
Application Type:
Model/HVIN:
EUT Type:
FCC Classification:
FCC Rule Part(s):
ISED Specification:
Test Procedure(s):
This equipment has been shown to be capable of compliance with the applicable technical standards as indicated in the measurement report and was tested in accordance with the measurement procedures specified in 2.947. Test results reported herein relate only to the item(s) tested. I attest to the accuracy of data. All measurements reported herein were performed by me or were made under my supervision and are correct to the best of my knowledge and belief. I assume full responsibility for the completeness of these measurements and vouch for the qualifications of all persons taking them. FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 1 of 62 EUT Type:
1.0 2.0 3.0 4.0 5.0 6.0 7.0 8.0 T A B L E O F C O N T E N T S INTRODUCTION ........................................................................................................................................... 4 1.1 Scope ................................................................................................................................................................. 4 PCTEST Test Location ....................................................................................................................................... 4 1.2 1.3 Test Facility / Accreditations ............................................................................................................................... 4 PRODUCT INFORMATION ........................................................................................................................... 5 Equipment Description ....................................................................................................................................... 5 2.1 Device Capabilities ............................................................................................................................................. 5 2.2 Antenna Description ........................................................................................................................................... 5 2.3 2.4 Test Support Equipment ..................................................................................................................................... 5 Test Configuration .............................................................................................................................................. 6 2.5 2.6 Software and Firmware ...................................................................................................................................... 6 2.7 EMI Suppression Device(s)/Modifications .......................................................................................................... 6 DESCRIPTION OF TESTS ........................................................................................................................... 7 Evaluation Procedure ......................................................................................................................................... 7 3.1 3.2 Cellular - Base Frequency Blocks ...................................................................................................................... 7 Cellular - Mobile Frequency Blocks .................................................................................................................... 7 3.3 PCS - Base Frequency Blocks ........................................................................................................................... 7 3.4 3.5 PCS - Mobile Frequency Blocks ......................................................................................................................... 8 AWS - Base Frequency Blocks .......................................................................................................................... 8 3.6 AWS - Mobile Frequency Blocks ........................................................................................................................ 8 3.7 3.8 Radiated Measurements .................................................................................................................................... 9 MEASUREMENT UNCERTAINTY .............................................................................................................. 10 TEST EQUIPMENT CALIBRATION DATA ................................................................................................. 11 SAMPLE CALCULATIONS ......................................................................................................................... 12 TEST RESULTS .......................................................................................................................................... 13 Summary .......................................................................................................................................................... 13 7.1 7.2 Occupied Bandwidth ........................................................................................................................................ 14 Spurious and Harmonic Emissions at Antenna Terminal ................................................................................. 17 7.3 Band Edge Emissions at Antenna Terminal ..................................................................................................... 33 7.4 Peak-Average Ratio ......................................................................................................................................... 39 7.5 7.6 Radiated Power (ERP/EIRP) ............................................................................................................................ 42 Radiated Spurious Emissions Measurements .................................................................................................. 45 7.7 7.8 Frequency Stability / Temperature Variation .................................................................................................... 55 CONCLUSION ............................................................................................................................................. 62 FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 2 of 62 EUT Type:
MEASUREMENT REPORT WCDMA EUT Overview FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 3 of 62 EUT Type:
WCDMA85022H826.4 - 846.60.473-3.250.776-1.104M10F9WWCDMA1700271712.4 - 1752.613.80411.404M08F9WWCDMA190024E1852.4 - 1907.612.30310.904M09F9WTx Frequency (MHz)Max. Power (mW)ModeFCC Rule PartERPEIRPMax. Power (dBm)Emission DesignatorMax. Power (dBm)Max. Power (mW) 1 . 0 I N T R O D U C T I O N Scope 1.1 Measurement and determination of electromagnetic emissions (EMC) of radio frequency devices including intentional and/or unintentional radiators for compliance with the technical rules and regulations of the Federal Communications Commission and the Innovation, Science and Economic Development Canada. PCTEST Test Location 1.2 These measurement tests were conducted at the PCTEST Engineering Laboratory, Inc. facility located at 18855 Adams Court, Morgan Hill, CA 95037. The measurement facility is compliant with the test site requirements specified in ANSI C63.4-2014 and KDB 414788 D01 v01r01. 1.3 Measurements were performed at PCTEST Engineering Lab located in Morgan Hill, CA 95037, U.S.A. PCTEST is an ISO 17025-2005 accredited test facility under the American Association for Laboratory Accreditation (A2LA) with Certificate number 2041.02 for Specific Absorption Rate (SAR), Hearing Aid Compatibility (HAC) testing, where applicable, and Electromagnetic Compatibility (EMC) testing for FCC and Innovation, Science, and Economic Development Canada rules. Test Facility / Accreditations PCTEST TCB is a Telecommunication Certification Body (TCB) accredited to ISO/IEC 17065-2012 by A2LA
(Certificate number 2041.03) in all scopes of FCC Rules and ISED Standards (RSS). PCTEST facility is a registered (22831) test laboratory with the site description on file with ISED. FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 4 of 62 EUT Type:
2 . 0 P R O D U C T I N F O R M A T I O N Device Capabilities Equipment Description 2.1 The Equipment Under Test (EUT) is the Apple Watch FCC ID: BCG-A2157. The test data contained in this report pertains only to the emissions due to the EUTs 2G/3G licensed transmitters. Test Device Serial No.: D92YD00QM8CJ, FN6911410EMKTRT5K 2.2 This device contains the following capabilities:
850/1700/1900 WCDMA/HSPA, Multi-band LTE, 802.11b/g/n WLAN, Bluetooth (1x, EDR, HDR4, HDR8, LE), NFC 2.3 Following antenna was used for the testing. Antenna Description Frequency
[MHz]
814-849 1710-1785 1850-1915 Antenna Gain (dBi) BCM
-26.10 N/A N/A FCM N/A
-12.60
-13.10 Table 2-1. Highest Antenna Gain Test Support Equipment 2.4 FCC ID: BCG-A2157 Table 2-2. Test Support Equipment Used MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 5 of 62 EUT Type:
1Apple MacBookModel:A1398S/N:C2QKP008F6F3w/AC/DC AdapterModel:A1435S/N:N/A2Apple USB CableModel:KanziS/N:311C81w/ Charging DockModel:FAPS73S/N:17481001022w/ DockModel:X241S/N:GW17F01ST223USB Lightning CableModel:N/AS/N:N/Aw/ AC AdapterModel:A1385S/N:N/A4Wireless Charging Pad (WCP)Model:EVTS/N:DLC915600ECLNWL3KWireless Charging Pad (WCP)Model:EVTS/N:DLC9156006TLNWK3V5Test Pathfinder Sinsa BoardModel:X1456S/N:920-062535-01w/ SiP CradleModel:P1 X1454SS/N:920-06373-026DC Power SupplyModel:KPS3010DS/N:N/A7Mobile Comm DC SourceModel:66321DS/N:MY52000555 Test Configuration 2.5 The EUT was tested per the guidance of ANSI/TIA-603-E-2016 and KDB 971168 D01 v03r01. See Section 7.0 of this test report for a description of the radiated and antenna port conducted emissions tests. The worst case configuration was investigated for all combinations of the four materials, aluminum, stainless steel, ceramic, and aluminum/ceramic mix, and various types of wristbands, metal and non-metal wristbands. The store display sample was investigated and determined as not the worst case. The EUT was also investigated with and without wireless charger. The worst case configuration found was used for all testing. For emissions from 1GHz 18GHz, low, mid, and high channels were tested with highest power and worst case configuration. The emissions below 1GHz and above 18GHz were tested with the highest transmitting power channel and the worst case configuration. The EUT was manipulated through three orthogonal planes of X-orientation (flatbed), Y-orientation (landscape), and Z-orientation (portrait) during the testing. Only the worst case emissions were reported in this test report. 2.6 The test was conducted with firmware version wOS 6.0 installed on the EUT. 2.7 No EMI suppression device(s) were added and no modifications were made during testing. EMI Suppression Device(s)/Modifications Software and Firmware FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 6 of 62 EUT Type:
3 . 0 D E S C R I P T I O N O F T E S T S A B 880 Evaluation Procedure A* B*
High Cellular - Base Frequency Blocks 3.1 The measurement procedures described in the Land Mobile FM or PM Communications Equipment Measurements and Performance Standards (ANSI/TIA-603-E-2016) and Measurement Guidance for Certification of Licensed Digital Transmitters (KDB 971168 D01 v03r01) were used in the measurement of the EUT. Deviation from Measurement Procedure..None 3.2 A*
Low 869 BLOCK 1: 869 880 MHz (A* Low + A) BLOCK 2: 880 890 MHz (B) 3.3 A*
Low 824 BLOCK 1: 824 835 MHz (A* Low + A) BLOCK 2: 835 845 MHz (B) BLOCK 4: 846.5 849 MHz (B*) 3.4 A Cellular - Mobile Frequency Blocks PCS - Base Frequency Blocks BLOCK 3: 890 891.5 MHz (A* High) BLOCK 3: 845 846.5 MHz (A* High) A* B*
High BLOCK 4: 891.5 894 MHz (B*) 890 B E F A C 845 835 B 894 849 D 1930 BLOCK 1: 1930 1945 MHz (A) 1950 BLOCK 2: 1945 1950 MHz (D) BLOCK 3: 1950 1965 MHz (B) 1970 BLOCK 4: 1965 1970 MHz (E) 1990 BLOCK 5: 1970 1975 MHz (F) BLOCK 6: 1975 1990 MHz (C) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 7 of 62 EUT Type:
3.5 A 1850 PCS - Mobile Frequency Blocks D B E F C BLOCK 1: 1850 1865 MHz (A) 1870 BLOCK 2: 1865 1870 MHz (D) BLOCK 3: 1870 1885 MHz (B) 3.6 AWS - Base Frequency Blocks 1890 1910 BLOCK 4: 1885 1890 MHz (E) BLOCK 5: 1890 1895 MHz (F) BLOCK 6: 1895 1910 MHz (C) BLOCK 1: 2110 2120 MHz (A) BLOCK 4: 2135 2140 MHz (D) BLOCK 2: 2120 2130 MHz (B) BLOCK 3: 2130 2135 MHz (C) 3.7 AWS - Mobile Frequency Blocks BLOCK 1: 1710 1720 MHz (A) BLOCK 2: 1720 1730 MHz (B) BLOCK 5: 2140 2145 MHz (E) BLOCK 6: 2145 2155 MHz (F) BLOCK 4: 1735 1740 MHz (D) BLOCK 5: 1740 1745 MHz (E) BLOCK 3: 1730 1735 MHz (C) BLOCK 6: 1745 1755 MHz (F) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 8 of 62 EUT Type:
Radiated Measurements 3.8 The radiated test facilities consisted of an indoor 3 meter semi-anechoic chamber used for final measurements and exploratory measurements, when necessary. The measurement area is contained within the semi-anechoic chamber which is shielded from any ambient interference. The test site inside the chamber is a 6m x 5.2m elliptical, obstruction-free area in accordance with Figure 5.7 of Clause 5 in ANSI C63.4-2014. Absorbers are arranged on the floor between the turn table and the antenna mast in such a way so as to maximize the reduction of reflections for measurements above 1GHz. For measurements below 1GHz, the absorbers are removed. A raised turntable is used for radiated measurement. The turn table is a continuously rotatable, remote-controlled, metallic turntable and 2 meters (6.56 ft.) in diameter. The turn table is flush with the raised floor of the chamber in order to maintain its function as a ground plane. An 80cm tall test table made of Styrodur is placed on top of the turn table. A Styrodur pedestal is placed on top of the test table to bring the total table height to 1.5m. The equipment under test was transmitting while connected to its integral antenna and is placed on a turntable 3 meters from the receive antenna. The receive antenna height is adjusted between 1 and 4 meter height, the turntable is rotated through 360 degrees, and the EUT is manipulated through all orthogonal planes representative of its typical use to achieve the highest reading on the receive spectrum analyzer. Per the guidelines of KDB 412172 D01 v01r01, radiated power levels are measured using the following formula:
ERP or EIRP = PT + GT LC Where PT is the transmitter output power, expressed in dBm, GT is the gain of the transmitting antenna, in dBd
(ERP) or dBi (EIRP), and LC signal attenuation in the connecting cable between the transmitter and antenna in dB. Per the guidance of ANSI/TIA-603-E-2016, a half-wave dipole is then substituted in place of the EUT. For emissions above 1GHz, a horn antenna is substituted in place of the EUT. The substitute antenna is driven by a signal generator with the level of the signal generator being adjusted to obtain the same receive spectrum analyzer level previously recorded from the spurious emission from the EUT. The power of the emission is calculated using the following formula:
Pd [dBm] = Pg [dBm] cable loss [dB] + antenna gain [dBd/dBi]
Where, Pd is the dipole equivalent power, Pg is the generator output into the substitution antenna, and the antenna gain is the gain of the substitute antenna used relative to either a half-wave dipole (dBd) or an isotropic source (dBi). The substitute level is equal to Pg [dBm] cable loss [dB]. The calculated Pd levels are then compared to the absolute spurious emission limit of -13dBm which is equivalent to the required minimum attenuation of 43 +
10 log10(Power [Watts]). Radiated spurious emission levels are investigated with the receive antenna horizontally and vertically polarized per ANSI/TIA-603-E-2016. FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 9 of 62 EUT Type:
4 . 0 M E A S U R E M E N T U N C E R T A I N T Y The measurement uncertainties shown below were calculated in accordance with the requirements of ANSI C63.4-2014. All measurement uncertainty values are shown with a coverage factor of k = 2 to indicate a 95% level of confidence. The measurement uncertainty shown below meets or exceeds the UCISPR measurement uncertainty values specified in CISPR 16-4-2 and, thus, can be compared directly to specified limits to determine compliance. Contribution Expanded Uncertainty (dB) Conducted Bench Top Measurements Radiated Disturbance (<1GHz) Radiated Disturbance (>1GHz) Radiated Disturbance (>18GHz) Temperature 1.29 4.15 4.70 5.01 0.01 FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 10 of 62 EUT Type:
5 . 0 T E S T E Q U I P M E N T C A L I B R A T I O N D A T A Test Equipment Calibration is traceable to the National Institute of Standards and Technology (NIST). Measurements antennas used during testing were calibrated in accordance to the requirements of ANSI C63.5-
2017. Table 5-1. Test Equipment Notes:
1. For equipment listed above that has a calibration date or calibration due date that falls within the test date range, care was taken to ensure that this equipment was used after the calibration date and before the calibration due date. 2. Equipment with a calibration date of N/A shown in this list was not used to make direct calibrated measurements. FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 11 of 62 EUT Type:
Manufacturer Model Description Cal Date Cal Interval Cal Due Serial Number Agilent TechnologiesN9030A 3Hz-44GHz PXA Signal Analyzer 3/13/2019Annual3/13/2020MY49430244 ATM180-442A-KF20dB Nominal Gain Horn Antenna9/10/2018Annual9/10/2019T058701-03ESPECSU-241Tabletop Temperature Chamber8/10/2018Annual8/10/201992009574ETS-Lindgren118490Pre-Amplifier (30MHz - 6GHz)8/31/2018Annual8/31/2019213236ETS-Lindgren3142EBiConiLog Antenna (30MHz - 6GHz)12/11/2018Annual12/11/2019224569Rohde & SchwarzFSV40Signal Analyzer (10Hz-40GHz)2/27/2019Annual2/27/2020101619Rohde & SchwarzESW26EMI Test Receiver5/21/2019Annual5/21/2020101299Rohde & Schwarz ESW44EMI Test Receiver11/20/2018Annual11/20/2019101570Rohde & Schwarz CMW500 Wideband Radio Communication Tester 8/10/2018Annual8/10/2019161616Rohde & Schwarz CMW500 Wideband Radio Communication Tester 11/16/2018Annual11/16/2019164715Rohde & Schwarz CMW500 Wideband Radio Communication Tester 1/8/2019Annual1/8/2020166869Rohde & Schwarz TS-PR1840Pre-Amplifier (18GHz - 40GHz)9/5/2018Annual 9/5/2019100050Rohde & Schwarz TC-TA18Cross Polarized Vivaldi Antenna (400MHz-18GHz)11/21/2018Annual11/21/2019101057Rohde & Schwarz TC-TA18Cross Polarized Vivaldi Antenna (400MHz-18GHz)12/7/2018Annual12/7/2019101063Rohde & Schwarz HFH2-Z2 Loop Antenna 3/21/2019Annual 3/21/2020100519 6 . 0 S A M P L E C A L C U L A T I O N S WCDMA Emission Designator Emission Designator = 4M16F9W WCDMA BW = 4.16 MHz F = Frequency Modulation 9 = Composite Digital Info W = Combination (Audio/Data) Spurious Radiated Emission Example: Spurious emission at 3700.40 MHz The receive spectrum analyzer reading at 3 meters with the EUT on the turntable was 81.0 dBm. The gain of the substituted antenna is 8.1 dBi. The signal generator connected to the substituted antenna terminals is adjusted to produce a reading of 81.0 dBm on the spectrum analyzer. The loss of the cable between the signal generator and the terminals of the substituted antenna is 2.0 dB at 3700.40 MHz. So 6.1 dB is added to the signal generator reading of 30.9 dBm yielding 24.80 dBm. The fundamental EIRP was 25.50 dBm so this harmonic was 25.50 dBm (-24.80) = 50.3 dBc. FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 12 of 62 EUT Type:
7 . 0 T E S T R E S U L T S 7.1 Summary Company Name:
Apple Inc. FCC ID:
BCG-A2157 FCC Classification:
PCS Licensed Transmitter Worn on Body (PCT) Mode(s):
WCDMA FCC Part Section(s) RSS Section(s) Test Description Test Limit Test Test Condition Result Reference 2.1049 2.1051 22.917(a) 24.238(a) 27.53(h) 24.232(d) 27.50(d)(5) 2.1046 2.1055 22.355 24.235 27.54 RSS-Gen (6.7) RSS-133(2.3) RSS-132(5.5) RSS-133(6.5) RSS-139(6.6) RSS-132(5.4) RSS-133(6.4) RSS-139(6.5) RSS-132(5.4) RSS-133(4.1) RSS-139(4.1) RSS-132(5.3) RSS-133(6.3) RSS-139(6.4) 22.913(a)(5) RSS-132(5.4) 24.232(c) RSS-133(6.4) 27.50(d)(4) RSS-139(6.5) 2.1053 22.917(a) 24.238(a) 27.53(h) RSS-132(5.5) RSS-133(6.5) RSS-139(6.6) Occupied Bandwidth N/A Conducted Band Edge
/ Spurious Emissions
> 43 + 10 log10 (P[Watts]) at Band Edge and for all out-of-
band emissions PASS Section 7.2 PASS Sections 7.3, 7.4 Peak-Average Ratio
< 13 dB CONDUCTED PASS Section 7.5 Transmitter Conducted Output Power N/A Frequency Stability Effective Radiated Power Equivalent Isotropic Radiated Power Equivalent Isotropic Radiated Power PASS Section 7.67.5 PASS Section 7.8
< 2.5 ppm (Part 22) Emission must remain in band
(Part 24, 27)
< 7 Watts max. ERP PASS Section 7.6
< 2 Watts max. EIRP PASS Section 7.6
< 1 Watts max. EIRP PASS Section 7.6 RADIATED Radiated Spurious Emissions
> 43 + 10 log10 (P[Watts]) for all out-of-band emissions PASS Section 7.7 Notes:
1) All modes of operation and data rates were investigated. The test results shown in the following sections Table 7-1. Summary of Test Results represent the worst case emissions. 2) The analyzer plots were all taken with a correction table loaded into the analyzer. The correction table was used to account for the losses of the cables, directional couplers, and attenuators used as part of the system to maintain a link between the call box and the EUT at all frequencies of interest. 3) All antenna port conducted emissions testing was performed on a test bench with the antenna port of the EUT connected to the spectrum analyzer through calibrated cables, attenuators, and couplers. 4) For conducted spurious emissions, automated test software was used to measure emissions and capture the corresponding plots necessary to show compliance. The measurement software utilized is PCTEST 2G/3G Automation, Version 3.11. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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7.2 Occupied Bandwidth Test Overview The occupied bandwidth, that is the frequency bandwidth such that, below its lower and above its upper frequency limits, the mean powers radiated are each equal to 0.5 percent of the total mean power radiated by a given emission shall be measured. All modes of operation were investigated and the worst case configuration results are reported in this section. Test Procedure Used KDB 971168 D01 v03r01 Section 4.2 Test Settings 1. The signal analyzers automatic bandwidth measurement capability was used to perform the 99%
occupied bandwidth and the 26dB bandwidth. The bandwidth measurement was not influenced by any intermediate power nulls in the fundamental emission. 2. RBW = 1 5% of the expected OBW 3. VBW 3 x RBW 4. Detector = Peak 5. Trace mode = max hold 6. Sweep = auto couple 7. The trace was allowed to stabilize 8. If necessary, steps 2 7 were repeated after changing the RBW such that it would be within 1 5% of the 99% occupied bandwidth observed in Step 7 Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-1. Test Instrument & Measurement Setup Test Notes None. FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 14 of 62 EUT Type:
Table 7-2. Occupied Band Width Results Plot 7-1. Occupied Bandwidth Plot (Cellular WCDMA Mode) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 15 of 62 EUT Type:
WCDMA8504100.2WCDMA17004080.9WCDMA19004087.6ModeOccupied Bandwidth [kHz]
Plot 7-2. Occupied Bandwidth Plot (AWS WCDMA Mode) Plot 7-3. Occupied Bandwidth Plot (PCS WCDMA Mode) FCC ID: BCG-A2157 MEASUREMENT REPORT
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Spurious and Harmonic Emissions at Antenna Terminal 7.3 Test Overview The level of the carrier and the various conducted spurious and harmonic frequencies is measured by means of a calibrated spectrum analyzer. The spectrum is scanned from the lowest frequency generated in the equipment up to a frequency including its 10th harmonic. All out of band emissions are measured with a spectrum analyzer connected to the antenna terminal of the EUT while the EUT is operating at maximum power, and at the appropriate frequencies. All data rates were investigated to determine the worst case configuration. All modes of operation were investigated and the worst case configuration results are reported in this section. The minimum permissible attenuation level of any spurious emission is 43 + log10(P[Watts]), where P is the transmitter power in Watts. Test Procedure Used KDB 971168 D01 v03r01 Section 6.0 Test Settings 1. Start frequency was set to 30MHz and stop frequency was set to 10GHz for Cell, 20GHz for AWS, 20GHz for PCS (separated into at least two plots per channel) 2. Detector = RMS 3. Trace mode = trace average 4. Sweep time = auto couple 5. The trace was allowed to stabilize 6. Please see test notes below for RBW and VBW settings Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-2. Test Instrument & Measurement Setup Test Notes Per 24.238(b), 27.53(h)(3), and RSS-133(6.5), RSS-139(6.5), compliance with the applicable limits is based on the use of measurement instrumentation employing a resolution bandwidth of 1MHz, and 100 kHz or greater for Part 22 and RSS-132 measurements below 1GHz. However, in the 1 MHz bands immediately outside and adjacent to the frequency block a resolution bandwidth of at least one percent of the emission bandwidth of the fundamental emission of the transmitter may be employed. The emission bandwidth is defined as the width of the signal between two points, one below the carrier center frequency and one above the carrier center frequency, outside of which all emission are attenuated at least 26 dB below the transmitter power. FCC ID: BCG-A2157 MEASUREMENT REPORT
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Cellular WCDMA Mode Plot 7-4. Conducted Spurious Plot (Cellular WCDMA Mode - Low Channel) Plot 7-5. Conducted Spurious Plot (Cellular WCDMA Mode - Low Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 18 of 62 EUT Type:
Plot 7-6. Conducted Spurious Plot (Cellular WCDMA Mode - Low Channel) Plot 7-7. Conducted Spurious Plot (Cellular WCDMA Mode - Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 19 of 62 EUT Type:
Plot 7-8. Conducted Spurious Plot (Cellular WCDMA Mode - Mid Channel) Plot 7-9. Conducted Spurious Plot (Cellular WCDMA Mode - Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 20 of 62 EUT Type:
Plot 7-10. Conducted Spurious Plot (Cellular WCDMA Mode - High Channel) Plot 7-11. Conducted Spurious Plot (Cellular WCDMA Mode - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 21 of 62 EUT Type:
Plot 7-12. Conducted Spurious Plot (Cellular WCDMA Mode - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 22 of 62 EUT Type:
AWS WCDMA Mode Plot 7-13. Conducted Spurious Plot (AWS WCDMA Mode - Low Channel) Plot 7-14. Conducted Spurious Plot (AWS WCDMA Mode - Low Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 23 of 62 EUT Type:
Plot 7-15. Conducted Spurious Plot (AWS WCDMA Mode - Low Channel) Plot 7-16. Conducted Spurious Plot (AWS WCDMA Mode - Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 24 of 62 EUT Type:
Plot 7-17. Conducted Spurious Plot (AWS WCDMA Mode - Mid Channel) Plot 7-18. Conducted Spurious Plot (AWS WCDMA Mode - Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 25 of 62 EUT Type:
Plot 7-19. Conducted Spurious Plot (AWS WCDMA Mode - High Channel) Plot 7-20. Conducted Spurious Plot (AWS WCDMA Mode - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 26 of 62 EUT Type:
Plot 7-21. Conducted Spurious Plot (AWS WCDMA Mode - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 27 of 62 EUT Type:
PCS WCDMA Mode Plot 7-22. Conducted Spurious Plot (PCS WCDMA Mode - Low Channel) Plot 7-23. Conducted Spurious Plot (PCS WCDMA Mode - Low Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 28 of 62 EUT Type:
Plot 7-24. Conducted Spurious Plot (PCS WCDMA Mode - Low Channel) Plot 7-25. Conducted Spurious Plot (PCS WCDMA Mode - Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 29 of 62 EUT Type:
Plot 7-26. Conducted Spurious Plot (PCS WCDMA Mode - Mid Channel) Plot 7-27. Conducted Spurious Plot (PCS WCDMA Mode - Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 30 of 62 EUT Type:
Plot 7-28. Conducted Spurious Plot (PCS WCDMA Mode - High Channel) Plot 7-29. Conducted Spurious Plot (PCS WCDMA Mode - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 31 of 62 EUT Type:
Plot 7-30. Conducted Spurious Plot (PCS WCDMA Mode - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 32 of 62 EUT Type:
Band Edge Emissions at Antenna Terminal 7.4 Test Overview All out of band emissions are measured with a spectrum analyzer connected to the antenna terminal of the EUT while the EUT is operating at maximum power, and at the appropriate frequencies. All data rates were investigated to determine the worst case configuration. All modes of operation were investigated and the worst case configuration results are reported in this section. The minimum permissible attenuation level of any spurious emission is 43 + 10 log10(P[Watts]), where P is the transmitter power in Watts. Test Procedure Used KDB 971168 D01 v03r01 Section 6.0 Test Settings 1. Start and stop frequency were set such that the band edge would be placed in the center of the plot 2. Span was set large enough so as to capture all out of band emissions near the band edge 3. RBW > 1% of the emission bandwidth 4. VBW > 3 x RBW 5. Detector = RMS 6. Number of sweep points 2 x Span/RBW 7. Trace mode = trace average 8. Sweep time = auto couple 9. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-3. Test Instrument & Measurement Setup Test Notes Per 22.917(b), 24.238(b), 27.53(h)(3), and RSS-132(5.5), RSS-133(6.5), RSS-139(6.5), in the 1 MHz bands immediately outside and adjacent to the frequency block a resolution bandwidth of at least one percent of the emission bandwidth of the fundamental emission of the transmitter may be employed to demonstrate compliance with the out-of-band emissions limit. The emission bandwidth is defined as the width of the signal between two points, one below the carrier center frequency and one above the carrier center frequency, outside of which all emission are attenuated at least 26 dB below the transmitter power. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 33 of 62 EUT Type:
Cellular WCDMA Mode Plot 7-31. Band Edge Plot (Cellular WCDMA Mode - Low Channel) Plot 7-32. Band Edge Plot (Cellular WCDMA Mode - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 34 of 62 EUT Type:
AWS WCDMA Mode Plot 7-33. Band Edge Plot (AWS WCDMA Mode - Low Channel) Plot 7-34. 4MHz Span Plot (AWS WCDMA Mode - Low Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 35 of 62 EUT Type:
Plot 7-35. Band Edge Plot (AWS WCDMA Mode - High Channel) Plot 7-36. 4MHz Span Plot (AWS WCDMA Mode - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 36 of 62 EUT Type:
PCS WCDMA Mode Plot 7-37. Band Edge Plot (PCS WCDMA Mode - Low Channel) Plot 7-38. 4MHz Span Plot (PCS WCDMA Mode - Low Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 37 of 62 EUT Type:
Plot 7-39. Band Edge Plot (PCS WCDMA Mode - High Channel) Plot 7-40. 4MHz Span Plot (PCS WCDMA Mode - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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Peak-Average Ratio 7.5 Test Overview A peak to average ratio measurement is performed at the conducted port of the EUT. The spectrum analyzers Complementary Cumulative Distribution Function (CCDF) measurement profile is used to determine the largest deviation between the average and the peak power of the EUT in a given bandwidth. The CCDF curve shows how much time the peak waveform spends at or above a given average power level. The percent of time the signal spends at or above the level defines the probability for that particular power level. Test Procedure Used KDB 971168 D01 v03r01 Section 5.7.1 Test Settings 1. The signal analyzers CCDF measurement profile is enabled 2. Frequency = carrier center frequency 3. Measurement BW > Emission bandwidth of signal 4. The signal analyzer was set to collect one million samples to generate the CCDF curve 5. The measurement interval was set depending on the type of signal analyzed. For continuous signals
(>98% duty cycle), the measurement interval was set to 1ms. Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-4. Test Instrument & Measurement Setup Test Notes None FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 39 of 62 EUT Type:
Table 7-3. Peak to Average Ratio Results Plot 7-41. Peak-Average Ratio Plot (Cellular WCDMA Mode) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 40 of 62 EUT Type:
WCDMA85024.603.3213.0-9.68WCDMA170024.003.3213.0-9.68WCDMA190023.943.3813.0-9.62Limit [dB]PAR at 0.1% [dB]Margin [dB]ModeAverage Power [dBm]
Plot 7-42. Peak-Average Ratio Plot (AWS WCDMA Mode) Plot 7-43. Peak-Average Ratio Plot (PCS WCDMA Mode) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 41 of 62 EUT Type:
Radiated Power (ERP/EIRP) 7.6 Test Overview Effective Radiated Power (ERP) and Equivalent Isotropic Radiated Power (EIRP) measurements are determined from the equation below. Test Procedures Used KDB 971168 D01 v03r01 Section 5.2.1 Test Settings The relevant equation for determining the ERP or EIRP from the conducted RF output power measured is:
ERP/EIRP = PMeas LC + GT Where:
ERP/EIRP = effective or equivalen radiated power, respectively (expressed in the same units as PMeas, typically dBW or dBm) PMeas = measured transmitter output power or PSD, in dBW or dBm LC = signal attenuation in the connecting cable between the transmitter and antenna in dB GT = gain of the transmitting antenna, in dBd (ERP) or dBi (EIRP) Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-5. ERP/EIRP Measurement Setup FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 42 of 62 EUT Type:
1) This device employs UMTS technology with WCDMA (AMR/RMC), HSDPA, and HSUPA capabilities. For WCDMA and HSUPA transmission, all configurations were investigated and the worst case UMTS emissions were found in RMC WCDMA mode at 12.2kbps with HSDPA inactive and TPC bits all set to 1."
Test Notes 2) This unit was tested with its standard battery. 3) The Ant. Gains (GT) are listed in dBi. FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 43 of 62 EUT Type:
Table 7-4. ERP/EIRP (Cellular WCDMA) Table 7-5. EIRP (AWS WCDMA) Table 7-6. EIRP (PCS WCDMA) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 44 of 62 EUT Type:
826.40WCDMA85025.00-26.10-3.250.47338.45-41.70-1.100.77640.61-41.71836.60WCDMA85024.98-26.10-3.270.47138.45-41.72-1.120.77340.61-41.73846.60WCDMA85025.00-26.10-3.250.47338.45-41.70-1.100.77640.61-41.71EIRP [dBm]EIRP [mW]Margin [dB]EIRP Limit [dBm]Margin [dB]ERP [dBm]ERP [mW]ERP Limit [dBm]Ant. Gain [dBi]Frequency [MHz]ModeConducted Power [dBm]Sub. Ant.1712.40WCDMA170023.92-12.6011.3213.55230.00-18.681732.60WCDMA170024.00-12.6011.4013.80430.00-18.601752.60WCDMA170023.90-12.6011.3013.49030.00-18.70Margin [dB]EIRP [dBm]EIRP [mW]EIRP Limit [dBm]Ant. Gain [dBi]Frequency [MHz]ModeConducted Power [dBm]Sub. Ant.1852.40WCDMA190024.00-13.1010.9012.30333.01-22.111880.00WCDMA190023.97-13.1010.8712.21833.01-22.141907.60WCDMA190023.93-13.1010.8312.10633.01-22.18Ant. Gain [dBi]Conducted Power [dBm]EIRP Limit [dBm]Margin [dB]EIRP [mW]EIRP [dBm]Frequency [MHz]ModeSub. Ant. Radiated Spurious Emissions Measurements 7.7 Test Overview Radiated spurious emissions measurements are performed using the substitution method described in ANSI/TIA-
603-E-2016 with the EUT transmitting into an integral antenna. Measurements on signals operating below 1GHz are performed using horizontally and vertically polarized tuned dipole antennas. Measurements on signals operating above 1GHz are performed using vertically and horizontally polarized broadband horn antennas. All measurements are performed as peak measurements while the EUT is operating at maximum power, and at the appropriate frequencies. Test Procedures Used KDB 971168 D01 v03r01 Section 5.8 ANSI/TIA-603-E-2016 Section 2.2.12 Test Settings 1. RBW = 100kHz for emissions below 1GHz and 1MHz for emissions above 1GHz 2. VBW 3 x RBW 3. Span = 1.5 times the OBW 4. No. of sweep points > 2 x span / RBW 5. Detector = RMS 6. Trace mode = Average (Max Hold for pulsed emissions) 7. The trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 45 of 62 EUT Type:
Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-6. Test Instrument & Measurement Setup < 1GHz Figure 7-7. Test Instrument & Measurement Setup >1 GHz FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 46 of 62 EUT Type:
Test Notes 1) This device employs UMTS technology with WCDMA (AMR/RMC), HSDPA, and HSUPA capabilities. For WCDMA and HSUPA transmission, all configurations were investigated and the worst case UMTS emissions were found in RMC WCDMA mode at 12.2kbps with HSDPA inactive and TPC bits all set to 1."
2) This unit was tested with its standard battery. The worst case setup is reported in the tables below. transmitter. The worst-case emissions are reported. 3) The EUT was tested in three orthogonal planes and in all possible test configurations and positioning. 4) The spectrum is measured from 9kHz to the 10th harmonic of the fundamental frequency of the 5) Emissions below 18GHz were measured at a 3 meter test distance while emissions above 18GHz were measured at a 1 meter test distance with the application of a distance correction factor. 6) The "-" shown in the following RSE tables are used to denote a noise floor measurement. 7) Below 1GHz Pre-scan plot shows no significant emissions. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 47 of 62 EUT Type:
Cellular WCDMA Mode Plot 7-44. Radiated Spurious Plot below 1GHz (Cellular WCDMA Mode) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 48 of 62 EUT Type:
-90 -80 -70 -60 -50 -40 -30 -20 -10 0 1030M 5060 80100M200300400500 8001GLevel in dBmFrequency in HzPreview Result 1V-PK+Preview Result 1H-PK+Critical_Freqs PK+FCC Licensed RSEFinal_Result PK+Final_Result QPKFCC Licensed RSE Plot 7-45. Radiated Spurious Plot above 1GHz (Cellular WCDMA Mode) Table 7-7. Radiated Spurious Data Above 1GHz (Cellular WCDMA Mode Ch. 4132) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 49 of 62 EUT Type:
OPERATING FREQUENCY: 826.40MHzMODULATION SIGNAL: WCDMADISTANCE: 3metersLIMIT: -13dBm1652.80H---72.765.43-67.33-54.32479.20H---70.005.93-64.07-51.13305.60H---71.087.84-63.24-50.24132.00H---71.288.99-62.28-49.34958.40H---71.6210.04-61.58-48.6Antenna Height [cm]Ant. Pol. [H/V]Substitute Antenna Gain [dBi]Frequency [MHz]Spurious Emission Level [dBm]Margin [dB]Level at Antenna Terminals [dBm]Turntable Azimuth [degree]
Table 7-8. Radiated Spurious Data Above 1GHz (Cellular WCDMA Mode Ch. 4183) Table 7-9. Radiated Spurious Data Above 1GHz (Cellular WCDMA Mode Ch. 4233) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 50 of 62 EUT Type:
OPERATING FREQUENCY: 836.60MHzMODULATION SIGNAL: WCDMADISTANCE: 3metersLIMIT: -13dBm1673.20H---73.935.60-68.32-55.32509.80H---70.505.90-64.60-51.63346.40H---71.777.95-63.82-50.84183.00H---71.739.13-62.60-49.65019.60H---71.7610.00-61.75-48.8Ant. Pol. [H/V]Margin [dB]Frequency [MHz]Antenna Height [cm]Level at Antenna Terminals [dBm]Turntable Azimuth [degree]Spurious Emission Level [dBm]Substitute Antenna Gain [dBi]OPERATING FREQUENCY: 846.60MHzMODULATION SIGNAL: WCDMADISTANCE: 3metersLIMIT: -13dBm1693.20H---72.655.64-67.01-54.02539.80H---70.035.98-64.05-51.13386.40H---71.508.07-63.43-50.44233.00H---71.409.20-62.20-49.25079.60H---71.7610.07-61.69-48.7Margin [dB]Spurious Emission Level [dBm]Frequency [MHz]Turntable Azimuth [degree]Ant. Pol. [H/V]Antenna Height [cm]Level at Antenna Terminals [dBm]Substitute Antenna Gain [dBi]
AWS WCDMA Mode Plot 7-46. Radiated Spurious Plot above 1GHz (AWS WCDMA Mode) Table 7-10. Radiated Spurious Data (AWS WCDMA Mode Ch. 1312) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 51 of 62 EUT Type:
OPERATING FREQUENCY: 1712.40MHzMODULATION SIGNAL: WCDMADISTANCE: 3metersLIMIT: -13dBm3424.80H - --71.038.12-62.91-49.95137.20H - --71.6310.11-61.52-48.56849.60H - --70.9511.37-59.58-46.68562.00H - --73.5313.00-60.53-47.510274.40H - --71.2413.10-58.14-45.1Margin [dB]Turntable Azimuth [degree]Substitute Antenna Gain [dBi]Spurious Emission Level [dBm]Level at Antenna Terminals [dBm]Ant. Pol. [H/V]Antenna Height [cm]Frequency [MHz]
Table 7-11. Radiated Spurious Data (AWS WCDMA Mode Ch. 1413) Table 7-12. Radiated Spurious Data (AWS WCDMA Mode Ch. 1513) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 52 of 62 EUT Type:
OPERATING FREQUENCY: 1732.60MHzMODULATION SIGNAL: WCDMADISTANCE: 3metersLIMIT: -13dBm3465.20H - --71.508.11-63.39-50.45197.80H - --71.7610.23-61.53-48.56930.40H - --71.8111.41-60.40-47.48663.00H - --73.4713.15-60.31-47.310395.60H - --70.9913.03-57.96-45.0Frequency [MHz]Level at Antenna Terminals [dBm]Substitute Antenna Gain [dBi]Spurious Emission Level [dBm]Turntable Azimuth [degree]Ant. Pol. [H/V]Antenna Height [cm]Margin [dB]OPERATING FREQUENCY: 1752.60MHzMODULATION SIGNAL: WCDMADISTANCE: 3metersLIMIT: -13dBm3505.20H - --71.028.07-62.96-50.05257.80H - --70.9510.27-60.67-47.77010.40H - --71.7511.51-60.24-47.28763.00H - --73.2913.18-60.11-47.110515.60H - --71.0613.08-57.98-45.0Level at Antenna Terminals [dBm]Substitute Antenna Gain [dBi]Frequency [MHz]Ant. Pol. [H/V]Margin [dB]Turntable Azimuth [degree]Spurious Emission Level [dBm]Antenna Height [cm]
PCS WCDMA Mode Plot 7-47. Radiated Spurious Plot above 1GHz (PCS WCDMA Mode) Table 7-13. Radiated Spurious Data (PCS WCDMA Mode Ch. 9262) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 53 of 62 EUT Type:
OPERATING FREQUENCY: 1852.40MHzMODULATION SIGNAL: WCDMADISTANCE: 3metersLIMIT: -13dBm3704.80V - --70.718.41-62.30-49.35557.20V - --70.8810.72-60.16-47.27409.60V - --71.3611.89-59.47-46.59262.00V - --73.0813.30-59.78-46.811114.40V - --69.7813.23-56.56-43.6Ant. Pol. [H/V]Antenna Height [cm]Frequency [MHz]Turntable Azimuth [degree]Level at Antenna Terminals [dBm]Substitute Antenna Gain [dBi]Spurious Emission Level [dBm]Margin [dB]
Table 7-14. Radiated Spurious Data (PCS WCDMA Mode Ch. 9400) Table 7-15. Radiated Spurious Data (PCS WCDMA Mode Ch. 9538) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 54 of 62 EUT Type:
OPERATING FREQUENCY: 1880.00MHzMODULATION SIGNAL: WCDMADISTANCE: 3metersLIMIT: -13dBm3760.00V---70.138.47-61.66-48.75640.00V348138-68.2110.69-57.52-44.57520.00V - --71.4211.99-59.43-46.49400.00V - --72.0713.36-58.70-45.711280.00V - --69.2213.22-55.99-43.0Antenna Height [cm]Frequency [MHz]Ant. Pol. [H/V]Substitute Antenna Gain [dBi]Spurious Emission Level [dBm]Level at Antenna Terminals [dBm]Margin [dB]Turntable Azimuth [degree]OPERATING FREQUENCY: 1907.60MHzMODULATION SIGNAL: WCDMADISTANCE: 3metersLIMIT: -13dBm3815.20V - --71.108.62-62.48-49.55722.80V---70.2010.66-59.53-46.57630.40V - --71.9512.16-59.79-46.89538.00V - --72.5613.21-59.35-46.411445.60V - --69.4913.28-56.21-43.2Frequency [MHz]Antenna Height [cm]Ant. Pol. [H/V]Turntable Azimuth [degree]Spurious Emission Level [dBm]Level at Antenna Terminals [dBm]Margin [dB]Substitute Antenna Gain [dBi]
Frequency Stability / Temperature Variation 7.8 Test Overview and Limit Frequency stability testing is performed in accordance with the guidelines of ANSI/TIA-603-E-2016. The frequency stability of the transmitter is measured by:
a.) Temperature: The temperature is varied from -30C to +50C in 10C increments using an environmental chamber. b.) Primary Supply Voltage: The primary supply voltage is varied from 85% to 115% of the nominal value for non hand-carried battery and AC powered equipment. For hand-carried, battery-powered equipment, primary supply voltage is reduced to the battery operating end point which shall be specified by the manufacturer. For Part 22, RSS-132, and RSS-133, the frequency stability of the transmitter shall be maintained within 0.00025% (2.5 ppm) of the center frequency. For Part 24, Part 27, and RSS-139, the frequency stability shall be sufficient to ensure that the fundamental emission stays within the authorized frequency block. Test Procedure Used ANSI/TIA-603-E-2016 Test Settings 1. The carrier frequency of the transmitter is measured at room temperature (20C to provide a reference). 2. The equipment is turned on in a standby condition for fifteen minutes before applying power to the transmitter. Measurement of the carrier frequency of the transmitter is made within one minute after applying power to the transmitter. 3. Frequency measurements are made at 10C intervals ranging from -30C to +50C. A period of at least one half-hour is provided to allow stabilization of the equipment at each temperature level. Test Setup Figure 7-8. Test Instrument & Measurement Setup Test Notes None FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 55 of 62 EUT Type:
Frequency Stability / Temperature Variation Table 7-16. Frequency Stability Data (Cellular WCDMA Mode Ch. 4183) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 56 of 62 EUT Type:
OPERATING FREQUENCY: 836,600,000HzCHANNEL: 4183REFERENCE VOLTAGE: VDCDEVIATION LIMIT: 0.00025% or 2.5 ppm100 %- 30836,600,047470.0000056100 %- 20836,600,042420.0000050100 %- 10836,600,034340.0000040100 % 0836,600,034340.0000041100 %3.80+ 10836,600,039390.0000047100 %+ 20836,600,041410.0000049100 % + 30836,600,00550.0000006100 %+ 40836,600,00660.0000007100 %+ 50836,600,00550.0000006BATT. ENDPOINT3.40+ 20836,600,00550.0000005FREQUENCY (Hz)Freq. Dev. (Hz)Deviation (%)VOLTAGE (%)POWER (VDC)TEMP (oC)3.80 Frequency Stability / Temperature Variation Figure 7-9. Frequency Stability Graph (Cellular WCDMA Mode Ch. 4183) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 57 of 62 EUT Type:
Frequency Stability / Temperature Variation Table 7-17. Frequency Stability Data (AWS WCDMA Mode Ch. 1413) Note:
Based on the results of the frequency stability test at the center channel the frequency deviation results measured are very small. As such it is determined that the channels at the band edge would remain in-band when the maximum measured frequency deviation noted during the frequency stability tests is applied. Therefore the device is determined to remain operating in band over the temperature and voltage range as tested. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 58 of 62 EUT Type:
OPERATING FREQUENCY: 1,732,600,000HzCHANNEL: 1413REFERENCE VOLTAGE: VDC100 %- 301,732,600,039390.0000023100 %- 201,732,600,032320.0000019100 %- 101,732,600,034340.0000020100 % 01,732,600,038380.0000022100 %3.80+ 101,732,600,036360.0000021100 %+ 201,732,600,038380.0000022100 % + 301,732,600,010100.0000006100 %+ 401,732,600,00990.0000005100 %+ 501,732,600,010100.0000006BATT. ENDPOINT3.40+ 201,732,600,00880.0000005POWER (VDC)TEMP (oC)3.80VOLTAGE (%)Deviation (%)Freq. Dev. (Hz)FREQUENCY (Hz) Frequency Stability / Temperature Variation Figure 7-10. Frequency Stability Graph (AWS WCDMA Mode Ch. 1413) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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Frequency Stability / Temperature Variation Table 7-18. Frequency Stability Data (PCS WCDMA Mode Ch. 9400) FCC ID: BCG-A2157 MEASUREMENT REPORT
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OPERATING FREQUENCY: 1,880,000,000HzCHANNEL: 9400REFERENCE VOLTAGE: VDCDEVIATION LIMIT: 0.00025% or 2.5 ppm100 %- 301,880,000,039390.0000021100 %- 201,880,000,047470.0000025100 %- 101,880,000,049490.0000026100 %3.80 01,880,000,044440.0000024100 %+ 101,880,000,048480.0000026100 %+ 201,880,000,046460.0000024100 % + 301,880,000,010100.0000005100 %+ 401,880,000,011110.0000006100 %+ 501,880,000,010100.0000005BATT. ENDPOINT3.40+ 201,880,000,00770.00000043.80FREQUENCY (Hz)Deviation (%)VOLTAGE (%)POWER (VDC)TEMP (oC)Freq. Dev. (Hz) Frequency Stability / Temperature Variation Figure 7-11. Frequency Stability Graph (PCS WCDMA Mode Ch. 9400) FCC ID: BCG-A2157 MEASUREMENT REPORT
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8 . 0 C O N C L U S I O N The data collected the Apple Watch FCC ID: BCG-A2157 complies with all the requirements of Part 27 of the FCC Rules and RSS-139 of the Innovation, Science and Economic Development Canada Rules. tested and show relate only item(s) that the to FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-02.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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1 2 3 4 | Authorization Letter | Attestation Statements | 230.97 KiB | March 09 2019 / October 09 2019 |
Federal Communications Commission 7435 Oakland Mills Road Columbia MD 21046 July 19, 2019 To whom it may concern:
|, the undersigned, hereby authorize PCTEST Engineering Laboratory, Inc. to act on our behalf in all manners relating to application for equipment authorization, including signing of all documents relating to these matters. Any and all acts carried out by PCTEST Engineering Laboratory, Inc. on our behalf shall have the same effect as acts of our own.
|, the undersigned, hereby certify that we are not subject to a denial of federal benefits, that includes FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 853(a). In authorizing PCTEST Engineering Laboratory, Inc. as our representative, we still recognize that A. B. make all necessary arrangements for the conduct of the evaluation, including provision for K. comply with the relevant provisions of the certification program;
examining documentation and access to all areas, records (including internal audit reports) and personnel for the purposes of evaluation (e.g. testing, inspection, assessment, surveillance, reassessment) and resolution of complaints;
. make claims regarding certification only in respect of the scope for which certification has been granted;
do not use our product certification in such a manner as to bring the Certification Division into disrepute and not make any statement regarding our product certification which the Certification Division may consider misleading or unauthorized;
upon suspension or cancellation of certification, discontinue use of all advertising matter that contains any reference thereto and return any certification documents as required by the Certification Division;
use certification only to indicate the products are certified as being in conformity with specified standards;
. endeavor to ensure that no certificate or report nor any part thereof is used in a misleading manner;
. ensure that any reference to our product certification in communication media such as documents, brochures or advertising, complies with the requirements of the Certification Division;
keep a record of all complaints made known to us relating to the products compliance with requirements of the relevant standard and to make these records available to the when requested;
. take appropriate action with respect to such complaints and any deficiencies found in products or services that affect compliance with the requirements for certification;
document the actions taken. This authorization is valid until further written notice from the applicant. Za Marc Douat Compliance Engineer Apple Inc. One Apple Park Way Cupertino, CA 95014
1 2 3 4 | Confidentiality Request Letter | Cover Letter(s) | 225.04 KiB | March 09 2019 / October 09 2019 |
Federal Communications Commission 7435 Oakland Mills Road Columbia MD 21046 Subject: Request for Confidentiality FCC ID: BCG-A2157 To Whom It May Concern:
Pursuant to the provisions of Sections 0.457 and 0.459 of the Commission's rules (47 CFR 0.457, 0.459), Apple Inc. hereby requests confidential treatment for documents filed with the Commission in connection with the application for equipment authorization referenced above. Apple Inc. requests that the Commission withholds the following documents from public viewing indefinitely:
Schematic Diagram Block Diagram Theory of Operation Antenna Specification Parts List Tune Up Procedure These documents reveal detailed technical and design information that is protected by Apple Inc. as confidential and proprietary trade secrets. This information has been disclosed to those required to maintain its confidentiality, and is not customarily disclosed to the public even after commercial release of a device. As a result, disclosure of this information by the Commission would harm Apple Inc. by giving competitors an unfair advantage even after commercial release of the device. In addition to the above mentioned documents, pursuant to Public Notice DA 04-1705 of the Commission's policy, in order to comply with the marketing regulations in 47 CFR 2.803 and the importation rules in 47 CFR 2.1204, while ensuring that business sensitive information remains confidential until the actual marketing of newly authorized devices, Apple Inc. requests that the Commission withholds the following documents from public viewing for one hundred eighty days after the date the grant of equipment authorization is issued:
External Photographs Internal Photographs Test Setup Photographs User Manual These documents reveal technical and design information that has not been publicly disclosed in marketing materials and is protected by Apple Inc. as confidential and proprietary trade secrets. This information has been disclosed to those required to maintain its confidentiality, and is not customarily disclosed publicly prior to the commercial release of the device. As a result, disclosure of this information by the Commission prior to commercial release would harm Apple Inc. by giving competitors an unfair market advantage. Apple Inc. believes the period of confidentiality requested is necessary to protect the information until the commercial release of a device. Za Marc Douat Compliance Engineer Apple Inc. One Apple Park Way Cupertino, CA 95014
1 2 3 4 | LTE Test Report 1 | Test Report | 4.79 MiB | March 09 2019 / October 09 2019 |
PCTEST ENGINEERING LABORATORY, INC. 18855 Adams Court, Morgan Hill, CA 95037 USA Tel. 410.290.6652 / Fax 410.290.6654 http://www.pctest.com MEASUREMENT REPORT LTE Date of Testing:
05/01/2019 - 08/09/2019 Test Site/Location:
PCTEST Lab. Morgan Hill, CA, USA Test Report Serial No.:
1C1905130011-03.BCG BCG-A2157 Apple Inc. Certification A2157 Watch PCS Licensed Transmitter Worn on Body (PCT) 22, 24, & 27 ANSI C63.26-2015, ANSI/TIA-603-E-2016, KDB 971168 D01 v03r01 Applicant Name:
Apple Inc. One Apple Park Way Cupertino, CA 95014 United States FCC ID:
APPLICANT:
Application Type:
Model:
EUT Type:
FCC Classification:
FCC Rule Part(s):
Test Procedure(s):
This equipment has been shown to be capable of compliance with the applicable technical standards as indicated in the measurement report and was tested in accordance with the measurement procedures specified in 2.947. Test results reported herein relate only to the item(s) tested. I attest to the accuracy of data. All measurements reported herein were performed by me or were made under my supervision and are correct to the best of my knowledge and belief. I assume full responsibility for the completeness of these measurements and vouch for the qualifications of all persons taking them. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 1 of 203 EUT Type:
V 9.0 02/01/2019 1.0 2.0 3.0 4.0 5.0 6.0 7.0 8.0 T A B L E O F C O N T E N T S INTRODUCTION ........................................................................................................................................... 6 1.1 Scope ................................................................................................................................................................. 6 PCTEST Test Location ....................................................................................................................................... 6 1.2 1.3 Test Facility / Accreditations ............................................................................................................................... 6 PRODUCT INFORMATION ........................................................................................................................... 7 Equipment Description ....................................................................................................................................... 7 2.1 Device Capabilities ............................................................................................................................................. 7 2.2 2.3 Antenna Description ........................................................................................................................................... 8 Test Support Equipment ..................................................................................................................................... 8 2.4 Test Configuration .............................................................................................................................................. 9 2.5 2.6 Software and Firmware ...................................................................................................................................... 9 2.7 EMI Suppression Device(s)/Modifications .......................................................................................................... 9 DESCRIPTION OF TESTS ......................................................................................................................... 10 3.1 Measurement Procedure .................................................................................................................................. 10 3.2 Cellular - Base Frequency Blocks .................................................................................................................... 10 Cellular - Mobile Frequency Blocks .................................................................................................................. 10 3.3 PCS - Base Frequency Blocks ......................................................................................................................... 10 3.4 3.5 PCS - Mobile Frequency Blocks ....................................................................................................................... 11 AWS - Base Frequency Blocks ........................................................................................................................ 11 3.6 AWS - Mobile Frequency Blocks ...................................................................................................................... 11 3.7 3.8 BRS/EBS Frequency Block .............................................................................................................................. 12 3.9 Radiated Power and Radiated Spurious Emissions ......................................................................................... 13 MEASUREMENT UNCERTAINTY .............................................................................................................. 14 TEST EQUIPMENT CALIBRATION DATA ................................................................................................. 14 SAMPLE CALCULATIONS ......................................................................................................................... 16 TEST RESULTS .......................................................................................................................................... 17 7.1 Summary .......................................................................................................................................................... 17 Occupied Bandwidth ........................................................................................................................................ 19 7.2 Spurious and Harmonic Emissions at Antenna Terminal ................................................................................. 47 7.3 7.4 Band Edge Emissions at Antenna Terminal ..................................................................................................... 73 Peak-Average Ratio ....................................................................................................................................... 139 7.5 Radiated Power (ERP/EIRP) .......................................................................................................................... 165 7.6 7.7 Radiated Spurious Emissions Measurements ................................................................................................ 174 7.8 Frequency Stability / Temperature Variation .................................................................................................. 192 CONCLUSION ........................................................................................................................................... 203 FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 2 of 203 EUT Type:
V 9.0 02/01/2019 MEASUREMENT REPORT FCC Part 22, 24, & 27 EUT Overview (Low Bands) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 3 of 203 EUT Type:
V 9.0 02/01/2019 LTE Band 522H824.7 - 848.30.473-3.250.776-1.101M11G7WQPSKLTE Band 522H824.7 - 848.30.409-3.880.671-1.731M11D7W16QAMLTE Band 522H825.5 - 847.50.471-3.270.773-1.122M73G7WQPSKLTE Band 522H825.5 - 847.50.422-3.750.692-1.602M74D7W16QAMLTE Band 522H826.5 - 846.50.473-3.250.776-1.104M58G7WQPSKLTE Band 522H826.5 - 846.50.419-3.780.687-1.634M56D7W16QAMLTE Band 522H829 - 8440.473-3.250.776-1.109M14G7WQPSKLTE Band 522H829 - 8440.430-3.670.705-1.525M44D7W16QAMLTE Band 2622H824.7 - 848.30.473-3.250.776-1.101M11G7WQPSKLTE Band 2622H824.7 - 848.30.408-3.890.670-1.741M11D7W16QAMLTE Band 2622H825.5 - 847.50.466-3.320.764-1.172M73G7WQPSKLTE Band 2622H825.5 - 847.50.421-3.760.690-1.612M74D7W16QAMLTE Band 2622H826.5 - 846.50.473-3.250.776-1.104M58G7WQPSKLTE Band 2622H826.5 - 846.50.426-3.710.698-1.564M56D7W16QAMLTE Band 2622H829 - 8440.462-3.350.759-1.209M14G7WQPSKLTE Band 2622H829 - 8440.421-3.760.690-1.615M44D7W16QAMMax. Power (dBm)Emission DesignatorModulationERPMax. Power (mW)Max. Power (dBm)EIRPMax. Power (mW)ModeTx Frequency (MHz)FCC Rule Part FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 4 of 203 EUT Type:
V 9.0 02/01/2019 LTE Band 4271710.7 - 1754.313.80411.401M11G7WQPSKLTE Band 4271710.7 - 1754.311.48210.601M11D7W16QAMLTE Band 4271711.5 - 1753.513.55211.322M73G7WQPSKLTE Band 4271711.5 - 1753.511.94010.772M73D7W16QAMLTE Band 4271712.5 - 1752.513.67711.364M58G7WQPSKLTE Band 4271712.5 - 1752.511.83010.734M56D7W16QAMLTE Band 4271715 - 175013.70911.379M13G7WQPSKLTE Band 4271715 - 175011.88510.755M58D7W16QAMLTE Band 4271717.5 - 1747.513.74011.3813M7G7WQPSKLTE Band 4271717.5 - 1747.511.61410.656M40D7W16QAMLTE Band 4271720 - 174513.70911.3718M4G7WQPSKLTE Band 4271720 - 174511.88510.758M13D7W16QAMLTE Band 66271710.7 - 1779.313.80411.401M11G7WQPSKLTE Band 66271710.7 - 1779.311.64110.661M11D7W16QAMLTE Band 66271711.5 - 1778.513.39711.272M73G7WQPSKLTE Band 66271711.5 - 1778.511.74910.702M73D7W16QAMLTE Band 66271712.5 - 1777.513.80411.404M58G7WQPSKLTE Band 66271712.5 - 1777.511.91210.764M56D7W16QAMLTE Band 66271715 - 177513.61411.349M13G7WQPSKLTE Band 66271715 - 177511.94010.775M58D7W16QAMLTE Band 66271717.5 - 1772.513.80411.4013M7G7WQPSKLTE Band 66271717.5 - 1772.511.96710.786M40D7W16QAMLTE Band 66271720 - 177013.80411.4018M4G7WQPSKLTE Band 66271720 - 177012.27410.898M13D7W16QAMLTE Band 224E1850.7 - 1909.311.48210.601M11G7WQPSKLTE Band 224E1850.7 - 1909.310.02310.011M11D7W16QAMLTE Band 224E1851.5 - 1908.511.64110.662M73G7WQPSKLTE Band 224E1851.5 - 1908.510.35110.152M73D7W16QAMLTE Band 224E1852.5 - 1907.511.74910.704M58G7WQPSKLTE Band 224E1852.5 - 1907.510.18610.084M55D7W16QAMLTE Band 224E1855 - 190511.83010.739M16G7WQPSKLTE Band 224E1855 - 190510.61710.265M33D7W16QAMLTE Band 224E1857.5 - 1902.511.91210.7613M7G7WQPSKLTE Band 224E1857.5 - 1902.510.64110.276M16D7W16QAMLTE Band 224E1860 - 190012.24610.8818M3G7WQPSKLTE Band 224E1860 - 190010.71510.307M74D7W16QAMLTE Band 2524E1850.7 - 1914.311.40210.571M11G7WQPSKLTE Band 2524E1850.7 - 1914.310.02310.011M11D7W16QAMLTE Band 2524E1851.5 - 1913.511.11710.462M73G7WQPSKLTE Band 2524E1851.5 - 1913.59.9319.972M73D7W16QAMLTE Band 2524E1852.5 - 1912.511.32410.544M58G7WQPSKLTE Band 2524E1852.5 - 1912.59.9319.974M55D7W16QAMLTE Band 2524E1855 - 191011.04110.439M16G7WQPSKLTE Band 2524E1855 - 19109.8869.955M33D7W16QAMLTE Band 2524E1857.5 - 1907.511.40210.5713M7G7WQPSKLTE Band 2524E1857.5 - 1907.510.09310.046M16D7W16QAMLTE Band 2524E1860 - 190512.30310.9018M3G7WQPSKLTE Band 2524E1860 - 190510.88910.377M74D7W16QAMModeFCC Rule PartTx Frequency (MHz)EIRPEmission DesignatorModulationMax. Power (mW)Max. Power (dBm) EUT Overview (High Bands) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 5 of 203 EUT Type:
V 9.0 02/01/2019 LTE Band 7272502.5 - 2567.519.05512.804M57G7WQPSKLTE Band 7272502.5 - 2567.516.86612.274M56D7W16QAMLTE Band 7272505 - 256519.05512.809M14G7WQPSKLTE Band 7272505 - 256516.78812.255M40D7W16QAMLTE Band 7272507.5 - 2562.519.05512.8013M7G7WQPSKLTE Band 7272507.5 - 2562.516.82712.266M11D7W16QAMLTE Band 7272510 - 256019.05512.8018M3G7WQPSKLTE Band 7272510 - 256016.44412.167M72D7W16QAMLTE Band 41272498.5 - 2687.519.05512.804M58G7WQPSKLTE Band 41272498.5 - 2687.516.48212.174M57D7W16QAMLTE Band 41272501 - 268519.05512.809M13G7WQPSKLTE Band 41272501 - 268516.67212.225M39D7W16QAMLTE Band 41272503.5 - 2682.519.05512.8013M7G7WQPSKLTE Band 41272503.5 - 2682.516.82712.266M42D7W16QAMLTE Band 41272506 - 268019.05512.8018M3G7WQPSKLTE Band 41272506 - 268016.63412.217M42D7W16QAMModeFCC Rule PartTx Frequency (MHz)EIRPEmission DesignatorModulationMax. Power (mW)Max. Power (dBm) 1 . 0 I N T R O D U C T I O N Scope 1.1 Measurement and determination of electromagnetic emissions (EMC) of radio frequency devices including intentional and/or unintentional radiators for compliance with the technical rules and regulations of the Federal Communications Commission and the Innovation, Science and Economic Development Canada. PCTEST Test Location 1.2 These measurement tests were conducted at the PCTEST Engineering Laboratory, Inc. facility located at 18855 Adams Court, Morgan Hill, CA 95037. The measurement facility is compliant with the test site requirements specified in ANSI C63.4-2014 and KDB 414788 D01 v01r01. 1.3 Measurements were performed at PCTEST Engineering Lab located in Morgan Hill, CA 95037, U.S.A. PCTEST is an ISO 17025-2005 accredited test facility under the American Association for Laboratory Accreditation (A2LA) with Certificate number 2041.02 for Specific Absorption Rate (SAR), Hearing Aid Compatibility (HAC) testing, where applicable, and Electromagnetic Compatibility (EMC) testing for FCC and Innovation, Science, and Economic Development Canada rules. Test Facility / Accreditations PCTEST TCB is a Telecommunication Certification Body (TCB) accredited to ISO/IEC 17065-2012 by A2LA
(Certificate number 2041.03) in all scopes of FCC Rules and ISED Standards (RSS). PCTEST facility is a registered (22831) test laboratory with the site description on file with ISED. FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 6 of 203 EUT Type:
V 9.0 02/01/2019 2 . 0 P R O D U C T I N F O R M A T I O N 2.1 Equipment Description The Equipment Under Test (EUT) is the Apple Watch FCC ID: BCG-A2157. The test data contained in this report pertains only to the emissions due to the EUTs LTE function. Test Device Serial No.: D92YD00QM8CJ, D92YC00FM95W, FN6911410EMKTRT5K Device Capabilities 2.2 This device contains the following capabilities:
850/1700/1900 WCDMA/HSPA, Multi-band LTE, 802.11b/g/n WLAN, Bluetooth (1x, EDR, HDR4, HDR8, LE), NFC LTE Band 26 (814.7 849 MHz) overlaps the entire frequency range of LTE Band 5 (824 849 MHz). Therefore, test data provided in this report covers Band 5 and the portion of Band 26 subject to Part 22. LTE Band 66 (1710 - 1780 MHz) overlaps the entire frequency range of LTE Band 4 (1710 - 1755 MHz). Therefore, test data provided in this report covers Band 4 as well as Band 66. LTE Band 25 (1850 - 1915 MHz) overlaps the entire frequency range of LTE Band 2 (1850 - 1910 MHz). Therefore, test data provided in this report covers Band 2 as well as Band 25. This device supports simultaneous transmission operation, which allows for two transmitters to transmit simultaneously on the same antenna. The table below shows all configurations possible. Simultaneous Tx Configurations WIFI 2.4GHz Bluetooth LTE Mid Bands LTE High Bands
= Support ; = NOT Support Worst Case Configuration Configuration 1 Configuration 2 Configuration 3 Configuration 4 Antenna FCM Table 2-1. Simultaneous Tx Configurations Description Antenna Channel Operating Frequency (MHz) Modulation/Mode Bluetooth FCM 39 2441 LTE FCM 26365 1882.5 GFSK/ePA QPSK/1RB/20MHz Table 2-2. Worst Case Configuration FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 7 of 203 EUT Type:
V 9.0 02/01/2019 Antenna Description 2.3 Following antenna was used for the testing. Frequency
[MHz]
814-849 1710-1785 1850-1915 2496-2690 2500-2570 Antenna Gain (dBi) BCM
-26.1 N/A N/A N/A N/A FCM N/A
-12.6
-13.1
-10.7
-10.7 Table 2-3. Highest Antenna Gain Test Support Equipment 2.4 Table 2-4. Test Support Equipment Used FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 8 of 203 EUT Type:
V 9.0 02/01/2019 1Apple MacBookModel:A1398S/N:C2QKP008F6F3w/AC/DC AdapterModel:A1435S/N:N/A2Apple USB CableModel:KanziS/N:311C81w/ Charging DockModel:FAPS73S/N:17481001022w/ DockModel:X241S/N:GW17F01ST223USB Lightning CableModel:N/AS/N:N/Aw/ AC AdapterModel:A1385S/N:N/A4Wireless Charging Pad (WCP)Model:EVTS/N:DLC915600ECLNWL3KWireless Charging Pad (WCP)Model:EVTS/N:DLC9156006TLNWK3V5Test Pathfinder Sinsa BoardModel:X1456S/N:920-062535-01w/ SiP CradleModel:P1 X1454SS/N:920-06373-026DC Power SupplyModel:KPS3010DS/N:N/A7Mobile Comm DC SourceModel:66321DS/N:MY52000555 Test Configuration 2.5 The EUT was tested per the guidance of ANSI/TIA-603-E-2016 and KDB 971168 D01 v03r01. See Section 7.0 of this test report for a description of the radiated and antenna port conducted emissions tests. The worst case configuration was investigated for all combinations of the four materials, aluminum, stainless steel, ceramic, and aluminum/ceramic mix, and various types of wristbands, metal and non-metal wristbands. The store display sample was investigated and determined as not the worst case. The EUT was also investigated with and without wireless charger. The worst case configuration found was used for all testing. For emissions from 1GHz 18GHz, low, mid, and high channels were tested with highest power and worst case configuration.The emissions below 1GHz and above 18GHz were tested with the highest transmitting power channel and the worst case configuration. The EUT was manipulated through three orthogonal planes of X-orientation (flatbed), Y-orientation (landscape), and Z-orientation (portrait) during the testing. Only the worst case emissions were reported in this test report. This device only supports 27RBs or less for 16-QAM uplink. 2.6 The test was conducted with firmware version wOS 6.0 installed on the EUT. 2.7 No EMI suppression device(s) were added and no modifications were made during testing. EMI Suppression Device(s)/Modifications Software and Firmware FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 3 . 0 D E S C R I P T I O N O F T E S T S A B 880 A* B*
High Measurement Procedure Cellular - Base Frequency Blocks 3.1 The measurement procedures described in the document titled Land Mobile FM or PM Communications Equipment Measurements and Performance Standards (ANSI/TIA-603-E-2016) and Procedures for Compliance Measurement of the Fundamental Emission Power of Licensed Wideband (> 1 MHz) Digital Transmission Systems
(KDB 971168 D01 v03r01) were used in the measurement of the EUT. 3.2 A*
Low 869 BLOCK 1: 869 880 MHz (A* Low + A) BLOCK 2: 880 890 MHz (B) 3.3 A*
Low 824 BLOCK 1: 824 835 MHz (A* Low + A) BLOCK 2: 835 845 MHz (B) BLOCK 4: 846.5 849 MHz (B*) 3.4 A BLOCK 3: 890 891.5 MHz (A* High) BLOCK 4: 891.5 894 MHz (B*) Cellular - Mobile Frequency Blocks PCS - Base Frequency Blocks BLOCK 3: 845 846.5 MHz (A* High) A* B*
High 890 E F B A C 845 835 B 849 894 D 1930 1950 BLOCK 1: 1930 1945 MHz (A) BLOCK 2: 1945 1950 MHz (D) BLOCK 3: 1950 1965 MHz (B) 1970 BLOCK 4: 1965 1970 MHz (E) BLOCK 5: 1970 1975 MHz (F) BLOCK 6: 1975 1990 MHz (C) 1990 FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 PCS - Mobile Frequency Blocks D B E F 3.5 A 1850 C 1910 3.6 3.7 1870 BLOCK 1: 1850 1865 MHz (A) BLOCK 2: 1865 1870 MHz (D) BLOCK 3: 1870 1885 MHz (B) 1890 BLOCK 4: 1885 1890 MHz (E) BLOCK 5: 1890 1895 MHz (F) BLOCK 6: 1895 1910 MHz (C) AWS - Base Frequency Blocks BLOCK 1: 2110 2120 MHz (A) BLOCK 2: 2120 2130 MHz (B) BLOCK 3: 2130 2135 MHz (C) BLOCK 4: 2135 2140 MHz (D) BLOCK 5: 2140 2145 MHz (E) BLOCK 6: 2145 2155 MHz (F) AWS - Mobile Frequency Blocks BLOCK 1: 1710 1720 MHz (A) BLOCK 2: 1720 1730 MHz (B) BLOCK 3: 1730 1735 MHz (C) BLOCK 4: 1735 1740 MHz (D) BLOCK 5: 1740 1745 MHz (E) BLOCK 6: 1745 1755 MHz (F) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 3.8 BRS/EBS Frequency Block FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 Radiated Power and Radiated Spurious Emissions 3.9 The radiated test facilities consisted of an indoor 3 meter semi-anechoic chamber used for final measurements and exploratory measurements, when necessary. The measurement area is contained within the semi-anechoic chamber which is shielded from any ambient interference. The test site inside the chamber is a 6m x 5.2m elliptical, obstruction-free area in accordance with Figure 5.7 of Clause 5 in ANSI C63.4-2014. Absorbers are arranged on the floor between the turn table and the antenna mast in such a way so as to maximize the reduction of reflections for measurements above 1GHz. For measurements below 1GHz, the absorbers are removed. A raised turntable is used for radiated measurement. The turn table is a continuously rotatable, remote-controlled, metallic turntable and 2 meters (6.56 ft.) in diameter. The turn table is flush with the raised floor of the chamber in order to maintain its function as a ground plane. An 80cm tall test table made of Styrodur is placed on top of the turn table. A Styrodur pedestal is placed on top of the test table to bring the total table height to 1.5m. The equipment under test was transmitting while connected to its integral antenna and is placed on a turntable 3 meters from the receive antenna. The receive antenna height is adjusted between 1 and 4 meter height, the turntable is rotated through 360 degrees, and the EUT is manipulated through all orthogonal planes representative of its typical use to achieve the highest reading on the receive spectrum analyzer. Per the guidelines of KDB 412172 D01 v01r01, radiated power levels are measured using the following formula:
ERP or EIRP = PT + GT LC Where PT is the transmitter output power, expressed in dBm, GT is the gain of the transmitting antenna, in dBd
(ERP) or dBi (EIRP), and LC signal attenuation in the connecting cable between the transmitter and antenna in dB. Per the guidance of ANSI/TIA-603-E-2016, a half-wave dipole is then substituted in place of the EUT. For emissions above 1GHz, a horn antenna is substituted in place of the EUT. The substitute antenna is driven by a signal generator with the level of the signal generator being adjusted to obtain the same receive spectrum analyzer level previously recorded from the spurious emission from the EUT. The power of the emission is calculated using the following formula:
Pd [dBm] = Pg [dBm] cable loss [dB] + antenna gain [dBd/dBi]
Where, Pd is the dipole equivalent power, Pg is the generator output into the substitution antenna, and the antenna gain is the gain of the substitute antenna used relative to either a half-wave dipole (dBd) or an isotropic source
(dBi). The substitute level is equal to Pg [dBm] cable loss [dB]. The calculated Pd levels are then compared to the absolute spurious emission limit of -13dBm which is equivalent to the required minimum attenuation of 43 + 10 log10(Power [Watts]). For Band 7 and 41, the calculated Pd levels are compared to the absolute spurious emission limit of -25dBm which is equivalent to the required minimum attenuation of 55 + 10 log10(Power [Watts]). FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 4 . 0 M E A S U R E M E N T U N C E R T A I N T Y The measurement uncertainties shown below were calculated in accordance with the requirements of ANSI C63.4-2014. All measurement uncertainty values are shown with a coverage factor of k = 2 to indicate a 95%
level of confidence. The measurement uncertainty shown below meets or exceeds the UCISPR measurement uncertainty values specified in CISPR 16-4-2 and, thus, can be compared directly to specified limits to determine compliance. Contribution Expanded Uncertainty (dB) Conducted Bench Top Measurements Radiated Disturbance (<1GHz) Radiated Disturbance (>1GHz) Radiated Disturbance (>18GHz) Temperature 1.29 4.15 4.70 5.01 0.01 FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 5 . 0 T E S T E Q U I P M E N T C A L I B R A T I O N D A T A Test Equipment Calibration is traceable to the National Institute of Standards and Technology (NIST). Measurements antennas used during testing were calibrated in accordance to the requirements of ANSI C63.5-
2017. Table 5-1. Test Equipment Notes:
For equipment listed above that has a calibration date or calibration due date that falls within the test date range, care was taken to ensure that this equipment was used after the calibration date and before the calibration due date. FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 Manufacturer Model Description Cal Date Cal Interval Cal Due Serial Number Agilent TechnologiesN9030A 3Hz-44GHz PXA Signal Analyzer 3/13/2019Annual3/13/2020MY49430244 ATM180-442A-KF20dB Nominal Gain Horn Antenna9/10/2018Annual9/10/2019T058701-03ESPECSU-241Tabletop Temperature Chamber8/10/2018Annual8/10/201992009574ETS-Lindgren118490Pre-Amplifier (30MHz - 6GHz)8/31/2018Annual8/31/2019213236ETS-Lindgren3142EBiConiLog Antenna (30MHz - 6GHz)12/11/2018Annual12/11/2019224569Rohde & SchwarzFSV40Signal Analyzer (10Hz-40GHz)2/27/2019Annual2/27/2020101619Rohde & SchwarzESW26EMI Test Receiver5/21/2019Annual5/21/2020101299Rohde & Schwarz ESW44EMI Test Receiver11/20/2018Annual11/20/2019101570Rohde & Schwarz CMW500 Wideband Radio Communication Tester 8/10/2018Annual8/10/2019161616Rohde & Schwarz CMW500 Wideband Radio Communication Tester 11/16/2018Annual11/16/2019164715Rohde & Schwarz CMW500 Wideband Radio Communication Tester 1/8/2019Annual1/8/2020166869Rohde & Schwarz TS-PR1840Pre-Amplifier (18GHz - 40GHz)9/5/2018Annual 9/5/2019100050Rohde & Schwarz TC-TA18Cross Polarized Vivaldi Antenna (400MHz-18GHz)11/21/2018Annual11/21/2019101057Rohde & Schwarz TC-TA18Cross Polarized Vivaldi Antenna (400MHz-18GHz)12/7/2018Annual12/7/2019101063Rohde & Schwarz HFH2-Z2 Loop Antenna 3/21/2019Annual 3/21/2020100519 6 . 0 S A M P L E C A L C U L A T I O N S Emission Designator QPSK Modulation Emission Designator = 8M62G7W LTE BW = 8.62 MHz G = Phase Modulation 7 = Quantized/Digital Info D = Data transmission, telemetry, telecommand QAM Modulation Emission Designator = 8M45D7W LTE BW = 8.45 MHz W = Amplitude/Angle Modulated 7 = Quantized/Digital Info D = Data transmission, telemetry, telecommand Spurious Radiated Emission LTE Band Example: Middle Channel LTE Mode 2nd Harmonic (1564 MHz) The average spectrum analyzer reading at 3 meters with the EUT on the turntable was 81.0 dBm. The gain of the substituted antenna is 8.1 dBi. The signal generator connected to the substituted antenna terminals is adjusted to produce a reading of 81.0 dBm on the spectrum analzyer. The loss of the cable between the signal generator and the terminals of the substituted antenna is 2.0 dB at 1564 MHz. So 6.1 dB is added to the signal generator reading of 30.9 dBm yielding 24.80 dBm. The fundamental EIRP was 25.501 dBm so this harmonic was 25.501 dBm
(-24.80). FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 7 . 0 T E S T R E S U L T S 7.1 Summary Company Name:
Apple Inc. FCC ID:
BCG-A2157 FCC Classification:
PCS Licensed Transmitter Worn on Body (PCT) Mode(s):
FCC Part Section(s) LTE Test Description Test Limit Test Condition Test Result Reference 2.1049 Occupied Bandwidth N/A 2.1051 22.917(a) 24.238(a) 27.53(h) Out of Band Emissions
> 43 + 10 log10 (P[Watts]) at Band Edge and for all out-of-
band emissions 27.53(m) Out of Band Emissions Undesirable emissions must meet the limits detailed in 27.53(m) Section 7.2 Section 7.3, 7.4 Section 7.3, 7.4 24.232(d) 27.50(d)(5) Peak-Average Ratio
< 13 dB CONDUCTED PASS Section 7.5 2.1046 Transmitter Conducted Output Power N/A 2.1055 22.355 24.235 27.54 Frequency Stability
< 2.5 ppm (Part 22) and fundamental emissions stay within authorized frequency block (Part 24, 27) Table 7-1. Summary of Conducted Test Results Section 7.6 Section 7.8 FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 FCC Part Section(s) 22.913(a)(5) 24.232(c) 27.50(h)(2) 27.50(d)(4) 2.1053 22.917(a) 24.238(a) 27.53(h) Effective Radiated Power / Equivalent Isotropic Radiated Power (Band 26/5) Equivalent Isotropic Radiated Power
(Band 25/2, 7, 41) Equivalent Isotropic Radiated Power
(Band 66/4) Test Description Test Limit Test Test Condition Result Reference
< 7 Watts max. ERP Section 7.6
< 2 Watts max. EIRP
< 1 Watts max. EIRP RADIATED PASS Section 7.6 Section 7.6 Section 7.7 Section 7.7 Undesirable Emissions
> 43 + 10 log10 (P[Watts]) for all out-of-band emissions 27.53(m) Undesirable Emissions Undesirable emissions must meet the limits detailed in 27.53(m) Table 7-2. Summary of Radiated Test Results Notes:
1) All modes of operation and data rates were investigated. The test results shown in the following sections represent the worst case emissions. 2) The analyzer plots (Sections 7.2, 7.3, 7.4, 7.5) were all taken with a correction table loaded into the analyzer. The correction table was used to account for the losses of the cables, directional couplers, and attenuators used as part of the system to maintain a link between the call box and the EUT at all frequencies of interest. 3) All antenna port conducted emissions testing was performed on a test bench with the antenna port of the EUT connected to the spectrum analyzer through calibrated cables, attenuators, and couplers. 4) For conducted spurious emissions, automated test software was used to measure emissions and capture the corresponding plots necessary to show compliance. The measurement software utilized is PCTEST LTE Automation, Version 4.8. FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 Occupied Bandwidth 7.2 Test Overview The occupied bandwidth, that is the frequency bandwidth such that, below its lower and above its upper frequency limits, the mean powers radiated are each equal to 0.5 percent of the total mean power radiated by a given emission shall be measured. All modes of operation were investigated and the worst case configuration results are reported in this section. Test Procedure Used KDB 971168 D01 v03r01 Section 4.2 Test Settings 1. The signal analyzers automatic bandwidth measurement capability was used to perform the 99% occupied bandwidth and the 26dB bandwidth. The bandwidth measurement was not influenced by any intermediate power nulls in the fundamental emission. 2. RBW = 1 5% of the expected OBW 3. VBW 3 x RBW 4. Detector = Peak 5. Trace mode = max hold 6. Sweep = auto couple 7. The trace was allowed to stabilize 8. If necessary, steps 2 7 were repeated after changing the RBW such that it would be within 1 5% of the 99% occupied bandwidth observed in Step 7 Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-1. Test Instrument & Measurement Setup Test Notes This device only supports 27RBs or less for 16-QAM uplink. FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 Table 7-3. Occupied Band Width Results (Low Bands) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 LTE Band 51.4QPSK1108.4LTE Band 51.416QAM1110.0LTE Band 53QPSK2729.3LTE Band 5316QAM2735.7LTE Band 55QPSK4580.7LTE Band 5516QAM4563.7LTE Band 510QPSK9140.3LTE Band 51016QAM5442.5LTE Band 261.4QPSK1108.4LTE Band 261.416QAM1110.0LTE Band 263QPSK2729.3LTE Band 26316QAM2735.7LTE Band 265QPSK4580.7LTE Band 26516QAM4563.7LTE Band 2610QPSK9140.3LTE Band 261016QAM5442.5ModulationModeBW (MHz)Occupied BW [kHz]
Table 7-4. Occupied Band Width Results (Mid Bands) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 LTE Band 41.4QPSK1107.3LTE Band 41.416QAM1112.3LTE Band 43QPSK2728.6LTE Band 4316QAM2733.5LTE Band 45QPSK4581.3LTE Band 4516QAM4556.8LTE Band 410QPSK9128.9LTE Band 41016QAM5575.3LTE Band 415QPSK13697.2LTE Band 41516QAM6396.7LTE Band 420QPSK18355.4LTE Band 42016QAM8132.5LTE Band 661.4QPSK1107.3LTE Band 661.416QAM1112.3LTE Band 663QPSK2728.6LTE Band 66316QAM2733.5LTE Band 665QPSK4581.3LTE Band 66516QAM4556.8LTE Band 6610QPSK9128.9LTE Band 661016QAM5575.3LTE Band 6615QPSK13697.2LTE Band 661516QAM6396.7LTE Band 6620QPSK18355.4LTE Band 662016QAM8132.5LTE Band 21.4QPSK1108.8LTE Band 21.416QAM1110.0LTE Band 23QPSK2726.9LTE Band 2316QAM2733.4LTE Band 25QPSK4576.1LTE Band 2516QAM4553.6LTE Band 210QPSK9162.6LTE Band 21016QAM5329.9LTE Band 215QPSK13683.9LTE Band 21516QAM6159.2LTE Band 220QPSK18256.7LTE Band 22016QAM7739.4LTE Band 251.4QPSK1108.8LTE Band 251.416QAM1110.0LTE Band 253QPSK2726.9LTE Band 25316QAM2733.4LTE Band 255QPSK4576.1LTE Band 25516QAM4553.6LTE Band 2510QPSK9162.6LTE Band 251016QAM5329.9LTE Band 2515QPSK13683.9LTE Band 251516QAM6159.2LTE Band 2520QPSK18256.7LTE Band 252016QAM7739.4ModeBW (MHz)Occupied BW [kHz]Modulation Table 7-5. Occupied Band Width Results (High Bands) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 LTE Band 75QPSK4574.0LTE Band 7516QAM4561.5LTE Band 710QPSK9140.9LTE Band 71016QAM5404.2LTE Band 715QPSK13677.5LTE Band 71516QAM6110.6LTE Band 720QPSK18254.5LTE Band 72016QAM7717.0LTE Band 415QPSK4579.6LTE Band 41516QAM4572.2LTE Band 4110QPSK9134.5LTE Band 411016QAM5386.4LTE Band 4115QPSK13672.1LTE Band 411516QAM6419.5LTE Band 4120QPSK18295.0LTE Band 412016QAM7423.3ModeOccupied BW [kHz]ModulationBW (MHz) Band 26/5 Plot 7-1. Occupied Bandwidth Plot (Band 26/5 - 1.4MHz QPSK - Full RB Configuration) Plot 7-2. Occupied Bandwidth Plot (Band 26/5 - 1.4MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 Plot 7-3. Occupied Bandwidth Plot (Band 26/5 - 3.0MHz QPSK - Full RB Configuration) Plot 7-4. Occupied Bandwidth Plot (Band 26/5 - 3.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 Plot 7-5. Occupied Bandwidth Plot (Band 26/5 - 5.0MHz QPSK - Full RB Configuration) Plot 7-6. Occupied Bandwidth Plot (Band 26/5 - 5.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 25 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-7. Occupied Bandwidth Plot (Band 26/5 - 10.0MHz QPSK - Full RB Configuration) Plot 7-8. Occupied Bandwidth Plot (Band 26/5 - 10.0MHz 16-QAM - Full RB (27/0) Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 26 of 203 EUT Type:
V 9.0 02/01/2019 Band 66/4 Plot 7-9. Occupied Bandwidth Plot (Band 66/4 - 1.4MHz QPSK - Full RB Configuration) Plot 7-10. Occupied Bandwidth Plot (Band 66/4 - 1.4MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 27 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-11. Occupied Bandwidth Plot (Band 66/4 - 3.0MHz QPSK - Full RB Configuration) Plot 7-12. Occupied Bandwidth Plot (Band 66/4 - 3.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 28 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-13. Occupied Bandwidth Plot (Band 66/4 - 5.0MHz QPSK - Full RB Configuration) Plot 7-14. Occupied Bandwidth Plot (Band 66/4 - 5.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 29 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-15. Occupied Bandwidth Plot (Band 66/4 - 10.0MHz QPSK - Full RB Configuration) Plot 7-16. Occupied Bandwidth Plot (Band 66/4 - 10.0MHz 16-QAM - Full RB (27/0) Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 30 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-17. Occupied Bandwidth Plot (Band 66/4 - 15.0MHz QPSK - Full RB Configuration) Plot 7-18. Occupied Bandwidth Plot (Band 66/4 - 15.0MHz 16-QAM - Full RB (27/0) Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 31 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-19. Occupied Bandwidth Plot (Band 66/4 - 20.0MHz QPSK - Full RB Configuration) Plot 7-20. Occupied Bandwidth Plot (Band 66/4 - 20.0MHz 16-QAM - Full RB (27/0) Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 32 of 203 EUT Type:
V 9.0 02/01/2019 Band 25/2 Plot 7-21. Occupied Bandwidth Plot (Band 25/2 - 1.4MHz QPSK - Full RB Configuration) Plot 7-22. Occupied Bandwidth Plot (Band 25/2 - 1.4MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 33 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-23. Occupied Bandwidth Plot (Band 25/2 - 3.0MHz QPSK - Full RB Configuration) Plot 7-24. Occupied Bandwidth Plot (Band 25/2 - 3.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 34 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-25. Occupied Bandwidth Plot (Band 25/2 - 5.0MHz QPSK - Full RB Configuration) Plot 7-26. Occupied Bandwidth Plot (Band 25/2 - 5.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 35 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-27. Occupied Bandwidth Plot (Band 25/2 - 10.0MHz QPSK - Full RB Configuration) Plot 7-28. Occupied Bandwidth Plot (Band 25/2 - 10.0MHz 16-QAM - Full RB (27/0) Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 36 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-29. Occupied Bandwidth Plot (Band 25/2 - 15.0MHz QPSK - Full RB Configuration) Plot 7-30. Occupied Bandwidth Plot (Band 25/2 - 15.0MHz 16-QAM - Full RB (27/0) Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 37 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-31. Occupied Bandwidth Plot (Band 25/2 - 20.0MHz QPSK - Full RB Configuration) Plot 7-32. Occupied Bandwidth Plot (Band 25/2 - 20.0MHz 16-QAM - Full RB (27/0) Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 38 of 203 EUT Type:
V 9.0 02/01/2019 Band 7 Plot 7-33. Occupied Bandwidth Plot (Band 7 - 5.0MHz QPSK - Full RB Configuration) Plot 7-34. Occupied Bandwidth Plot (Band 7 - 5.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 39 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-35. Occupied Bandwidth Plot (Band 7 - 10.0MHz QPSK - Full RB Configuration) Plot 7-36. Occupied Bandwidth Plot (Band 7 - 10.0MHz 16-QAM - Full RB (27/0) Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 40 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-37. Occupied Bandwidth Plot (Band 7 - 15.0MHz QPSK - Full RB Configuration) Plot 7-38. Occupied Bandwidth Plot (Band 7 - 15.0MHz 16-QAM - Full RB (27/0) Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 41 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-39. Occupied Bandwidth Plot (Band 7 - 20.0MHz QPSK - Full RB Configuration) Plot 7-40. Occupied Bandwidth Plot (Band 7 - 20.0MHz 16-QAM - Full RB (27/0) Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 42 of 203 EUT Type:
V 9.0 02/01/2019 Band 41 Plot 7-41. Occupied Bandwidth Plot (Band 41 - 5.0MHz QPSK - Full RB Configuration) Plot 7-42. Occupied Bandwidth Plot (Band 41 - 5.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 43 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-43. Occupied Bandwidth Plot (Band 41 - 10.0MHz QPSK - Full RB Configuration) Plot 7-44. Occupied Bandwidth Plot (Band 41 - 10.0MHz 16-QAM - Full RB (27/0) Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 44 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-45. Occupied Bandwidth Plot (Band 41 - 15.0MHz QPSK - Full RB Configuration) Plot 7-46. Occupied Bandwidth Plot (Band 41 - 15.0MHz 16-QAM - Full RB (27/0) Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 45 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-47. Occupied Bandwidth Plot (Band 41 - 20.0MHz QPSK - Full RB Configuration) Plot 7-48. Occupied Bandwidth Plot (Band 41 - 20.0MHz 16-QAM - Full RB (27/0) Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 46 of 203 EUT Type:
V 9.0 02/01/2019 Spurious and Harmonic Emissions at Antenna Terminal 7.3 Test Overview The level of the carrier and the various conducted spurious and harmonic frequencies is measured by means of a calibrated spectrum analyzer. The spectrum is scanned from the lowest frequency generated in the equipment up to a frequency including its 10th harmonic. All out of band emissions are measured with a spectrum analyzer connected to the antenna terminal of the EUT while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. All data rates were investigated to determine the worst case configuration. All modes of operation were investigated and the worst case configuration results are reported in this section. The minimum permissible attenuation level of any spurious emission is 43 + 10 log10(P[Watts]), where P is the transmitter power in Watts. For Band 7 and 41, the minimum permissible attenuation level of any spurious emission is 55 + 10 log10(P[Watts]). Test Procedure Used KDB 971168 D01 v03r01 Section 6.0 Test Settings 1. Start frequency was set to 30MHz and stop frequency was set to at least 10 * the fundamental frequency
(separated into at least two plots per channel) 2. Detector = RMS 3. Trace mode = trace average for continuous emissions, max hold for pulse emissions 4. Sweep time = auto couple 5. The trace was allowed to stabilize 6. Please see test notes below for RBW and VBW settings Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-2. Test Instrument & Measurement Setup Test Notes Compliance with the applicable limits is based on the use of measurement instrumentation employing a resolution bandwidth of 100 kHz or greater for frequencies less than 1 GHz and 1 MHz or greater for frequencies greater than 1 GHz. However, in the 1 MHz bands immediately outside and adjacent to the frequency block a resolution bandwidth of at least one percent of the emission bandwidth of the fundamental emission of the transmitter may be employed. The emission bandwidth is defined as the width of the signal between two points, one below the carrier center frequency and one above the carrier center frequency, outside of which all emission are attenuated at least 26 dB below the transmitter power. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 47 of 203 EUT Type:
V 9.0 02/01/2019 Band 26/5 Plot 7-49. Conducted Spurious Plot (Band 26/5 - 10.0MHz QPSK - RB Size 1, RB Offset 0 - Low Channel) Plot 7-50. Conducted Spurious Plot (Band 26/5 - 10.0MHz QPSK - RB Size 1, RB Offset 0 - Low Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 48 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-51. Conducted Spurious Plot (Band 26/5 - 10.0MHz QPSK - RB Size 1, RB Offset 0 - Low Channel) Plot 7-52. Conducted Spurious Plot (Band 26/5 - 10.0MHz QPSK - RB Size 1, RB Offset 0 - Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 49 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-53. Conducted Spurious Plot (Band 26/5 - 10.0MHz QPSK - RB Size 1, RB Offset 0 - Mid Channel) Plot 7-54. Conducted Spurious Plot (Band 26/5 - 10.0MHz QPSK - RB Size 1, RB Offset 0 - Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 50 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-55. Conducted Spurious Plot (Band 26/5 - 10.0MHz QPSK - RB Size 1, RB Offset 0 - High Channel) Plot 7-56. Conducted Spurious Plot (Band 26/5 - 10.0MHz QPSK - RB Size 1, RB Offset 0 - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 51 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-57. Conducted Spurious Plot (Band 26/5 - 10.0MHz QPSK - RB Size 1, RB Offset 0 - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 52 of 203 EUT Type:
V 9.0 02/01/2019 Band 66/4 Plot 7-58. Conducted Spurious Plot (Band 66/4 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Low Channel) Plot 7-59. Conducted Spurious Plot (Band 66/4 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Low Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 53 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-60. Conducted Spurious Plot (Band 66/4 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Low Channel) Plot 7-61. Conducted Spurious Plot (Band 66/4 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 54 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-62. Conducted Spurious Plot (Band 66/4 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Mid Channel) Plot 7-63. Conducted Spurious Plot (Band 66/4 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 55 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-64. Conducted Spurious Plot (Band 66/4 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - High Channel) Plot 7-65. Conducted Spurious Plot (Band 66/4 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 56 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-66. Conducted Spurious Plot (Band 66/4 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 57 of 203 EUT Type:
V 9.0 02/01/2019 Band 25/2 Plot 7-67. Conducted Spurious Plot (Band 25/2 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Low Channel) Plot 7-68. Conducted Spurious Plot (Band 25/2 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Low Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 58 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-69. Conducted Spurious Plot (Band 25/2 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Low Channel) Plot 7-70. Conducted Spurious Plot (Band 25/2 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 59 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-71. Conducted Spurious Plot (Band 25/2 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Mid Channel) Plot 7-72. Conducted Spurious Plot (Band 25/2 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 60 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-73. Conducted Spurious Plot (Band 25/2 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - High Channel) Plot 7-74. Conducted Spurious Plot (Band 25/2 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 61 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-75. Conducted Spurious Plot (Band 25/2 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 62 of 203 EUT Type:
V 9.0 02/01/2019 Band 7 Plot 7-76. Conducted Spurious Plot (Band 7 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Low Channel) Plot 7-77. Conducted Spurious Plot (Band 7 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Low Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 63 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-78. Conducted Spurious Plot (Band 7 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Low Channel) Plot 7-79. Conducted Spurious Plot (Band 7 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 64 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-80. Conducted Spurious Plot (Band 7 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Mid Channel) Plot 7-81. Conducted Spurious Plot (Band 7 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 65 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-82. Conducted Spurious Plot (Band 7 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - High Channel) Plot 7-83. Conducted Spurious Plot (Band 7 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 66 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-84. Conducted Spurious Plot (Band 7 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 67 of 203 EUT Type:
V 9.0 02/01/2019 Band 41 Plot 7-85. Conducted Spurious Plot (Band 41 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Low Channel) Plot 7-86. Conducted Spurious Plot (Band 41 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Low Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 68 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-87. Conducted Spurious Plot (Band 41 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Low Channel) Plot 7-88. Conducted Spurious Plot (Band 41 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 69 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-89. Conducted Spurious Plot (Band 41 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Mid Channel) Plot 7-90. Conducted Spurious Plot (Band 41 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 70 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-91. Conducted Spurious Plot (Band 41 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - High Channel) Plot 7-92. Conducted Spurious Plot (Band 41 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 71 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-93. Conducted Spurious Plot (Band 41 - 20.0MHz QPSK - RB Size 1, RB Offset 0 - High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 72 of 203 EUT Type:
V 9.0 02/01/2019 Band Edge Emissions at Antenna Terminal 7.4 Test Overview All out of band emissions are measured with a spectrum analyzer connected to the antenna terminal of the EUT while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. All data rates were investigated to determine the worst case configuration. All modes of operation were investigated and the worst case configuration results are reported in this section. The minimum permissible attenuation level of any spurious emission is 43 + 10 log10(P[Watts]), where P is the transmitter power in Watts. The minimum permissible attenuation level for Band 7 and 41 is as noted in the Test Notes on the following page. Test Procedure Used KDB 971168 D01 v03r01 Section 6.0 Test Settings 1. Start and stop frequency were set such that the band edge would be placed in the center of the plot 2. Span was set large enough so as to capture all out of band emissions near the band edge 3. RBW > 1% of the emission bandwidth 4. VBW > 3 x RBW 5. Detector = RMS 6. Number of sweep points 2 x Span/RBW 7. Trace mode = trace average for continuous emissions, max hold for pulse emissions 8. Sweep time = auto couple 9. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-3. Test Instrument & Measurement Setup FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 73 of 203 EUT Type:
V 9.0 02/01/2019 Test Notes Per 22.917(b) 24.238(a) 27.53(h) in the 1 MHz bands immediately outside and adjacent to the frequency block a resolution bandwidth of at least one percent of the emission bandwidth of the fundamental emission of the transmitter may be employed to demonstrate compliance with the out-of-band emissions limit. The emission bandwidth is defined as the width of the signal between two points, one below the carrier center frequency and one above the carrier center frequency, outside of which all emission are attenuated at least 26 dB below the transmitter power. Per 27.53(m) for operations in the BRS/EBS bands, the attenuation factor shall be not less than 40 + 10 log (P) dB on all frequencies between the channel edge and 5 megahertz from the channel edge, 43 + 10 log (P) dB on all frequencies between 5 megahertz and X megahertz from the channel edge, and 55 + 10 log (P) dB on all frequencies more than X megahertz from the channel edge, where X is the greater of 6 megahertz or the actual emission bandwidth. In addition, the attenuation factor shall not be less that 43 + 10 log (P) dB on all frequencies between 2490.5 MHz and 2496 MHz and 55 + 10 log (P) dB at or below 2490.5 MHz. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 74 of 203 EUT Type:
V 9.0 02/01/2019 Band 26 Plot 7-94. Lower Band Edge Plot (Band 26 - 1.4MHz QPSK - Full RB Configuration) Plot 7-95. Upper Band Edge Plot (Band 26 - 1.4MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 75 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-96. Lower Band Edge Plot (Band 26 - 3.0MHz QPSK - Full RB Configuration) Plot 7-97. Upper Band Edge Plot (Band 26 - 3.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 76 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-98. Lower Band Edge Plot (Band 26 - 5.0MHz QPSK - Full RB Configuration) Plot 7-99. Upper Band Edge Plot (Band 26 - 5.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 77 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-100. Lower Band Edge Plot (Band 26 - 10.0MHz QPSK - Full RB Configuration) Plot 7-101. Upper Band Edge Plot (Band 26 - 10.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 78 of 203 EUT Type:
V 9.0 02/01/2019
1 2 3 4 | LTE Test Report 2 | Test Report | 4.90 MiB | March 09 2019 / October 09 2019 |
Band 5 Plot 7-102. Lower Band Edge Plot (Band 5 - 1.4MHz QPSK - Full RB Configuration) Plot 7-103. Upper Band Edge Plot (Band 5 - 1.4MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 79 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-104. Lower Band Edge Plot (Band 5 - 3.0MHz QPSK - Full RB Configuration) Plot 7-105. Upper Band Edge Plot (Band 5 - 3.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 80 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-106. Lower Band Edge Plot (Band 5 - 5.0MHz QPSK - Full RB Configuration) Plot 7-107. Upper Band Edge Plot (Band 5 - 5.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 81 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-108. Lower Band Edge Plot (Band 5 - 10.0MHz QPSK - Full RB Configuration) Plot 7-109. Upper Band Edge Plot (Band 5 - 10.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 82 of 203 EUT Type:
V 9.0 02/01/2019 Band 66 Plot 7-110. Lower Band Edge Plot (Band 66 - 1.4MHz QPSK - Full RB Configuration) Plot 7-111. Lower Extended Band Edge Plot (Band 66 - 1.4MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 83 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-112. Upper Band Edge Plot (Band 66 - 1.4MHz QPSK - Full RB Configuration) Plot 7-113. Upper Extended Band Edge Plot (Band 66 - 1.4MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 84 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-114. Lower Band Edge Plot (Band 66 - 3.0MHz QPSK - Full RB Configuration) Plot 7-115. Lower Extended Band Edge Plot (Band 66 - 3.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 85 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-116. Upper Band Edge Plot (Band 66 - 3.0MHz QPSK - Full RB Configuration) Plot 7-117. Upper Extended Band Edge Plot (Band 66 - 3.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 86 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-118. Lower Band Edge Plot (Band 66 - 5.0MHz QPSK - Full RB Configuration) Plot 7-119. Lower Extended Band Edge Plot (Band 66 - 5.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 87 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-120. Upper Band Edge Plot (Band 66 - 5.0MHz QPSK - Full RB Configuration) Plot 7-121. Upper Extended Band Edge Plot (Band 66 - 5.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 88 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-122. Lower Band Edge Plot (Band 66 - 10.0MHz QPSK - Full RB Configuration) Plot 7-123. Lower Extended Band Edge Plot (Band 66 - 10.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 89 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-124. Upper Band Edge Plot (Band 66 - 10.0MHz QPSK - Full RB Configuration) Plot 7-125. Upper Extended Band Edge Plot (Band 66 - 10.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 90 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-126. Lower Band Edge Plot (Band 66 - 15.0MHz QPSK - Full RB Configuration) Plot 7-127. Lower Extended Band Edge Plot (Band 66 - 15.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 91 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-128. Upper Band Edge Plot (Band 66 - 15.0MHz QPSK - Full RB Configuration) Plot 7-129. Upper Extended Band Edge Plot (Band 66 - 15.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 92 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-130. Lower Band Edge Plot (Band 66 - 20.0MHz QPSK - Full RB Configuration) Plot 7-131. Lower Extended Band Edge Plot (Band 66 - 20.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 93 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-132. Upper Band Edge Plot (Band 66 - 20.0MHz QPSK - Full RB Configuration) Plot 7-133. Upper Extended Band Edge Plot (Band 66 - 20.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 94 of 203 EUT Type:
V 9.0 02/01/2019 Band 4 Plot 7-134. Lower Band Edge Plot (Band 4 - 1.4MHz QPSK - Full RB Configuration) Plot 7-135. Lower Extended Band Edge Plot (Band 4 - 1.4MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 95 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-136. Upper Band Edge Plot (Band 4 - 1.4MHz QPSK - Full RB Configuration) Plot 7-137. Upper Extended Band Edge Plot (Band 4 - 1.4MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 96 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-138. Lower Band Edge Plot (Band 4 - 3.0MHz QPSK - Full RB Configuration) Plot 7-139. Lower Extended Band Edge Plot (Band 4 - 3.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 97 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-140. Upper Band Edge Plot (Band 4 - 3.0MHz QPSK - Full RB Configuration) Plot 7-141. Upper Extended Band Edge Plot (Band 4 - 3.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 98 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-142. Lower Band Edge Plot (Band 4 - 5.0MHz QPSK - Full RB Configuration) Plot 7-143. Lower Extended Band Edge Plot (Band 4 - 5.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 99 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-144. Upper Band Edge Plot (Band 4 - 5.0MHz QPSK - Full RB Configuration) Plot 7-145. Upper Extended Band Edge Plot (Band 4 - 5.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 100 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-146. Lower Band Edge Plot (Band 4 - 10.0MHz QPSK - Full RB Configuration) Plot 7-147. Lower Extended Band Edge Plot (Band 4 - 10.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 101 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-148. Upper Band Edge Plot (Band 4 - 10.0MHz QPSK - Full RB Configuration) Plot 7-149. Upper Extended Band Edge Plot (Band 4 - 10.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 102 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-150. Lower Band Edge Plot (Band 4 - 15.0MHz QPSK - Full RB Configuration) Plot 7-151. Lower Extended Band Edge Plot (Band 4 - 15.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 103 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-152. Upper Band Edge Plot (Band 4 - 15.0MHz QPSK - Full RB Configuration) Plot 7-153. Upper Extended Band Edge Plot (Band 4 - 15.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 104 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-154. Lower Band Edge Plot (Band 4 - 20.0MHz QPSK - Full RB Configuration) Plot 7-155. Lower Extended Band Edge Plot (Band 4 - 20.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 105 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-156. Upper Band Edge Plot (Band 4 - 20.0MHz QPSK - Full RB Configuration) Plot 7-157. Upper Extended Band Edge Plot (Band 4 - 20.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 106 of 203 EUT Type:
V 9.0 02/01/2019 Band 25 Plot 7-158. Lower Band Edge Plot (Band 25 - 1.4MHz QPSK - Full RB Configuration) Plot 7-159. Lower Extended Band Edge Plot (Band 25 - 1.4MHz QPSK - Full RB Configuration) Approved by:
Quality Manager MEASUREMENT REPORT
(CERTIFICATION) FCC ID: BCG-A2157 Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 107 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-160. Upper Band Edge Plot (Band 25 - 1.4MHz QPSK - Full RB Configuration) Plot 7-161. Upper Extended Band Edge Plot (Band 25 - 1.4MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 108 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-162. Lower Band Edge Plot (Band 25 - 3.0MHz QPSK - Full RB Configuration) Plot 7-163. Lower Extended Band Edge Plot (Band 25 - 3.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 109 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-164. Upper Band Edge Plot (Band 25 - 3.0MHz QPSK - Full RB Configuration) Plot 7-165. Upper Extended Band Edge Plot (Band 25 - 3.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 110 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-166. Lower Band Edge Plot (Band 25 - 5.0MHz QPSK - Full RB Configuration) Plot 7-167. Lower Extended Band Edge Plot (Band 25 - 5.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 111 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-168. Upper Band Edge Plot (Band 25 - 5.0MHz QPSK - Full RB Configuration) Plot 7-169. Upper Extended Band Edge Plot (Band 25 - 5.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 112 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-170. Lower Band Edge Plot (Band 25 - 10.0MHz QPSK - Full RB Configuration) Plot 7-171. Lower Extended Band Edge Plot (Band 25 - 10.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 113 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-172. Upper Band Edge Plot (Band 25 - 10.0MHz QPSK - Full RB Configuration) Plot 7-173. Upper Extended Band Edge Plot (Band 25 - 10.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 114 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-174. Lower Band Edge Plot (Band 25 - 15.0MHz QPSK - Full RB Configuration) Plot 7-175. Lower Extended Band Edge Plot (Band 25 - 15.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 115 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-176. Upper Band Edge Plot (Band 25 - 15.0MHz QPSK - Full RB Configuration) Plot 7-177. Upper Extended Band Edge Plot (Band 25 - 15.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 116 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-178. Lower Band Edge Plot (Band 25 - 20.0MHz QPSK - Full RB Configuration) Plot 7-179. Lower Extended Band Edge Plot (Band 25 - 20.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 117 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-180. Upper Band Edge Plot (Band 25 - 20.0MHz QPSK - Full RB Configuration) Plot 7-181. Upper Extended Band Edge Plot (Band 25 - 20.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 118 of 203 EUT Type:
V 9.0 02/01/2019 Band 2 Plot 7-182. Lower Band Edge Plot (Band 2 - 1.4MHz QPSK - Full RB Configuration) Plot 7-183. Lower Extended Band Edge Plot (Band 2 - 1.4MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 119 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-184. Upper Band Edge Plot (Band 2 - 1.4MHz QPSK - Full RB Configuration) Plot 7-185. Upper Extended Band Edge Plot (Band 2 - 1.4MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 120 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-186. Lower Band Edge Plot (Band 2 - 3.0MHz QPSK - Full RB Configuration) Plot 7-187. Lower Extended Band Edge Plot (Band 2 - 3.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Dates:
05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 121 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-188. Upper Band Edge Plot (Band 2 - 3.0MHz QPSK - Full RB Configuration) Plot 7-189. Upper Extended Band Edge Plot (Band 2 - 3.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 122 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-190. Lower Band Edge Plot (Band 2 - 5.0MHz QPSK - Full RB Configuration) Plot 7-191. Lower Extended Band Edge Plot (Band 2 - 5.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 123 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-192. Upper Band Edge Plot (Band 2 - 5.0MHz QPSK - Full RB Configuration) Plot 7-193. Upper Extended Band Edge Plot (Band 2 - 5.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 124 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-194. Lower Band Edge Plot (Band 2 - 10.0MHz QPSK - Full RB Configuration) Plot 7-195. Lower Extended Band Edge Plot (Band 2 - 10.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 125 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-196. Upper Band Edge Plot (Band 2 - 10.0MHz QPSK - Full RB Configuration) Plot 7-197. Upper Extended Band Edge Plot (Band 2 - 10.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 126 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-198. Lower Band Edge Plot (Band 2 - 15.0MHz QPSK - Full RB Configuration) Plot 7-199. Lower Extended Band Edge Plot (Band 2 - 15.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 127 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-200. Upper Band Edge Plot (Band 2 - 15.0MHz QPSK - Full RB Configuration) Plot 7-201. Upper Extended Band Edge Plot (Band 2 - 15.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 128 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-202. Lower Band Edge Plot (Band 2 - 20.0MHz QPSK - Full RB Configuration) Plot 7-203. Lower Extended Band Edge Plot (Band 2 - 20.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 129 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-204. Upper Band Edge Plot (Band 2 - 20.0MHz QPSK - Full RB Configuration) Plot 7-205. Upper Extended Band Edge Plot (Band 2 - 20.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 130 of 203 EUT Type:
V 9.0 02/01/2019 Band 7 Plot 7-206. Lower ACP Plot (Band 7 - 5.0MHz QPSK - Full RB Configuration) Plot 7-207. Upper ACP Plot (Band 7 - 5.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 131 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-208. Lower ACP Plot (Band 7 - 10.0MHz QPSK - Full RB Configuration) Plot 7-209. Upper ACP Plot (Band 7 - 10.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 132 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-210. Lower ACP Plot (Band 7 - 15.0MHz QPSK - Full RB Configuration) Plot 7-211. Upper ACP Plot (Band 7 - 15.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 133 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-212. Lower ACP Plot (Band 7 - 20.0MHz QPSK - Full RB Configuration) Plot 7-213. Upper ACP Plot (Band 7 - 20.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 134 of 203 EUT Type:
V 9.0 02/01/2019 Band 41 Plot 7-214. Lower ACP Plot (Band 41 - 5.0MHz QPSK - Full RB Configuration) Plot 7-215. Upper ACP Plot (Band 41 - 5.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 135 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-216. Lower ACP Plot (Band 41 - 10.0MHz QPSK - Full RB Configuration) Plot 7-217. Upper ACP Plot (Band 41 - 10.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 136 of 203 EUT Type:
V 9.0 02/01/2019
1 2 3 4 | LTE Test Report 3 | Test Report | 3.62 MiB | March 09 2019 / October 09 2019 |
Plot 7-218. Lower ACP Plot (Band 41 - 15.0MHz QPSK - Full RB Configuration) Plot 7-219. Upper ACP Plot (Band 41 - 15.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 137 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-220. Lower ACP Plot (Band 41 - 20.0MHz QPSK - Full RB Configuration) Plot 7-221. Upper ACP Plot (Band 41 - 20.0MHz QPSK - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 138 of 203 EUT Type:
V 9.0 02/01/2019 Peak-Average Ratio 7.5 Test Overview A peak to average ratio measurement is performed at the conducted port of the EUT. The spectrum analyzers Complementary Cumulative Distribution Function (CCDF) measurement profile is used to determine the largest deviation between the average and the peak power of the EUT in a given bandwidth. The CCDF curve shows how much time the peak waveform spends at or above a given average power level. The percent of time the signal spends at or above the level defines the probability for that particular power level. Test Procedure Used KDB 971168 D01 v03r01 Section 5.7.1 Test Settings 1. The signal analyzers CCDF measurement profile is enabled 2. Frequency = carrier center frequency 3. Measurement BW OBW or specified reference bandwidth 4. The signal analyzer was set to collect one million samples to generate the CCDF curve 5. The measurement interval was set depending on the type of signal analyzed. For continuous signals (>98%
duty cycle), the measurement interval was set to 1ms. For burst transmissions, the spectrum analyzer is set to use an internal RF Burst trigger that is synced with an incoming pulse and the measurement interval is set to less than the duration of the on time of one burst to ensure that energy is only captured during a time in which the transmitter is operating at maximum power Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-4. Test Instrument & Measurement Setup Test Notes None. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 139 of 203 EUT Type:
V 9.0 02/01/2019 Table 7-6. PAR Results (Mid Bands) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 140 of 203 EUT Type:
V 9.0 02/01/2019 LTE Band 41.4QPSK23.605.7013-7.30LTE Band 41.416QAM22.766.3013-6.70LTE Band 43QPSK23.585.7713-7.23LTE Band 4316QAM22.726.4713-6.53LTE Band 45QPSK23.575.8113-7.19LTE Band 4516QAM22.696.3713-6.63LTE Band 410QPSK23.545.7513-7.25LTE Band 41016QAM22.666.3113-6.69LTE Band 415QPSK23.655.8013-7.20LTE Band 41516QAM22.616.2813-6.72LTE Band 420QPSK23.885.6013-7.40LTE Band 42016QAM22.606.3413-6.66LTE Band 661.4QPSK23.465.7313-7.27LTE Band 661.416QAM22.576.3413-6.66LTE Band 663QPSK23.395.8513-7.15LTE Band 66316QAM22.516.5013-6.50LTE Band 665QPSK23.385.8713-7.13LTE Band 66516QAM22.506.4213-6.58LTE Band 6610QPSK23.335.7113-7.29LTE Band 661016QAM22.526.3313-6.67LTE Band 6615QPSK23.376.0413-6.96LTE Band 661516QAM22.496.3313-6.67LTE Band 6620QPSK23.475.7013-7.30LTE Band 662016QAM22.576.2213-6.78LTE Band 21.4QPSK23.255.7013-7.30LTE Band 21.416QAM22.446.4013-6.60LTE Band 23QPSK23.265.8013-7.20LTE Band 2316QAM22.406.4713-6.53LTE Band 25QPSK23.295.8413-7.16LTE Band 2516QAM22.386.4513-6.55LTE Band 210QPSK23.145.6713-7.33LTE Band 21016QAM22.376.2413-6.76LTE Band 215QPSK23.236.0013-7.00LTE Band 21516QAM22.326.2513-6.75LTE Band 220QPSK23.255.7013-7.30LTE Band 22016QAM22.356.2113-6.79LTE Band 251.4QPSK23.275.7313-7.27LTE Band 251.416QAM22.406.4013-6.60LTE Band 253QPSK23.285.7913-7.21LTE Band 25316QAM22.376.4913-6.51LTE Band 255QPSK23.265.8213-7.18LTE Band 25516QAM22.386.4613-6.54LTE Band 2510QPSK23.155.6913-7.31LTE Band 251016QAM22.376.2613-6.74LTE Band 2515QPSK23.236.0013-7.00LTE Band 251516QAM22.346.2913-6.71LTE Band 2520QPSK23.365.7013-7.30LTE Band 252016QAM22.326.2413-6.76Average Power [dBm]ModeBW (MHz)ModulationMargin [dB]PAR at 0.1% [dB]Limit [dB]
Band 4 Plot 7-222. PAR Plot (Band 4 - 1.4MHz QPSK - Full RB Configuration) Plot 7-223. PAR Plot (Band 4 - 1.4MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 141 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-224. PAR Plot (Band 4 - 3.0MHz QPSK - Full RB Configuration) Plot 7-225. PAR Plot (Band 4 - 3.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 142 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-226. PAR Plot (Band 4 - 5.0MHz QPSK - Full RB Configuration) Plot 7-227. PAR Plot (Band 4 - 5.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 143 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-228. PAR Plot (Band 4 - 10.0MHz QPSK - Full RB Configuration) Plot 7-229. PAR Plot (Band 4 - 10.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 144 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-230. PAR Plot (Band 4 - 15.0MHz QPSK - Full RB Configuration) Plot 7-231. PAR Plot (Band 4 - 15.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 145 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-232. PAR Plot (Band 4 - 20.0MHz QPSK - Full RB Configuration) Plot 7-233. PAR Plot (Band 4 - 20.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 146 of 203 EUT Type:
V 9.0 02/01/2019 Band 66 Plot 7-234. PAR Plot (Band 66 - 1.4MHz QPSK - Full RB Configuration) Plot 7-235. PAR Plot (Band 66 - 1.4MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 147 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-236. PAR Plot (Band 66 - 3.0MHz QPSK - Full RB Configuration) Plot 7-237. PAR Plot (Band 66 - 3.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 148 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-238. PAR Plot (Band 66 - 5.0MHz QPSK - Full RB Configuration) Plot 7-239. PAR Plot (Band 66 - 5.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 149 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-240. PAR Plot (Band 66 - 10.0MHz QPSK - Full RB Configuration) Plot 7-241. PAR Plot (Band 66 - 10.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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05/01/2019 - 08/09/2019 Watch Test Report S/N:
1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 150 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-242. PAR Plot (Band 66 - 15.0MHz QPSK - Full RB Configuration) Plot 7-243. PAR Plot (Band 66 - 15.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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V 9.0 02/01/2019 Plot 7-244. PAR Plot (Band 66 - 20.0MHz QPSK - Full RB Configuration) Plot 7-245. PAR Plot (Band 66 - 20.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 152 of 203 EUT Type:
V 9.0 02/01/2019 Band 2 Plot 7-246. PAR Plot (Band 2 - 1.4MHz QPSK - Full RB Configuration) Plot 7-247. PAR Plot (Band 2 - 1.4MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 153 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-248. PAR Plot (Band 2 - 3.0MHz QPSK - Full RB Configuration) Plot 7-249. PAR Plot (Band 2 - 3.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 154 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-250. PAR Plot (Band 2 - 5.0MHz QPSK - Full RB Configuration) Plot 7-251. PAR Plot (Band 2 - 5.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 155 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-252. PAR Plot (Band 2 - 10.0MHz QPSK - Full RB Configuration) Plot 7-253. PAR Plot (Band 2 - 10.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 156 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-254. PAR Plot (Band 2 - 15.0MHz QPSK - Full RB Configuration) Plot 7-255. PAR Plot (Band 2 - 15.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 157 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-256. PAR Plot (Band 2 - 20.0MHz QPSK - Full RB Configuration) Plot 7-257. PAR Plot (Band 2 - 20.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 158 of 203 EUT Type:
V 9.0 02/01/2019 Band 25 Plot 7-258. PAR Plot (Band 25 - 1.4MHz QPSK - Full RB Configuration) Plot 7-259. PAR Plot (Band 25 - 1.4MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 159 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-260. PAR Plot (Band 25 - 3.0MHz QPSK - Full RB Configuration) Plot 7-261. PAR Plot (Band 25 - 3.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 160 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-262. PAR Plot (Band 25 - 5.0MHz QPSK - Full RB Configuration) Plot 7-263. PAR Plot (Band 25 - 5.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 161 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-264. PAR Plot (Band 25 - 10.0MHz QPSK - Full RB Configuration) Plot 7-265. PAR Plot (Band 25 - 10.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 162 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-266. PAR Plot (Band 25 - 15.0MHz QPSK - Full RB Configuration) Plot 7-267. PAR Plot (Band 25 - 15.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 163 of 203 EUT Type:
V 9.0 02/01/2019 Plot 7-268. PAR Plot (Band 25 - 20.0MHz QPSK - Full RB Configuration) Plot 7-269. PAR Plot (Band 25 - 20.0MHz 16-QAM - Full RB Configuration) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 164 of 203 EUT Type:
V 9.0 02/01/2019 Radiated Power (ERP/EIRP) 7.6 Test Overview Effective Radiated Power (ERP) and Equivalent Isotropic Radiated Power (EIRP) measurements are performed using the substitution method described in ANSI/TIA-603-E-2016 with the EUT transmitting into an integral antenna. Measurements on signals operating below 1GHz are performed using vertically and horizontally polarized tuned dipole antennas. Measurements on signals operating above 1GHz are performed using vertically and horizontally polarized broadband horn antennas. All measurements are performed as RMS average measurements while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. Test Procedures Used KDB 971168 D01 v03r01 Section 5.2.1 Test Settings The relevant equation for determining the ERP or EIRP from the conducted RF output power measured is:
ERP/EIRP = PMeas LC + GT Where:
ERP/EIRP = effective or equivalent radiated power, respectively (expressed in the same units as PMeas, typically dBW or dBm) PMeas = measured transmitter output power or PSD, in dBW or dBm LC = signal attenuation in the connecting cable between the transmitter and antenna in dB GT = gain of the transmitting antenna, in dBd (ERP) or dBi (EIRP) Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-5. ERP/EIRP Measurement Setup FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 165 of 203 EUT Type:
V 9.0 02/01/2019 Test Notes 1) The EUT was tested in three orthogonal planes and in all possible test configurations and positioning. The worst case emissions are reported with the EUT positioning, modulations, RB sizes and offsets, and channel bandwidth configurations shown in the tables below. 2) This unit was tested with its standard battery. 3) The Level (dBm) readings in the table were taken with a correction table loaded into the base station simulator. The correction table was used to account for the signal attenuation in the connecting cable between the transmitter and antenna. 4) The Ant. Gains (GT) are listed in dBi. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 166 of 203 EUT Type:
V 9.0 02/01/2019 Table 7-7. ERP Data (Band 5) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 167 of 203 EUT Type:
V 9.0 02/01/2019 824.701.4QPSK3 / 224.97-26.10-3.280.47038.45-41.73-1.130.77140.61-41.74836.501.4QPSK3 / 225.00-26.10-3.250.47338.45-41.70-1.100.77640.61-41.71848.301.4QPSK3 / 224.98-26.10-3.270.47138.45-41.72-1.120.77340.61-41.73836.501.416-QAM3 / 224.37-26.10-3.880.40938.45-42.33-1.730.67140.61-42.34825.503QPSK1 / 024.86-26.10-3.390.45838.45-41.84-1.240.75240.61-41.85836.503QPSK1 / 1424.98-26.10-3.270.47138.45-41.72-1.120.77340.61-41.73847.503QPSK1 / 1424.82-26.10-3.430.45438.45-41.88-1.280.74540.61-41.89836.50316-QAM1 / 024.50-26.10-3.750.42238.45-42.20-1.600.69240.61-42.21826.505QPSK1 / 025.00-26.10-3.250.47338.45-41.70-1.100.77640.61-41.71836.505QPSK1 / 2425.00-26.10-3.250.47338.45-41.70-1.100.77640.61-41.71846.505QPSK1 / 2424.89-26.10-3.360.46138.45-41.81-1.210.75740.61-41.82826.50516-QAM1 / 024.47-26.10-3.780.41938.45-42.23-1.630.68740.61-42.24829.0010QPSK1 / 024.86-26.10-3.390.45838.45-41.84-1.240.75240.61-41.85836.5010QPSK1 / 025.00-26.10-3.250.47338.45-41.70-1.100.77640.61-41.71844.0010QPSK1 / 024.88-26.10-3.370.46038.45-41.82-1.220.75540.61-41.83836.501016-QAM1 / 2724.58-26.10-3.670.43038.45-42.12-1.520.70540.61-42.13Mod.Frequency [MHz]Channel Bandwidth [MHz]Margin [dB]ERP Limit [dBm]Conducted Power [dBm]ERP [mW]RB Size/OffsetEIRP [mW]EIRP [dBm]EIRP Limit [dBm]Margin [dB]ERP [dBm]Ant. Gain [dBi]824.701.4QPSK3 / 225.00-26.10-3.250.47338.45-41.70-1.100.77640.61-41.71836.501.4QPSK1 / 024.89-26.10-3.360.46138.45-41.81-1.210.75740.61-41.82848.301.4QPSK3 / 224.94-26.10-3.310.46738.45-41.76-1.160.76640.61-41.77836.501.416-QAM1 / 524.36-26.10-3.890.40838.45-42.34-1.740.67040.61-42.35825.503QPSK1 / 024.80-26.10-3.450.45238.45-41.90-1.300.74140.61-41.91836.503QPSK1 / 1424.93-26.10-3.320.46638.45-41.77-1.170.76440.61-41.78847.503QPSK1 / 1424.81-26.10-3.440.45338.45-41.89-1.290.74340.61-41.90836.50316-QAM1 / 1424.49-26.10-3.760.42138.45-42.21-1.610.69040.61-42.22826.505QPSK1 / 024.96-26.10-3.290.46938.45-41.74-1.140.76940.61-41.75836.505QPSK1 / 025.00-26.10-3.250.47338.45-41.70-1.100.77640.61-41.71846.505QPSK1 / 2424.78-26.10-3.470.45038.45-41.92-1.320.73840.61-41.93836.50516-QAM1 / 2424.54-26.10-3.710.42638.45-42.16-1.560.69840.61-42.17829.0010QPSK1 / 024.80-26.10-3.450.45238.45-41.90-1.300.74140.61-41.91836.5010QPSK1 / 024.90-26.10-3.350.46238.45-41.80-1.200.75940.61-41.81844.0010QPSK1 / 024.83-26.10-3.420.45538.45-41.87-1.270.74640.61-41.88844.001016-QAM1 / 024.49-26.10-3.760.42138.45-42.21-1.610.69040.61-42.22Frequency [MHz]Channel Bandwidth [MHz]RB Size/OffsetERP [mW]Ant. Gain [dBi]Conducted Power [dBm]Margin [dB]ERP [dBm]EIRP [mW]EIRP Limit [dBm]Margin [dB]EIRP [dBm]ERP Limit [dBm]Mod. Table 7-9. EIRP Data (Band 4) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 168 of 203 EUT Type:
V 9.0 02/01/2019 1710.701.4QPSK1 / 523.73-12.6011.1312.97230.00-18.871732.501.4QPSK1 / 024.00-12.6011.4013.80430.00-18.601754.301.4QPSK3 / 223.93-12.6011.3313.58330.00-18.671732.501.416-QAM1 / 023.20-12.6010.6011.48230.00-19.401711.503QPSK1 / 1423.80-12.6011.2013.18330.00-18.801732.503QPSK1 / 1423.92-12.6011.3213.55230.00-18.681753.503QPSK1 / 1423.81-12.6011.2113.21330.00-18.791732.50316-QAM1 / 1423.37-12.6010.7711.94030.00-19.231712.505QPSK1 / 2423.77-12.6011.1713.09230.00-18.831732.505QPSK1 / 2423.96-12.6011.3613.67730.00-18.641752.505QPSK1 / 2423.94-12.6011.3413.61430.00-18.661732.50516-QAM1 / 2423.33-12.6010.7311.83030.00-19.271715.0010QPSK1 / 023.85-12.6011.2513.33530.00-18.751732.5010QPSK1 / 4923.97-12.6011.3713.70930.00-18.631750.0010QPSK1 / 4923.79-12.6011.1913.15230.00-18.811732.501016-QAM1 / 023.35-12.6010.7511.88530.00-19.251717.5015QPSK1 / 023.81-12.6011.2113.21330.00-18.791732.5015QPSK1 / 7423.98-12.6011.3813.74030.00-18.621747.5015QPSK1 / 023.88-12.6011.2813.42830.00-18.721732.501516-QAM1 / 023.25-12.6010.6511.61430.00-19.351720.0020QPSK1 / 023.83-12.6011.2313.27430.00-18.771732.5020QPSK1 / 9923.90-12.6011.3013.49030.00-18.701745.0020QPSK1 / 023.97-12.6011.3713.70930.00-18.631745.002016-QAM1 / 2723.35-12.6010.7511.88530.00-19.25Frequency [MHz]Channel Bandwidth [MHz]Mod.EIRP [mW]Ant. Gain [dBi]EIRP Limit [dBm]Margin [dB]EIRP [dBm]Conducted Power [dBm]RB Size/Offset Table 7-10. EIRP Data (Band 66) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 169 of 203 EUT Type:
V 9.0 02/01/2019 1710.701.4QPSK3 / 223.86-12.6011.2613.36630.00-18.741745.001.4QPSK3 / 223.99-12.6011.3913.77230.00-18.611779.301.4QPSK3 / 224.00-12.6011.4013.80430.00-18.601779.301.416-QAM1 / 023.26-12.6010.6611.64130.00-19.341711.503QPSK1 / 1423.81-12.6011.2113.21330.00-18.791745.003QPSK1 / 023.79-12.6011.1913.15230.00-18.811778.503QPSK1 / 1423.87-12.6011.2713.39730.00-18.731778.50316-QAM1 / 1423.30-12.6010.7011.74930.00-19.301712.505QPSK1 / 2423.76-12.6011.1613.06230.00-18.841745.005QPSK1 / 024.00-12.6011.4013.80430.00-18.601777.505QPSK1 / 023.92-12.6011.3213.55230.00-18.681745.00516-QAM1 / 2423.36-12.6010.7611.91230.00-19.241715.0010QPSK1 / 4923.81-12.6011.2113.21330.00-18.791745.0010QPSK1 / 023.86-12.6011.2613.36630.00-18.741775.0010QPSK1 / 023.94-12.6011.3413.61430.00-18.661745.001016-QAM1 / 2723.37-12.6010.7711.94030.00-19.231717.5015QPSK1 / 7423.85-12.6011.2513.33530.00-18.751745.0015QPSK1 / 023.96-12.6011.3613.67730.00-18.641772.5015QPSK1 / 024.00-12.6011.4013.80430.00-18.601772.501516-QAM1 / 2723.38-12.6010.7811.96730.00-19.221720.0020QPSK1 / 9923.84-12.6011.2413.30530.00-18.761745.0020QPSK1 / 024.00-12.6011.4013.80430.00-18.601770.0020QPSK1 / 9923.82-12.6011.2213.24330.00-18.781770.002016-QAM1 / 023.49-12.6010.8912.27430.00-19.11Frequency [MHz]Channel Bandwidth [MHz]Ant. Gain [dBi]RB Size/OffsetConducted Power [dBm]EIRP [dBm]EIRP [mW]Margin [dB]EIRP Limit [dBm]Mod. Table 7-11. EIRP Data (Band 2) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-03.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Page 170 of 203 EUT Type:
V 9.0 02/01/2019 1850.701.4QPSK3 / 223.64-13.1010.5411.32433.01-22.471880.001.4QPSK1 / 023.70-13.1010.6011.48233.01-22.411909.301.4QPSK3 / 223.62-13.1010.5211.27233.01-22.491850.701.416-QAM1 / 023.11-13.1010.0110.02333.01-23.001851.503QPSK1 / 023.66-13.1010.5611.37633.01-22.451880.003QPSK1 / 023.76-13.1010.6611.64133.01-22.351908.503QPSK1 / 1423.48-13.1010.3810.91433.01-22.631880.00316-QAM1 / 023.25-13.1010.1510.35133.01-22.861852.505QPSK1 / 023.75-13.1010.6511.61433.01-22.361880.005QPSK1 / 023.80-13.1010.7011.74933.01-22.311907.505QPSK1 / 2423.69-13.1010.5911.45533.01-22.421852.50516-QAM1 / 2423.18-13.1010.0810.18633.01-22.931855.0010QPSK1 / 023.71-13.1010.6111.50833.01-22.401880.0010QPSK1 / 023.79-13.1010.6911.72233.01-22.321905.0010QPSK1 / 023.83-13.1010.7311.83033.01-22.281905.001016-QAM1 / 023.36-13.1010.2610.61733.01-22.751857.5015QPSK1 / 023.79-13.1010.6911.72233.01-22.321880.0015QPSK1 / 023.78-13.1010.6811.69533.01-22.331902.5015QPSK1 / 023.86-13.1010.7611.91233.01-22.251902.501516-QAM1 / 023.37-13.1010.2710.64133.01-22.741860.0020QPSK1 / 9923.91-13.1010.8112.05033.01-22.201880.0020QPSK1 / 023.98-13.1010.8812.24633.01-22.131900.0020QPSK1 / 023.67-13.1010.5711.40233.01-22.441880.002016-QAM1 / 023.40-13.1010.3010.71533.01-22.71Frequency [MHz]Channel Bandwidth [MHz]Mod.RB Size/OffsetAnt. Gain [dBi]EIRP [mW]EIRP Limit [dBm]Conducted Power [dBm]Margin [dB]EIRP [dBm]
Table 7-12. EIRP Data (Band 25) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 1850.701.4QPSK3 / 223.67-13.1010.5711.40233.01-22.441882.501.4QPSK1 / 023.59-13.1010.4911.19433.01-22.521914.301.4QPSK3 / 223.65-13.1010.5511.35033.01-22.461850.701.416-QAM1 / 023.11-13.1010.0110.02333.01-23.001851.503QPSK1 / 023.56-13.1010.4611.11733.01-22.551882.503QPSK1 / 023.51-13.1010.4110.99033.01-22.601913.503QPSK1 / 023.52-13.1010.4211.01533.01-22.591851.50316-QAM1 / 023.07-13.109.979.93133.01-23.041852.505QPSK1 / 023.64-13.1010.5411.32433.01-22.471882.505QPSK1 / 023.46-13.1010.3610.86433.01-22.651912.505QPSK1 / 023.56-13.1010.4611.11733.01-22.551852.50516-QAM1 / 023.07-13.109.979.93133.01-23.041855.0010QPSK1 / 023.47-13.1010.3710.88933.01-22.641882.5010QPSK1 / 023.53-13.1010.4311.04133.01-22.581910.0010QPSK1 / 4923.45-13.1010.3510.83933.01-22.661855.001016-QAM1 / 023.05-13.109.959.88633.01-23.061857.5015QPSK1 / 7423.62-13.1010.5211.27233.01-22.491882.5015QPSK1 / 7423.67-13.1010.5711.40233.01-22.441907.5015QPSK1 / 023.67-13.1010.5711.40233.01-22.441882.501516-QAM1 / 023.14-13.1010.0410.09333.01-22.971860.0020QPSK1 / 9924.00-13.1010.9012.30333.01-22.111882.5020QPSK1 / 023.93-13.1010.8312.10633.01-22.181905.0020QPSK1 / 024.00-13.1010.9012.30333.01-22.111905.002016-QAM1 / 023.47-13.1010.3710.88933.01-22.64EIRP [dBm]Mod.Channel Bandwidth [MHz]Frequency [MHz]Conducted Power [dBm]RB Size/OffsetAnt. Gain [dBi]EIRP Limit [dBm]Margin [dB]EIRP [mW]
Table 7-13. EIRP Data (Band 7) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 2502.505QPSK1 / 2423.47-10.7012.7718.92333.01-20.242535.005QPSK1 / 023.50-10.7012.8019.05533.01-20.212567.505QPSK1 / 023.43-10.7012.7318.75033.01-20.282502.50516-QAM1 / 2422.97-10.7012.2716.86633.01-20.742505.0010QPSK1 / 4923.48-10.7012.7818.96733.01-20.232535.0010QPSK1 / 4923.35-10.7012.6518.40833.01-20.362565.0010QPSK1 / 4923.50-10.7012.8019.05533.01-20.212505.001016-QAM1 / 2722.95-10.7012.2516.78833.01-20.762507.5015QPSK1 / 7423.45-10.7012.7518.83633.01-20.262535.0015QPSK1 / 7423.50-10.7012.8019.05533.01-20.212562.5015QPSK1 / 7423.36-10.7012.6618.45033.01-20.352507.501516-QAM1 / 2722.96-10.7012.2616.82733.01-20.752510.0020QPSK1 / 9923.50-10.7012.8019.05533.01-20.212535.0020QPSK1 / 9923.38-10.7012.6818.53533.01-20.332560.0020QPSK1 / 023.25-10.7012.5517.98933.01-20.462510.002016-QAM1 / 2722.86-10.7012.1616.44433.01-20.85Conducted Power [dBm]Mod.RB Size/OffsetAnt. Gain [dBi]EIRP Limit [dBm]Channel Bandwidth [MHz]EIRP [mW]Margin [dB]EIRP [dBm]Frequency [MHz]
Table 7-14. EIRP Data (Band 41) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 2498.505QPSK1 / 023.50-10.7012.800.01905533.01-20.212593.005QPSK1 / 2423.32-10.7012.6218.28133.01-20.392687.505QPSK1 / 2423.38-10.7012.6818.53533.01-20.332498.50516-QAM1 / 2422.87-10.7012.1716.48233.01-20.842501.0010QPSK1 / 4923.50-10.7012.8019.05533.01-20.212593.0010QPSK1 / 023.36-10.7012.6618.45033.01-20.352685.0010QPSK1 / 023.49-10.7012.7919.01133.01-20.222501.001016-QAM1 / 2722.92-10.7012.2216.67233.01-20.792503.5015QPSK1 / 023.50-10.7012.8019.05533.01-20.212593.0015QPSK1 / 023.47-10.7012.7718.92333.01-20.242682.5015QPSK1 / 023.48-10.7012.7818.96733.01-20.232503.501516-QAM1 / 2722.96-10.7012.2616.82733.01-20.752506.0020QPSK1 / 9923.50-10.7012.8019.05533.01-20.212593.0020QPSK1 / 023.43-10.7012.7318.75033.01-20.282680.0020QPSK1 / 023.24-10.7012.5417.94733.01-20.472506.002016-QAM1 / 2722.91-10.7012.2116.63433.01-20.80Frequency [MHz]Mod.Channel Bandwidth [MHz]RB Size/OffsetConducted Power [dBm]Ant. Gain [dBi]EIRP [dBm]EIRP [Watts]EIRP Limit [dBm]Margin [dB]
Radiated Spurious Emissions Measurements 7.7 Test Overview Radiated spurious emissions measurements are performed using the substitution method described in ANSI/TIA-
603-E-2016 with the EUT transmitting into an integral antenna. Measurements on signals operating below 1GHz are performed using vertically and horizontally polarized tuned dipole antennas. Measurements on signals operating above 1GHz are performed using vertically and horizontally polarized broadband horn antennas. Test Procedures Used KDB 971168 D01 v03r01 Section 5.8 ANSI/TIA-603-E-2016 Section 2.2.12 Test Settings 1. RBW = 100kHz for emissions below 1GHz and 1MHz for emissions above 1GHz 2. VBW 3 x RBW 3. Span = 1.5 times the OBW 4. No. of sweep points > 2 x span / RBW 5. Detector = RMS 6. Trace mode = Average (Max Hold for pulsed emissions) 7. The trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-6. Test Instrument & Measurement Setup < 1GHz Figure 7-7. Test Instrument & Measurement Setup > 1GHz Test Notes 1) The EUT was tested in three orthogonal planes and in all possible test configurations and positioning. The worst case emissions are reported with the EUT positioning, modulations, RB sizes and offsets, and channel bandwidth configurations shown in the tables below. 2) This unit was tested with its standard battery. 3) The spectrum is measured from 9kHz to the 10th harmonic of the fundamental frequency of the transmitter. The worst-case emissions are reported. 4) Emissions below 18GHz were measured at a 3 meter test distance while emissions above 18GHz were measured at a 1 meter test distance with the application of a distance correction factor. 5) The "-" shown in the following RSE tables are used to denote a noise floor measurement. 6) Below 1GHz Pre-scan plot shows no significant emissions. FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 Band 26/5 Plot 7-270. Radiated Spurious Plot - Below 1GHz (Band 26/5 with WCP + AC/DC Adapter) Plot 7-271. Radiated Spurious Plot above 1GHz (Band 26/5) FCC ID: BCG-A2157 MEASUREMENT REPORT
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-90 -80 -70 -60 -50 -40 -30 -20 -10 0 1030M 5060 80100M200300400500 8001GLevel in dBmFrequency in HzPreview Result 1V-PK+Preview Result 1H-PK+Critical_Freqs PK+FCC Licensed RSEFinal_Result PK+Final_Result QPKFCC Licensed RSE Table 7-15. Radiated Spurious Data (Band 26/5 Low Channel) Table 7-16. Radiated Spurious Data (Band 26/5 Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 OPERATING FREQUENCY: 829.00MHzMODULATION SIGNAL: QPSKBANDWIDTH: 10.0MHzDISTANCE: 3metersLIMIT: -13dBm1658.00H - --73.745.83-67.91-54.92487.00H - --69.525.89-63.63-50.63316.00H - --71.137.73-63.40-50.44145.00H106316-66.008.78-57.21-44.24974.00H - --71.329.98-61.35-48.35803.00H - --71.3110.82-60.49-47.5Spurious Emission Level [dBm]Frequency [MHz]Turntable Azimuth [degree]Ant. Pol. [H/V]Level at Antenna Terminals [dBm]Antenna Height [cm]Substitute Antenna Gain [dBi]Margin [dB]OPERATING FREQUENCY: 836.50MHzMODULATION SIGNAL: QPSKBANDWIDTH: 10.0MHzDISTANCE: 3metersLIMIT: -13dBm1673.00H - --73.445.89-67.55-54.52509.50H - --70.026.07-63.95-51.03346.00H - --70.867.94-62.91-49.94182.50H116180-69.578.90-60.66-47.75019.00H - --72.0810.07-62.01-49.05855.50H - --71.0210.71-60.31-47.3Frequency [MHz]Ant. Pol. [H/V]Substitute Antenna Gain [dBi]Spurious Emission Level [dBm]Level at Antenna Terminals [dBm]Antenna Height [cm]Margin [dB]Turntable Azimuth [degree]
Table 7-17. Radiated Spurious Data (Band 26/5 High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 OPERATING FREQUENCY: 844.00MHzMODULATION SIGNAL: QPSKBANDWIDTH: 10.0MHzDISTANCE: 3metersLIMIT: -13dBm1688.00H - --73.415.87-67.54-54.52532.00H - --69.966.16-63.80-50.83376.00H - --71.768.09-63.67-50.74220.00H118160-65.298.88-56.41-43.45064.00H - --72.0410.11-61.93-48.95908.00H - --71.2910.62-60.67-47.7Antenna Height [cm]Ant. Pol. [H/V]Frequency [MHz]Spurious Emission Level [dBm]Substitute Antenna Gain [dBi]Turntable Azimuth [degree]Margin [dB]Level at Antenna Terminals [dBm]
Band 66/4 Plot 7-272. Radiated Spurious Plot above 1GHz (Band 66/4) Table 7-18. Radiated Spurious Data (Band 66/4 Low Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 OPERATING FREQUENCY: 1720.00MHzMODULATION SIGNAL: QPSKBANDWIDTH: 20.0MHzDISTANCE: 3metersLIMIT: -13dBm3440.00V - --71.288.27-63.01-50.05150.70V - --71.8310.19-61.65-48.66861.40V - --70.3411.43-58.91-45.98572.10V - --73.5213.15-60.37-47.410282.80V - --70.1713.15-57.02-44.0Level at Antenna Terminals [dBm]Substitute Antenna Gain [dBi]Spurious Emission Level [dBm]Turntable Azimuth [degree]Margin [dB]Frequency [MHz]Ant. Pol. [H/V]Antenna Height [cm]
Table 7-19. Radiated Spurious Data (Band 66/4 Mid Channel) Table 7-20. Radiated Spurious Data (Band 66/4 High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 OPERATING FREQUENCY: 1745.00MHzMODULATION SIGNAL: QPSKBANDWIDTH: 20.0MHzDISTANCE: 3metersLIMIT: -13dBm3490.00V - --71.078.30-62.77-49.85235.00V - --71.6710.29-61.37-48.46980.00V - --70.9911.59-59.40-46.48725.00V - --73.2513.22-60.03-47.010470.00V - --71.2313.19-58.04-45.0Frequency [MHz]Ant. Pol. [H/V]Antenna Height [cm]Turntable Azimuth [degree]Spurious Emission Level [dBm]Margin [dB]Level at Antenna Terminals [dBm]Substitute Antenna Gain [dBi]OPERATING FREQUENCY: 1770.00MHzMODULATION SIGNAL: QPSKBANDWIDTH: 20.0MHzDISTANCE: 3metersLIMIT: -13dBm3540.00V - --70.888.32-62.56-49.65310.00V - --71.3010.29-61.01-48.07080.00V - --71.0211.69-59.33-46.38850.00V - --72.3713.21-59.16-46.210620.00V - --70.3513.14-57.21-44.2Spurious Emission Level [dBm]Margin [dB]Level at Antenna Terminals [dBm]Substitute Antenna Gain [dBi]Antenna Height [cm]Turntable Azimuth [degree]Frequency [MHz]Ant. Pol. [H/V]
Band 25/2 Plot 7-273. Radiated Spurious Plot above 1GHz (Band 25/2) Table 7-21. Radiated Spurious Data (Band 25/2 Low Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 OPERATING FREQUENCY: 1860.00MHzMODULATION SIGNAL: QPSKBANDWIDTH: 20.0MHzDISTANCE: 3metersLIMIT: -13dBm3720.00V - --70.088.41-61.66-48.75580.00V400186-68.6410.66-57.99-45.07440.00V - --70.5512.02-58.53-45.59300.00V - --71.1013.39-57.71-44.711160.00V - --69.4013.19-56.22-43.2Substitute Antenna Gain [dBi]Spurious Emission Level [dBm]Margin [dB]Ant. Pol. [H/V]Level at Antenna Terminals [dBm]Turntable Azimuth [degree]Frequency [MHz]Antenna Height [cm]
Table 7-22. Radiated Spurious Data (Band 25/2 Mid Channel) Table 7-23. Radiated Spurious Data (Band 25/2 High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 OPERATING FREQUENCY: 1882.50MHzMODULATION SIGNAL: QPSKBANDWIDTH: 20.0MHzDISTANCE: 3metersLIMIT: -13dBm3765.00V - --70.028.34-61.69-48.75647.50V14095-69.7010.72-58.98-46.07530.00V - --72.0012.13-59.87-46.99412.50V - --73.9613.37-60.59-47.611295.00V - --73.3213.17-60.14-47.1Spurious Emission Level [dBm]Substitute Antenna Gain [dBi]Margin [dB]Ant. Pol. [H/V]Frequency [MHz]Antenna Height [cm]Turntable Azimuth [degree]Level at Antenna Terminals [dBm]OPERATING FREQUENCY: 1905.00MHzMODULATION SIGNAL: QPSKBANDWIDTH: 20.0MHzDISTANCE: 3metersLIMIT: -13dBm3810.00V - --69.078.30-60.76-47.85715.00V28830-69.7110.82-58.89-45.97620.00V - --73.0812.31-60.77-47.89525.00V - --74.3913.38-61.01-48.011430.00V - --73.5013.17-60.33-47.3Antenna Height [cm]Substitute Antenna Gain [dBi]Frequency [MHz]Margin [dB]Spurious Emission Level [dBm]Ant. Pol. [H/V]Level at Antenna Terminals [dBm]Turntable Azimuth [degree]
Band 7 Plot 7-274. Radiated Spurious Plot 1GHz - 18GHz (Band 7) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 Plot 7-275. Radiated Spurious Plot 18GHz 26GHz (Band 7, Pol. H) Plot 7-276. Radiated Spurious Plot 18GHz 26GHz (Band 7, Pol. V) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 Table 7-24. Radiated Spurious Data (Band 7 Low Channel) Table 7-25. Radiated Spurious Data (Band 7 Mid Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 OPERATING FREQUENCY: 2510.00MHzMODULATION SIGNAL: QPSKBANDWIDTH: 20.0MHzDISTANCE: 3metersLIMIT: -25dBm5020.00H239208-71.5610.07-61.49-36.57530.00H311131-66.9012.13-54.77-29.810040.00H---71.7413.21-58.53-33.512550.00H---68.2313.21-55.02-30.015060.00H---67.6814.10-53.58-28.6Margin [dB]Frequency [MHz]Ant. Pol. [H/V]Antenna Height [cm]Level at Antenna Terminals [dBm]Spurious Emission Level [dBm]Turntable Azimuth [degree]Substitute Antenna Gain [dBi]OPERATING FREQUENCY: 2535.00MHzMODULATION SIGNAL: QPSKBANDWIDTH: 20.0MHzDISTANCE: 3metersLIMIT: -25dBm5070.00V39982-72.0610.12-61.94-36.97605.00V2446-70.7512.30-58.45-33.510140.00V---71.1313.19-57.94-32.912675.00V---67.7213.15-54.57-29.615210.00V---66.9814.12-52.86-27.9Level at Antenna Terminals [dBm]Frequency [MHz]Spurious Emission Level [dBm]Turntable Azimuth [degree]Substitute Antenna Gain [dBi]Antenna Height [cm]Ant. Pol. [H/V]Margin [dB]
Table 7-26. Radiated Spurious Data (Band 7 High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 OPERATING FREQUENCY: 2560.00MHzMODULATION SIGNAL: QPSKBANDWIDTH: 20.0MHzDISTANCE: 3metersLIMIT: -25dBm5120.00H---71.6610.16-61.50-36.57680.00H257163-67.6412.28-55.36-30.410240.00H---70.8513.14-57.71-32.712800.00H---68.3813.19-55.19-30.215360.00H---68.3214.11-54.21-29.2Ant. Pol. [H/V]Substitute Antenna Gain [dBi]Antenna Height [cm]Frequency [MHz]Spurious Emission Level [dBm]Level at Antenna Terminals [dBm]Margin [dB]Turntable Azimuth [degree]
Band 41 Plot 7-277. Radiated Spurious Plot 1GHz - 18GHz (Band 41) Table 7-27. Radiated Spurious Data (Band 41 Low Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 OPERATING FREQUENCY: 2506.00MHzMODULATION SIGNAL: QPSKBANDWIDTH: 20.0MHzDISTANCE: 3metersLIMIT: -25dBm5012.00V - --62.6010.07-52.53-27.57518.00V - --63.1512.12-51.03-26.010024.00V - --61.4413.22-48.22-23.212530.00V - --58.4113.22-45.19-20.215036.00V - --58.3114.11-44.20-19.2Frequency [MHz]Level at Antenna Terminals [dBm]Substitute Antenna Gain [dBi]Spurious Emission Level [dBm]Margin [dB]Ant. Pol. [H/V]Antenna Height [cm]Turntable Azimuth [degree]
Table 7-28. Radiated Spurious Data (Band 41 Mid Channel) Table 7-29. Radiated Spurious Data (Band 41 High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 OPERATING FREQUENCY: 2593.00MHzMODULATION SIGNAL: QPSKBANDWIDTH: 20.0MHzDISTANCE: 3metersLIMIT: -25dBm5186.00V - --63.0910.26-52.83-27.87779.00V - --61.7412.30-49.44-24.410372.00V - --62.3413.20-49.14-24.112965.00V - --58.8113.29-45.52-20.515558.00V - --57.8714.04-43.83-18.8Turntable Azimuth [degree]Level at Antenna Terminals [dBm]Substitute Antenna Gain [dBi]Spurious Emission Level [dBm]Margin [dB]Frequency [MHz]Ant. Pol. [H/V]Antenna Height [cm]OPERATING FREQUENCY: 2680.00MHzMODULATION SIGNAL: QPSKBANDWIDTH: 20.0MHzDISTANCE: 3metersLIMIT: -25dBm5360.00V - --62.2210.34-51.88-26.98040.00V - --63.2612.51-50.75-25.810720.00V - --62.4713.13-49.34-24.313400.00V - --60.7713.78-46.99-22.016080.00V - --58.5113.47-45.04-20.0Antenna Height [cm]Turntable Azimuth [degree]Frequency [MHz]Level at Antenna Terminals [dBm]Ant. Pol. [H/V]Substitute Antenna Gain [dBi]Spurious Emission Level [dBm]Margin [dB]
Simultaneous Tx Radiated Spurious Measurements Description Antenna Channel Operating Frequency (MHz) Modulation/Mode Bluetooth FCM 39 2441 LTE FCM 26365 1882.5 GFSK/ePA QPSK/1RB/20MHz Table 7-30. Worst Case Simultaneous Transmission Config Plot 7-278. Radiated Spurious Plot Below 1GHz (with WCP + AC/DC Adapter) Table 7-31. Radiated Spurious Emissions Below 1GHz (with WCP + AC/DC Adapter) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 0 20 40 60 8030M 5060 80100M200300400500 8001GLevel in dBV/mFrequency in HzPreview Result 1V-PK+Preview Result 1H-PK+Critical_Freqs PK+FCC Part 15C 30MHz-1GHzFCC Part 15C 30MHz-1GHz_-6Final_Result QPKFCC Part 15C 30MHz-1GHz36.69Max-PeakV100215-68.10-12.8626.0440.00-13.9637.37Max-PeakV100286-67.02-13.1526.8340.00-13.1748.43Max-PeakV10030-72.38-20.3914.2340.00-25.7794.46Max-PeakV100122-69.70-18.1519.1543.52-24.37113.08Max-PeakV10015-76.94-17.0413.0243.52-30.51138.59Max-PeakH250244-76.29-18.4812.2343.52-31.30Analyzer Level [dBm]AFCL [dB/m]Field Strength [dBV/m]Limit [dBV/m]Margin [dB]Frequency [MHz]DetectorAnt. Pol. [H/V]Antenna Height [cm]Turntable Azimuth [degree]
Plot 7-279. Radiated Spurious Plot Above 1GHz Table 7-32. Radiated Spurious Measurements Above 1GHz FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 3765.00V - - -70.598.34-62.26-25.00-37.35647.50V307345-63.8010.72-53.08-25.00-28.17530.00V - - -71.0112.13-58.88-25.00-33.92999.50V143325-54.266.98-47.28-25.00-22.31324.00V125325-49.704.04-45.66-25.00-20.7Level at Antenna Terminals [dBm]Substitute Antenna Gain [dBi]Spurious Emission Level [dBm]Limit[dBm]Margin [dB]Frequency [MHz]Ant. Pol. [H/V]Antenna Height [cm]Turntable Azimuth [degree]
Plot 7-280. Radiated Spurious Plot Above 18GHz (Ant. Pol. H) Plot 7-281. Radiated Spurious Plot Above 18GHz (Ant. Pol. V) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 Frequency Stability / Temperature Variation 7.8 Test Overview and Limit Frequency stability testing is performed in accordance with the guidelines of ANSI/TIA-603-E-2016. The frequency stability of the transmitter is measured by:
a.) Temperature: The temperature is varied from -30C to +50C in 10C increments using an environmental chamber. b.) Primary Supply Voltage: The primary supply voltage is varied from 85% to 115% of the nominal value for non hand-carried battery and AC powered equipment. For hand-carried, battery-powered equipment, primary supply voltage is reduced to the battery operating end point which shall be specified by the manufacturer. For Part 22, the frequency stability of the transmitter shall be maintained within 0.00025% (2.5 ppm) of the center frequency. For Part 24, Part 27, the frequency stability shall be sufficient to ensure that the fundamental emission stays within the authorized frequency block. Test Procedure Used ANSI/TIA-603-E-2016 Test Settings 1. The carrier frequency of the transmitter is measured at room temperature (20C to provide a reference). 2. The equipment is turned on in a standby condition for fifteen minutes before applying power to the transmitter. Measurement of the carrier frequency of the transmitter is made within one minute after applying power to the transmitter. 3. Frequency measurements are made at 10C intervals ranging from -30C to +50C. A period of at least one half-hour is provided to allow stabilization of the equipment at each temperature level. Test Setup Figure 7-8. Test Instrument & Measurement Setup Test Notes None FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 Band 26/5 Frequency Stability Measurements Table 7-33. Frequency Stability Data (Band 26/5) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 OPERATING FREQUENCY: 836,500,000HzCHANNEL: 26865REFERENCE VOLTAGE: VDCDEVIATION LIMIT: 0.00025% or 2.5 ppm100 %- 30836,500,047470.0000056100 %- 20836,500,042420.0000050100 %- 10836,500,034340.0000040100 % 0836,500,034340.0000041100 %3.80+ 10836,500,039390.0000047100 %+ 20836,500,041410.0000049100 % + 30836,500,00550.0000006100 %+ 40836,500,00660.0000007100 %+ 50836,500,00550.0000006BATT. ENDPOINT3.40+ 20836,500,00550.0000005Deviation (%)POWER (VDC)Freq. Dev. (Hz)3.80VOLTAGE (%)TEMP (oC)FREQUENCY (Hz) Band 26/5 Frequency Stability Measurements Figure 7-9. Frequency Stability Graph (Band 26/5) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019
-3.5-2.5-1.5-0.50.51.52.53.5Deviation (ppm)Temperature (C)Frequency Stability Band 66/4 Frequency Stability Measurements Table 7-34. Frequency Stability Data (Band 66/4) Note:
Based on the results of the frequency stability test at the center channel the frequency deviation results measured are very small. As such it is determined that the channels at the band edge would remain in-band when the maximum measured frequency deviation noted during the frequency stability tests is applied. Therefore the device is determined to remain operating in band over the temperature and voltage range as tested. FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 OPERATING FREQUENCY: 1,745,000,000HzCHANNEL: 132322REFERENCE VOLTAGE: VDC100 %- 301,745,000,039390.0000023100 %- 201,745,000,032320.0000019100 %- 101,745,000,034340.0000020100 % 01,745,000,038380.0000022100 %3.80+ 101,745,000,036360.0000020100 %+ 201,745,000,038380.0000022100 % + 301,745,000,010100.0000005100 %+ 401,745,000,00990.0000005100 %+ 501,745,000,010100.0000006BATT. ENDPOINT3.40+ 201,745,000,00880.0000004Deviation (%)TEMP (oC)FREQUENCY (Hz)VOLTAGE (%)POWER (VDC)3.80Freq. Dev. (Hz) Band 66/4 Frequency Stability Measurements Figure 7-10. Frequency Stability Graph (Band 66/4) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019
-3.5-2.5-1.5-0.50.51.52.53.5Deviation (ppm)Temperature (C)Frequency Stability Band 25/2 Frequency Stability Measurements Table 7-35. Frequency Stability Data (Band 25/2) Note:
Based on the results of the frequency stability test at the center channel the frequency deviation results measured are very small. As such it is determined that the channels at the band edge would remain in-band when the maximum measured frequency deviation noted during the frequency stability tests is applied. Therefore the device is determined to remain operating in band over the temperature and voltage range as tested. FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 OPERATING FREQUENCY: 1,882,500,000HzCHANNEL: 26365REFERENCE VOLTAGE: VDC100 %- 301,882,500,039390.0000021100 %- 201,882,500,047470.0000025100 %- 101,882,500,049490.0000026100 % 01,882,500,044440.0000024100 %3.80+ 101,882,500,048480.0000026100 %+ 201,882,500,046460.0000024100 % + 301,882,500,010100.0000005100 %+ 401,882,500,011110.0000006100 %+ 501,882,500,010100.0000005BATT. ENDPOINT3.40+ 201,882,500,00770.0000004VOLTAGE (%)TEMP (oC)FREQUENCY (Hz)POWER (VDC)Freq. Dev. (Hz)Deviation (%)3.80 Band 25/2 Frequency Stability Measurements Figure 7-11. Frequency Stability Graph (Band 25/2) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019
-3.5-2.5-1.5-0.50.51.52.53.5Deviation (ppm)Temperature (C)Frequency Stability Band 7 Frequency Stability Measurements Table 7-36. Frequency Stability Data (Band 7) Note:
Based on the results of the frequency stability test at the center channel the frequency deviation results measured are very small. As such it is determined that the channels at the band edge would remain in-band when the maximum measured frequency deviation noted during the frequency stability tests is applied. Therefore the device is determined to remain operating in band over the temperature and voltage range as tested. FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 OPERATING FREQUENCY: 2,535,000,000HzCHANNEL: 21100REFERENCE VOLTAGE: VDC100 %- 302,535,000,048480.0000019100 %- 202,535,000,045450.0000018100 %- 102,535,000,045450.0000018100 % 02,535,000,042420.0000017100 %3.80+ 102,535,000,043430.0000017100 %+ 202,535,000,050500.0000020100 % + 302,535,000,017170.0000007100 %+ 402,535,000,016160.0000006100 %+ 502,535,000,016160.0000006BATT. ENDPOINT3.40+ 202,535,000,012120.0000005Deviation (%)Freq. Dev. (Hz)VOLTAGE (%)POWER (VDC)TEMP (oC)FREQUENCY (Hz)3.80 Band 7 Frequency Stability Measurements Figure 7-12. Frequency Stability Graph (Band 7) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019
-3.5-2.5-1.5-0.50.51.52.53.5Deviation (ppm)Temperature (C)Frequency Stability Band 41 Frequency Stability Measurements Table 7-37. Frequency Stability Data (Band 41) Note:
Based on the results of the frequency stability test at the center channel the frequency deviation results measured are very small. As such it is determined that the channels at the band edge would remain in-band when the maximum measured frequency deviation noted during the frequency stability tests is applied. Therefore the device is determined to remain operating in band over the temperature and voltage range as tested. FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019 OPERATING FREQUENCY: 2,593,000,000HzCHANNEL: 40620REFERENCE VOLTAGE: VDC100 %- 302,593,000,060600.0000023100 %- 202,593,000,062620.0000024100 %- 102,593,000,056560.0000022100 % 02,593,000,052520.0000020100 %3.80+ 102,593,000,054540.0000021100 %+ 202,593,000,052520.0000020100 % + 302,593,000,062620.0000024100 %+ 402,593,000,061610.0000024100 %+ 502,593,000,071710.0000027BATT. ENDPOINT3.40+ 202,593,000,061610.0000023POWER (VDC)TEMP (oC)FREQUENCY (Hz)Deviation (%)3.80Freq. Dev. (Hz)VOLTAGE (%) Band 41 Frequency Stability Measurements Figure 7-13. Frequency Stability Graph (Band 41) FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019
-3.5-2.5-1.5-0.50.51.52.53.5Deviation (ppm)Temperature (C)Frequency Stability 8 . 0 C O N C L U S I O N The data collected the Apple Watch FCC ID: BCG-A2157 complies with all the requirements of Part 22, 24, & 27 of the FCC Rules for LTE operation only. tested and show relate only item(s) that the to FCC ID: BCG-A2157 MEASUREMENT REPORT
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V 9.0 02/01/2019
1 2 3 4 | Part 90 Test Report | Test Report | 1.62 MiB | March 09 2019 / October 09 2019 |
PCTEST ENGINEERING LABORATORY, INC. 18855 Adams Court, Morgan Hill, CA 95037 USA Tel. 410.290.6652 / Fax 410.290.6654 http://www.pctest.com MEASUREMENT REPORT FCC Part 90 Date of Testing:
05/01/2019 - 08/09/2019 Test Site/Location:
PCTEST Lab. Morgan Hill, CA, USA Test Report Serial No.:
1C1905130011-04.BCG BCG-A2157 Apple Inc. Certification A2157 Watch PCS Licensed Transmitter Worn on Body (PCT) 90(S) ANSI C63.26-2015, ANSI/TIA-603-E-2016, KDB 971168 D01 v03r01 Applicant Name:
Apple Inc. One Apple Park Way Cupertino, CA 95014 United States FCC ID:
APPLICANT:
Application Type:
Model:
EUT Type:
FCC Classification:
FCC Rule Part:
Test Procedure(s):
This equipment has been shown to be capable of compliance with the applicable technical standards as indicated in the measurement report and was tested in accordance with the measurement procedures specified in 2.947. Test results reported herein relate only to the item(s) tested. I attest to the accuracy of data. All measurements reported herein were performed by me or were made under my supervision and are correct to the best of my knowledge and belief. I assume full responsibility for the completeness of these measurements and vouch for the qualifications of all persons taking them. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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1.0 2.0 3.0 4.0 5.0 6.0 7.0 8.0 T A B L E O F C O N T E N T S INTRODUCTION ........................................................................................................................................... 4 Scope ................................................................................................................................................................. 4 1.1 1.2 PCTEST Test Location ....................................................................................................................................... 4 1.3 Test Facility / Accreditations ............................................................................................................................... 4 PRODUCT INFORMATION ........................................................................................................................... 5 Equipment Description ....................................................................................................................................... 5 2.1 2.2 Device Capabilities ............................................................................................................................................. 5 Antenna Description ........................................................................................................................................... 5 2.3 Test Support Equipment ..................................................................................................................................... 5 2.4 2.5 Test Configuration .............................................................................................................................................. 6 Software and Firmware ...................................................................................................................................... 6 2.6 2.7 EMI Suppression Device(s)/Modifications .......................................................................................................... 6 DESCRIPTION OF TESTS ........................................................................................................................... 7 Evaluation Procedure ......................................................................................................................................... 7 3.1 3.2 Radiated Power and Radiated Spurious Emissions ........................................................................................... 7 MEASUREMENT UNCERTAINTY ................................................................................................................ 8 TEST EQUIPMENT CALIBRATION DATA ................................................................................................... 8 SAMPLE CALCULATIONS ......................................................................................................................... 10 TEST RESULTS .......................................................................................................................................... 11 Summary .......................................................................................................................................................... 11 7.1 Occupied Bandwidth ........................................................................................................................................ 12 7.2 7.3 Spurious and Harmonic Emissions at Antenna Terminal ................................................................................. 17 Band Edge Emissions at Antenna Terminal ..................................................................................................... 21 7.4 Conducted Power Output Data ........................................................................................................................ 26 7.5 7.6 Radiated Spurious Emissions Measurements .................................................................................................. 28 7.7 Frequency Stability / Temperature Variation .................................................................................................... 33 CONCLUSION ............................................................................................................................................. 36 FCC ID: BCG-A2157 MEASUREMENT REPORT
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MEASUREMENT REPORT FCC Part 90 EUT Overview FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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ModeTx Frequency (MHz)MeasurementMax. Power (mW)Max. Power (dBm)Emission DesignatorModulationLTE Band 26814.7 - 823.3Conducted316.22825.001M08G7WQPSKLTE Band 26814.7 - 823.3Conducted267.30124.271M09D7W16-QAMLTE Band 26815.5 - 822.5Conducted306.19624.862M71G7WQPSKLTE Band 26815.5 - 822.5Conducted269.15324.302M70D7W16-QAMLTE Band 26816.5 - 821.5Conducted316.22825.004M52G7WQPSKLTE Band 26816.5 - 821.5Conducted276.05824.414M53D7W16-QAMLTE Band 26819Conducted295.80124.719M04G7WQPSKLTE Band 26819Conducted270.39624.325M13D7W16-QAM 1 . 0 I N T R O D U C T I O N Scope 1.1 Measurement and determination of electromagnetic emissions (EMC) of radio frequency devices including intentional and/or unintentional radiators for compliance with the technical rules and regulations of the Federal Communications Commission and the Innovation, Science and Economic Development Canada. PCTEST Test Location 1.2 These measurement tests were conducted at the PCTEST Engineering Laboratory, Inc. facility located at 18855 Adams Court, Morgan Hill, CA 95037. The measurement facility is compliant with the test site requirements specified in ANSI C63.4-2014 and KDB 414788 D01 v01r01. 1.3 Measurements were performed at PCTEST Engineering Lab located in Morgan Hill, CA 95037, U.S.A. PCTEST is an ISO 17025-2005 accredited test facility under the American Association for Laboratory Accreditation (A2LA) with Certificate number 2041.02 for Specific Absorption Rate (SAR), Hearing Aid Compatibility (HAC) testing, where applicable, and Electromagnetic Compatibility (EMC) testing for FCC and Innovation, Science, and Economic Development Canada rules. Test Facility / Accreditations PCTEST TCB is a Telecommunication Certification Body (TCB) accredited to ISO/IEC 17065-2012 by A2LA
(Certificate number 2041.03) in all scopes of FCC Rules and ISED Standards (RSS). PCTEST facility is a registered (22831) test laboratory with the site description on file with ISED. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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2 . 0 P R O D U C T I N F O R M A T I O N Device Capabilities Equipment Description 2.1 The Equipment Under Test (EUT) is the Apple Watch FCC ID: BCG-A2157. The test data contained in this report pertains only to the emissions due to the EUTs licensed transmitters that operate under the provisions of Part 90(s). Test Device Serial No.: D92YD00QM8CJ, FN6911410EMKTRT5K 2.2 This device contains the following capabilities:
850/1700/1900 WCDMA/HSPA, Multi-band LTE, 802.11b/g/n WLAN, Bluetooth (1x, EDR, HDR4, HDR8, LE), NFC 2.3 Following antenna was used for testing. Antenna Description Frequency [MHz]
814-849 Antenna Gain [dBi]
BCM
-26.10 Table 2-1. Highest Antenna Gain Test Support Equipment 2.4 FCC ID: BCG-A2157 Table 2-2. Test Support Equipment Used MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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1Apple MacBookModel:A1398S/N:C2QKP008F6F3w/AC/DC AdapterModel:A1435S/N:N/A2Apple USB CableModel:KanziS/N:311C81w/ Charging DockModel:FAPS73S/N:17481001022w/ DockModel:X241S/N:GW17F01ST223USB Lightning CableModel:N/AS/N:N/Aw/ AC AdapterModel:A1385S/N:N/A4Wireless Charging Pad (WCP)Model:EVTS/N:DLC915600ECLNWL3KWireless Charging Pad (WCP)Model:EVTS/N:DLC9156006TLNWK3V5Test Pathfinder Sinsa BoardModel:X1456S/N:920-062535-01w/ SiP CradleModel:P1 X1454SS/N:920-06373-026DC Power SupplyModel:KPS3010DS/N:N/A7Mobile Comm DC SourceModel:66321DS/N:MY52000555 Test Configuration 2.5 The EUT was tested per the guidance of ANSI/TIA-603-E-2016 and KDB 971168 D01 v03r01. See Section 7.0 of this test report for a description of the radiated and antenna port conducted emissions tests. The worst case configuration was investigated for all combinations of the four materials, aluminum, stainless steel, ceramic, and aluminum/ceramic mix, and various types of wristbands, metal and non-metal wristbands. The store display sample was investigated and determined as not the worst case. The EUT was also investigated with and without wireless charger. The worst case configuration found was used for all testing. For emissions from 1GHz 18GHz, low, mid, and high channels were tested with highest power and worst case configuration. The emissions below 1GHz and above 18GHz were tested with the highest transmitting power channel and the worst case configuration. The EUT was manipulated through three orthogonal planes of X-orientation (flatbed), Y-orientation (landscape), and Z-orientation (portrait) during the testing. Only the worst case emissions were reported in this test report. This device only supports 27RBs or less for 16-QAM uplink. 2.6 The test was conducted with firmware version wOS 6.0 installed on the EUT. 2.7 No EMI suppression device(s) were added and no modifications were made during testing. EMI Suppression Device(s)/Modifications Software and Firmware FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 6 of 36 EUT Type:
3 . 0 D E S C R I P T I O N O F T E S T S Evaluation Procedure Radiated Power and Radiated Spurious Emissions 3.1 The measurement procedures described in the document titled Land Mobile FM or PM Communications Equipment Measurements and Performance Standards (ANSI/TIA-603-E-2016) and Procedures for Compliance Measurement of the Fundamental Emission Power of Licensed Wideband (> 1 MHz) Digital Transmission Systems (KDB 971168 D01 v03r01) were used in the measurement of the EUT. 3.2 2.1053, 90.691 The radiated test facilities consisted of an indoor 3 meter semi-anechoic chamber used for final measurements and exploratory measurements, when necessary. The measurement area is contained within the semi-anechoic chamber which is shielded from any ambient interference. The test site inside the chamber is a 6m x 5.2m elliptical, obstruction-free area in accordance with Figure 5.7 of Clause 5 in ANSI C63.4-2014. Absorbers are arranged on the floor between the turn table and the antenna mast in such a way so as to maximize the reduction of reflections for measurements above 1GHz. For measurements below 1GHz, the absorbers are removed. A raised turntable is used for radiated measurement. The turn table is a continuously rotatable, remote-controlled, metallic turntable and 2 meters (6.56 ft.) in diameter. The turn table is flush with the raised floor of the chamber in order to maintain its function as a ground plane. An 80cm tall test table made of Styrodur is placed on top of the turn table. A Styrodur pedestal is placed on top of the test table to bring the total table height to 1.5m. The equipment under test was transmitting while connected to its integral antenna and is placed on a turntable above the ground plane and 3 meters from the receive antenna. The receive antenna height is adjusted between 1 and 4 meter height, the turntable is rotated through 360 degrees, and the EUT is manipulated through all orthogonal planes representative of its typical use to achieve the highest reading on the receive spectrum analyzer. Per the guidance of ANSI/TIA-603-E-2016, a half-wave dipole is then substituted in place of the EUT. For emissions above 1GHz, a horn antenna is substituted in place of the EUT. The substitute antenna is driven by a signal generator with the level of the signal generator being adjusted to obtain the same receive spectrum analyzer level previously recorded from the spurious emission from the EUT. The power of the emission is calculated using the following formula:
Pd [dBm] = Pg [dBm] cable loss [dB] + antenna gain [dBd/dBi]
Where, Pd is the dipole equivalent power, Pg is the generator output into the substitution antenna, and the antenna gain is the gain of the substitute antenna used relative to either a half-wave dipole (dBd) or an isotropic source (dBi). The substitute level is equal to Pg [dBm] cable loss [dB]. The calculated Pd levels are then compared to the absolute spurious emission limit of -13dBm which is equivalent to the required minimum attenuation of 43 + 10 log10(Power [Watts]) specified in 90.691. For fundamental radiated power measurements, the guidance of KDB 971168 D01 v03r01 is used to record the EUT power level that is subsequently matched via the aforementioned substitution method given in ANSI/TIA-
603-E-2016. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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4 . 0 M E A S U R E M E N T U N C E R T A I N T Y The measurement uncertainties shown below were calculated in accordance with the requirements of ANSI C63.4-2014. All measurement uncertainty values are shown with a coverage factor of k = 2 to indicate a 95% level of confidence. The measurement uncertainty shown below meets or exceeds the UCISPR measurement uncertainty values specified in CISPR 16-4-2 and, thus, can be compared directly to specified limits to determine compliance. Contribution Expanded Uncertainty (dB) Conducted Bench Top Measurements Radiated Disturbance (<1GHz) Radiated Disturbance (>1GHz) Radiated Disturbance (>18GHz) Temperature 1.29 4.15 4.70 5.01 0.01 FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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5 . 0 T E S T E Q U I P M E N T C A L I B R A T I O N D A T A Test Equipment Calibration is traceable to the National Institute of Standards and Technology (NIST). Measurements antennas used during testing were calibrated in accordance to the requirements of ANSI C63.5-
2017. Table 5-1. Test Equipment Notes:
1. For equipment listed above that has a calibration date or calibration due date that falls within the test date range, care was taken to ensure that this equipment was used after the calibration date and before the calibration due date. 2. Equipment with a calibration date of N/A shown in this list was not used to make direct calibrated measurements. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 9 of 36 EUT Type:
Manufacturer Model Description Cal Date Cal Interval Cal Due Serial Number Agilent TechnologiesN9030A 3Hz-44GHz PXA Signal Analyzer 3/13/2019Annual3/13/2020MY49430244 ESPECSU-241Tabletop Temperature Chamber8/10/2018Annual8/10/201992009574ETS-Lindgren118490Pre-Amplifier (30MHz - 6GHz)8/31/2018Annual8/31/2019213236ETS-Lindgren3142EBiConiLog Antenna (30MHz - 6GHz)12/11/2018Annual12/11/2019224569Rohde & SchwarzFSV40Signal Analyzer (10Hz-40GHz)2/27/2019Annual2/27/2020101619Rohde & SchwarzESW26EMI Test Receiver5/21/2019Annual5/21/2020101299Rohde & Schwarz ESW44EMI Test Receiver11/20/2018Annual11/20/2019101570Rohde & Schwarz CMW500 Wideband Radio Communication Tester 8/10/2018Annual8/10/2019161616Rohde & Schwarz CMW500 Wideband Radio Communication Tester 11/16/2018Annual11/16/2019164715Rohde & Schwarz CMW500 Wideband Radio Communication Tester 1/8/2019Annual1/8/2020166869Rohde & Schwarz TC-TA18Cross Polarized Vivaldi Antenna (400MHz-18GHz)11/21/2018Annual11/21/2019101057Rohde & Schwarz TC-TA18Cross Polarized Vivaldi Antenna (400MHz-18GHz)12/7/2018Annual12/7/2019101063Rohde & Schwarz HFH2-Z2 Loop Antenna 3/21/2019Annual 3/21/2020100519 6 . 0 S A M P L E C A L C U L A T I O N S Emission Designator QPSK Modulation Emission Designator = 8M62G7W LTE BW = 8.62 MHz G = Phase Modulation 7 = Quantized/Digital Info W = Combination of Any 16QAM Modulation Emission Designator = 8M45D7W LTE BW = 8.45 MHz D = Amplitude/Angle Modulated 7 = Quantized/Digital Info W = Combination of Any Spurious Radiated Emission LTE Band Example: Middle Channel LTE Mode 2nd Harmonic (1564 MHz) The average spectrum analyzer reading at 3 meters with the EUT on the turntable was 81.0 dBm. The gain of the substituted antenna is 8.1 dBi. The signal generator connected to the substituted antenna terminals is adjusted to produce a reading of 81.0 dBm on the spectrum analzyer. The loss of the cable between the signal generator and the terminals of the substituted antenna is 2.0 dB at 1564 MHz. So 6.1 dB is added to the signal generator reading of 30.9 dBm yielding 24.80 dBm. The fundamental EIRP was 25.501 dBm so this harmonic was 25.501 dBm (-24.80). FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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7 . 0 T E S T R E S U L T S 7.1 Summary Company Name:
Apple Inc. FCC ID:
BCG-A2157 FCC Classification:
PCS Licensed Transmitter Worn on Body (PCT) Mode(s):
Band:
FCC Part Section(s) LTE Band 26 Test Description Test Limit Test Test Condition Result Reference 2.1049 Occupied Bandwidth N/A PASS Section 7.2 2.1051 90.691 Conducted Band Edge /
Spurious Emissions
> 43 + 10 log10 (P[Watts]) for all out-of-band emissions except
> 50 + 10 log10 (P[Watts]) at Band Edge and for all out-of-
band emissions within 37.5kHz of Block Edge CONDUCTED PASS Sections 7.3, 7.4 2.1055 90.213 2.1046 90.635 2.1053 90.691 Frequency Stability
< 2.5 ppm PASS Section 7.7 Conducted Power
< 100 Watts PASS Section 7.5 Radiated Spurious Emissions
> 43 + 10 log10 (P[Watts]) for all out-of-band emissions except
> 50 + 10 log10 (P[Watts]) at Band Edge and for all out-of-
band emissions within 37.5kHz of Block Edge RADIATED PASS Section 7.6 Table 7-1. Summary of Test Results Notes:
1) All modes of operation and data rates were investigated. The test results shown in the following sections represent the worst case emissions. 2) The analyzer plots shown in Section 7.0 were taken with a correction table loaded into the analyzer. The correction table was used to account for the losses of the cables, directional couplers, and attenuators used as part of the system to maintain a link between the call box and the EUT at all frequencies of interest. 3) All antenna port conducted emissions testing was performed on a test bench with the antenna port of the EUT connected to the spectrum analyzer through calibrated cables, attenuators, and couplers. 4) For conducted spurious emissions, automated test software was used to measure emissions and capture the corresponding plots necessary to show compliance. The measurement software utilized is PCTEST 2G/3G Automation, Version 3.11. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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7.2 Occupied Bandwidth 2.1049 Test Overview The occupied bandwidth, that is the frequency bandwidth such that, below its lower and above its upper frequency limits, the mean powers radiated are each equal to 0.5 percent of the total mean power radiated by a given emission shall be measured. All modes of operation were investigated and the worst case configuration results are reported in this section. Test Procedure Used KDB 971168 D01 v03r01 Section 4.2 Test Settings 1. The signal analyzers automatic bandwidth measurement capability was used to perform the 99%
occupied bandwidth and the 26dB bandwidth. The bandwidth measurement was not influenced by any intermediate power nulls in the fundamental emission. 2. RBW = 1 5% of the expected OBW 3. VBW 3 x RBW 4. Detector = Peak 5. Trace mode = max hold 6. Sweep = auto couple 7. The trace was allowed to stabilize 8. If necessary, steps 2 7 were repeated after changing the RBW such that it would be within 1 5% of the 99% occupied bandwidth observed in Step 7 Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-1. Test Instrument & Measurement Setup Test Notes This device only supports 27RBs or less for 16-QAM uplink. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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Plot 7-1. Occupied Bandwidth Plot (LTE Band 26, 1.4MHz QPSK RB Size 6 High Channel) Plot 7-2. Occupied Bandwidth Plot (LTE Band 26, 1.4MHz 16-QAM RB Size 6 High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 13 of 36 EUT Type:
Plot 7-3. Occupied Bandwidth Plot (LTE Band 26, 3MHz QPSK RB Size 15 High Channel) Plot 7-4. Occupied Bandwidth Plot (LTE Band 26, 3MHz 16-QAM RB Size 15 Low Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 14 of 36 EUT Type:
Plot 7-5. Occupied Bandwidth Plot (LTE Band 26, 5MHz QPSK RB Size 25 High Channel) Plot 7-6. Occupied Bandwidth Plot (LTE Band 26, 5MHz 16-QAM RB Size 25 High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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Plot 7-7. Occupied Bandwidth Plot (LTE Band 26, 10MHz QPSK RB Size 50) Plot 7-8. Occupied Bandwidth Plot (LTE Band 26, 10MHz 16-QAM RB Size 27, RB Offset 0) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 16 of 36 EUT Type:
Spurious and Harmonic Emissions at Antenna Terminal 7.3 2.1051 90.691 Test Overview The level of the carrier and the various conducted spurious and harmonic frequencies is measured by means of a calibrated spectrum analyzer. The spectrum is scanned from the lowest frequency generated in the equipment up to a frequency including its 10th harmonic. All out of band emissions are measured with a spectrum analyzer connected to the antenna terminal of the EUT while the EUT is operating at maximum power, and at the appropriate frequencies. All data rates were investigated to determine the worst case configuration. All modes of operation were investigated and the worst case configuration results are reported in this section. The minimum permissible attenuation level of any spurious emission is 43 + 10 log10(P[Watts]), where P is the transmitter power in Watts. Test Procedure Used KDB 971168 D01 v03r01 Section 6.0 Test Settings 1. Start frequency was set to 30MHz and stop frequency was set to 10GHz (separated into at least two plots per channel) 2. RBW 1MHz 3. VBW 3 x RBW 4. Detector = RMS 5. Trace mode = max hold 6. Sweep time = auto couple 7. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-2. Test Instrument & Measurement Setup Test Notes Compliance with the applicable limits is based on the use of measurement instrumentation employing a resolution bandwidth of 100 kHz or greater for Part 90. However, in the 1 MHz bands immediately outside and adjacent to the frequency block a resolution bandwidth of at least one percent of the emission bandwidth of the fundamental emission of the transmitter may be employed. The emission bandwidth is defined as the width of the signal between two points, one below the carrier center frequency and one above the carrier center frequency, outside of which all emission are attenuated at least 26 dB below the transmitter power. FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 17 of 36 EUT Type:
Plot 7-9. Conducted Spurious Plot (LTE Band 26, 5MHz QPSK RB Size 1, RB Offset 0 Low Channel) Plot 7-10. Conducted Spurious Plot (LTE Band 26, 5MHz QPSK RB Size 1, RB Offset 0 Low Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 18 of 36 EUT Type:
Plot 7-11. Conducted Spurious Plot (LTE Band 26, 5MHz QPSK RB Size 1, RB Offset 0 Low Channel) Plot 7-12. Conducted Spurious Plot (LTE Band 26, 5MHz QPSK RB Size 1, RB Offset 0 High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 19 of 36 EUT Type:
Plot 7-13. Conducted Spurious Plot (LTE Band 26, 5MHz QPSK RB Size 1, RB Offset 0 High Channel) Plot 7-14. Conducted Spurious Plot (LTE Band 26, 5MHz QPSK RB Size 1, RB Offset 0 High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 20 of 36 EUT Type:
Band Edge Emissions at Antenna Terminal 7.4 2.1051 90.691 Test Overview All out of band emissions are measured with a spectrum analyzer connected to the antenna terminal of the EUT while the EUT is operating at maximum power, and at the appropriate frequencies. All data rates were investigated to determine the worst case configuration. All modes of operation were investigated and the worst case configuration results are reported in this section. The minimum permissible attenuation level of any spurious emission removed from the EA licensees frequency block by greater than 37.5 kHz is 43 + 10 log10(P[Watts]), where P is the transmitter power in Watts. The minimum permissible attenuation level of any spurious emission removed from the EA licensees frequency block by up to and including 37.5 kHz is 50 + 10 log10(P[Watts]), where P is the transmitter power in Watts. Test Procedure Used KDB 971168 D01 v03r01 Section 6.0 Test Settings 1. Span was set large enough so as to capture all out of band emissions near the band edge 2. RBW = 100 kHz 3. VBW = 300 kHz 4. Detector = RMS 5. Trace mode = trace average 6. Sweep time = auto couple 7. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-3. Test Instrument & Measurement Setup Test Notes For channel edge emission, the signal analyzers ACP measurement capability is used. Per Part 90, in the 100 kHz bands immediately outside and adjacent to the frequency block, a resolution bandwidth of 30 kHz may be employed to demonstrate compliance with the out-of-band emissions limit. The emission bandwidth is defined as the width of the signal between two points, one below the carrier center frequency and one above the carrier center. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 21 of 36 EUT Type:
Plot 7-15. Channel Edge Plot (LTE Band 26, 1.4MHz QPSK RB Size 6 Low Channel) Plot 7-16. Channel Edge Plot (LTE Band 26, 1.4MHz QPSK RB Size 6 High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 22 of 36 EUT Type:
Plot 7-17. Channel Edge Plot (LTE Band 26, 3MHz QPSK RB Size 15 Low Channel) Plot 7-18. Channel Edge Plot (LTE Band 26, 3MHz QPSK RB Size 15 High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 23 of 36 EUT Type:
Plot 7-19. Channel Edge Plot (LTE Band 26, 5MHz QPSK RB Size 25 Low Channel) Plot 7-20. Channel Edge Plot (LTE Band 26, 5MHz QPSK RB Size 25 High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 24 of 36 EUT Type:
Plot 7-21. Channel Edge Plot (LTE Band 26, 10MHz QPSK RB Size 50) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 25 of 36 EUT Type:
Conducted Power Output Data 7.5 2.1046 90.635 Test Overview Conducted power measurements are performed to measure the average output power of the EUT. The averaging is to be performed only over duration of active transmissions at maximum output power level. The average measurements do not include averaging over periods when the transmitter is quiescent or when operating at reduced power level. Test Procedures Used KDB 971168 D01 v03r01 Test Setup The EUT and measurement equipment were set up as shown in the diagram below Figure 7-4. Conducted Power Measurement Setup Test Notes 1. The EUT was tested in all possible test configurations. The worst case emissions are reported with the EUT modulations and channel bandwidth configurations shown in the tables below. 2. This unit was tested with its standard battery. 3. This device only supports 27RBs or less for 16-QAM uplink. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 26 of 36 EUT Type:
Table 7-2. LTE Band 26 Conducted Power Output Data FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 27 of 36 EUT Type:
814.701.4QPSK1 / 524.89308.31950.00-25.11823.301.4QPSK3 / 225.00316.22850.00-25.00814.701.416-QAM1 / 524.12258.22650.00-25.88823.301.416-QAM1 / 524.27267.30150.00-25.73815.503QPSK1 / 1424.72296.48350.00-25.28822.503QPSK1 / 024.86306.19650.00-25.14815.50316-QAM1 / 024.30269.15350.00-25.70822.50316-QAM1 / 024.27267.30150.00-25.73816.505QPSK1 / 2424.77299.91650.00-25.23821.505QPSK1 / 025.00316.22850.00-25.00816.50516-QAM1 / 2424.31269.77450.00-25.69821.50516-QAM1 / 024.41276.05850.00-25.59819.0010QPSK1 / 024.71295.80150.00-25.29819.001016-QAM1 / 2724.32270.39650.00-25.68Frequency [MHz]Channel Bandwidth[MHz]Cond. PWR [dBm]Cond. PWR [mW]Mod.Cond. PWR Limit [dBm]Margin [dB]RB Size/Offset Radiated Spurious Emissions Measurements 7.6 2.1053 90.691 Test Overview Radiated spurious emissions measurements are performed using the substitution method described in ANSI/TIA-
603-E-2016 with the EUT transmitting into an integral antenna. Measurements on signals operating below 1GHz are performed using horizontally and vertically polarized tuned dipole antennas. Measurements on signals operating above 1GHz are performed using vertically and horizontally polarized broadband horn antennas. All measurements are performed as peak measurements while the EUT is operating at maximum power, and at the appropriate frequencies. Test Procedures Used KDB 971168 D01 v03r01 Section 5.8 ANSI/TIA-603-E-2016 Section 2.2.12 Test Settings 1. RBW = 100kHz for emissions below 1GHz and 1MHz for emissions above 1GHz 2. VBW 3 x RBW 3. Span = 1.5 times the OBW 4. No. of sweep points > 2 x span / RBW 5. Detector = RMS 6. Trace mode = Average (Max Hold for pulsed emissions) 7. The trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 28 of 36 EUT Type:
Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-5. Test Instrument & Measurement Setup < 1GHz Figure 7-6. Test Instrument & Measurement Setup Test Notes 1. For LTE mode, the device was tested under all modulations, RB sizes and offsets, and channel bandwidth configurations and the worst case emissions are reported with 1 RB. 2. This unit was tested with its standard battery. 3. The EUT was tested in three orthogonal planes and in all possible test configurations and positioning. The worst case setup is reported in the tables below. 4. The "-" shown in the following RSE tables are used to denote a noise floor measurement. 5. Below 1GHz Pre-scan plot shows no significant emissions. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 29 of 36 EUT Type:
Plot 7-22. Radiated Spurious Plot below 1GHz (Band 26) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 30 of 36 EUT Type:
-90 -80 -70 -60 -50 -40 -30 -20 -10 0 1030M 5060 80100M200300400500 8001GLevel in dBmFrequency in HzPreview Result 1V-PK+Preview Result 1H-PK+Critical_Freqs PK+FCC Licensed RSEFinal_Result PK+Final_Result QPKFCC Licensed RSE Plot 7-23. Radiated Spurious Plot Above 1GHz (Band 26) Table 7-3. Radiated Spurious Data Above 1GHz (LTE Band 26 Low Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 31 of 36 EUT Type:
OPERATING FREQUENCY: MHzMODULATION SIGNAL: QPSKBANDWIDTH: 5.0MHzDISTANCE: 3metersLIMIT: -13.00 dBm1633.00V176172-71.765.82-65.94-52.92449.50V---72.705.90-66.81-53.83266.00V---70.637.70-62.94-49.94082.50V103315-68.998.80-60.19-47.24899.00V---71.549.94-61.60-48.65715.50V---71.0310.82-60.21-47.2Turntable Azimuth [degree]Ant. Pol. [H/V]Substitute Antenna Gain [dBi]Antenna Height [cm]816.50Margin [dB]Level at Antenna Terminals [dBm]Spurious Emission Level [dBm]Frequency [MHz]
Table 7-4. Radiated Spurious Data Above 1GHz (LTE Band 26 High Channel) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 32 of 36 EUT Type:
OPERATING FREQUENCY: MHzMODULATION SIGNAL: QPSKBANDWIDTH: 5.0MHzDISTANCE: 3metersLIMIT: -13.00dBm1643.00V167188-73.455.86-67.59-54.62464.50V---69.835.88-63.95-51.03286.00V---70.767.76-63.00-50.04107.50V109207-64.998.79-56.20-43.24929.00V---71.7010.02-61.69-48.75750.50V---71.6010.81-60.78-47.8Turntable Azimuth [degree]821.50Margin [dB]Spurious Emission Level [dBm]Level at Antenna Terminals [dBm]Substitute Antenna Gain [dBi]Antenna Height [cm]Ant. Pol. [H/V]Frequency [MHz]
Frequency Stability / Temperature Variation 7.7 2.1055 90.213 Test Overview and Limit Frequency stability testing is performed in accordance with the guidelines of ANSI/TIA-603-E-2016. The frequency stability of the transmitter is measured by:
a.) Temperature: The temperature is varied from -30C to +50C in 10C increments using an environmental chamber. b.) Primary Supply Voltage: The primary supply voltage is varied from 85% to 115% of the nominal value for non hand-carried battery and AC powered equipment. For hand-carried, battery-powered equipment, primary supply voltage is reduced to the battery operating end point which shall be specified by the manufacturer. The frequency stability of the transmitter shall be maintained within 0.00025% (2.5 ppm) of the center frequency. Test Procedure Used ANSI/TIA-603-E-2016 Test Settings 1. The carrier frequency of the transmitter is measured at room temperature (20C to provide a reference). 2. The equipment is turned on in a standby condition for fifteen minutes before applying power to the transmitter. Measurement of the carrier frequency of the transmitter is made within one minute after applying power to the transmitter. 3. Frequency measurements are made at 10C intervals ranging from -30C to +50C. A period of at least one half-hour is provided to allow stabilization of the equipment at each temperature level. Test Setup Figure 7-7. Test Instrument & Measurement Setup Test Notes None FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 33 of 36 EUT Type:
Frequency Stability / Temperature Variation 2.1055, 90.213 Table 7-5. LTE Band 26 Frequency Stability Data FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 34 of 36 EUT Type:
OPERATING FREQUENCY: 819,000,000HzCHANNEL: 26740REFERENCE VOLTAGE: VDCDEVIATION LIMIT: 0.00025 % or 2.5 ppm100 %- 30819,000,047470.0000058100 %- 20819,000,042420.0000051100 %- 10819,000,034340.0000041100 % 0819,000,034340.0000042100 %3.80+ 10819,000,039390.0000048100 %+ 20819,000,041410.0000050100 % + 30819,000,00550.0000006100 %+ 40819,000,00660.0000007100 %+ 50819,000,00550.0000006BATT. ENDPOINT3.40+ 20819,000,00550.0000006Freq. Dev. (Hz)Deviation (%)FREQUENCY (Hz)POWER (VDC)VOLTAGE (%)3.80TEMP (oC) Frequency Stability / Temperature Variation 2.1055, 90.213 Figure 7-8. LTE Band 26 Frequency Stability Plot FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 35 of 36 EUT Type:
8 . 0 C O N C L U S I O N The data collected FCC ID: BCG-A2157 complies with all the requirements of Part 90 of the FCC rules. tested and show relate only item(s) the to that the Apple Watch FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-04.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 36 of 36 EUT Type:
1 2 3 4 | RF Exposure Info 2 | RF Exposure Info | 5.44 MiB | March 09 2019 / October 09 2019 |
PCTEST ENGINEERING LABORATORY, INC. 18855 Adams Ct, Morgan Hill, CA 95037 USA Tel. +1.410.290.6652 / Fax +1.410.290.6654 http://www.pctest.com Certification of Calibration D835V2 SN: 4d180 Object Calibration procedure(s) Extended Calibration date:
Description:
Calibration Equipment used:
Manufacturer Agilent Agilent Amplifier Research Anritsu Anritsu Anritsu Control Company Control Company Keysight Keysight Technologies Mini-Circuits Mini-Circuits Narda Pasternack Pasternack SPEAG SPEAG SPEAG Model 8753ES N5182A 15S1G6 ML2495A MA2411B MA2411B 4040 4352 772D 85033E BW-N20W5+
NLP-2950+
4772-3 PE2208-6 PE5011-1 DAKS-3.5 EX3DV4 DAE4 Procedure for Calibration Extension for SAR Dipoles. May 16, 2019 SAR Validation Dipole at 835 MHz. Description S-Parameter Network Analyzer MXG Vector Signal Generator Amplifier Power Meter Pulse Power Sensor Pulse Power Sensor Temperature / Humidity Monitor Ultra Long Stem Thermometer Dual Directional Coupler Standard Mechanical Calibration Kit (DC to 9GHz, 3.5mm) 6/4/2018 DC to 18 GHz Precision Fixed 20 dB Attenuator Low Pass Filter DC to 2700 MHz Attenuator (3dB) Bidirectional Coupler Torque Wrench Portable DAK SAR Probe Dasy Data Acquisition Electronics CBT CBT CBT CBT 7/19/2017 9/11/2018 7/20/2018 7/10/2018 CBT 10/21/2018 10/30/2018 11/20/2018 2/28/2018 2/28/2018 CBT Serial Number Cal Date Cal Interval Cal Due 10/2/2019 10/2/2018 US39170118 6/15/2019 MY47420837 6/15/2018 Annual Annual N/A Annual Annual Annual Biennial Biennial N/A Annual N/A N/A N/A N/A Biennial Annual Annual Annual CBT 10/21/2019 10/30/2019 11/20/2019 2/28/2020 2/28/2020 CBT 6/4/2019 343972 941001 1207470 1339007 150761911 170330160 MY52180215 MY53401181 CBT CBT CBT CBT 7/19/2019 9/11/2019 7/20/2019 7/10/2019 N/A N/A 9406 N/A N/A 1045 7416 1402 Measurement Uncertainty = 23% (k=2) Name Function Signature Calibrated By:
Parker Jones Team Lead Engineer Approved By:
Kaitlin OKeefe Senior Technical Manager Object:
D835V2 SN: 4d180 Date Issued:
05/16/2019 Page 1 of 4 DIPOLE CALIBRATION EXTENSION Per KDB 865664 D01, calibration intervals of up to three years may be considered for reference dipoles when it is demonstrated that the SAR target, impedance and return loss of a dipole have remained stable according to the following requirements:
1. The measured SAR does not deviate more than 10% from the target on the calibration certificate. 2. The return-loss does not deviate more than 20% from the previous measurement and meets the required 20dB minimum return-loss requirement. 3. The measurement of real or imaginary parts of impedance does not deviate more than 5 from the previous measurement. The following dipole was checked to pass the above 3 requirements to have 2-year calibration period from the calibration date:
Certificate SAR Target Head (10g) W/kg @ 23.0 dBm 1.244 Certificate SAR Target Body (10g) W/kg @ 23.0 dBm 1.262 Measured Head SAR
(10g) W/kg @
23.0 dBm Deviation 10g
(%) Certificate Impedance Head (Ohm) Real Measured Impedance Head (Ohm) Real Difference
(Ohm) Real Certificate Impedance Head (Ohm) Imaginary Measured Impedance Head (Ohm) Imaginary Difference
(Ohm) Imaginary Certificate Return Loss Head (dB) Measured Return Loss Head (dB) Deviation (%) PASS/FAIL 1.3 4.50%
50.7 49.8 0.9
-5.1
-6.5 1.4
-25.9
-25.2 2.60%
PASS Measured Body SAR
(10g) W/kg @
23.0 dBm Deviation 10g
(%) Certificate Impedance Body (Ohm) Real Measured Impedance Body (Ohm) Real Difference
(Ohm) Real Certificate Impedance Body (Ohm) Imaginary Measured Impedance Body (Ohm) Imaginary Difference
(Ohm) Imaginary Certificate Return Loss Body (dB) Measured Return Loss Body (dB) Deviation (%) PASS/FAIL 1.34 6.18%
47.2 47.3 0.1
-8.2
-6.3 1.9
-21.1
-23.1
-9.20%
PASS Certificate SAR Target Head (1g) W/kg @ 23.0 dBm 1.92 Certificate SAR Target Body (1g) W/kg @ 23.0 dBm 1.918 Calibration Date Extension Date Certificate Electrical Delay (ns) 5/18/2018 5/16/2019 1.396 Calibration Date Extension Date Certificate Electrical Delay (ns) 5/18/2018 5/16/2019 1.396 Measured Head SAR (1g) W/kg @ 23.0 Deviation 1g
(%) dBm 1.99 3.65%
Measured Body SAR (1g) W/kg @ 23.0 Deviation 1g
(%) dBm 2.05 6.88%
Object:
D835V2 SN: 4d180 Date Issued:
05/16/2019 Page 2 of 4 Impedance & Return-Loss Measurement Plot for Head TSL Object:
D835V2 SN: 4d180 Date Issued:
05/16/2019 Page 3 of 4 Impedance & Return-Loss Measurement Plot for Body TSL Object:
D835V2 SN: 4d180 Date Issued:
05/16/2019 Page 4 of 4 PCTEST ENGINEERING LABORATORY, INC. 18855 Adams Ct, Morgan Hill, CA 95037 USA Tel. +1.410.290.6652 / Fax +1.410.290.6654 http://www.pctest.com Certification of Calibration Object Calibration procedure(s) Extended Calibration date:
Description:
Calibration Equipment used:
D1750V2 SN: 1104 Procedure for Calibration Extension for SAR Dipoles. September 07, 2018 SAR Validation Dipole at 1750 MHz. Measurement Uncertainty = 23% (k=2) Name Function Signature Calibrated By:
Sangmin Cha Team Lead Engineer Approved By:
Kaitlin OKeefe Senior Technical Manager Object:
D1750V2 SN: 1104 Date Issued:
09/07/2018 Page 1 of 4 Manufacturer Model Description Cal Date Cal Interval Cal Due Serial Number Agilent 8753ES S-Parameter Network Analyzer 9/14/2017Annual 9/14/2018US39170118 Agilent N5182A MXG Vector Signal Generator 3/19/2018Annual 3/19/2019US46240505 Amplifier Research 15S1G6 Amplifier CBTN/ACBT343972Anritsu ML2496A Power Meter 10/9/2017Annual 10/9/20181138001Anritsu MA2411B Pulse Power Sensor 11/15/2017Annual 11/15/20181339007Anritsu MA2411B Pulse Power Sensor 11/22/2017Annual 11/22/20181339008Control Company 4040Temperature / Humidity Monitor 2/28/2018Biennial 2/28/2020150761911Control Company 4352Ultra Long Stem Thermometer 2/14/2017Biennial 2/14/2019170112507Keysight 772D Dual Directional Coupler CBTN/ACBTMY52180215 Keysight Technologies 85033E Standard Mechanical Calibration Kit (DC to 9GHz, 3.5mm) 6/4/2018Annual 6/4/2019MY53401181 Mini-Circuits BW-N20W5+ DC to 18 GHz Precision Fixed 20 dB Attenuator CBTN/ACBTN/A Mini-Circuits NLP-2950+ Low Pass Filter DC to 2700 MHz CBTN/ACBTN/A Narda 4772-3 Attenuator (3dB) CBTN/ACBT9406Pasternack PE2209-10 Bidirectional Coupler CBTN/ACBTN/A Pasternack PE5011-1 Torque Wrench 7/19/2017Biennial 7/19/2019N/A SPEAG DAK-3.5 Dielectric Assessment Kit 5/15/2018Annual 5/15/20191070SPEAG ES3DV3 SAR Probe 9/18/2017Annual 9/18/20183287SPEAG DAE4 Data Acquisition Electronics 1/26/2018Annual 1/26/20191533 DIPOLE CALIBRATION EXTENSION Per KDB 865664 D01, calibration intervals of up to three years may be considered for reference dipoles when it is demonstrated that the SAR target, impedance and return loss of a dipole have remained stable according to the following requirements:
1. The measured SAR does not deviate more than 10% from the target on the calibration certificate. 2. The return-loss does not deviate more than 20% from the previous measurement and meets the required 20dB minimum return-loss requirement. 3. The measurement of real or imaginary parts of impedance does not deviate more than 5 from the previous measurement. The following dipole was checked to pass the above 3 requirements to have 2-year calibration period from the calibration date:
Object:
D1750V2 SN: 1104 Date Issued:
09/07/2018 Page 2 of 4 Calibration DateExtension DateCertificate Electrical Delay (ns)Certificate SAR Target Head (1g) W/kg @ 20.0 dBmMeasured Head SAR (1g) W/kg @ 20.0 dBmDeviation 1g (%)Certificate SAR Target Head (10g) W/kg @ 20.0 dBmMeasured Head SAR (10g) W/kg @ 20.0 dBmDeviation 10g (%)Certificate Impedance Head (Ohm) RealMeasured Impedance Head (Ohm) RealDifference (Ohm) RealCertificate Impedance Head (Ohm) ImaginaryMeasured Impedance Head (Ohm) ImaginaryDifference (Ohm) ImaginaryCertificate Return Loss Head (dB)Measured Return Loss Head (dB)Deviation (%)PASS/FAIL9/7/20179/7/20181.2173.643.62-0.55%1.921.941.04%50.849.81-0.2-0.30.1-41.5-35.913.50%PASSCalibration DateExtension DateCertificate Electrical Delay (ns)Certificate SAR Target Body (1g) W/kg @ 20.0 dBmMeasured Body SAR (1g) W/kg @ 20.0 dBmDeviation 1g (%)Certificate SAR Target Body (10g) W/kg @ 20.0 dBmMeasured Body SAR (10g) W/kg @ 20.0 dBmDeviation 10g (%)Certificate Impedance Body (Ohm) RealMeasured Impedance Body (Ohm) RealDifference (Ohm) RealCertificate Impedance Body (Ohm) ImaginaryMeasured Impedance Body (Ohm) ImaginaryDifference (Ohm) ImaginaryCertificate Return Loss Body (dB)Measured Return Loss Body (dB)Deviation (%)PASS/FAIL9/7/20179/7/20181.2173.663.844.92%1.962.075.61%46.52745.41.1-0.69-1.60.9-28.7-25.810.10%PASS Impedance & Return-Loss Measurement Plot for Head TSL Object:
D1750V2 SN: 1104 Date Issued:
09/07/2018 Page 3 of 4 Impedance & Return-Loss Measurement Plot for Body TSL Object:
D1750V2 SN: 1104 Date Issued:
09/07/2018 Page 4 of 4 PCTEST ENGINEERING LABORATORY, INC. 18855 Adams Ct, Morgan Hill, CA 95037 USA Tel. +1.410.290.6652 / Fax +1.410.290.6654 http://www.pctest.com Certification of Calibration D1750V2 SN: 1092 Object Calibration procedure(s) Extended Calibration date:
Description:
Calibration Equipment used:
Manufacturer Agilent Agilent Amplifier Research Anritsu Anritsu Anritsu Control Company Control Company Keysight Keysight Technologies Mini-Circuits Mini-Circuits Narda Pasternack Pasternack SPEAG SPEAG SPEAG Model 8753ES N5182A 15S1G6 ML2495A MA2411B MA2411B 4040 4352 772D 85033E BW-N20W5+
NLP-2950+
4772-3 PE2209-10 PE5011-1 DAKS-3.5 EX3DV4 DAE4 Procedure for Calibration Extension for SAR Dipoles. May 15, 2019 SAR Validation Dipole at 1750 MHz. Description S-Parameter Network Analyzer MXG Vector Signal Generator Amplifier Power Meter Pulse Power Sensor Pulse Power Sensor Temperature / Humidity Monitor Ultra Long Stem Thermometer Dual Directional Coupler Standard Mechanical Calibration Kit (DC to 9GHz, 3.5mm) 6/4/2018 DC to 18 GHz Precision Fixed 20 dB Attenuator Low Pass Filter DC to 2700 MHz Attenuator (3dB) Bidirectional Coupler Torque Wrench Portable DAK SAR Probe Dasy Data Acquisition Electronics CBT CBT CBT CBT 7/19/2017 9/11/2018 7/20/2018 7/10/2018 CBT 10/21/2018 10/30/2018 11/20/2018 2/28/2018 2/28/2018 CBT Serial Number Cal Date Cal Interval Cal Due 10/2/2019 10/2/2018 US39170118 6/15/2019 MY47420837 6/15/2018 Annual Annual N/A Annual Annual Annual Biennial Biennial N/A Annual N/A N/A N/A N/A Biennial Annual Annual Annual CBT 10/21/2019 10/30/2019 11/20/2019 2/28/2020 2/28/2020 CBT 6/4/2019 343972 941001 1207470 1339007 150761911 170330160 MY52180215 MY53401181 CBT CBT CBT CBT 7/19/2019 9/11/2019 7/20/2019 7/10/2019 N/A N/A 9406 N/A N/A 1045 7416 1402 Measurement Uncertainty = 23% (k=2) Name Function Signature Calibrated By:
Parker Jones Team Lead Engineer Approved By:
Kaitlin OKeefe Senior Technical Manager Object:
D1750V2 SN: 1092 Date Issued:
05/15/2019 Page 1 of 4 DIPOLE CALIBRATION EXTENSION Per KDB 865664 D01, calibration intervals of up to three years may be considered for reference dipoles when it is demonstrated that the SAR target, impedance and return loss of a dipole have remained stable according to the following requirements:
1. The measured SAR does not deviate more than 10% from the target on the calibration certificate. 2. The return-loss does not deviate more than 20% from the previous measurement and meets the required 20dB minimum return-loss requirement. 3. The measurement of real or imaginary parts of impedance does not deviate more than 5 from the previous measurement. The following dipole was checked to pass the above 3 requirements to have 2-year calibration period from the calibration date:
Certificate SAR Target Head (10g) W/kg @ 20.0 dBm 1.9 Certificate SAR Target Body (10g) W/kg @ 20.0 dBm 1.94 Measured Head SAR
(10g) W/kg @
20.0 dBm Deviation 10g
(%) Certificate Impedance Head (Ohm) Real Measured Impedance Head (Ohm) Real Difference
(Ohm) Real Certificate Impedance Head (Ohm) Imaginary Measured Impedance Head (Ohm) Imaginary Difference
(Ohm) Imaginary Certificate Return Loss Head (dB) Measured Return Loss Head (dB) Deviation (%) PASS/FAIL 1.89
-0.53%
49.2 48.4 0.8
-1
-0.1 0.9
-37.8
-38.2
-1.00%
PASS Measured Body SAR
(10g) W/kg @
20.0 dBm Deviation 10g
(%) Certificate Impedance Body (Ohm) Real Measured Impedance Body (Ohm) Real Difference
(Ohm) Real Certificate Impedance Body (Ohm) Imaginary Measured Impedance Body (Ohm) Imaginary Difference
(Ohm) Imaginary Certificate Return Loss Body (dB) Measured Return Loss Body (dB) Deviation (%) PASS/FAIL 1.91
-1.55%
44.8 44.2 0.6
-0.6 1.1 1.7
-25.2
-24.2 3.90%
PASS Certificate SAR Target Head (1g) W/kg @ 20.0 dBm 3.61 Certificate SAR Target Body (1g) W/kg @ 20.0 dBm 3.64 Calibration Date Extension Date Certificate Electrical Delay (ns) 5/15/2018 5/15/2019 1.217 Calibration Date Extension Date Certificate Electrical Delay (ns) 5/15/2018 5/15/2019 1.217 Measured Head SAR (1g) W/kg @ 20.0 Deviation 1g
(%) dBm 3.59
-0.55%
Measured Body SAR (1g) W/kg @ 20.0 Deviation 1g
(%) dBm 3.62
-0.55%
Object:
D1750V2 SN: 1092 Date Issued:
05/15/2019 Page 2 of 4 Impedance & Return-Loss Measurement Plot for Head TSL Page 3 of 4 Object:
D1750V2 SN: 1092 Date Issued:
05/15/2019 Impedance & Return-Loss Measurement Plot for Body TSL Object:
D1750V2 SN: 1092 Date Issued:
05/15/2019 Page 4 of 4 PCTEST ENGINEERING LABORATORY, INC. 18855 Adams Ct, Morgan Hill, CA 95037 USA Tel. +1.410.290.6652 / Fax +1.410.290.6654 http://www.pctest.com Certification of Calibration Object Calibration procedure(s) Extended Calibration date:
Description:
Calibration Equipment used:
D1900V2 SN: 5d181 Procedure for Calibration Extension for SAR Dipoles. September 07, 2018 SAR Validation Dipole at 1900 MHz. Measurement Uncertainty = 23% (k=2) Name Function Signature Calibrated By:
Sangmin Cha Team Lead Engineer Approved By:
Kaitlin OKeefe Senior Technical Manager Object:
D1900V2 SN: 5d181 Date Issued:
09/07/2018 Page 1 of 4 Manufacturer Model Description Cal Date Cal Interval Cal Due Serial Number Agilent 8753ES S-Parameter Network Analyzer 9/14/2017Annual 9/14/2018US39170118 Agilent N5182A MXG Vector Signal Generator 3/19/2018Annual 3/19/2019US46240505 Amplifier Research 15S1G6 Amplifier CBTN/ACBT343972Anritsu ML2496A Power Meter 10/9/2017Annual 10/9/20181138001Anritsu MA2411B Pulse Power Sensor 11/15/2017Annual 11/15/20181339007Anritsu MA2411B Pulse Power Sensor 11/22/2017Annual 11/22/20181339008Control Company 4040Temperature / Humidity Monitor 2/28/2018Biennial 2/28/2020150761911Control Company 4352Ultra Long Stem Thermometer 2/14/2017Biennial 2/14/2019170112507Keysight 772D Dual Directional Coupler CBTN/ACBTMY52180215 Keysight Technologies 85033E Standard Mechanical Calibration Kit (DC to 9GHz, 3.5mm) 6/4/2018Annual 6/4/2019MY53401181 Mini-Circuits BW-N20W5+ DC to 18 GHz Precision Fixed 20 dB Attenuator CBTN/ACBTN/A Mini-Circuits NLP-2950+ Low Pass Filter DC to 2700 MHz CBTN/ACBTN/A Narda 4772-3 Attenuator (3dB) CBTN/ACBT9406Pasternack PE2209-10 Bidirectional Coupler CBTN/ACBTN/A Pasternack PE5011-1 Torque Wrench 7/19/2017Biennial 7/19/2019N/A SPEAG DAK-3.5 Dielectric Assessment Kit 5/15/2018Annual 5/15/20191070SPEAG ES3DV3 SAR Probe 9/18/2017Annual 9/18/20183287SPEAG DAE4 Data Acquisition Electronics 1/26/2018Annual 1/26/20191533SPEAG ES3DV3 SAR Probe 3/13/2018Annual 3/13/20193131SPEAG DAE4 Dasy Data Acquisition Electronics 3/7/2018Annual 3/7/2019604 DIPOLE CALIBRATION EXTENSION Per KDB 865664 D01, calibration intervals of up to three years may be considered for reference dipoles when it is demonstrated that the SAR target, impedance and return loss of a dipole have remained stable according to the following requirements:
1. The measured SAR does not deviate more than 10% from the target on the calibration certificate. 2. The return-loss does not deviate more than 20% from the previous measurement and meets the required 20dB minimum return-loss requirement. 3. The measurement of real or imaginary parts of impedance does not deviate more than 5 from the previous measurement. The following dipole was checked to pass the above 3 requirements to have 2-year calibration period from the calibration date:
Object:
D1900V2 SN: 5d181 Date Issued:
09/07/2018 Page 2 of 4 Calibration DateExtension DateCertificate Electrical Delay (ns)Certificate SAR Target Head (1g) W/kg @ 20.0 dBmMeasured Head SAR (1g) W/kg @ 20.0 dBmDeviation 1g (%)Certificate SAR Target Head (10g) W/kg @ 20.0 dBmMeasured Head SAR (10g) W/kg @ 20.0 dBmDeviation 10g (%)Certificate Impedance Head (Ohm) RealMeasured Impedance Head (Ohm) RealDifference (Ohm) RealCertificate Impedance Head (Ohm) ImaginaryMeasured Impedance Head (Ohm) ImaginaryDifference (Ohm) ImaginaryCertificate Return Loss Head (dB)Measured Return Loss Head (dB)Deviation (%)PASS/FAIL9/7/20179/7/20181.23.953.991.01%2.062.070.49%53.749.64.14.62.62-24.9-28.9-16.10%PASSCalibration DateExtension DateCertificate Electrical Delay (ns)Certificate SAR Target Body (1g) W/kg @ 20.0 dBmMeasured Body SAR (1g) W/kg @ 20.0 dBmDeviation 1g (%)Certificate SAR Target Body (10g) W/kg @ 20.0 dBmMeasured Body SAR (10g) W/kg @ 20.0 dBmDeviation 10g (%)Certificate Impedance Body (Ohm) RealMeasured Impedance Body (Ohm) RealDifference (Ohm) RealCertificate Impedance Body (Ohm) ImaginaryMeasured Impedance Body (Ohm) ImaginaryDifference (Ohm) ImaginaryCertificate Return Loss Body (dB)Measured Return Loss Body (dB)Deviation (%)PASS/FAIL9/7/20179/7/20181.23.954.134.56%2.092.142.39%49.245.83.45.62.13.5-24.8-24.70.40%PASS Impedance & Return-Loss Measurement Plot for Head TSL Object:
D1900V2 SN: 5d181 Date Issued:
09/07/2018 Page 3 of 4 Impedance & Return-Loss Measurement Plot for Body TSL Object:
D1900V2 SN: 5d181 Date Issued:
09/07/2018 Page 4 of 4 PCTEST ENGINEERING LABORATORY, INC. 18855 Adams Ct, Morgan Hill, CA 95037 USA Tel. +1.410.290.6652 / Fax +1.410.290.6654 http://www.pctest.com Certification of Calibration D1900V2 SN: 5d026 Object Calibration procedure(s) Extended Calibration date:
Description:
Calibration Equipment used:
Manufacturer Agilent Agilent Amplifier Research Anritsu Anritsu Anritsu Control Company Control Company Keysight Keysight Technologies Mini-Circuits Mini-Circuits Narda Pasternack Pasternack SPEAG SPEAG SPEAG Model 8753ES N5182A 15S1G6 ML2495A MA2411B MA2411B 4040 4352 772D 85033E BW-N20W5+
NLP-2950+
4772-3 PE2209-10 PE5011-1 DAKS-3.5 EX3DV4 DAE4 Procedure for Calibration Extension for SAR Dipoles. May 14, 2019 SAR Validation Dipole at 1900 MHz. Description S-Parameter Network Analyzer MXG Vector Signal Generator Amplifier Power Meter Pulse Power Sensor Pulse Power Sensor Temperature / Humidity Monitor Ultra Long Stem Thermometer Dual Directional Coupler Standard Mechanical Calibration Kit (DC to 9GHz, 3.5mm) 6/4/2018 DC to 18 GHz Precision Fixed 20 dB Attenuator Low Pass Filter DC to 2700 MHz Attenuator (3dB) Bidirectional Coupler Torque Wrench Portable DAK SAR Probe Dasy Data Acquisition Electronics CBT CBT CBT CBT 7/19/2017 9/11/2018 7/20/2018 7/10/2018 CBT 10/21/2018 10/30/2018 11/20/2018 2/28/2018 2/28/2018 CBT Serial Number Cal Date Cal Interval Cal Due 10/2/2019 10/2/2018 US39170118 6/15/2019 MY47420837 6/15/2018 Annual Annual N/A Annual Annual Annual Biennial Biennial N/A Annual N/A N/A N/A N/A Biennial Annual Annual Annual CBT 10/21/2019 10/30/2019 11/20/2019 2/28/2020 2/28/2020 CBT 6/4/2019 343972 941001 1207470 1339007 150761911 170330160 MY52180215 MY53401181 CBT CBT CBT CBT 7/19/2019 9/11/2019 7/20/2019 7/10/2019 N/A N/A 9406 N/A N/A 1045 7416 1402 Measurement Uncertainty = 23% (k=2) Name Function Signature Calibrated By:
Parker Jones Team Lead Engineer Approved By:
Kaitlin OKeefe Senior Technical Manager Object:
D1900V2 SN: 5d026 Date Issued:
05/14/2019 Page 1 of 4 DIPOLE CALIBRATION EXTENSION Per KDB 865664 D01, calibration intervals of up to three years may be considered for reference dipoles when it is demonstrated that the SAR target, impedance and return loss of a dipole have remained stable according to the following requirements:
1. The measured SAR does not deviate more than 10% from the target on the calibration certificate. 2. The return-loss does not deviate more than 20% from the previous measurement and meets the required 20dB minimum return-loss requirement. 3. The measurement of real or imaginary parts of impedance does not deviate more than 5 from the previous measurement. The following dipole was checked to pass the above 3 requirements to have 2-year calibration period from the calibration date:
Certificate SAR Target Head (10g) W/kg @ 20.0 dBm 2.11 Certificate SAR Target Body (10g) W/kg @ 20.0 dBm 2.12 Measured Head SAR
(10g) W/kg @
20.0 dBm Deviation 10g
(%) Certificate Impedance Head (Ohm) Real Measured Impedance Head (Ohm) Real Difference
(Ohm) Real Certificate Impedance Head (Ohm) Imaginary Measured Impedance Head (Ohm) Imaginary Difference
(Ohm) Imaginary Certificate Return Loss Head (dB) Measured Return Loss Head (dB) Deviation (%) PASS/FAIL 2.05
-2.84%
53 54.2 1.2 8 4.1 3.9
-21.6
-25.8
-19.30%
PASS Measured Body SAR
(10g) W/kg @
20.0 dBm Deviation 10g
(%) Certificate Impedance Body (Ohm) Real Measured Impedance Body (Ohm) Real Difference
(Ohm) Real Certificate Impedance Body (Ohm) Imaginary Measured Impedance Body (Ohm) Imaginary Difference
(Ohm) Imaginary Certificate Return Loss Body (dB) Measured Return Loss Body (dB) Deviation (%) PASS/FAIL 2.04
-3.77%
47.1 48.4 1.3 7.4 3.5 3.9
-21.8
-25.1
-15.10%
PASS Certificate SAR Target Head (1g) W/kg @ 20.0 dBm 4.02 Certificate SAR Target Body (1g) W/kg @ 20.0 dBm 3.99 Calibration Date Extension Date Certificate Electrical Delay (ns) 5/14/2018 5/14/2019 1.199 Calibration Date Extension Date Certificate Electrical Delay (ns) 5/14/2018 5/14/2019 1.199 Measured Head SAR (1g) W/kg @ 20.0 Deviation 1g
(%) dBm 3.98
-1.00%
Measured Body SAR (1g) W/kg @ 20.0 Deviation 1g
(%) dBm 3.97
-0.50%
Object:
D1900V2 SN: 5d026 Date Issued:
05/14/2019 Page 2 of 4 Impedance & Return-Loss Measurement Plot for Head TSL Page 3 of 4 Object:
D1900V2 SN: 5d026 Date Issued:
05/14/2019 Impedance & Return-Loss Measurement Plot for Body TSL Page 4 of 4 Object:
D1900V2 SN: 5d026 Date Issued:
05/14/2019 PCTEST ENGINEERING LABORATORY, INC. 18855 Adams Ct, Morgan Hill, CA 95037 USA Tel. +1.410.290.6652 / Fax +1.410.290.6654 http://www.pctest.com Certification of Calibration Object Calibration procedure(s) Extended Calibration date:
Description:
Calibration Equipment used:
D2600V2 SN: 1069 Procedure for Calibration Extension for SAR Dipoles. September 10, 2018 SAR Validation Dipole at 2600 MHz. Measurement Uncertainty = 23% (k=2) Name Function Signature Calibrated By:
Sangmin Cha Team Lead Engineer Approved By:
Kaitlin OKeefe Senior Technical Manager Object:
D2600V2 SN: 1069 Date Issued:
09/10/2018 Page 1 of 4 Manufacturer Model Description Cal Date Cal Interval Cal Due Serial Number Agilent 8753ES S-Parameter Network Analyzer 9/14/2017Annual 9/14/2018US39170118 Agilent N5182A MXG Vector Signal Generator 3/19/2018Annual 3/19/2019US46240505 Amplifier Research 15S1G6 Amplifier CBTN/ACBT343972Anritsu ML2496A Power Meter 10/9/2017Annual 10/9/20181138001Anritsu MA2411B Pulse Power Sensor 11/15/2017Annual 11/15/20181339007Anritsu MA2411B Pulse Power Sensor 11/22/2017Annual 11/22/20181339008Control Company 4040Temperature / Humidity Monitor 2/28/2018Biennial 2/28/2020150761911Control Company 4352Ultra Long Stem Thermometer 2/14/2017Biennial 2/14/2019170112507Keysight 772D Dual Directional Coupler CBTN/ACBTMY52180215 Keysight Technologies 85033E Standard Mechanical Calibration Kit (DC to 9GHz, 3.5mm) 6/4/2018Annual 6/4/2019MY53401181 Mini-Circuits BW-N20W5+ DC to 18 GHz Precision Fixed 20 dB Attenuator CBTN/ACBTN/A Mini-Circuits NLP-2950+ Low Pass Filter DC to 2700 MHz CBTN/ACBTN/A Narda 4772-3 Attenuator (3dB) CBTN/ACBT9406Pasternack PE2209-10 Bidirectional Coupler CBTN/ACBTN/A Pasternack PE5011-1 Torque Wrench 7/19/2017Biennial 7/19/2019N/A SPEAG DAK-3.5 Dielectric Assessment Kit 5/15/2018Annual 5/15/20191070SPEAG ES3DV3 SAR Probe 9/18/2017Annual 9/18/20183287SPEAG DAE4 Data Acquisition Electronics 1/26/2018Annual 1/26/20191533SPEAG ES3DV3 SAR Probe 4/12/2018Annual 4/12/20193275SPEAG DAE4 Dasy Data Acquisition Electronics 4/12/2018Annual 4/12/2019501 DIPOLE CALIBRATION EXTENSION Per KDB 865664 D01, calibration intervals of up to three years may be considered for reference dipoles when it is demonstrated that the SAR target, impedance and return loss of a dipole have remained stable according to the following requirements:
1. The measured SAR does not deviate more than 10% from the target on the calibration certificate. 2. The return-loss does not deviate more than 20% from the previous measurement and meets the required 20dB minimum return-loss requirement. 3. The measurement of real or imaginary parts of impedance does not deviate more than 5 from the previous measurement. The following dipole was checked to pass the above 3 requirements to have 2-year calibration period from the calibration date:
Object:
D2600V2 SN: 1069 Date Issued:
09/10/2018 Page 2 of 4 Calibration DateExtension DateCertificate Electrical Delay (ns)Certificate SAR Target Head (1g) W/kg @ 20.0 dBmMeasured Head SAR (1g) W/kg @ 20.0 dBmDeviation 1g (%)Certificate SAR Target Head (10g) W/kg @ 20.0 dBmMeasured Head SAR (10g) W/kg @ 20.0 dBmDeviation 10g (%)Certificate Impedance Head (Ohm) RealMeasured Impedance Head (Ohm) RealDifference (Ohm) RealCertificate Impedance Head (Ohm) ImaginaryMeasured Impedance Head (Ohm) ImaginaryDifference (Ohm) ImaginaryCertificate Return Loss Head (dB)Measured Return Loss Head (dB)Deviation (%)PASS/FAIL9/11/20179/10/20181.1525.695.52-2.99%2.542.51-1.18%49.148.90.2-6.1-4.91.2-24.1-25.8-7.10%PASSCalibration DateExtension DateCertificate Electrical Delay (ns)Certificate SAR Target Body (1g) W/kg @ 20.0 dBmMeasured Body SAR (1g) W/kg @ 20.0 dBmDeviation 1g (%)Certificate SAR Target Body (10g) W/kg @ 20.0 dBmMeasured Body SAR (10g) W/kg @ 20.0 dBmDeviation 10g (%)Certificate Impedance Body (Ohm) RealMeasured Impedance Body (Ohm) RealDifference (Ohm) RealCertificate Impedance Body (Ohm) ImaginaryMeasured Impedance Body (Ohm) ImaginaryDifference (Ohm) ImaginaryCertificate Return Loss Body (dB)Measured Return Loss Body (dB)Deviation (%)PASS/FAIL9/11/20179/10/20181.1525.535.28-4.52%2.482.35-5.24%46.244.71.5-4.7-8.23.5-24.1-21.311.60%PASS
1 2 3 4 | RF Exposure Info 3 | RF Exposure Info | 4.35 MiB | March 09 2019 / October 09 2019 |
Impedance & Return-Loss Measurement Plot for Head TSL Object:
D2600V2 SN: 1069 Date Issued:
09/10/2018 Page 3 of 4 Impedance & Return-Loss Measurement Plot for Body TSL Object:
D2600V2 SN: 1069 Date Issued:
09/10/2018 Page 4 of 4 A P P E N D I X D : S A R T I S S U E S P E C I F I C A T I O N S Measurement Procedure for Tissue verification:
1) The network analyzer and probe system was configured and calibrated. 2) The probe was immersed in the tissue. The tissue was placed in a nonmetallic container. Trapped air bubbles beneath the flange were minimized by placing the probe at a slight angle. 3) The complex admittance with respect to the probe aperture was measured 4) The complex relative permittivity can be calculated from the below equation (Pournaropoulos and Misra):
Y
=
2 j 0 r
[
]
(
) 2 ln ab b b a a 0
[
exp cos rj 0 0
'
r
(
r
]
2/1
) ddd where Y is the admittance of the probe in contact with the sample, the primed and unprimed coordinates refer to source and observation points, respectively,
.
, is the angular frequency, and 1=j
+
22 cos 2r
=
2 Composition of Head and Body Tissue Equivalent Matter Figure D-1 Note: Liquid recipes are proprietary SPEAG. Since the composition is approximate to the actual liquids utilized, the manufacturer tissue-equivalent liquid data sheets are provided below FCC ID: BCG-A2157 SAR EVALUATION REPORT Test Dates:
07/05/2019 - 07/24/2019 DUT Type:
Watch 2019 PCTEST Engineering Laboratory, Inc. Approved by:
Quality Manager APPENDIX D:
Page 1 of 3 REV 21.3 M 02/15/2019 850 2700 MHz Head Tissue Equivalent Matter Figure D-2 FCC ID: BCG-A2157 SAR EVALUATION REPORT Test Dates:
07/05/2019 - 07/24/2019 DUT Type:
Watch 2019 PCTEST Engineering Laboratory, Inc. Approved by:
Quality Manager APPENDIX D:
Page 2 of 3 REV 21.3 M 02/15/2019 850 2700 MHz Body Tissue Equivalent Matter Figure D-3 FCC ID: BCG-A2157 SAR EVALUATION REPORT Test Dates:
07/05/2019 - 07/24/2019 DUT Type:
Watch 2019 PCTEST Engineering Laboratory, Inc. Approved by:
Quality Manager APPENDIX D:
Page 3 of 3 REV 21.3 M 02/15/2019 A P P E N D I X E : S A R S Y S T E M V A L I D A T I O N Per FCC KDB Publication 865664 D02v01r02, SAR system validation status should be documented to confirm measurement accuracy. The SAR systems (including SAR probes, system components and software versions) used for this device were validated against its performance specifications prior to the SAR measurements. Reference dipoles were used with the required tissue- equivalent media for system validation, according to the procedures outlined in FCC KDB Publication 865664 D01v01r04. Since SAR probe calibrations are frequency dependent, each probe calibration point was validated at a frequency within the valid frequency range of the probe calibration point, using the system that normally operates with the probe for routine SAR measurements and according to the required tissue-equivalent media. A tabulated summary of the system validation status including the validation date(s), measurement frequencies, SAR probes and tissue dielectric parameters has been included. SYSTEM FREQ. [MHz]
DATE PROBE SN PROBE TYPE PROBE CAL. POINT 835 1750 1900 1900 2450 2450 2450 2600 2600 4/26/2019 4/8/2019 4/10/2019 3/14/2019 4/16/2019 6/17/2019 7/8/2019 3/4/2019 6/17/2019 7532 3837 3837 7427 3318 7490 7416 3318 7490 EX3DV4 EX3DV4 EX3DV4 EX3DV4 ES3DV3 EX3DV4 EX3DV4 ES3DV3 EX3DV4 835 1750 1900 1900 2450 2450 2450 2600 2600 Head Head Head Head Head Head Head Head Head SYSTEM FREQ. [MHz]
DATE PROBE SN PROBE TYPE PROBE CAL. POINT 835 1750 1900 1900 2450 2450 2600 4/23/2019 2/21/2019 6/13/2019 2/22/2019 12/10/2018 7/15/2019 12/10/2018 7532 3837 7490 3837 3318 7421 3318 EX3DV4 EX3DV4 EX3DV4 EX3DV4 ES3DV3 EX3DV4 ES3DV3 835 1750 1900 1900 2450 2450 2600 Body Body Body Body Body Body Body Table E-1 SAR System Validation Summary 1g PROBE COND. PERM. CW VALIDATION
(r) SENSITIVITY LINEARITY
() 0.924 1.346 1.456 1.444 1.867 1.786 1.867 1.979 1.904
() 1.005 1.490 1.552 1.575 2.044 1.986 2.225 40.952 40.360 38.971 39.663 37.929 37.800 37.827 39.111 37.530 PASS PASS PASS PASS PASS PASS PASS PASS PASS
(r) 53.199 52.305 51.509 51.902 51.289 51.084 50.827 PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS MOD. VALIDATION DUTY FACTOR PROBE ISOTROPY PASS PASS PASS PASS PASS PASS PASS PASS PASS MOD. TYPE GMSK N/A GMSK GMSK OFDM/TDD OFDM/TDD OFDM/TDD TDD TDD PASS N/A PASS PASS PASS PASS PASS PASS PASS PASS N/A PASS PASS PASS PASS PASS PAR N/A N/A N/A N/A PASS PASS PASS N/A N/A PAR N/A N/A N/A N/A PASS PASS N/A MOD. TYPE GMSK N/A GMSK GMSK OFDM/TDD OFDM/TDD TDD PASS PASS PASS PASS PASS PASS PASS Table E-2 SAR System Validation Summary 10g PROBE COND. PERM. CW VALIDATION SENSITIVITY LINEARITY PROBE ISOTROPY MOD. VALIDATION DUTY FACTOR SAR
#
AM4 AM7 AM7 AM6 AM5 AM2 AM8 AM5 AM2 SAR
#
AM4 AM7 AM2 AM7 AM5 AM1 AM5 NOTE: While the probes have been calibrated for both CW and modulated signals, all measurements were performed using communication systems calibrated for CW signals only. Modulations in the table above represent test configurations for which the measurement system has been validated per FCC KDB Publication 865664 D01v01r04 for scenarios when CW probe calibrations are used with other signal types. SAR systems were validated for modulated signals with a periodic duty cycle, such as GMSK, or with a high peak to average ratio (>5 dB), such as OFDM according to FCC KDB Publication 865664 D01v01r04. FCC ID: BCG-A2157 SAR EVALUATION REPORT Test Dates:
07/05/2019 - 07/24/2019 DUT Type:
Watch 2019 PCTEST Engineering Laboratory, Inc. Approved by:
Quality Manager APPENDIX E:
Page 1 of 1 REV 21.3 M 02/15/2019
1 2 3 4 | Bluetooth Test Report | Test Report | 3.18 MiB | March 09 2019 / October 09 2019 |
PCTEST ENGINEERING LABORATORY, INC. 18855 Adams Court, Morgan Hill, CA 95037 USA Tel. 410.290.6652 / Fax 410.290.6654 http://www.pctest.com MEASUREMENT REPORT FCC PART 15.247 / ISED RSS-247 Bluetooth Date of Testing:
05/01/2019 - 08/09/2019 Test Site/Location:
PCTEST Lab. Morgan Hill, CA, USA Test Report Serial No.:
1C1905130011-08.BCG BCG-A2157 579C-A2157 Apple Inc. Certification A2157 Watch 57.677 mW (17.61 dBm) Peak Conducted 2402 2480MHz GFSK, /4-DQPSK, 8DPSK FCC Part 15 Spread Spectrum Transmitter (DSS) Part 15 Subpart C (15.247) RSS-247 Issue 2 ANSI C63.10-2013 Applicant Name:
Apple Inc. One Apple Park Way Cupertino, CA 95014 United States FCC ID:
IC:
APPLICANT:
Application Type:
Model/HVIN:
EUT Type:
Max. RF Output Power:
Frequency Range:
Type of Modulation:
FCC Classification:
FCC Rule Part(s):
ISED Specification:
Test Procedure(s):
This equipment has been shown to be capable of compliance with the applicable technical standards as indicated in the measurement report and was tested in accordance with the measurement procedures specified in ANSI C63.10-2013. Test results reported herein relate only to the item(s) tested. I attest to the accuracy of data. All measurements reported herein were performed by me or were made under my supervision and are correct to the best of my knowledge and belief. I assume full responsibility for the completeness of these measurements and vouch for the qualifications of all persons taking them. FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 1 of 60 EUT Type:
1.0 2.0 3.0 4.0 5.0 6.0 7.0 8.0 T A B L E O F C O N T E N T S INTRODUCTION .......................................................................................................................................... 3 1.1 Scope ................................................................................................................................................................... 3 1.2 PCTEST Test Location ......................................................................................................................................... 3 1.3 Test Facility / Accreditations ................................................................................................................................. 3 PRODUCT INFORMATION .......................................................................................................................... 4 2.1 Equipment Description ......................................................................................................................................... 4 2.2 Device Capabilities ............................................................................................................................................... 4 2.3 Antenna Description ............................................................................................................................................. 5 2.4 Test Support Equipment ....................................................................................................................................... 6 2.5 Test Configuration ................................................................................................................................................ 6 2.6 Software and Firmware ........................................................................................................................................ 6 2.7 EMI Suppression Device(s)/Modifications ............................................................................................................ 6 DESCRIPTION OF TESTS .......................................................................................................................... 7 3.1 Evaluation Procedure ........................................................................................................................................... 7 3.2 AC Line Conducted Emissions ............................................................................................................................. 7 3.3 Radiated Emissions .............................................................................................................................................. 8 3.4 Environmental Conditions ..................................................................................................................................... 8 ANTENNA REQUIREMENTS ...................................................................................................................... 9 MEASUREMENT UNCERTAINTY ............................................................................................................. 10 TEST EQUIPMENT CALIBRATION DATA ................................................................................................ 11 TEST RESULTS ......................................................................................................................................... 12 7.1 Summary ............................................................................................................................................................ 12 7.2 20dB Bandwidth Measurement .......................................................................................................................... 13 7.3 Output Power Measurement ............................................................................................................................... 18 7.3.1 Peak Output Power Measurement.................................................................................................................. 19 7.3.2 Average Output Power Measurement ............................................................................................................ 20 7.4 Band Edge Compliance ...................................................................................................................................... 21 7.5 Carrier Frequency Separation ............................................................................................................................ 26 7.6 Time of Occupancy............................................................................................................................................. 29 7.7 Number of Hopping Channels ............................................................................................................................ 32 7.8 Conducted Spurious Emissions .......................................................................................................................... 35 7.9 Radiated Spurious Emission Measurements Above 1GHz .............................................................................. 39 Radiated Restricted Band Edge Measurements ............................................................................................. 47 7.10 7.11 Radiated Spurious Emissions Measurements Below 1GHz ........................................................................ 51 7.12 AC Line Conducted Measurement Data ......................................................................................................... 56 CONCLUSION ............................................................................................................................................ 60 FCC ID: BCG-A2157 MEASUREMENT REPORT
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Quality Manager Test Report S/N:
1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 2 of 60 EUT Type:
1 . 0 I N T R O D U C T I O N Scope 1.1 Measurement and determination of electromagnetic emissions (EMC) of radio frequency devices including intentional and/or unintentional radiators for compliance with the technical rules and regulations of the Federal Communications Commission and the Innovation, Science and Economic Development Canada. PCTEST Test Location 1.2 These measurement tests were conducted at the PCTEST Engineering Laboratory, Inc. facility located at 18855 Adams Court, Morgan Hill, CA 95037. The measurement facility is compliant with the test site requirements specified in ANSI C63.4-2014 and KDB 414788 D01 v01r01. 1.3 Measurements were performed at PCTEST Engineering Lab located in Morgan Hill, CA 95037, U.S.A. PCTEST is an ISO 17025-2005 accredited test facility under the American Association for Laboratory Accreditation (A2LA) with Certificate number 2041.02 for Specific Absorption Rate (SAR), Hearing Aid Compatibility (HAC) testing, where applicable, and Electromagnetic Compatibility (EMC) testing for FCC and Innovation, Science, and Economic Development Canada rules. Test Facility / Accreditations PCTEST TCB is a Telecommunication Certification Body (TCB) accredited to ISO/IEC 17065-2012 by A2LA
(Certificate number 2041.03) in all scopes of FCC Rules and ISED Standards (RSS). PCTEST facility is a registered (22831) test laboratory with the site description on file with ISED. FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 3 of 60 EUT Type:
2 . 0 P R O D U C T I N F O R M A T I O N 2.1 Equipment Description The Equipment Under Test (EUT) is the Apple Watch FCC ID: BCG-A2157. The test data contained in this report pertains only to the emissions due to the EUTs Bluetooth transmitter. This Bluetooth module has been tested by a Bluetooth Qualification Lab, and we confirm the following:
A) The hopping sequence is pseudorandom B) All channels are used equally on average C) The receiver input bandwidth equals the transmit bandwidth D) The receiver hops in sequence with the transmit signal 15.247(g): In accordance with the Bluetooth Industry Standard, the system is designed to comply with all of the regulations in Section 15.247 when the transmitter is presented with a continuous data (or information) system. 15.247(h): In accordance with the Bluetooth Industry Standard, the system does not coordinate its channels selection/
hopping sequence with other frequency hopping systems for the express purpose of avoiding the simultaneous occupancy of individual hopping frequencies by multiple transmitters. 15.247(h): The EUT employs Adaptive Frequency Hopping (AFH) which identifies sources of interference namely devices operating in 802.11 WLAN and excludes them from the list of available channels. The process of re-mapping reduces the number of test channels from 79 channels to a minimum number of 20 channels. Device Capabilities Test Device Serial No.: D92YD00QM8CJ, D92YF005M95Y, FN6911410ECKTRT5U 2.2 This device contains the following capabilities:
850/1700/1900 WCDMA/HSPA, Multi-band LTE, 802.11b/g/n WLAN, Bluetooth (1x, EDR, HDR4, HDR8, LE), NFC Ch. 00
:
39
:
78 Frequency (MHz) 2402
:
2441
:
2480 Table 2-1. Frequency/ Channel Operations FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 4 of 60 EUT Type:
Note:
1. This device is capable of operating in hopping and non-hopping mode. The EUT can hop between 79 different channels in the 2400 2483.5MHz band. The maximum achievable duty cycles for all modes were determined based on measurements performed on a spectrum analyzer in zero-span mode with RBW = 8MHz, VBW = 50MHz, and detector = peak per the guidance of Section 6.0 b) of KDB 558074 D01 v05r02 and ANSI C63.10-2013. The RBW and VBW were both greater than 50/T, where T is the minimum transmission duration, and the number of sweep points across T was greater than 100. The duty cycles are as follows:
Table 2-2. Measured Duty Cycles 2. This device supports simultaneous transmission operation, which allows for two transmitters to transmit simultaneously on the same antenna. The table below shows all configurations possible. Simultaneous Tx Configurations WIFI 2.4GHz Bluetooth LTE Mid Bands LTE High Bands Configuration 1 Configuration 2 Configuration 3 Configuration 4 Antenna FCM Table 2-3. Simultaneous Tx Configurations
= Support ; = NOT Support Worst Case Configuration Description Antenna Channel Operating Frequency (MHz) Modulation/Mode Bluetooth FCM 39 2441 LTE FCM 26365 1882.5 GFSK/ePA QPSK/1RB/20MHz Table 2-4. Worst Case Configuration Antenna Description 2.3 Following antenna was used for the testing. Frequency [GHz]
Antenna Gain (dBi) 2.4
-10.4 Note: This device is capable of operating in hopping and non-hopping mode. The EUT can hop between 79 different channels in the 2400 2483.5MHz band. Table 2-5. Highest Antenna Gain FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 5 of 60 EUT Type:
Duty Cycle (%)ePA100.0iPA100.0ePA100.0iPA100.0ePA100.0iPA100.0Measured Duty CyclesBluetooth ModeGFSK8DPSK/4-DQPSK 2.4 Test Support Equipment Table 2-6. Test Support Equipment Used Test Configuration 2.5 The EUT was tested per the guidance of ANSI C63.10-2013. ANSI C63.10-2013 was also used to reference the appropriate EUT setup for radiated spurious emissions testing and AC line conducted testing. See Sections 3.2 for AC line conducted emissions test setups, 3.3 for radiated emissions test setups, and 7.2, 7.3, 7.4, 7.5, 7.6, 7.7, and 7.8 for antenna port conducted emissions test setups. The worst case radiated emissions data is shown in this report. The worst case configuration was investigated for all combinations of the four materials, aluminum, stainless steel, ceramic, and aluminum/ceramic mix, and various types of wristbands, metal and non-metal wristbands. The store display sample was investigated and determined as not the worst case. The EUT was also investigated with and without wireless charger. The worst case configuration found was used for all testing. For emissions from 1GHz 18GHz, low, mid, and high channels were tested with highest power and worst case configuration. The emissions below 1GHz and above 18GHz were tested with the highest transmitting power channel and the worst case configuration. The EUT was manipulated through three orthogonal planes of X-orientation (flatbed), Y-orientation (landscape), and Z-orientation (portrait) during the testing. Only the worst case emissions were reported in this test report. For AC line conducted and radiated test below 1GHz, following configurations were investigated and worst case was reported.
- EUT powered by AC/DC adaptor via USB cable with wireless charger
- EUT powered by host PC via USB cable with wireless charger Software and Firmware
/4-DQPSK has been investigated and confirmed as not the worst case. 2.6 The test was conducted with firmware version wOS 6.0 installed on the EUT. 2.7 EMI Suppression Device(s)/Modifications No EMI suppression device(s) were added and no modifications were made during testing. FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 6 of 60 EUT Type:
1Apple MacBookModel:A1398S/N:C2QKP008F6F3w/AC/DC AdapterModel:A1435S/N:N/A2Apple USB CableModel:KanziS/N:311C81w/ Charging DockModel:FAPS73S/N:17481001022w/ DockModel:X241S/N:GW17F01ST223USB Lightning CableModel:N/AS/N:N/Aw/ AC AdapterModel:A1385S/N:N/A4Wireless Charging Pad (WCP)Model:EVTS/N:DLC915600ECLNWL3KWireless Charging Pad (WCP)Model:EVTS/N:DLC9156006TLNWK3V5Test Pathfinder Sinsa BoardModel:X1456S/N:920-062535-01w/ SiP CradleModel:P1 X1454SS/N:920-06373-026DC Power SupplyModel:KPS3010DS/N:N/A7Mobile Comm DC SourceModel:66321DS/N:MY52000555 3 . 0 D E S C R I P T I O N O F T E S T S Evaluation Procedure AC Line Conducted Emissions 3.1 The measurement procedure described in the American National Standard of Procedures for Compliance Testing of Unlicensed Wireless Devices (ANSI C63.10-2013) was used in the measurement of the EUT. Deviation from measurement procedure.....................................None 3.2 The line-conducted facility is located inside a 7m x 3.66m x 2.7m shielded enclosure. The shielded enclosure is manufactured by AP Americas. The shielding effectiveness of the shielded room is in accordance with MIL-Std-
285 or NSA 65-6. A 1m x 1.5m wooden table 80cm high is placed 40cm away from the vertical wall and 80cm away from the sidewall of the shielded room. Two 10kHz-30MHz, 50/50H Line-Impedance Stabilization Networks (LISNs) are bonded to the shielded room floor. Power to the LISNs is filtered by external high-current high-insertion loss power line filters. The external power line filter is EPCOS 2X60A Power Line Filter (100dB Attenuation, 14kHz-18GHz) and the two EPCOs 2X48A filters (100dB Minimum Insertion Loss, 14kHz - 10GHz). These filters attenuate ambient signal noise from entering the measurement lines. These filters are also bonded to the shielded enclosure. The EUT is powered from one LISN and the support equipment is powered from the second LISN. If the EUT is a DC-powered device, power will be derived from the source power supply it normally will be powered from and this supply line(s) will be connected to the second LISN. All interconnecting cables more than 1 meter were shortened to a 1 meter length by non-inductive bundling (serpentine fashion) and draped over the back edge of the test table. All cables were at least 40cm above the horizontal reference groundplane. Power cables for support equipment were routed down to the second LISN while ensuring that the cables were not draped over the second LISN. Sufficient time for the EUT, support equipment, and test equipment was allowed in order for them to warm up to their normal operating condition. The RF output of the LISN was connected to the spectrum analyzer and exploratory measurements were made to determine the frequencies producing the maximum emission from the EUT. The spectrum was scanned from 150kHz to 30MHz with a spectrum analyzer. The detector function was set to peak mode for exploratory measurements while the bandwidth of the analyzer was set to 10kHz. The EUT, support equipment, and interconnecting cables were arranged and manipulated to maximize each emission. Once the worst case emissions have been identified, the one EUT cable configuration/arrangement and mode of operation that produced these emissions is used for final measurements on the same test site. The analyzer is set to CISPR quasi-peak and average detectors with a 9kHz resolution bandwidth for final measurements. Line conducted emissions test results are shown in Section 7.12. Automated test software was used to perform the AC line conducted emissions testing. Automated measurement software utilized is Rohde & Schwarz EMC32, Version 10.35.04. FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 7 of 60 EUT Type:
Radiated Emissions 3.3 The radiated test facilities consisted of an indoor 3 meter semi-anechoic chamber used for final measurements and exploratory measurements, when necessary. The measurement area is contained within the semi-anechoic chamber which is shielded from any ambient interference. The test site inside the chamber is a 6m x 5.2m elliptical, obstruction-free area in accordance with Figure 5.7 of Clause 5 in ANSI C63.4-2014. Absorbers are arranged on the floor between the turn table and the antenna mast in such a way so as to maximize the reduction of reflections for measurements above 1GHz. An 80cm tall test table made of Styrodur is placed on top of the turn table. For measurements above 1GHz, an additional Styrodur pedestal is placed on top of the test table to bring the total table height to 1.5m. Per KDB 414788, radiated emission test sites other than open-field test sites (e.g., shielded anechoic chambers), may be employed for emission measurements below 30MHz if characterized so that the measurements correspond to those obtained at an open-field test site. To determine test site equivalency, a reference sample transmitting at 149kHz was measured on an open field test site (asphalt with no ground plane) and then measured in the 3m semi-anechoic chamber. A calibrated 60cm loop antenna was rotated about its vertical axis while the reference device was rotated through the X, Y and Z axis in order to capture the worst case level. A maximum deviation of 2.77dB at 149kHz was measured when comparing the 3 meter semi-anechoic chamber to the open field site. For all measurements, the spectrum was scanned through all EUT azimuths and from 1 to 4 meter receive antenna height using a broadband antenna from 30MHz up to the upper frequency shown in 15.33 depending on the highest frequency generated or used in the device or on which the device operates or tunes. For frequencies above 1GHz, linearly polarized double ridge horn antennas were used. For frequencies below 30MHz, a calibrated loop antenna was used. When exploratory measurements were necessary, they were performed at 1 meter test distance inside the semi-anechoic chamber using broadband antennas, broadband amplifiers, and spectrum analyzers to determine the frequencies and modes producing the maximum emissions. Sufficient time for the EUT, support equipment, and test equipment was allowed in order for them to warm up to their normal operating condition. The test set-up was placed on top of the 1 x 1.5 meter table. The EUT, support equipment, and interconnecting cables were arranged and manipulated to maximize each emission. Appropriate precaution was taken to ensure that all emissions from the EUT were maximized and investigated. The system configuration, mode of operation, turntable azimuth, and receive antenna height was noted for each frequency found. Final measurements were made in the semi-anechoic chamber using calibrated, linearly polarized broadband and horn antennas. The test setup was configured to the setup that produced the worst case emissions. The spectrum analyzer was set to investigate all frequencies required for testing to compare the highest radiated disturbances with respect to the specified limits. The turntable containing the EUT was rotated through 360 degrees and the height of the receive antenna was varied 1 to 4 meters and stopped at the azimuth and height producing the maximum emission. Each emission was maximized by changing the orientation of the EUT through three orthogonal planes and changing the polarity of the receive antenna, whichever produced the worst-case emissions. 3.4 The temperature is controlled within range of 15oC to 35oC. The relative humidity is controlled within range of 10%
to 75%. The atmospheric pressure is monitored within the range 86-106kPa (860-1060mbar). Environmental Conditions FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 8 of 60 EUT Type:
4 . 0 A N T E N N A R E Q U I R E M E N T S Excerpt from 15.203 of the FCC Rules/Regulations:
An intentional radiator antenna shall be designed to ensure that no antenna other than that furnished by the responsible party can be used with the device. The use of a permanently attached antenna or of an antenna that uses a unique coupling to the intentional radiator shall be considered sufficient to comply with the provisions of this section. The antennas of the EUT are permanently attached. There are no provisions for connection to an external antenna. Conclusion:
The EUT complies with the requirement of 15.203. FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 9 of 60 EUT Type:
5 . 0 M E A S U R E M E N T U N C E R T A I N T Y The measurement uncertainties shown below were calculated in accordance with the requirements of ANSI C63.10-2013. All measurement uncertainty values are shown with a coverage factor of k = 2 to indicate a 95% level of confidence. The measurement uncertainty shown below meets or exceeds the UCISPR measurement uncertainty values specified in CISPR 16-4-2 and, thus, can be compared directly to specified limits to determine compliance. Contribution Expanded Uncertainty (dB) Conducted Bench Top Measurements Conducted Disturbance Radiated Disturbance (<1GHz) Radiated Disturbance (>1GHz) Radiated Disturbance (>18GHz) 1.29 2.48 4.15 4.70 5.01 FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 10 of 60 EUT Type:
6 . 0 T E S T E Q U I P M E N T C A L I B R A T I O N D A T A Test Equipment Calibration is traceable to the National Institute of Standards and Technology (NIST). Measurements antennas used during testing were calibrated in accordance to the requirements of ANSI C63.5-
2017. Table 6-1. Annual Test Equipment Calibration Schedule Notes:
1. For equipment listed above that has a calibration date or calibration due date that falls within the test date range, care was taken to ensure that this equipment was used after the calibration date and before the calibration due date. 2. Equipment with a calibration date of N/A shown in this list was not used to make direct calibrated measurements. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 11 of 60 EUT Type:
Manufacturer Model Description Cal Date Cal Interval Cal Due Serial Number Agilent TechnologiesN9030A 3Hz-44GHz PXA Signal Analyzer 3/13/2019Annual3/13/2020MY49430244 AnritsuML2496APower Meter10/22/2018Annual10/22/2019184005AnritsuMA2411BPulse Power Sensor10/22/2018Annual10/22/20191726261AnritsuMA2411BPulse Power Sensor10/22/2018Annual10/22/20191726262ATM180-442A-KF20dB Nominal Gain Horn Antenna9/10/2018Annual9/10/2019T058701-03COM-POWER LIN-120A LISN 3/13/2019Annual3/13/2020241297Rohde & SchwarzESW26EMI Test Receiver5/21/2019Annual5/21/2020101299Rohde & Schwarz ESW44EMI Test Receiver11/20/2018Annual11/20/2019101570Rohde & Schwarz TS-PR1840Pre-Amplifier (18GHz - 40GHz)9/5/2018Annual 9/5/2019100050Rohde & Schwarz TS-PR8Pre-Amplifier (30MHz - 8GHz)1/7/2019Annual1/7/2020102325Rohde & Schwarz HL562EUltra Broadband Antenna (30MHz - 6GHz)10/24/2018Annual10/24/2019100810Rohde & Schwarz TC-TA18Cross Polarized Vivaldi Antenna (400MHz-18GHz)11/21/2018Annual11/21/2019101057Rohde & Schwarz TC-TA18Cross Polarized Vivaldi Antenna (400MHz-18GHz)12/7/2018Annual12/7/2019101063Rohde & Schwarz HFH2-Z2 Loop Antenna 3/21/2019Annual 3/21/2020100519 7 . 0 T E S T R E S U L T S 7.1 Summary Company Name:
FCC ID:
Apple Inc. BCG-A2157 Method/System:
Frequency Hopping Spread Spectrum (FHSS) Number of Channels:
79 FCC Part Section(s) RSS Section(s) Test Description Test Limit Test Test Condition Result Reference 15.247(a)(1)(iii) RSS-247 [5.1(a)]
20dB Bandwidth 15.247(b)(1) RSS-247 [5.4(b)] Peak Transmitter Output Power 15.247(a)(1) RSS-247 [5.1(b)] Channel Separation N/A 1 Watt if > 75 non-
overlapping channels used
> 2/3 of 20 dB BW for systems with Output Power < 125mW PASS Section 7.2 PASS Section 7.3 PASS Section 7.5 CONDUCTED 15.247(a)(1)(iii) RSS-247 [5.1(d)] Number of Channels
> 15 Channels PASS Section 7.7 15.247(a)(1)(iii) RSS-247 [5.1(d)]
Time of Occupancy
< 0.4 sec in 31.6 sec period 15.247(d) RSS-247 [5.5]
Band Edge / Out-of-Band Emissions Conducted > 20dBc PASS Section 7.6 PASS Section 7.4, Section 7.8 15.205 15.209 RSS-Gen [8.9]
General Field Strength Limits (Restricted Bands and Radiated Emission Limits) Emissions in restricted bands must meet the radiated limits detailed in 15.209 (RSS-247 limits) RADIATED PASS Section 7.9, Section 7.10, Section 7.11 15.207 RSS-Gen [8.8]
AC Conducted Emissions 150kHz 30MHz
< FCC 15.207 limits
(RSS-Gen [8.8] limits) LINE CONDUCTED PASS Section 7.12 Notes:
1) All modes of operation and data rates were investigated. The test results shown in the following sections Table 7-1. Summary of Test Results represent the worst case emissions. 2) The analyzer plots shown in this section were all taken with a correction table loaded into the analyzer.The correction table was used to account for the losses of the cables and attenuators used as part of the system to connect the EUT to the analyzer at all frequencies of interest. 3) All antenna port conducted emissions testing was performed on a test bench with the antenna port of the EUT connected to the spectrum analyzer through calibrated cables, attenuators, and couplers. 4) For conducted spurious emissions, automated test software was used to measure emissions and capture the corresponding plots necessary to show compliance. The measurement software utilized is PCTEST BT Auto, Version 3.5. 5) For radiated band edge, automated test software was used to measure emissions and capture the corresponding plots necessary to show compliance. The measurement software utilized is PCTEST Chamber Automation, Version 1.3.1. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 12 of 60 EUT Type:
20dB Bandwidth Measurement 7.2 15.247 (a.1.iii); RSS-247 [5.1(a)]
Test Overview and Limit The bandwidth at 20dB down from the highest in-band spectral density is measured with a spectrum analyzer connected to the receive antenna while the EUT is operating in transmission mode at the appropriate frequencies. Test Procedure Used ANSI C63.10-2013 Section 6.9.2 Test Settings 1. The signal analyzers automatic bandwidth measurement capability of the spectrum analyzer was used to to perform X = 20. The bandwidth measurement was not influenced by any intermediate power nulls in the fundamental emission. the 20dB bandwidth measurement. The X dB bandwidth parameter was set 2. RBW = 1 5% OBW 3. VBW 3 x RBW 4. Reference level set to keep signal from exceeding maximum input mixer level for linear operation. 5. Detector = Peak 6. Trace mode = max hold 7. Sweep = auto couple 8. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-1. Test Instrument & Measurement Setup Test Notes Both power schemes were investigated and only the worst case is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 13 of 60 EUT Type:
Table 7-2. Conducted 20dB Bandwidth Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 14 of 60 EUT Type:
24021.0GFSKePA0949.5024411.0GFSKePA39949.8024801.0GFSKePA78950.4024023.08DPSKePA01361.0024413.08DPSKePA391362.0024803.08DPSKePA781364.00Frequency [MHz]Data Rate [Mbps]Channel No.Mod.Power Scheme20dB Bandwidth Test Results [kHz]
Plot 7-1. 20dB Bandwidth Plot (Bluetooth, GFSK, ePA Ch. 0) Plot 7-2. 20dB Bandwidth Plot (Bluetooth, GFSK, ePA Ch. 39) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 15 of 60 EUT Type:
Plot 7-3. 20dB Bandwidth Plot (Bluetooth, GFSK, ePA Ch. 78) FCC ID: BCG-A2157 Plot 7-4. 20dB Bandwidth Plot (Bluetooth, 8DPSK, ePA Ch. 0) MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 16 of 60 EUT Type:
Plot 7-5. 20dB Bandwidth Plot (Bluetooth, 8DPSK, ePA Ch. 39) Plot 7-6. 20dB Bandwidth Plot (Bluetooth, 8DPSK, ePA Ch. 78) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 17 of 60 EUT Type:
7.3 Output Power Measurement 15.247 (b.1); RSS-247 [5.4(b)]
Test Overview and Limits Measurement is made while the EUT is operating in non-hopping transmission mode. Peak and Average power measurements are performed using a broadband power meter with a pulse sensor. The maximum permissible output power is 1 Watt. Test Procedure Used ANSI C63.10-2013 Section 7.8.5 ANSI C63.10-2013 Section 11.9.2.3.2 method AVGPM-G Test Settings Peak Power Measurement The maximum peak conducted output power may be measured using a broadband peak RF power meter. The power meter shall have a video bandwidth that is greater than the occupied bandwidth. Method AVGPM-G (Average Power Measurement) Average power measurements were performed only when the EUT was transmitting at its maximum power control level using a broadband power meter with a pulse sensor. The power meter implemented triggering and gating capabilities which were set up such that power measurements were recorded only during the ON time of the transmitter. The trace was averaged over 100 traces to obtain the final measured average power. Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-2. Test Instrument & Measurement Setup for Average Power Measurement Note This unit was tested with all possible data rates and the highest peak power is reported with the unit transmitting at GFSK and 8DPSK. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 18 of 60 EUT Type:
7.3.1 Peak Output Power Measurement 15.247 (b.1); RSS-247 [5.4(b)]
Table 7-3. Peak Conducted Output Power Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 19 of 60 EUT Type:
[dBm][mW]2402GFSKePA017.6157.677-10.407.2136.02-28.812441GFSKePA3917.3153.827-10.406.9136.02-29.112480GFSKePA7817.3854.702-10.406.9836.02-29.042402GFSKiPA013.1220.512-10.402.7236.02-33.302441GFSKiPA3912.7618.880-10.402.3636.02-33.662480GFSKiPA7813.1720.749-10.402.7736.02-33.2524028DPSKePA015.8338.282-10.405.4336.02-30.5924418DPSKePA3916.0039.811-10.405.6036.02-30.4224808DPSKePA7815.7737.757-10.405.3736.02-30.6524028DPSKiPA013.2321.038-10.402.8336.02-33.1924418DPSKiPA3912.8919.454-10.402.4936.02-33.5324808DPSKiPA7812.9219.588-10.402.5236.02-33.50Mod.Power SchemeChannel No.Peak Conducted PowerFrequency [MHz]Ant. Gain [dBi]EIRP[dBm]Limit[dBm]Margin[dB]
7.3.2 Average Output Power Measurement 15.247 (b.1); RSS-247 [5.4(b)]
Table 7-4. Average Conducted Output Power Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 20 of 60 EUT Type:
[dBm][mW]2402GFSKePA017.5056.234-10.407.1036.02-28.922441GFSKePA3917.2853.456-10.406.8836.02-29.142480GFSKePA7817.2753.333-10.406.8736.02-29.152402GFSKiPA013.0019.953-10.402.6036.02-33.422441GFSKiPA3912.7118.664-10.402.3136.02-33.712480GFSKiPA7813.0019.953-10.402.6036.02-33.4224028DPSKePA012.7318.750-10.402.3336.02-33.6924418DPSKePA3912.8819.409-10.402.4836.02-33.5424808DPSKePA7812.7018.621-10.402.3036.02-33.7224028DPSKiPA010.0010.000-10.40-0.4036.02-36.4224418DPSKiPA399.779.484-10.40-0.6336.02-36.6524808DPSKiPA789.859.661-10.40-0.5536.02-36.57Ant. Gain [dBi]Avg Conducted PowerChannel No.EIRP[dBm]Limit[dBm]Margin[dB]Frequency [MHz]Mod.Power Scheme Band Edge Compliance the emission bandwidth. The maximum permissible out-of-band emission 7.4 15.247 (d); RSS-247 [5.5]
Test Overview and Limits EUT operates in hopping and non-hopping transmission mode. Measurement is taken at the highest point located outside of is 20 dBc. Test Procedure Used ANSI C63.10-2013 Section 6.10.4 Test Settings level 1. Start and stop frequency were set such that the band edge would be placed in the center of the plot 2. Span was set large enough so as to capture all out of band emissions near the band edge 3. RBW = 100kHz 4. VBW = 300kHz 5. Detector = Peak 6. Number of sweep points 2 x Span/RBW 7. Trace mode = max hold 8. Sweep time = auto couple 9. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-3. Test Instrument & Measurement Setup Test Notes Out of band conducted spurious emissions at the band edge were investigated for all data rates in hopping and non-hopping modes. The worst case emissions were found with the EUT transmitting at 3 Mbps. Band edge emissions were also investigated with the EUT transmitting in all data rates. Plots of the worst case emissions are shown below. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 21 of 60 EUT Type:
Plot 7-7. Band Edge Plot (Bluetooth with Hopping Disabled, GFSK, ePA Ch. 0) Plot 7-8. Band Edge Plot (Bluetooth with Hopping Disabled, GFSK, ePA Ch. 78) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 22 of 60 EUT Type:
Plot 7-9. Band Edge Plot (Bluetooth with Hopping Enabled, GFSK, ePA) Plot 7-10. Band Edge Plot (Bluetooth with Hopping Enabled, GFSK, ePA) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 23 of 60 EUT Type:
Plot 7-11. Band Edge Plot (Bluetooth with Hopping Disabled, 8DPSK, ePA Ch. 0) Plot 7-12. Band Edge Plot (Bluetooth with Hopping Disabled, 8DPSK, ePA Ch. 78) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 24 of 60 EUT Type:
Plot 7-13. Band Edge Plot (Bluetooth with Hopping Enabled, 8DPSK, ePA) Plot 7-14. Band Edge Plot (Bluetooth with Hopping Enabled, 8DPSK, ePA) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 25 of 60 EUT Type:
Carrier Frequency Separation 7.5 15.247 (a.1); RSS-247 [5.1(b)]
Test Overview and Limit Measurement is made with EUT operating in hopping mode. The minimum permissible channel separation for this system is 2/3 the value of the 20dB BW. Test Procedure Used ANSI C63.10-2013 Section 7.8.2 Test Settings 1. Span = Wide enough to capture peaks of two adjacent channels 2. RBW = 30% of channel spacing. Adjust as necessary to best identify center of each individual channel 3. VBW RBW 4. Sweep = Auto 5. Detector = Peak 6. Trace mode = max hold 7. The trace was allowed to stabilize. 8. Marker-delta function used to determine separation between peaks of the adjacent channels Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-4. Test Instrument & Measurement Setup Test Notes 2. The EUT complies with the minimum channel separation requirement when it is operating in 1x/EDR mode using 79 channels and when operating in AFH mode using 20 channels. 3. Both power schemes were investigated and only the worst case is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 26 of 60 EUT Type:
Table 7-5. Minimum Channel Separation FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 27 of 60 EUT Type:
24021.0GFSKePA00.633Pass24411.0GFSKePA390.633Pass24801.0GFSKePA780.634Pass24023.08DPSKePA00.907Pass24413.08DPSKePA390.908Pass24803.08DPSKePA780.909PassPass/FailMin. Channel Separation [MHz]Mod.Power SchemeFrequency [MHz]Data Rate [Mbps]Channel No. Plot 7-15. Channel Spacing Plot (Bluetooth, GFSK, ePA) Plot 7-16. Channel Spacing Plot (Bluetooth, 8DPSK, ePA) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 28 of 60 EUT Type:
Time of Occupancy 7.6 15.247 (a.1.iii); RSS-247 [5.1(d)]
Test Overview and Limit Measurement is made while EUT is operating in hopping mode with the spectrum analyzer set to zero span. The maximum permissible time of occupancy is 400 ms within a period of 400ms multiplied by the number of hopping channels employed. Test Procedure Used ANSI C63.10-2013 Section 7.8.4 Test Settings 1. Span = zero span, centered on a hopping channel 2. RBW channel spacing and >> 1/T, where T is expected dwell time per channel 3. Sweep = as necessary to capture entire dwell time. Second plot may be required to demonstrate two successive hops on a channel 4. Trigger is set with appropriate trigger delay to place pulse near the center of the plot 5. Detector = peak 6. Trace mode = max hold 7. Marker-delta function used to determine transmit time per hop Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-5. Test Instrument & Measurement Setup Test Notes Both power schemes were investigated and only the worst case is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 29 of 60 EUT Type:
Plot 7-17. Time of Occupancy Plot (Bluetooth, GFSK, ePA) Plot 7-18. Time of Occupancy Plot (Bluetooth, 8DPSK, ePA) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 30 of 60 EUT Type:
Bluetooth Time of Occupancy Calculation Typically, Bluetooth 1x/EDR mode has a channel hopping rate of 1600 hops/s. Since 1x/EDR modes use 5 transmit and 1 receive slot, for a total of 6 slots, the Bluetooth transmitter is actually hopping at a rate of 1600 / 6
= 266.67 hops/s/slot o 400ms x 79 hopping channels = 31.6 sec (Time of Occupancy Limit) o Worst case BT has 266.67 hops/second (for 1x/EDR modes with DH5 operation) o 266.67 hops/second / 79 channels = 3.38 hops/second (# of hops/second on one channel) o 3.38 hops/second/channel x 31.6 seconds = 106.67 hops (# hops over a 31.6 second period) o 106.67 hops x 2.864 ms/channel = 305.50 ms (worst case dwell time for one channel in 1x/EDR modes) With AFH, the number of channels is reduced to a minimum of 20 channels and the channel hopping rate is reduced by 50% to 800 hops/s. AFH mode also uses 6 total slots so the Bluetooth transmitter hops at a rate of 800 / 6 = 133.3 hops/s/slot o 400ms x 20 hopping channels = 8 sec (Time of Occupancy Limit) o Worst case BT has 133.3 hops/second/slot (for AFH mode with DH5 operation) o 133.3 hops/s / 20 channels = 6.67 hops/second (# of hops/second on one channel) o 6.67 hops/s / channel x 8 seconds = 53.34 hops (# hops over a 8 second period) o 53.34 hops x 2.864 ms/channel = 152.76 ms (worst case dwell time for one channel in AFH mode) The measured worst case dwell time is below the limit of 0.4s. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 31 of 60 EUT Type:
Number of Hopping Channels 7.7 15.247 (a.1.iii); RSS-247 [5.1(d)]
Test Overview and Limit Measurement is made while EUT is operating in hopping mode. This frequency hopping system must employ a minimum of 15 hopping channels. Test Procedure Used ANSI C63.10-2013 Section 7.8.3 Test Settings 1. Span = frequency of band of operation (divided into two plots) 2. RBW < 30% of channel spacing or 20dB bandwidth, whichever is smaller. 3. VBW RBW 4. Sweep = auto 5. Detector = peak 6. Trace mode = max hold 7. Trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-6. Test Instrument & Measurement Setup Test Notes 1. The frequency spectrum was broken up into two sub-ranges to clearly show all of the hopping frequencies. In AFH mode, this device operates using 20 channels so the requirement for minimum number of hopping channels is satisfied. 2. Both power schemes were investigated and only the worst case is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 32 of 60 EUT Type:
Plot 7-19. Low End Spectrum Channel Hopping Plot (Bluetooth, GFSK, ePA) Plot 7-20. High End Spectrum Channel Hopping Plot (Bluetooth, GFSK, ePA) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 33 of 60 EUT Type:
Plot 7-21. Low End Spectrum Channel Hopping Plot (Bluetooth, 8DPSK, ePA) Plot 7-22. High End Spectrum Channel Hopping Plot (Bluetooth, 8DPSK, ePA) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 34 of 60 EUT Type:
Conducted Spurious Emissions 7.8 15.247 (d); RSS-247 [5.5]
Test Overview and Limit Conducted out-of-band spurious emissions were investigated from 30MHz up to 25GHz to include the 10th harmonic of the fundamental transmit frequency. The maximum permissible out-of-band emission level is 20 dBc. Test Procedure Used ANSI C63.10-2013 Section 7.8.8 Test Settings 1. Start frequency was set to 30MHz and stop frequency was set to 25GHz (separated into two plots per channel) 2. RBW = 1MHz* (See note below) 3. VBW = 3MHz 4. Detector = Peak 5. Trace mode = max hold 6. Sweep time = auto couple 7. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-7. Test Instrument & Measurement Setup Test Notes 1. Out-of-band conducted spurious emissions were investigated for all data rates and the worst case emissions were found with the EUT transmitting at 1Mbps. The display line shown in the following plots is the limit at 20dB below the fundamental emission level measured in a 100kHz bandwidth. However, the traces in the following plots are measured with a 1MHz RBW to reduce test time, so the display line may not necessarily appear to be 20dB below the level of the fundamental in a 1MHz bandwidth. 2. The unit was tested with all possible mode and power schemes and only the worst case is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 35 of 60 EUT Type:
Plot 7-23. Conducted Spurious Plot (Bluetooth, GFSK, ePA Ch. 0) Plot 7-24. Conducted Spurious Plot (Bluetooth, GFSK, ePA Ch. 0) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 36 of 60 EUT Type:
Plot 7-25. Conducted Spurious Plot (Bluetooth, GFSK, ePA Ch. 39) Plot 7-26. Conducted Spurious Plot (Bluetooth, GFSK, ePA Ch. 39) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 37 of 60 EUT Type:
Plot 7-27. Conducted Spurious Plot (Bluetooth, GFSK, ePA Ch. 78) Plot 7-28. Conducted Spurious Plot (Bluetooth, GFSK, ePA Ch. 78) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 38 of 60 EUT Type:
Radiated Spurious Emission Measurements Above 1GHz 7.9 15.205 15.209 15.247 (d); RSS-Gen [8.9]
Test Overview and Limit All out of band radiated spurious emissions are measured with a spectrum analyzer connected to a receive antenna while the EUT is operating at maximum power and at the appropriate frequencies. Only the radiated emissions of the configuration that produced the worst case emissions are reported in this section. All out of band emissions appearing in a restricted band as specified in Section 15.205 of the Title 47 CFR and Table 7 of RSS-Gen (8.10) must not exceed the limits shown in Table 7-6 per Section 15.209 and RSS-
Gen (8.9). Frequency Above 960.0 MHz Field Strength Measured Distance
[V/m]
500
[Meters]
3 Table 7-6. Radiated Limits Test Procedure Used ANSI C63.10-2013 Section 6.6.4.3 Test Settings Average Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 1MHz 3. VBW = 3MHz 4. Detector = power average (RMS) 5. Number of measurement points = 1001 (Number of points must be > 2 x span/RBW) 6. Sweep time = auto 7. Trace (RMS) averaging was performed over at least 100 traces Peak Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 1MHz 3. VBW = 3MHz 4. Detector = peak 5. Sweep time = auto couple 6. Trace mode = max hold 7. Trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 39 of 60 EUT Type:
Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-8. Radiated Test Setup >1GHz Test Notes 1. All emissions lying in restricted bands specified in 15.205 and Section 8.10 of RSS-Gen are below the limit shown in Table 7-6. 2. The antenna is manipulated through typical positions, polarity and length during the tests. The EUT is manipulated through three orthogonal planes. 3. This unit was tested with its standard battery. 4. The spectrum is measured from 9kHz to the 10th harmonic and the worst-case emissions are reported. 5. The duty cycle correction factor was not applied to noise floor measurements. 6. The wide spectrum spurious emissions plots shown on the following pages are used only for the purpose of emission identification. Any emissions found to be within 20dB of the limit are fully investigated and the results are shown in this section. 7. The "-" shown in the following RSE tables are used to denote a noise floor measurement. 8. The unit was tested with all possible mode and power schemes and only the worst case is reported. Sample Calculation o Field Strength Level [dBV/m] = Analyzer Level [dBm] + 107 + AFCL [dB/m] + Duty Cycle Correction [dB]
o AFCL [dB/m] = Antenna Factor [dB/m] + Cable Loss [dB]
o Margin [dB] = Field Strength Level [dBV/m] Limit [dBV/m]
FCC ID: BCG-A2157 MEASUREMENT REPORT
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Radiated Spurious Emission Measurements 15.205 15.209 15.247 (d); RSS-Gen [8.9]
Plot 7-29. Radiated Spurious Plot above 1GHz (BT GFSK ePA Ch. 0) Plot 7-30. Radiated Spurious Plot above 1GHz (BT GFSK ePA Ch. 39) Plot 7-31. Radiated Spurious Plot above 1GHz (BT GFSK ePA Ch. 78) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 41 of 60 EUT Type:
Radiated Spurious Emissions Measurements (Above 18GHz) 15.209; RSS-Gen [8.9]
Plot 7-32. Radiated Spurious Plot above 18GHz GFSK ePA Ch. 39, Pol. H Plot 7-33. Radiated Spurious Plot above 18GHz GFSK ePA Ch. 39, Pol. V FCC ID: BCG-A2157 MEASUREMENT REPORT
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Radiated Spurious Emission Measurements 15.205 15.209 15.247 (d); RSS-Gen [8.9]
Worst Case Mode:
Worst Case Modulation:
Worst Case Power Scheme:
Measurement Distance:
Operating Frequency:
Channel:
Bluetooth GFSK ePA 3 Meters 2402MHz 0 Table 7-7. Radiated Measurements Worst Case Mode:
Worst Case Modulation:
Worst Case Power Scheme:
Measurement Distance:
Operating Frequency:
Channel:
Bluetooth GFSK ePA 3 Meters 2441MHz 39 Table 7-8. Radiated Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 43 of 60 EUT Type:
4804.00AvgH---78.625.5033.8853.98-20.104804.00PeakH---67.095.5045.4173.98-28.5712010.00AvgH---80.0615.0041.9453.98-12.0412010.00PeakH---69.9115.0052.0973.98-21.89Frequency [MHz]DetectorAnt. Pol. [H/V]Antenna Height [cm]Turntable Azimuth [degree]Field Strength [dBV/m]Limit [dBV/m]Margin [dB]Analyzer Level [dBm]AFCL [dB/m]4882.00AvgH---79.095.6533.5653.98-20.414882.00PeakH---67.815.6544.8473.98-29.137323.00AvgH107186-78.578.4736.9053.98-17.087323.00PeakH107186-67.788.4747.6973.98-26.2912205.00AvgH210215-78.2914.9843.6953.98-10.2912205.00PeakH210215-69.3814.9852.6073.98-21.38Frequency [MHz]DetectorAnt. Pol. [H/V]Antenna Height [cm]Turntable Azimuth [degree]Field Strength [dBV/m]Limit [dBV/m]Margin [dB]Analyzer Level [dBm]AFCL [dB/m]
Radiated Spurious Emission Measurements 15.205 15.209 15.247 (d); RSS-Gen [8.9]
Worst Case Mode:
Worst Case Modulation:
Worst Case Power Scheme:
Measurement Distance:
Operating Frequency:
Channel:
Bluetooth GFSK ePA 3 Meters 2480MHz 78 Table 7-9. Radiated Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 44 of 60 EUT Type:
4960.00AvgH---78.625.7634.1453.98-19.844960.00PeakH---67.215.7645.5573.98-28.437440.00AvgV283305-78.178.9237.7553.98-16.237440.00PeakV283305-68.348.9247.5873.98-26.4012400.00AvgV---83.1115.8839.7753.98-14.2112400.00PeakV---72.0215.8850.8673.98-23.12AFCL [dB/m]Frequency [MHz]DetectorAnt. Pol. [H/V]Analyzer Level [dBm]Antenna Height [cm]Turntable Azimuth [degree]Margin [dB]Field Strength [dBV/m]Limit [dBV/m]
Simultaneous Tx Radiated Spurious Measurements 15.247 15.205 & 15.209; RSS-Gen [8.9]
Description Antenna Channel Operating Frequency (MHz) Modulation/Mode Bluetooth FCM 39 2441 LTE FCM 26365 1882.5 GFSK/ePA QPSK/1RB/20MHz Table 7-10. Worst Case Simultaneous Transmission Config Plot 7-34. Radiated Spurious Plot above 1GHz Table 7-11. Radiated Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 45 of 60 EUT Type:
4882.00AvgV110315-78.355.8234.4753.98-19.514882.00PeakV110315-67.455.8245.3773.98-28.617323.00AvgV102322-78.0110.0639.0553.98-14.937323.00PeakV102322-68.9210.0648.1473.98-25.8412205.00AvgV - - -85.1219.6241.5053.98-12.4812205.00PeakV - - -74.5319.6252.0973.98-21.892999.50AvgV143325-73.0814.0347.9553.98-6.032999.50PeakV143325-64.1414.0356.8973.98-17.091324.00AvgV125325-64.877.4449.5753.98-4.411324.00PeakV125325-54.707.4459.7473.98-14.24Field Strength [dBV/m]Turntable Azimuth [degree]Frequency [MHz]DetectorAnt. Pol. [H/V]Antenna Height [cm]Limit [dBV/m]Margin [dB]Analyzer Level [dBm]AFCL [dB/m]
Plot 7-35. Radiated Spurious Plot Above 18GHz (Ant. Pol. H) Plot 7-36. Radiated Spurious Plot Above 18GHz (Ant. Pol. V) FCC ID: BCG-A2157 MEASUREMENT REPORT
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7.10 Radiated Restricted Band Edge Measurements 15.205 15.209 15.247 (d); RSS-Gen [8.9]
The radiated restricted band edge measurements are measured with an EMI test receiver connected to the receive antenna while the EUT is transmitting. Two different amplitude offsets were used depending on whether peak or average measurements were measured. The average measurements use a duty cycle correction factor
(DCCF). The amplitude offset shown in the following plots for average measurements was calculated using the formula:
Offset (dB) = (Antenna Factor + Cable Loss + Attenuator) Preamplifier Gain + DCCF Worst Case Mode:
Worst Case Modulation:
Worst Case Power Scheme:
Measurement Distance:
Operating Frequency:
Channel:
Bluetooth GFSK ePA 3 Meters 2402MHz 0 Plot 7-37. Radiated Restricted Lower Band Edge Measurement FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 47 of 60 EUT Type:
Radiated Restricted Band Edge Measurements 15.205 15.209 15.247 (d); RSS-Gen [8.9]
The amplitude offset shown in the following plots for peak measurements was calculated using the formula:
Offset (dB) = (Antenna Factor + Cable Loss + Attenuator) Preamplifier Gain Worst Case Mode:
Worst Case Modulation:
Worst Case Power Scheme:
Measurement Distance:
Operating Frequency:
Channel:
Bluetooth 8DPSK ePA 3 Meters 2402MHz 0 Plot 7-38. Radiated Restricted Lower Band Edge Measurement FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 48 of 60 EUT Type:
Radiated Restricted Band Edge Measurements 15.205 15.209 15.247 (d); RSS-Gen [8.9]
Worst Case Mode:
Worst Case Modulation:
Worst Case Power Scheme:
Measurement Distance:
Operating Frequency:
Channel:
Bluetooth GFSK ePA 3 Meters 2480MHz 78 Plot 7-39. Radiated Restricted Upper Band Edge Measurement FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 49 of 60 EUT Type:
Radiated Restricted Band Edge Measurements 15.205 15.209 15.247 (d); RSS-Gen [8.9]
The amplitude offset shown in the following plots for peak measurements was calculated using the formula:
Offset (dB) = (Antenna Factor + Cable Loss + Attenuator) Preamplifier Gain Worst Case Mode:
Worst Case Modulation:
Worst Case Power Scheme:
Measurement Distance:
Operating Frequency:
Channel:
Bluetooth 8DPSK ePA 3 Meters 2480MHz 78 Plot 7-40. Radiated Restricted Upper Band Edge Measurement FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 50 of 60 EUT Type:
7.11 Radiated Spurious Emissions Measurements Below 1GHz 15.209; RSS-Gen [8.9]
Test Overview and Limit All out of band radiated spurious emissions are measured with a spectrum analyzer connected to a receive antenna while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. All data rates and modes were investigated for radiated spurious emissions. Only the radiated emissions of the configuration that produced the worst case emissions are reported in this section. All out of band emissions appearing in a restricted band as specified in Section 15.205 of the Title 47 CFR and Table 7 of RSS-Gen (8.10) must not exceed the limits shown in Table 7-12 per Section 15.209 and RSS-Gen (8.9). Field Strength Measured Distance
[V/m]
2400/F (kHz) 24000/F (kHz) 30 100 150 200 500
[Meters]
300 30 30 3 3 3 3 Table 7-12. Radiated Limits Frequency 0.009 0.490 MHz 0.490 1.705 MHz 1.705 30.00 MHz 30.00 88.00 MHz 88.00 216.0 MHz 216.0 960.0 MHz Above 960.0 MHz Test Procedures Used ANSI C63.10-2013 Test Settings Quasi-Peak Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 120kHz (for emissions from 30MHz 1GHz) 3. Detector = quasi-peak 4. Sweep time = auto couple 5. Trace mode = max hold 6. Trace was allowed to stabilize Peak Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 100kHz (for emissions from 30MHz 1GHz) 3. VBW = 300kHz 4. Detector = peak 5. Sweep time = auto couple 6. Trace mode = max hold 7. Trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
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Test Setup The EUT and measurement equipment were set up as shown in the diagrams below. Figure 7-9. Radiated Test Setup < 30Mhz Figure 7-10. Radiated Test Setup < 1GHz FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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Test Notes 1. All emissions lying in restricted bands specified in 15.205 and RSS-Gen (8.10) are below the limit shown in Table 7-12. 2. The broadband receive antenna is manipulated through vertical and horizontal polarizations during the tests. The EUT is manipulated through three orthogonal planes. 3. This unit was tested with its standard battery. 4. The spectrum is investigated using a peak detector and final measurements are recorded using CISPR quasi peak detector on emissions that were within 6dB of the limit. The worst-case emissions are reported however emissions whose levels were not within 20dB of the respective limits were not reported. 5. Emissions were measured at a 3 meter test distance. 6. Emissions are investigated while operating on the center channel of the mode, band, and modulation that produced the worst case results during the transmitter spurious emissions testing. 7. No spurious emissions were detected within 20dB of the limit below 30MHz. 8. The results recorded using the broadband antenna is known to correlate with the results obtained by using a tuned dipole with an acceptable degree of accuracy. The VSWR for the measurement antenna was found to be less than 2:1. 9. The wide spectrum spurious emissions plots shown on the following pages are used only for the purpose of emission identification. There were no emissions detected in the 30MHz 1GHz frequency range, as shown in the subsequent plots. 10. The unit was tested with all possible mode and power schemes and only the highest emission is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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Radiated Spurious Emissions Measurements (Below 1GHz) 15.209; RSS-Gen [8.9]
Plot 7-41. Radiated Spurious Plot below 1GHz GFSK ePA Ch.39, with WCP + AC/DC Adapter Table 7-13. Radiated Spurious Emissions Below 1GHz GFSK ePA Ch.39, with WCP + AC/DC Adapter FCC ID: BCG-A2157 MEASUREMENT REPORT
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0 10 20 30 40 50 60 70 8030M 5060 80100M200300400500 8001GLevel in dBV/mFrequency in HzPreview Result 1V-PK+Preview Result 1H-PK+Critical_Freqs PK+FCC Part 15C 30MHz-1GHzFCC Part 15C 30MHz-1GHz_-6Final_Result QPKFCC Part 15C 30MHz-1GHzFCC Part 15C 30MHz-1GHz_-631.70Max-PeakV100212-68.50-10.4128.0940.00-11.9137.18Max-PeakV10062-66.50-13.0827.4240.00-12.5862.88Max-PeakV25010-68.21-21.5717.2240.00-22.78182.15Max-PeakH10014-64.69-18.9423.3743.52-20.15277.50Max-PeakH10086-68.40-15.9222.6846.02-23.34331.38Max-PeakH1006-70.48-14.0622.4646.02-23.56Limit [dBV/m]Antenna Height [cm]Turntable Azimuth [degree]Analyzer Level [dBm]AFCL [dB/m]Field Strength [dBV/m]Margin [dB]Frequency [MHz]DetectorAnt. Pol. [H/V]
Simultaneous Tx Radiated Spurious Measurements 15.247 15.205 & 15.209; RSS-Gen [8.9]
Description Antenna Channel Operating Frequency (MHz) Modulation/Mode Bluetooth FCM 39 2441 LTE FCM 26365 1882.5 GFSK/ePA QPSK/1RB/20MHz Table 7-14. Worst Case Simultaneous Transmission Config Plot 7-42. Radiated Spurious Plot Below 1GHz (with WCP + AC/DC Adapter) Table 7-15. Radiated Spurious Emissions Below 1GHz (with WCP + AC/DC Adapter) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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0 20 40 60 8030M 5060 80100M200300400500 8001GLevel in dBV/mFrequency in HzPreview Result 1V-PK+Preview Result 1H-PK+Critical_Freqs PK+FCC Part 15C 30MHz-1GHzFCC Part 15C 30MHz-1GHz_-6Final_Result QPKFCC Part 15C 30MHz-1GHz36.69Max-PeakV100215-68.10-12.8626.0440.00-13.9637.37Max-PeakV100286-67.02-13.1526.8340.00-13.1748.43Max-PeakV10030-72.38-20.3914.2340.00-25.7794.46Max-PeakV100122-69.70-18.1519.1543.52-24.37113.08Max-PeakV10015-76.94-17.0413.0243.52-30.51138.59Max-PeakH250244-76.29-18.4812.2343.52-31.30Analyzer Level [dBm]AFCL [dB/m]Field Strength [dBV/m]Limit [dBV/m]Margin [dB]Frequency [MHz]DetectorAnt. Pol. [H/V]Antenna Height [cm]Turntable Azimuth [degree]
7.12 AC Line Conducted Measurement Data 15.207; RSS-Gen [8.8]
Test Overview and Limit All AC line conducted spurious emissions are measured with a receiver connected to a grounded LISN while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. All data rates and modes were investigated for conducted spurious emissions. Only the conducted emissions of the configuration that produced the worst case emissions are reported in this section. All conducted emissions must not exceed the limits shown in the table below, per Section 15.207 and RSS-Gen (8.8). Frequency of emission Conducted Limit (dBV)
(MHz) 0.15 0.5 0.5 5 5 30 Quasi-peak 66 to 56*
56 60 Average 56 to 46*
46 50 Table 7-16. Conducted Limits
*Decreases with the logarithm of the frequency. Test Procedures Used ANSI C63.10-2013, Section 6.2 Test Settings Quasi-Peak Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the spurious emission of interest 2. RBW = 9kHz (for emissions from 150kHz 30MHz) 3. Detector = quasi-peak 4. Sweep time = auto couple 5. Trace mode = max hold 6. Trace was allowed to stabilize Average Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the spurious emission of interest 2. RBW = 9kHz (for emissions from 150kHz 30MHz) 3. Detector = RMS 4. Sweep time = auto couple 5. Trace mode = max hold 6. Trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-11. Test Instrument & Measurement Setup Test Notes 1. 2. 3. 4. All modes of operation were investigated and the worst-case emissions are reported using mid channel. The emissions found were not affected by the choice of channel used during testing. The limit for an intentional radiator from 150kHz to 30MHz are specified in 15.207 and RSS-Gen (8.8). Corr. (dB) = Cable loss (dB) + LISN insertion factor (dB) QP/AV Level (dBV) = QP/AV Analyzer/Receiver Level (dBV) + Corr. (dB) 5. Margin (dB) = QP/AV Limit (dBV) - QP/AV Level (dBV) 6. 7. The traces on the plots were measured with a Quasi-peak and Average detectors. Deviations to the Specifications: None. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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Plot 7-43. Line-Conducted Test Plot GFSK ePA Ch.39 (L1, with WCP + AC/DC Adapter) Table 7-17. Line-Conducted Test Data GFSK ePA Ch.39 (L1, with WCP + AC/DC Adapter) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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0 10 20 30 40 50 60 70 80 90150k 300400500 8001M2M3M4M5M6 810M20M30MLevel in dBVFrequency in HzPreview Result 2-AVGPreview Result 1-QPKCritical_Freqs AVGCritical_Freqs QPKFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AVFinal_Result QPKFinal_Result AVGFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AV Plot 7-44. Line-Conducted Test Plot GFSK ePA Ch.39 (N, with WCP + AC/DC Adapter) Table 7-18. Line-Conducted Test Data GFSK ePA Ch.39 (N, with WCP + AC/DC Adapter) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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0 10 20 30 40 50 60 70 80 90150k 300400500 8001M2M3M4M5M6 810M20M30MLevel in dBVFrequency in HzPreview Result 2-AVGPreview Result 1-QPKCritical_Freqs AVGCritical_Freqs QPKFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AVFinal_Result QPKFinal_Result AVGFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AV 8 . 0 C O N C L U S I O N the Apple Watch The data collected FCC ID: BCG-A2157 is in compliance with Part 15 Subpart C (15.247) of the FCC Rules and RSS-247 of the Innovation, Science and Economic Development Canada Rules. tested and show relate only item(s) that the to FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-08.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 60 of 60 EUT Type:
1 2 3 4 | NFC Test Report | Test Report | 1.25 MiB | March 09 2019 / October 09 2019 |
PCTEST ENGINEERING LABORATORY, INC. 18855 Adams Court, Morgan Hill, CA 95037 USA Tel. 410.290.6652 / Fax 410.290.6654 http://www.pctest.com MEASUREMENT REPORT FCC PART 15.225 / ISED RSS-210 NFC Date of Testing:
05/01/2019 - 08/09/2019 Test Site/Location:
PCTEST Lab. Morgan Hill, CA, USA Test Report Serial No.:
1C1905130011-09.BCG BCG-A2157 579C-A2157 Apple Inc. Certification A2157 Watch 13.56MHz Low Power Communications Device Transmitter (DXX) Part 15 Subpart C (15.225) RSS-210 Issue 9 ANSI C63.10-2013 Applicant Name:
Apple Inc. One Apple Park Way Cupertino, CA 95014 United States FCC ID:
IC:
APPLICANT:
Application Type:
Model/HVIN:
EUT Type:
Frequency:
FCC Classification:
FCC Rule Part(s):
ISED Specification:
Test Procedure(s):
This equipment has been shown to be capable of compliance with the applicable technical standards as indicated in the measurement report and was tested in accordance with the measurement procedures specified in ANSI C63.10-2013. Test results reported herein relate only to the item(s) tested. I attest to the accuracy of data. All measurements reported herein were performed by me or were made under my supervision and are correct to the best of my knowledge and belief. I assume full responsibility for the completeness of these measurements and vouch for the qualifications of all persons taking them. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-09.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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T A B L E O F C O N T E N T S 1.0 Introduction ...................................................................................................................................... 3 1.1 Scope ..................................................................................................................................................... 3 1.2 PCTEST Test Location .......................................................................................................................... 3 1.3 Test Facility / Accreditations .................................................................................................................. 3 2.0 PRODUCT INFORMATION ............................................................................................................. 4 2.1 Equipment Description ........................................................................................................................... 4 2.2 Device Capabilities ................................................................................................................................ 4 2.3 Test Support Equipment ........................................................................................................................ 5 2.4 Test Configuration ................................................................................................................................. 5 2.5 Software and Firmware .......................................................................................................................... 5 2.6 EMI Suppression Device(s)/Modifications .............................................................................................. 5 3.0 DESCRIPTION OF TEST ................................................................................................................ 6 3.1 Evaluation Procedure ............................................................................................................................ 6 3.2 AC Line Conducted Emissions .............................................................................................................. 6 3.3 Radiated Emissions ............................................................................................................................... 7 3.4 Environmental Conditions ...................................................................................................................... 7 4.0 ANTENNA REQUIREMENTS .......................................................................................................... 8 5.0 MEASUREMENT UNCERTAINTY .................................................................................................. 9 6.0 7.0 TEST EQUIPMENT CALIBRATION DATA .................................................................................... 10 TEST DATA ................................................................................................................................... 11 7.1 Summary ............................................................................................................................................. 11 7.2 20dB Bandwidth Measurement ............................................................................................................ 12 7.3 Frequency Stability Test Data .............................................................................................................. 16 7.4 In-Band Radiated Spurious Emission Measurements .......................................................................... 21 7.5 Radiated Spurious Emission Measurements, Out-of-Band .................................................................. 25 7.6 AC Line Conducted Measurement Data .............................................................................................. 31 8.0 CONCLUSION ............................................................................................................................... 35 FCC ID: BCG-A2157 MEASUREMENT REPORT
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1.0 I N T R O D U C T I O N Scope 1.1 Measurement and determination of electromagnetic emissions (EMC) of radio frequency devices including intentional and/or unintentional radiators for compliance with the technical rules and regulations of the Federal Communications Commission and the Innovation, Science and Economic Development Canada. 1.2 PCTEST Test Location These measurement tests were conducted at the PCTEST Engineering Laboratory, Inc. facility located at 18855 Adams Court, Morgan Hill, CA 95037. The measurement facility is compliant with the test site requirements specified in ANSI C63.4-2014 and KDB 414788 D01 v01r01. 1.3 Measurements were performed at PCTEST Engineering Lab located in Morgan Hill, CA 95037, U.S.A. PCTEST is an ISO 17025-2005 accredited test facility under the American Association for Laboratory Accreditation (A2LA) with Certificate number 2041.02 for Specific Absorption Rate (SAR), Hearing Aid Compatibility (HAC) testing, where applicable, and Electromagnetic Compatibility (EMC) testing for FCC and Innovation, Science, and Economic Development Canada rules. Test Facility / Accreditations PCTEST TCB is a Telecommunication Certification Body (TCB) accredited to ISO/IEC 17065-2012 by A2LA
(Certificate number 2041.03) in all scopes of FCC Rules and ISED Standards (RSS). PCTEST facility is a registered (22831) test laboratory with the site description on file with ISED. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-09.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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2 . 0 P R O D U C T I N F O R M A T I O N 2.1 Equipment Description The Equipment Under Test (EUT) is the Apple Watch FCC ID: BCG-A2157. The test data contained in this report pertains only to the emissions due to the NFC transmitter of the EUT. Test Device Serial No.: D92YF005M95Y, D92YF00PM8CJ 2.2 Device Capabilities This device contains the following capabilities:
850/1700/1900 WCDMA/HSPA, Multi-band LTE, 802.11b/g/n WLAN, Bluetooth (1x, EDR, HDR4, HDR8, LE), NFC Note: The device supports different modes, types, and data rates of NFC signal. FCC ID: BCG-A2157 Table 2-1. NFC Configuration MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 4 of 35 EUT Type:
ModeTypeData RateA848 kbpsA424 kbpsA212 kbpsA106 kbpsB848 kbpsB424 kbpsB212 kbpsB106 kbpsF424 kbpsF212 kbpsA848 kbpsA424 kbpsA212 kbpsA106 kbpsB848 kbpsB424 kbpsB212 kbpsB106 kbpsF424 kbpsF212 kbps100% Ask 1 out of 426.48 kbps10 % Ask 1 out of 426.48 kbps100% Ask 1 out of 2561.66 kbps10 % Ask 1 out of 2561.66 kbpsReaderCE(Card Emulation) 2.3 Test Support Equipment Table 2-2. Test Support Equipment Used Test Configuration 2.4 The EUT was tested per the guidance of ANSI C63.10-2013. ANSI C63.10-2013 was used to reference the appropriate EUT setup for radiated spurious emissions testing and AC line conducted testing. See Sections 3.2 for AC line conducted emissions test setups, 3.3 for radiated emissions test setups. The worst case configuration was investigated for all combinations of the four materials, aluminum, stainless steel, ceramic, and aluminum/ceramic mix, and various types of wristbands, metal and non-metal wristbands. The store display sample was investigated and determined as not the worst case. The EUT was also investigated with and without wireless charger. The worst case configuration found was used for all testing. The emissions below 1GHz were tested with the highest transmitting modulation and the worst case configuration. The EUT was manipulated through three orthogonal planes of X-orientation (flatbed), Y-orientation (landscape), and Z-orientation (portrait) during the testing. Only the worst case emissions were reported in this test report. For AC line conducted and radiated test below 1GHz, following configuration were investigated and worst case was reported.
- EUT powered by AC/DC adaptor via USB cable with wireless charger
- EUT powered by host PC via USB cable with wireless charger 2.5 Software and Firmware The test was conducted with firmware version wOS 6.0 installed on the EUT. 2.6 EMI Suppression Device(s)/Modifications No EMI suppression device(s) were added and no modifications were made during testing. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-09.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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1Apple MacBookModel:A1398S/N:C2QKP008F6F3w/AC/DC AdapterModel:A1435S/N:N/A2Apple USB CableModel:KanziS/N:311C81w/ Charging DockModel:FAPS73S/N:17481001022w/ DockModel:X241S/N:GW17F01ST223USB Lightning CableModel:N/AS/N:N/Aw/ AC AdapterModel:A1385S/N:N/A4Wireless Charging Pad (WCP)Model:EVTS/N:DLC915600ECLNWL3KWireless Charging Pad (WCP)Model:EVTS/N:DLC9156006TLNWK3V5Test Pathfinder Sinsa BoardModel:X1456S/N:920-062535-01w/ SiP CradleModel:P1 X1454SS/N:920-06373-026DC Power SupplyModel:KPS3010DS/N:N/A7Mobile Comm DC SourceModel:66321DS/N:MY52000555 3 . 0 D E S C R I P T I O N O F T E S T 3.1 Evaluation Procedure The measurement procedure described in the American National Standard of Procedures for Compliance Testing of Unlicensed Wireless Devices (ANSI C63.10-2013) was used in the measurement of the EUT. Deviation from measurement procedure.....................................None 3.2 AC Line Conducted Emissions The line-conducted facility is located inside a 7m x 3.66m x 2.7m shielded enclosure. The shielded enclosure is manufactured by AP Americas. The shielding effectiveness of the shielded room is in accordance with MIL-Std-
285 or NSA 65-6. A 1m x 1.5m wooden table 80cm high is placed 40cm away from the vertical wall and 80cm away from the sidewall of the shielded room. Two 10kHz-30MHz, 50/50H Line-Impedance Stabilization Networks (LISNs) are bonded to the shielded room floor. Power to the LISNs is filtered by external high-current high-insertion loss power line filters. The external power line filter is EPCOS 2X60A Power Line Filter (100dB Attenuation, 14kHz-18GHz) and the two EPCOs 2X48A filters (100dB Minimum Insertion Loss, 14kHz 10GHz). These filters attenuate ambient signal noise from entering the measurement lines. These filters are also bonded to the shielded enclosure. The EUT is powered from one LISN and the support equipment is powered from the second LISN. If the EUT is a DC-powered device, power will be derived from the source power supply it normally will be powered from and this supply line(s) will be connected to the second LISN. All interconnecting cables more than 1 meter were shortened to a 1 meter length by non-inductive bundling (serpentine fashion) and draped over the back edge of the test table. All cables were at least 40cm above the horizontal reference groundplane. Power cables for support equipment were routed down to the second LISN while ensuring that that cables were not draped over the second LISN. Sufficient time for the EUT, support equipment, and test equipment was allowed in order for them to warm up to their normal operating condition. The RF output of the LISN was connected to the spectrum analyzer and exploratory measurements were made to determine the frequencies producing the maximum emission from the EUT. The spectrum was scanned from 150kHz to 30MHz with a spectrum analyzer. The detector function was set to peak mode for exploratory measurements while the bandwidth of the analyzer was set to 10kHz. The EUT, support equipment, and interconnecting cables were arranged and manipulated to maximize each emission. Once the worst case emissions have been identified, the one EUT cable configuration/arrangement and mode of operation that produced these emissions is used for final measurements on the same test site. The analyzer is set to CISPR quasi-peak and average detectors with a 9kHz resolution bandwidth for final measurements. Line conducted emissions test results are shown in Section 7.6. Automated test software was used to perform the AC line conducted emissions testing. Automated measurement software utilized is Rohde & Schwarz EMC32, Version 10.35.1. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-09.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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3.3 Radiated Emissions The radiated test facilities consisted of an indoor 3 meter semi-anechoic chamber used for final measurements and exploratory measurements, when necessary. The measurement area is contained within the semi-anechoic chamber which is shielded from any ambient interference. The test site inside the chamber is a 6m x 5.2m elliptical, obstruction-free area in accordance with Figure 5.7 of Clause 5 in ANSI C63.4-2014. Absorbers are arranged on the floor between the turn table and the antenna mast in such a way so as to maximize the reduction of reflections for measurements above 1GHz. An 80cm tall test table made of Styrodur is placed on top of the turn table. For measurements above 1GHz, an additional Styrodur pedestal is placed on top of the test table to bring the total table height to 1.5m. Per KDB 414788, radiated emission test sites other than open-field test sites (e.g., shielded anechoic chambers), may be employed for emission measurements below 30MHz if characterized so that the measurements correspond to those obtained at an open-field test site. To determine test site equivalency, a reference sample transmitting at 149kHz was measured on an open field test site (asphalt with no ground plane) and then measured in the 3m semi-anechoic chamber. A calibrated 60cm loop antenna was rotated about its vertical axis while the reference device was rotated through the X, Y and Z axis in order to capture the worst case level. A maximum deviation of 2.77dB at 149kHz was measured when comparing the 3 meter semi-anechoic chamber to the open field site. For all measurements, the spectrum was scanned through all EUT azimuths and from 1 to 4 meter receive antenna height using a broadband antenna from 30MHz up to the upper frequency shown in 15.33 depending on the highest frequency generated or used in the device or on which the device operates or tunes. For frequencies above 1GHz, linearly polarized double ridge horn antennas were used. For frequencies below 30MHz, a calibrated loop antenna was used. When exploratory measurements were necessary, they were performed at 1 meter test distance inside the semi-anechoic chamber using broadband antennas, broadband amplifiers, and spectrum analyzers to determine the frequencies and modes producing the maximum emissions. Sufficient time for the EUT, support equipment, and test equipment was allowed in order for them to warm up to their normal operating condition. The test set-up was placed on top of the 1 x 1.5 meter table. The EUT, support equipment, and interconnecting cables were arranged and manipulated to maximize each emission. Appropriate precaution was taken to ensure that all emissions from the EUT were maximized and investigated. The system configuration, mode of operation, turntable azimuth, and receive antenna height was noted for each frequency found. Final measurements were made in the semi-anechoic chamber using calibrated, linearly polarized broadband and horn antennas. The test setup was configured to the setup that produced the worst case emissions. The spectrum analyzer was set to investigate all frequencies required for testing to compare the highest radiated disturbances with respect to the specified limits. The turntable containing the EUT was rotated through 360 degrees and the height of the receive antenna was varied 1 to 4 meters and stopped at the azimuth and height producing the maximum emission. Each emission was maximized by changing the orientation of the EUT through three orthogonal planes and changing the polarity of the receive antenna, whichever produced the worst-case emissions. 3.4 Environmental Conditions The temperature is controlled within range of 15oC to 35oC. The relative humidity is controlled within range of 10%
to 75%. The atmospheric pressure is monitored within the range 86-106kPa (860-1060mbar). FCC ID: BCG-A2157 MEASUREMENT REPORT
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4 . 0 A N T E N N A R E Q U I R E M E N T S Excerpt from 15.203 of the FCC Rules/Regulations:
An intentional radiator antenna shall be designed to ensure that no antenna other than that furnished by the responsible party can be used with the device. The use of a permanently attached antenna or of an antenna that uses a unique coupling to the intentional radiator shall be considered sufficient to comply with the provisions of this section. The antenna of the EUT are permanently attached. This unit was tested with its standard battery. Conclusion:
The EUT complies with the requirement of 15.203. FCC ID: BCG-A2157 MEASUREMENT REPORT
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5 . 0 M E A S U R E M E N T U N C E R T A I N T Y The measurement uncertainties shown below were calculated in accordance with the requirements of ANSI C63.10-2013. All measurement uncertainty values are shown with a coverage factor of k = 2 to indicate a 95% level of confidence. The measurement uncertainty shown below meets or exceeds the UCISPR measurement uncertainty values specified in CISPR 16-4-2 and, thus, can be compared directly to specified limits to determine compliance. Contribution Expanded Uncertainty (dB) Line Conducted Disturbance Radiated Disturbance (<1GHz) 2.48 4.15 FCC ID: BCG-A2157 MEASUREMENT REPORT
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6 . 0 T E S T E Q U I P M E N T C A L I B R A T I O N D A T A Test Equipment Calibration is traceable to the National Institute of Standards and Technology (NIST). Measurements antennas used during testing were calibrated in accordance to the requirements of ANSI C63.5-
2017. Table 6-1. Annual Test Equipment Calibration Schedule Note:
For equipment listed above that has a calibration date or calibration due date that falls within the test date range, care was taken to ensure that this equipment was used after the calibration date and before the calibration due date. FCC ID: BCG-A2157 MEASUREMENT REPORT
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Manufacturer Model Description Cal Date Cal Interval Cal Due Serial Number Agilent TechnologiesN9030A 3Hz-44GHz PXA Signal Analyzer 3/13/2019Annual3/13/2020MY49430244 COM-POWER LIN-120A LISN 3/13/2019Annual3/13/2020241297ESPECSU-241Table Top Temperature Chamber8/10/2018Annual8/10/201992009574ETS-Lindgren118490Pre-Amplifier (30MHz - 6GHz)8/31/2018Annual8/31/2019213236ETS-Lindgren3142EBiConiLog Antenna (30MHz - 6GHz)12/11/2018Annual12/11/2019224569Rohde & Schwarz ESW44EMI Test Receiver11/20/2018Annual11/20/2019101570Rohde & Schwarz HFH2-Z2 Loop Antenna 3/21/2019Annual 3/21/2020100519 7 . 0 T E S T D A T A 7.1 Summary Company Name:
FCC ID:
Apple Inc. BCG-A2157 FCC Classification:
Low Power Communications Device Transmitter (DXX) Frequencies Examined:
13.56MHz FCC Part Section(s) RSS Section(s) Test Description Test Limit Test Test Condition Result Reference 2.1049 RSS-Gen [6.7]
20 dB Bandwidth N/A PASS Section 7.2 15.225
(a)(b)(c) RSS-210 [B.6]
In-Band Emissions 15.225 (d) 15.209 RSS-Gen [8.9]
Out-of-Band Emissions 15,848V/m @ 30m 13.553 13.567 MHz 334V/m @ 30m 13.410 13.553 MHz 13.567 13.710 MHz 106V/m @ 30m 13.110 13.410 MHz 13.710 14.010 MHz Emissions outside of the specified band (13.110 14.010 MHz) must meet the radiated limits detailed in 15.209 (RSS-
Gen [8.9]) PASS Section 7.4 RADIATED PASS Section 7.5 15.225 (e) RSS-210 [B.6]
Frequency Stability Tolerance 0.01% of Operating Frequency Temperature Chamber PASS Section 7.3 15.207 RSS-Gen [8.8]
AC Conducted Emissions 150kHz 30MHz
< FCC 15.207 limits
(RSS-Gen) LINE CONDUCTED PASS Section 7.6 Note:
This unit was tested with its standard battery. Table 7-1. Summary of Test Results FCC ID: BCG-A2157 MEASUREMENT REPORT
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20dB Bandwidth Measurement 7.2 2.1049; RSS-Gen (6.7) Test Overview and Limit The bandwidth at 20dB down from the highest in-band spectral density is measured with a spectrum analyzer connected to the receive antenna while the EUT is operating in transmission mode at the appropriate frequency. Test Procedure Used ANSI C63.10-2013 Section 6.9.2 Test Settings 1. The signal analyzers automatic bandwidth measurement capability of the spectrum analyzer was used to to perform X = 20. The bandwidth measurement was not influenced by any intermediate power nulls in the fundamental emission. the 20dB bandwidth measurement. The X dB bandwidth parameter was set 2. RBW = 1 5% OBW 3. VBW 3 x RBW 4. Reference level set to keep signal from exceeding maximum input mixer level for linear operation. 5. Detector = Peak 6. Trace mode = max hold 7. Sweep = auto couple 8. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. EUT Spectrum Analyzer Figure 7-1. Test Instrument & Measurement Setup Test Notes All possible configurations were investigated and only the worst case is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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Frequency 13.56MHz 13.56MHz 13.56MHz 13.56MHz 13.56MHz Configuration CE A 848kbps CE B 848kbps CE F 424kbps Reader 10% Ask 1 out of 4 Reader 10% Ask 1 out of 256 20dB Bandwidth 49.86 kHz 50.35 kHz 50.63 kHz 92.51 kHz 130.70 kHz Table 7-2. 20dB Bandwidth Measurement Plot 7-1. 20dB Bandwidth Plot (CE A 848kbps) FCC ID: BCG-A2157 MEASUREMENT REPORT
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Plot 7-2. 20dB Bandwidth Plot (CE B 848kbps) Plot 7-3. 20dB Bandwidth Plot (CE F 424kbps) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 14 of 35 EUT Type:
Plot 7-4. 20dB Bandwidth Plot (Reader 10% Ask 1 out of 4) Plot 7-5. 20dB Bandwidth Plot (Reader 10% Ask 1 out of 256) FCC ID: BCG-A2157 MEASUREMENT REPORT
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Frequency Stability Test Data 7.3 15.225; RSS-210 (B.6) Test Overview and Limit Frequency stability testing is performed in accordance with the guidelines of ANSI C63.10-2013. The frequency stability of the transmitter is measured by:
a.) Temperature: The temperature is varied from -20C to +50C in 10C increments using an environmental chamber. b.) Primary Supply Voltage: The primary supply voltage is varied from 85% to 115% of the nominal value for non hand-carried battery and AC powered equipment. For hand-carried, battery-powered equipment, primary supply voltage is reduced to the battery operating end point which shall be specified by the manufacturer. For Part 15.225, the frequency stability of the transmitter shall be maintained within 0.01% of the center frequency. Test Procedure Used ANSI C63.10-2013 Section 6.8 Test Settings 1. The carrier frequency of the transmitter is measured at room temperature (20C to provide a reference). 2. The equipment is turned on in a standby condition for fifteen minutes before applying power to the transmitter. Measurement of the carrier frequency of the transmitter is made within one minute after applying power to the transmitter. 3. Frequency measurements are made at 10C intervals ranging from -20C to +50C. A period of at least one half-hour is provided to allow stabilization of the equipment at each temperature level. Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Temperature Chamber EUT Agilent Spectrum Analyzer Test Notes All possible configurations were investigated and only the worst case is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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Frequency Stability Test Data 15.225; RSS-210 (B.6) Table 7-3. Frequency Stability Test Data (CE A 848kbps) FCC ID: BCG-A2157 MEASUREMENT REPORT
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OPERATING FREQUENCY: 13,560,000HzREFERENCE VOLTAGE: VDCDEVIATION LIMIT: 0.01 % = 1356Hz100 %- 3013,560,080800.0005900100 %- 2013,559,970-30-0.0002212100 %- 1013,560,030300.0002212100 % 013,560,020200.0001475100 %3.80+ 1013,559,870-130-0.0009587100 %+ 2013,559,620-380-0.0028024100 % + 3013,559,770-230-0.0016962100 %+ 4013,559,930-70-0.0005162100 %+ 5013,559,770-230-0.0016962BATT. ENDPOINT3.40+ 2013,559,720-280-0.0020649Deviation (%)3.80VOLTAGE (%)POWER (VDC)TEMP (oC)FREQUENCY (Hz)Freq. Dev. (Hz) Frequency Stability Test Data 15.225; RSS-210 (B.6) Figure 7-2. Frequency Stability Plot (CE A 848kbps) FCC ID: BCG-A2157 MEASUREMENT REPORT
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Frequency Stability Test Data 15.225; RSS-210 (B.6) Table 7-4. Frequency Stability Test Data (Reader 10% Ask 1 out of 256) FCC ID: BCG-A2157 MEASUREMENT REPORT
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OPERATING FREQUENCY: 13,560,000HzREFERENCE VOLTAGE: VDCDEVIATION LIMIT: 0.01 % = 1356Hz100 %- 3013,560,020200.0001475100 %- 2013,560,070700.0005162100 %- 1013,559,770-230-0.0016962100 % 013,559,770-230-0.0016962100 %3.80+ 1013,559,830-170-0.0012537100 %+ 2013,559,720-280-0.0020649100 % + 3013,559,870-130-0.0009587100 %+ 4013,559,770-230-0.0016962100 %+ 5013,559,770-230-0.0016962BATT. ENDPOINT3.40+ 2013,559,920-80-0.0005900Deviation (%)3.80VOLTAGE (%)POWER (VDC)TEMP (oC)FREQUENCY (Hz)Freq. Dev. (Hz) Frequency Stability Test Data 15.225; RSS-210 (B.6) Figure 7-3. Frequency Stability Plot (Reader 10% Ask 1 out of 256) FCC ID: BCG-A2157 MEASUREMENT REPORT
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In-Band Radiated Spurious Emission Measurements 7.4 15.225(a)(b)(c); RSS-210 (B.6) Test Overview and Limit The EUT was tested from 13.110 14.010 MHz. All in-band radiated spurious emissions are measured with a spectrum analyzer connected to a loop antenna while the EUT is operating at appropriate frequencies. Only the radiated emissions of the configuration that produced the worst case emissions are reported in this section. All in-band emissions appearing in a restricted band as specified in Section 15.225 of the Title 47 CFR must not exceed the limits shown in Table 7-5. Frequency
[MHz]
13.553-13.567 MHz 13.410-13.553 MHz and 13.567-13.710 MHz 13.110-13.410 MHz and 13.710-14.010 MHz Field Strength Measured Distance
[V/m]
15,848 334 106
[Meters]
30 30 30 Table 7-5. Radiated Limits Test Procedures Used ANSI C63.10-2013 Section 6.4.7 Test Settings 1. RBW = 9kHz 2. VBW 3 x RBW 3. Detector = peak 4. Sweep time = auto couple 5. Trace mode = max hold 6. Trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
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Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-4. Radiated Test Setup Test Notes:
1. All emissions lying in restricted bands specified in 15.225 and RSS-210 are below the limit shown in Table 7-5. 2. All measurements were performed using a loop antenna. The antenna was positioned in three orthogonal positions (X front, Y side, Z top) and the position with the highest emission level was recorded. 3. All emissions were greater than 20 dB below the limit. 4. The EUT was positioned in three orthogonal planes to determine the orientation resulting in the worst case emissions. 5. Measurements were performed at 3m and the data was extrapolated to the specified measurement distance of 30m using the square of an inverse linear distance extrapolation factor (40 dB/decade) as specified in 15.31(f)(2). Extrapolation Factor = 20 log10(30/3)2 = 40dB. 6. The spectrum was investigated from 9kHz up to 30MHz using the loop antenna. Only the emissions shown in the table below were found to be significant. 7. All measurements were recorded using a spectrum analyzer employing a peak detector. 8. The "-" shown in the following RSE tables are used to denote a noise floor measurement. 9. All possible configurations were investigated and only the worst case is reported. Sample Calculation o Field Strength Level [dBV/m] = Analyzer Level [dBm] + 107 + AFCL [dB/m]
o AFCL [dB/m] = Antenna Factor [dB/m] + Cable Loss [dB]
o Margin [dB] = Field Strength Level [dBV/m] Limit [dBV/m]
FCC ID: BCG-A2157 MEASUREMENT REPORT
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In-Band Radiated Spurious Emission Measurements 15.225(a)(b)(c); RSS-210 (B.6) Plot 7-6. In Band Radiated Spurious Plot (CE A 848kbps) Plot 7-7. In Band Radiated Spurious Plot (Reader 10% Ask 1 out of 256) FCC ID: BCG-A2157 MEASUREMENT REPORT
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0 20 40 60 80 100 12013013.11 13.2 13.3 13.4 13.5 13.6 13.7 13.8 13.9 14.01Level in dBV/mFrequency in MHzPreview Result 1V-PK+Preview Result 1H-PK+Critical_Freqs PK+FCC NFC Peak LimitFinal_Result QPK FCC NFC Peak Limit 0 20 40 60 80 100 12013013.11 13.2 13.3 13.4 13.5 13.6 13.7 13.8 13.9 14.01Level in dBV/mFrequency in MHzPreview Result 1V-PK+Preview Result 1H-PK+Critical_Freqs PK+FCC NFC Peak LimitFinal_Result QPKFCC NFC Peak Limit Frequency:
13.56MHz Measurement Distance:
3 Meters Table 7-6. In-Band Radiated Measurements (CE A 848kbps) Frequency:
13.56MHz Measurement Distance:
3 Meters Table 7-7. In-Band Radiated Measurements (Reader 10% Ask 1 out of 256) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-09.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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13.324Max PeakX100232-96.2320.9331.70-8.30106.0040.51-48.8113.463Max PeakX100265-97.9620.9429.98-10.02334.0050.47-60.4913.560Max PeakX100216-68.5620.9459.3819.3815848.0084.00-64.6213.681Max PeakX100335-97.6520.9530.30-9.70334.0050.47-60.1713.870Max PeakX10082-96.8620.9631.10-8.90106.0040.51-49.413m Field Strength [dBV/m]30m Field Strength [dBV/m]Limit [V/m]Limit [dBV/m]Margin [dB]Level [dBm]AFCL [dB/m]Frequency [MHz]Ant. Pol. [X/Y/Z]Antenna Height [cm]Turntable Azimuth [degree]Detector13.383Max PeakX10040-98.5520.9329.38-10.62106.0040.51-51.1313.533Max PeakX100220-91.4420.9436.50-3.50334.0050.47-53.9713.560Max PeakX100215-69.4020.9458.5418.5415848.0084.00-65.4613.613Max PeakX100223-88.3920.9539.56-0.44334.0050.47-50.9113.837Max PeakX100317-97.0520.9630.91-9.09106.0040.51-49.603m Field Strength [dBV/m]30m Field Strength [dBV/m]Limit [V/m]Limit [dBV/m]Margin [dB]Level [dBm]AFCL [dB/m]Frequency [MHz]Ant. Pol. [X/Y/Z]Antenna Height [cm]Turntable Azimuth [degree]Detector 7.5 Radiated Spurious Emission Measurements, Out-of-Band 15.209 15.225(d); RSS-Gen (8.9) Test Overview and Limit The EUT was tested from 9kHz up to the 1GHz excluding the band 13.110 14.010 MHz. All measurements were recorded using a spectrum analyzer employing a peak detector unless otherwise noted as quasi-peak for emissions below 960MHz. All out-of-band emissions appearing in a restricted band as specified in Section 15.225 of the Title 47 CFR must not exceed the limits shown in Table 7-8 per Section 15.209. Frequency 0.009 0.490 MHz 0.490 1.705 MHz 1.705 30.00 MHz 30.00 88.00 MHz 88.00 216.0 MHz 216.0 960.0 MHz Above 960.0 MHz Field Strength Measured Distance
[V/m]
2400/F (kHz) 24000/F (kHz) 30 100 150 200 500
[Meters]
300 30 30 3 3 3 3 Table 7-8. Radiated Limits Out of band Test Procedures Used ANSI C63.10-2013 Section 6.5.4 Test Settings 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 9kHz for emissions below 30MHz and 100kHz for emissions between 30MHz and 1GHz 3. VBW 3 x RBW 4. Detector = peak 5. Sweep time = auto couple 6. Trace mode = max hold 7. Trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-09.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 25 of 35 EUT Type:
Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-5. Radiated Test Setup < 30MHz Figure 7-6. Radiated Test Setup > 30MHz FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-09.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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Test Notes:
1. A loop antenna was used to investigate emissions below 30MHz. 2. Both Vertical and Horizontal polarities of the receive antenna were evaluated with the worst case emissions being reported. Below 30MHz the loop antenna was positioned in 3 orthogonal planes (X front, Y side, Z top) to determine the orientation resulting in the worst case emissions. 3. The EUT was positioned in three orthogonal planes to determine the orientation resulting in the worst case emissions. 4. The spectrum is measured from 9kHz to the 10th harmonic and the worst-case emissions are reported. 5. No spurious emissions levels were found to be greater than the level of the fundamental. 6. The "-" shown in the following RSE tables are used to denote a noise floor measurement. 7. All possible configurations were investigated and only the worst case is reported. 8. 9kHz - 30MHz Pre-scan plots show no significant emissions. Sample Calculation o Field Strength Level [dBV/m] = Analyzer Level [dBm] + 107 + AFCL [dB/m]
o AFCL [dB/m] = Antenna Factor [dB/m] + Cable Loss [dB]
o Margin [dB] = Field Strength Level [dBV/m] Limit [dBV/m]
FCC ID: BCG-A2157 MEASUREMENT REPORT
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Radiated Spurious Emission Measurements, Out-of-Band 15.209 15.225(d); RSS-Gen (8.9) Plot 7-8. Radiated Spurious Plot 9kHz 30MHz (CE A 848kbps) Plot 7-9. Radiated Spurious Plot 9kHz 30MHz (Reader 10% Ask 1 out of 256) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 28 of 35 EUT Type:
-10 0 10 20 30 40 50 60 70 80 90 100 110 120 1309k203050100k2003005001M2M3M5M10M2030MLevel in dBV/mFrequency in HzPreview Result 1V-PK+Preview Result 1H-PK+Critical_Freqs PK+FCC NFC Peak LimitFinal_Result QPKFCC NFC Peak Limit -10 0 10 20 30 40 50 60 70 80 90 100 110 120 1309k203050100k2003005001M2M3M5M10M2030MLevel in dBV/mFrequency in HzPreview Result 1V-PK+Preview Result 1H-PK+Critical_Freqs PK+FCC NFC Peak LimitFinal_Result QPKFCC NFC Peak Limit Radiated Spurious Emission Measurements, Out-of-Band 15.209 15.225(d); RSS-Gen (8.9) Plot 7-10. Radiated Spurious Plot 30MHz 1GHz (CE A 848kbps, with WCP + AC/DC Adapter) Plot 7-11. Radiated Spurious Plot 30MHz 1GHz (Reader 10% Ask 1 out of 256, with WCP + AC/DC Adapter) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-09.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 29 of 35 EUT Type:
0 20 40 60 8030M 5060 80100M200300400500 8001GLevel in dBV/mFrequency in HzPreview Result 1H-PK+Preview Result 1V-PK+Critical_Freqs PK+FCC Part 15C 30MHz-1GHzFCC Part 15C 30MHz-1GHz_-6Final_Result QPKFCC Part 15C 30MHz-1GHzFCC Part 15C 30MHz-1GHz_-6 0 10 20 30 40 50 60 70 8030M 5060 80100M200300400500 8001GLevel in dBV/mFrequency in HzPreview Result 1H-PK+Preview Result 1V-PK+Critical_Freqs PK+FCC Part 15C 30MHz-1GHzFCC Part 15C 30MHz-1GHz_-6Final_Result QPKFCC Part 15C 30MHz-1GHz Radiated Spurious Emission Measurements, Out-of-Band 15.209 15.225(d); RSS-Gen (8.9) Tx Frequency 13.56MHz Measurement Distance:
3 Meters Table 7-9. Radiated Measurements (CE A 848kbps, with WCP + AC/DC Adapter) Tx Frequency 13.56MHz Measurement Distance:
3 Meters Table 7-10. Radiated Measurements (Reader 10% Ask 1 out of 256, with WCP + AC/DC Adapter) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 30 of 35 EUT Type:
30.63Max PeakV100269-68.10-9.1729.7340.00-10.2733.25Max PeakV100290-68.12-10.6928.1940.00-11.81168.47Max PeakH250300-65.42-17.5524.0343.52-19.49209.84Max PeakH100304-65.47-18.6922.8443.52-20.68270.27Max PeakH100127-64.91-16.5925.5046.02-20.52961.78Max PeakV100318-78.16-3.8425.0053.98-28.983m Field Strength [dBV/m]Limit [dBV/m]Margin [dB]Level [dBm]AFCL [dB/m]Frequency [MHz]DetectorAnt. Pol. [H/V]Antenna Height [cm]Turntable Azimuth [degree]33.93Max PeakV100193-66.32-10.9729.7140.00-10.2935.53Max PeakV100138-66.26-11.8128.9340.00-11.07140.73Max PeakH250312-73.34-18.7414.9243.52-28.60173.95Max PeakH100318-66.70-16.9523.3543.52-20.17264.21Max PeakH100291-65.65-16.7124.6446.02-21.38333.37Max PeakV10032-69.44-14.4723.0946.02-22.933m Field Strength [dBV/m]Limit [dBV/m]Margin [dB]Level [dBm]AFCL [dB/m]Frequency [MHz]DetectorAnt. Pol. [H/V]Antenna Height [cm]Turntable Azimuth [degree]
7.6 AC Line Conducted Measurement Data 15.207; RSS-Gen (8.8) Test Overview and Limit All AC line conducted spurious emissions are measured with a receiver connected to a grounded LISN while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. All data rates and modes were investigated for conducted spurious emissions. Only the conducted emissions of the configuration that produced the worst case emissions are reported in this section. All conducted emissions must not exceed the limits shown in the table below, per Section 15.207 and RSS-Gen (8.8). Frequency of emission Conducted Limit (dBV)
(MHz) 0.15 0.5 0.5 5 5 30 Quasi-peak 66 to 56*
56 60 Average 56 to 46*
46 50 Table 7-11. Conducted Limits
*Decreases with the logarithm of the frequency. Test Procedures Used ANSI C63.10-2013, Section 6.2 Test Settings Quasi-Peak Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the spurious emission of interest 2. RBW = 9kHz (for emissions from 150kHz 30MHz) 3. Detector = quasi-peak 4. Sweep time = auto couple 5. Trace mode = max hold 6. Trace was allowed to stabilize Average Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the spurious emission of interest 2. RBW = 9kHz (for emissions from 150kHz 30MHz) 3. Detector = RMS 4. Sweep time = auto couple 5. Trace mode = max hold 6. Trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-09.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 31 of 35 EUT Type:
Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-7. Test Instrument & Measurement Setup Test Notes 1. 2. 3. 4. All modes of operation were investigated and the worst-case emissions are reported using mid channel. The emissions found were not affected by the choice of channel used during testing. The limit for an intentional radiator from 150kHz to 30MHz are specified in 15.207 and RSS-Gen (8.8). Corr. (dB) = Cable loss (dB) + LISN insertion factor (dB) QP/AV Level (dBV) = QP/AV Analyzer/Receiver Level (dBV) + Corr. (dB) 5. Margin (dB) = QP/AV Limit (dBV) - QP/AV Level (dBV) 6. 7. 8. The traces on the plots were measured with a Quasi-peak and Average detectors. Deviations to the Specifications: None. All possible configurations were investigated and only the worst case is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-09.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 32 of 35 EUT Type:
Plot 7-12. Line-Conducted Test Plot (L1, with WCP + AC/DC Adapter attached) Table 7-12. Line-Conducted Test Data (L1, with WCP + AC/DC Adapter attached) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-09.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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0 20 40 60 8090150k 300400500 8001M2M3M4M5M6 810M20M30MLevel in dBVFrequency in HzPreview Result 2-AVGPreview Result 1-QPKCritical_Freqs AVGCritical_Freqs QPKFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AVFinal_Result QPKFinal_Result AVGFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AV Plot 7-13. Line-Conducted Test Plot (N, with WCP + AC/DC Adapter attached) Table 7-13. Line-Conducted Test Data (L1, with WCP + AC/DC Adapter attached) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-09.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 34 of 35 EUT Type:
0 20 40 60 8090150k 300400500 8001M2M3M4M5M6 810M20M30MLevel in dBVFrequency in HzPreview Result 2-AVGPreview Result 1-QPKCritical_Freqs AVGCritical_Freqs QPKFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AVFinal_Result QPKFinal_Result AVGFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AV 8 . 0 C O N C L U S I O N The data collected relate only to the item(s) tested and show that the Apple Watch FCC ID: BCG-A2157 has been tested to show compliance with Part 15 Subpart C (15.225) of the FCC Rules and RSS-210 of the Innovation, Science and Economic Development Canada Rules. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-09.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 35 of 35 EUT Type:
1 2 3 4 | Bluetooth HDR Test Report | Test Report | 2.81 MiB | March 09 2019 / October 09 2019 |
PCTEST ENGINEERING LABORATORY, INC. 18855 Adams Court, Morgan Hill, CA 95037 USA Tel. 410.290.6652 / Fax 410.290.6654 http://www.pctest.com MEASUREMENT REPORT FCC PART 15.247 / ISED RSS-247 Bluetooth (HDR) Date of Testing:
05/01/2019 - 08/09/2019 Test Site/Location:
PCTEST Lab. Morgan Hill, CA, USA Test Report Serial No.:
1C1905130011-06.BCG BCG-A2157 579C-A2157 Apple Inc. Certification A2157 Watch 32.734 mW (15.15 dBm) Peak Conducted 2404 2478MHz Digital Transmission System (DTS) Part 15 Subpart C (15.247) RSS-247 Issue 2 ANSI C63.10-2013, KDB 558074 D01 v05r02 Applicant Name:
Apple Inc. One Apple Park Way Cupertino, CA 95014 United States FCC ID:
IC:
APPLICANT:
Application Type:
Model/HVIN:
EUT Type:
Max. RF Output Power:
Frequency Range:
FCC Classification:
FCC Rule Part(s):
ISED Specification:
Test Procedure(s):
This equipment has been shown to be capable of compliance with the applicable technical standards as indicated in the measurement report and was tested in accordance with the measurement procedures specified in ANSI C63.10-2013 and KDB 558074 D01 v05r02. Test results reported herein relate only to the item(s) tested. I attest to the accuracy of data. All measurements reported herein were performed by me or were made under my supervision and are correct to the best of my knowledge and belief. I assume full responsibility for the completeness of these measurements and vouch for the qualifications of all persons taking them. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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T A B L E O F C O N T E N T S 1.0 INTRODUCTION .......................................................................................................................................... 3 1.1 Scope ................................................................................................................................................................... 3 1.2 PCTEST Test Location ......................................................................................................................................... 3 1.3 Test Facility / Accreditations ................................................................................................................................. 3 2.0 PRODUCT INFORMATION .......................................................................................................................... 4 2.1 Equipment Description ......................................................................................................................................... 4 2.2 Device Capabilities ............................................................................................................................................... 4 2.3 Antenna Description ............................................................................................................................................. 4 2.4 Test Support Equipment ....................................................................................................................................... 5 2.5 Test Configuration ................................................................................................................................................ 5 2.6 Software and Firmware ........................................................................................................................................ 5 2.7 EMI Suppression Device(s)/Modifications ............................................................................................................ 5 3.0 DESCRIPTION OF TESTS .......................................................................................................................... 6 3.1 Evaluation Procedure ........................................................................................................................................... 6 3.2 AC Line Conducted Emissions ............................................................................................................................. 6 3.3 Radiated Emissions .............................................................................................................................................. 7 3.4 Environmental Conditions ..................................................................................................................................... 7 ANTENNA REQUIREMENTS ...................................................................................................................... 8 MEASUREMENT UNCERTAINTY ............................................................................................................... 9 TEST EQUIPMENT CALIBRATION DATA ................................................................................................ 10 TEST RESULTS ......................................................................................................................................... 11 7.1 Summary ............................................................................................................................................................ 11 7.2 6dB Bandwidth Measurement Bluetooth (HDR) .............................................................................................. 12 7.3 Output Power Measurement Bluetooth (HDR) ................................................................................................ 17 7.3.1 Peak Output Power Measurement Bluetooth (HDR) ................................................................................... 18 7.3.2 Average Output Power Measurement Bluetooth (HDR) .............................................................................. 19 7.4 Power Spectral Density Bluetooth (HDR) ........................................................................................................ 20 7.5 Conducted Emissions at the Band Edge ............................................................................................................ 28 7.6 Conducted Spurious Emissions .......................................................................................................................... 31 7.7 Radiated Spurious Emission Measurements Above 1GHz .............................................................................. 36 7.8 Radiated Restricted Band Edge Measurements ................................................................................................. 43 7.9 Radiated Spurious Emissions Measurements Below 1GHz ............................................................................ 47 AC Line-Conducted Test Data ........................................................................................................................ 51 7.10 CONCLUSION ............................................................................................................................................ 55 4.0 5.0 6.0 7.0 8.0 FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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1.0 I N T R O D U C T I O N Scope 1.1 Measurement and determination of electromagnetic emissions (EMC) of radio frequency devices including intentional and/or unintentional radiators for compliance with the technical rules and regulations of the Federal Communications Commission and the Innovation, Science and Economic Development Canada. PCTEST Test Location 1.2 These measurement tests were conducted at the PCTEST Engineering Laboratory, Inc. facility located at 18855 Adams Court, Morgan Hill, CA 95037. The measurement facility is compliant with the test site requirements specified in ANSI C63.4-2014 and KDB 414788 D01 v01r01. 1.3 Measurements were performed at PCTEST Engineering Lab located in Morgan Hill, CA 95037, U.S.A. PCTEST is an ISO 17025-2005 accredited test facility under the American Association for Laboratory Accreditation (A2LA) with Certificate number 2041.02 for Specific Absorption Rate (SAR), Hearing Aid Compatibility (HAC) testing, where applicable, and Electromagnetic Compatibility (EMC) testing for FCC and Innovation, Science, and Economic Development Canada rules. Test Facility / Accreditations PCTEST TCB is a Telecommunication Certification Body (TCB) accredited to ISO/IEC 17065-2012 by A2LA
(Certificate number 2041.03) in all scopes of FCC Rules and ISED Standards (RSS). PCTEST facility is a registered (22831) test laboratory with the site description on file with ISED. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 3 of 55 EUT Type:
2.0 P R O D U C T I N F O R M A T I O N 2.1 Equipment Description The Equipment Under Test (EUT) is the Apple Watch FCC ID: BCG-A2157. The data found in this test report was taken with the EUT operating in Bluetooth HDR mode. While in HDR mode, the Bluetooth transmitter hops pseudo-randomly between 75 channels. Test Device Serial No.: D92YD00QM8CJ, D92YF005M95Y, FN6911410ECKTRT5U 2.2 This device contains the following capabilities:
850/1700/1900 WCDMA/HSPA, Multi-band LTE, 802.11b/g/n WLAN, Bluetooth (1x, EDR, HDR4, HDR8, LE), NFC Device Capabilities Ch. 1
:
38
:
75 Frequency (MHz) 2404
:
2441
:
2478 Table 2-1. Frequency / Channel Operations Measured Duty Cycles HDR Mode Duty Cycle (%) 4Mbps 8Mbps ePA iPA ePA iPA 100.0 100.0 100.0 100.0 Table 2-2. Measured Duty Cycles Antenna Description 2.3 Following antenna was used for the testing. Frequency Antenna Gain
[GHz]
2.4
[dBi]
-10.4 Table 2-3. Highest Antenna Gain Note: This device is capable of operating in hopping and non-hopping mode. The EUT can hop between 75 different channels in the 2404 2478MHz band. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 4 of 55 EUT Type:
2.4 Test Support Equipment Table 2-4. Test Support Equipment Used Test Configuration 2.5 The EUT was tested per the guidance of ANSI C63.10-2013 and KDB 558074 D01 v05r02. ANSI C63.10-2013 was used to reference the appropriate EUT setup for radiated spurious emissions testing and AC line conducted testing. See Sections 3.2 for AC line conducted emissions test setups, 3.3 for radiated emissions test setups, and 7.2, 7.3, 7.4, 7.5, and 7.6 for antenna port conducted emissions test setups. The worst case configuration was investigated for all combinations of the four materials, aluminum, stainless steel, ceramic, and aluminum/ceramic mix, and various types of wristbands, metal and non-metal wristbands. The store display sample was investigated and determined as not the worst case. The EUT was also investigated with and without wireless charger. The worst case configuration found was used for all testing. For emissions from 1GHz 18GHz, low, mid, and high channels were tested with highest power and worst case configuration. The emissions below 1GHz and above 18GHz were tested with the highest transmitting power channel and the worst case configuration. The EUT was manipulated through three orthogonal planes of X-orientation (flatbed), Y-orientation (landscape), and Z-orientation (portrait) during the testing. Only the worst case emissions were reported in this test report. For AC line conducted and radiated test below 1GHz, following configurations were investigated and worst case was reported.
- EUT powered by AC/DC adaptor via USB cable with wireless charger
- EUT powered by host PC via USB cable with wireless charge Software and Firmware 2.6 The test was conducted with firmware version wOS 6.0 installed on the EUT. 2.7 EMI Suppression Device(s)/Modifications No EMI suppression device(s) were added and/or no modifications were made during testing. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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1Apple MacBookModel:A1398S/N:C2QKP008F6F3w/AC/DC AdapterModel:A1435S/N:N/A2Apple USB CableModel:KanziS/N:311C81w/ Charging DockModel:FAPS73S/N:17481001022w/ DockModel:X241S/N:GW17F01ST223USB Lightning CableModel:N/AS/N:N/Aw/ AC AdapterModel:A1385S/N:N/A4Wireless Charging Pad (WCP)Model:EVTS/N:DLC915600ECLNWL3KWireless Charging Pad (WCP)Model:EVTS/N:DLC9156006TLNWK3V5Test Pathfinder Sinsa BoardModel:X1456S/N:920-062535-01w/ SiP CradleModel:P1 X1454SS/N:920-06373-026DC Power SupplyModel:KPS3010DS/N:N/A7Mobile Comm DC SourceModel:66321DS/N:MY52000555 3.0 D E S C R I P T I O N O F T E S T S Evaluation Procedure AC Line Conducted Emissions 3.1 The measurement procedures described in the American National Standard of Procedures for Compliance Testing of Unlicensed Wireless Devices (ANSI C63.10-2013) and the guidance provided in KDB 558074 D01 v05r02 were used in the measurement of the EUT. Deviation from measurement procedure.....................................None 3.2 The line-conducted facility is located inside a 7m x 3.66m x 2.7m shielded enclosure. The shielded enclosure is manufactured by AP Americas. The shielding effectiveness of the shielded room is in accordance with MIL-Std-
285 or NSA 65-5. A 1m x 1.5m wooden table 80cm high is placed 40cm away from the vertical wall and 80cm away from the sidewall of the shielded room. Two 10kHz-30MHz, 50/50H Line-Impedance Stabilization Networks (LISNs) are bonded to the shielded room floor. Power to the LISNs is filtered by external high-current high-insertion loss power line filters. The external power line filter is an ETS Lindgren Model LPRX-4X30 (100dB Attenuation, 14kHz-18GHz) and the two EMI/RFI filters are ETS Lindgren Model LRW-2030-S1 (100dB Minimum Insertion Loss, 14kHz 10GHz). These filters attenuate ambient signal noise from entering the measurement lines. These filters are also bonded to the shielded enclosure. The EUT is powered from one LISN and the support equipment is powered from the second LISN. If the EUT is a DC-powered device, power will be derived from the source power supply it normally will be powered from and this supply line(s) will be connected to the second LISN. All interconnecting cables more than 1 meter were shortened to a 1 meter length by non-inductive bundling (serpentine fashion) and draped over the back edge of the test table. All cables were at least 40cm above the horizontal reference groundplane. Power cables for support equipment were routed down to the second LISN while ensuring that that cables were not draped over the second LISN. Sufficient time for the EUT, support equipment, and test equipment was allowed in order for them to warm up to their normal operating condition. The RF output of the LISN was connected to the spectrum analyzer and exploratory measurements were made to determine the frequencies producing the maximum emission from the EUT. The spectrum was scanned from 150kHz to 30MHz with a spectrum analyzer. The detector function was set to peak mode for exploratory measurements while the bandwidth of the analyzer was set to 10kHz. The EUT, support equipment, and interconnecting cables were arranged and manipulated to maximize each emission. Once the worst case emissions have been identified, the one EUT cable configuration/arrangement and mode of operation that produced these emissions is used for final measurements on the same test site. The analyzer is set to CISPR quasi-peak and average detectors with a 9kHz resolution bandwidth for final measurements. Line conducted emissions test results are shown in Section 7.10. Automated test software was used to perform the AC line conducted emissions testing. Automated measurement software utilized is Rohde & Schwarz EMC32, Version 10.35.04. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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Radiated Emissions 3.3 The radiated test facilities consisted of an indoor 3 meter semi-anechoic chamber used for final measurements and exploratory measurements, when necessary. The measurement area is contained within the semi-anechoic chamber which is shielded from any ambient interference. The test site inside the chamber is a 6m x 5.2m elliptical, obstruction-free area in accordance with Figure 5.7 of Clause 5 in ANSI C63.4-2014. Absorbers are arranged on the floor between the turn table and the antenna mast in such a way so as to maximize the reduction of reflections for measurements above 1GHz. An 80cm tall test table made of Styrodur is placed on top of the turn table. For measurements above 1GHz, an additional Styrodur pedestal is placed on top of the test table to bring the total table height to 1.5m. Per KDB 414788, radiated emission test sites other than open-field test sites (e.g., shielded anechoic chambers), may be employed for emission measurements below 30MHz if characterized so that the measurements correspond to those obtained at an open-field test site. To determine test site equivalency, a reference sample transmitting at 149kHz was measured on an open field test site (asphalt with no ground plane) and then measured in the 3m semi-anechoic chamber. A calibrated 60cm loop antenna was rotated about its vertical axis while the reference device was rotated through the X, Y and Z axis in order to capture the worst case level. A maximum deviation of 2.77dB at 149kHz was measured when comparing the 3 meter semi-anechoic chamber to the open field site. For all measurements, the spectrum was scanned through all EUT azimuths and from 1 to 4 meter receive antenna height using a broadband antenna from 30MHz up to the upper frequency shown in 15.33 depending on the highest frequency generated or used in the device or on which the device operates or tunes. For frequencies above 1GHz, linearly polarized double ridge horn antennas were used. For frequencies below 30MHz, a calibrated loop antenna was used. When exploratory measurements were necessary, they were performed at 1 meter test distance inside the semi-anechoic chamber using broadband antennas, broadband amplifiers, and spectrum analyzers to determine the frequencies and modes producing the maximum emissions. Sufficient time for the EUT, support equipment, and test equipment was allowed in order for them to warm up to their normal operating condition. The test set-up was placed on top of the 1 x 1.5 meter table. The EUT, support equipment, and interconnecting cables were arranged and manipulated to maximize each emission. Appropriate precaution was taken to ensure that all emissions from the EUT were maximized and investigated. The system configuration, mode of operation, turntable azimuth, and receive antenna height was noted for each frequency found. Final measurements were made in the semi-anechoic chamber using calibrated, linearly polarized broadband and horn antennas. The test setup was configured to the setup that produced the worst case emissions. The spectrum analyzer was set to investigate all frequencies required for testing to compare the highest radiated disturbances with respect to the specified limits. The turntable containing the EUT was rotated through 360 degrees and the height of the receive antenna was varied 1 to 4 meters and stopped at the azimuth and height producing the maximum emission. Each emission was maximized by changing the orientation of the EUT through three orthogonal planes and changing the polarity of the receive antenna, whichever produced the worst-case emissions. 3.4 The temperature is controlled within range of 15oC to 35oC. The relative humidity is controlled within range of 10%
to 75%. The atmospheric pressure is monitored within the range 86-106kPa (860-1060mbar). Environmental Conditions FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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4.0 A N T E N N A R E Q U I R E M E N T S Excerpt from 15.203 of the FCC Rules/Regulations:
An intentional radiator antenna shall be designed to ensure that no antenna other than that furnished by the responsible party can be used with the device. The use of a permanently attached antenna or of an antenna that uses a unique coupling to the intentional radiator shall be considered sufficient to comply with the provisions of this section. The antenna(s) of the EUT are permanently attached. There are no provisions for connection to an external antenna. Conclusion:
The EUT complies with the requirement of 15.203. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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5.0 M E A S U R E M E N T U N C E R T A I N T Y The measurement uncertainties shown below were calculated in accordance with the requirements of ANSI C63.10-2013. All measurement uncertainty values are shown with a coverage factor of k = 2 to indicate a 95% level of confidence. The measurement uncertainty shown below meets or exceeds the UCISPR measurement uncertainty values specified in CISPR 16-4-2 and, thus, can be compared directly to specified limits to determine compliance. Contribution Expanded Uncertainty (dB) Conducted Bench Top Measurements Line Conducted Disturbance Radiated Disturbance (<1GHz) Radiated Disturbance (>1GHz) Radiated Disturbance (>18GHz) 1.29 2.48 4.15 4.70 5.01 FCC ID: BCG-A2157 MEASUREMENT REPORT
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6.0 T E S T E Q U I P M E N T C A L I B R A T I O N D A T A Test Equipment Calibration is traceable to the National Institute of Standards and Technology (NIST). Measurements antennas used during testing were calibrated in accordance to the requirements of ANSI C63.5-
2017. Table 6-1. Annual Test Equipment Calibration Schedule Note:
For equipment listed above that has a calibration date or calibration due date that falls within the test date range, care was taken to ensure that this equipment was used after the calibration date and before the calibration due date. FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 10 of 55 EUT Type:
Manufacturer Model Description Cal Date Cal Interval Cal Due Serial Number Agilent TechnologiesN9030A 3Hz-44GHz PXA Signal Analyzer 3/13/2019Annual3/13/2020MY49430244 AnritsuML2496APower Meter10/22/2018Annual10/22/2019184005AnritsuMA2411BPulse Power Sensor10/22/2018Annual10/22/20191726261AnritsuMA2411BPulse Power Sensor10/22/2018Annual10/22/20191726262ATM180-442A-KF20dB Nominal Gain Horn Antenna9/10/2018Annual9/10/2019T058701-03COM-POWER LIN-120A LISN 3/13/2019Annual3/13/2020241297Rohde & SchwarzESW26EMI Test Receiver5/21/2019Annual5/21/2020101299Rohde & Schwarz ESW44EMI Test Receiver11/20/2018Annual11/20/2019101570Rohde & Schwarz TS-PR1840Pre-Amplifier (18GHz - 40GHz)9/5/2018Annual 9/5/2019100050Rohde & Schwarz TS-PR8Pre-Amplifier (30MHz - 8GHz)1/7/2019Annual1/7/2020102325Rohde & Schwarz HL562EUltra Broadband Antenna (30MHz - 6GHz)10/24/2018Annual10/24/2019100810Rohde & Schwarz TC-TA18Cross Polarized Vivaldi Antenna (400MHz-18GHz)11/21/2018Annual11/21/2019101057Rohde & Schwarz TC-TA18Cross Polarized Vivaldi Antenna (400MHz-18GHz)12/7/2018Annual12/7/2019101063Rohde & Schwarz HFH2-Z2 Loop Antenna 3/21/2019Annual 3/21/2020100519 7.0 T E S T R E S U L T S Summary 7.1 Company Name:
Apple Inc. FCC ID:
BCG-A2157 FCC Classification:
Digital Transmission System (DTS) Number of Channels:
75 FCC Part Section(s) RSS Section(s) Test Description Test Limit Test Test Condition Result Reference 15.247(a)(2) RSS-247 [5.2]
6dB Bandwidth
> 500kHz PASS Section 7.2 15.247(b)(3) RSS-247 [5.4(d)]
Transmitter Output Power 1 Watt PASS Sections 7.3 15.247(e) RSS-247 [5.2]
Transmitter Power Spectral Density 8dBm / 3kHz Band PASS Section 7.4 CONDUCTED 15.247(d) RSS-247 [5.5]
Band Edge /
Out-of-Band Emissions 20dBc PASS Sections 7.5, 7.6 15.205 15.209 RSS-Gen [8.9]
General Field Strength Limits (Restricted Bands and Radiated Emission Limits) Emissions in restricted bands must meet the radiated limits detailed in 15.209 (RSS-Gen [8.9]) RADIATED PASS Sections 7.7, 7.8, 7.9 15.207 RSS-Gen [8.8]
AC Conducted Emissions 150kHz 30MHz
< FCC 15.207 limits
(RSS-Gen[8.8]) LINE CONDUCTED PASS Section 7.10 Table 7-1. Summary of Test Results Notes:
1. All modes of operation were investigated. The test results shown in the following sections represent the worst case emissions. 2. The analyzer plots shown in this section were all taken with a correction table loaded into the analyzer. The correction table was used to account for the losses of the cables and attenuators used as part of the system to connect the EUT to the analyzer at all frequencies of interest. 3. All antenna port conducted emissions testing was performed on a test bench with the antenna port of the EUT connected to the spectrum analyzer through calibrated cables and attenuators. 4. For radiated band edge, automated test software was used to measure emissions and capture the corresponding plots necessary to show compliance. The measurement software utilized is PCTEST Chamber Automation, Version 1.3.1. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 11 of 55 EUT Type:
6dB Bandwidth Measurement Bluetooth (HDR) 7.2 15.247(a.2); RSS-247 [5.2]
Test Overview and Limit The bandwidth at 6dB down from the highest in-band spectral density is measured with a spectrum analyzer connected to the transmitter antenna terminal of the EUT while the EUT is operating at maximum power and at the appropriate frequencies. All modes of operation were investigated and the worst case configuration results are reported in this section. The minimum permissible 6dB bandwidth is 500 kHz. Test Procedure Used ANSI C63.10-2013 Section 11.8.2 Option 2 KDB 558074 D01 v05r02 Section 8.2 Test Settings 1. The signal analyzers automatic bandwidth measurement capability of the spectrum analyzer was used to perform the 6dB bandwidth measurement. The X dB bandwidth parameter was set to X = 6. The bandwidth measurement was not influenced by any intermediate power nulls in the fundamental emission. 2. RBW = 100kHz 3. VBW 3 x RBW 4. Detector = Peak 5. Trace mode = max hold 6. Sweep = auto couple 7. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-1. Test Instrument & Measurement Setup Test Notes Both power schemes were investigated, and only the worst case is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 12 of 55 EUT Type:
Table 7-2. Conducted Bandwidth Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 13 of 55 EUT Type:
24044.0ePA1HDR42158.1500Pass24414.0ePA38HDR42155.0500Pass24784.0ePA75HDR42161.0500Pass24048.0ePA1HDR84161.4500Pass24418.0ePA38HDR84159.8500Pass24788.0ePA75HDR84220.3500PassPower SchemeChannel No.Bluetooth ModeMeasured Bandwidth [kHz]Minimum Bandwidth [kHz]Pass / FailFrequency [MHz]Data Rate [Mbps]
Plot 7-1. 6dB Bandwidth Plot (Bluetooth (HDR4), 4Mbps, ePA Ch. 1) Plot 7-2. 6dB Bandwidth Plot (Bluetooth (HDR4), 4Mbps, ePA Ch. 38) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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Plot 7-3. 6dB Bandwidth Plot (Bluetooth (HDR4), 4Mbps, ePA Ch. 75) Plot 7-4. 6dB Bandwidth Plot (Bluetooth (HDR8), 8Mbps, ePA Ch. 1) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 15 of 55 EUT Type:
Plot 7-5. 6dB Bandwidth Plot (Bluetooth (HDR8), 8Mbps, ePA Ch. 38) Plot 7-6. 6dB Bandwidth Plot (Bluetooth (HDR8), 8Mbps, ePA Ch. 75) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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7.3 Output Power Measurement Bluetooth (HDR) 15.247(b.3); RSS-247 [5.4(d)]
Test Overview and Limits The transmitter antenna terminal of the EUT is connected to the input of a spectrum analyzer. Measurements are made while the EUT is operating at maximum power and at the appropriate frequencies. The maximum permissible conducted output power is 1 Watt. Test Procedure Used KDB 558074 D01 v05r02 Section 8.3.1.3, 8.3.2.3 Test Settings Method PKPM1 (Peak Power Measurement) The maximum peak conducted output power may be measured using a broadband peak RF power meter. The power meter shall have a video bandwidth that is greater than or equal to the DTS bandwidth and shall utilize a fast-responding diode detector. Method AVGPM-G (Average Power Measurement) Average power measurements were performed only when the EUT was transmitting at its maximum power control level using a broadband power meter with a pulse sensor. The power meter implemented triggering and gating capabilities which were set up such that power measurements were recorded only during the ON time of the transmitter. The trace was averaged over 100 traces to obtain the final measured average power. Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-2. Test Instrument & Measurement Setup for Peak and Average Power Measurement Test Notes None FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
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Peak Output Power Measurement Bluetooth (HDR) 7.3.1 15.247(b.3); RSS-247 [5.4(d)]
Table 7-3. Peak Conducted Output Power Measurements (Bluetooth (HDR)) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 18 of 55 EUT Type:
[dBm][mW]24044.0ePA1HDR414.8530.549-10.404.4536.02-31.5724414.0ePA38HDR414.8930.832-10.404.4936.02-31.5324784.0ePA75HDR415.1532.734-10.404.7536.02-31.2724044.0iPA1HDR412.7718.923-10.402.3736.02-33.6524414.0iPA38HDR412.3917.338-10.401.9936.02-34.0324784.0iPA75HDR412.7318.750-10.402.3336.02-33.6924048.0ePA1HDR812.5718.072-10.402.1736.02-33.8524418.0ePA38HDR812.6918.578-10.402.2936.02-33.7324788.0ePA75HDR812.5017.783-10.402.1036.02-33.9224048.0iPA1HDR812.7018.621-10.402.3036.02-33.7224418.0iPA38HDR812.3417.140-10.401.9436.02-34.0824788.0iPA75HDR812.7118.664-10.402.3136.02-33.71Ant. Gain [dBi]EIRP[dBm]Limit[dBm]Margin[dB]Frequency [MHz]Data Rate [Mbps]Power SchemeChannel No.Bluetooth ModePeak Conducted Power 7.3.2 Average Output Power Measurement Bluetooth (HDR) 15.247(b.3); RSS-247 [5.4(d)]
Table 7-4. Average Conducted Output Power Measurements (Bluetooth (HDR)) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 19 of 55 EUT Type:
[dBm][mW]24044.0ePA1HDR412.2116.634-10.401.8136.02-34.2124414.0ePA38HDR412.3417.140-10.401.9436.02-34.0824784.0ePA75HDR412.4817.701-10.402.0836.02-33.9424044.0iPA1HDR410.0010.000-10.40-0.4036.02-36.4224414.0iPA38HDR49.779.484-10.40-0.6336.02-36.6524784.0iPA75HDR410.0010.000-10.40-0.4036.02-36.4224048.0ePA1HDR89.989.954-10.40-0.4236.02-36.4424418.0ePA38HDR810.0010.000-10.40-0.4036.02-36.4224788.0ePA75HDR89.819.572-10.40-0.5936.02-36.6124048.0iPA1HDR89.999.977-10.40-0.4136.02-36.4324418.0iPA38HDR89.759.441-10.40-0.6536.02-36.6724788.0iPA75HDR810.0010.000-10.40-0.4036.02-36.42Data Rate [Mbps]Power SchemeChannel No.Bluetooth ModeAverage Conducted PowerFrequency [MHz]Ant. Gain [dBi]EIRP[dBm]Limit[dBm]Margin[dB]
Power Spectral Density Bluetooth (HDR) 7.4 15.247(e); RSS-247 [5.2]
Test Overview and Limit The peak power density is measured with a spectrum analyzer connected to the antenna terminal of the EUT while the EUT is operating at maximum power and at the appropriate frequencies. The maximum permissible power spectral density is 8 dBm in any 3 kHz band. Test Procedure Used ANSI C63.10-2013 Section 11.10.2 Method PKPSD KDB 558074 D01 v05r02 Section 8.4 DTS Maximum Power Spectral Density level in the fundamental emission Test Settings 1. Analyzer was set to the center frequency of the DTS channel under investigation 2. Span = 1.5 times the DTS channel bandwidth 3. RBW = 3kHz 4. VBW = 1MHz 5. Detector = peak 6. Sweep time = auto couple 7. Trace mode = max hold 8. Trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-3. Test Instrument & Measurement Setup Test Notes None FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 20 of 55 EUT Type:
Table 7-5. Conducted Power Density Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 21 of 55 EUT Type:
24044.0ePA1HDR4-2.088.0-10.0824414.0ePA38HDR4-1.998.0-9.9924784.0ePA75HDR4-3.148.0-11.1424044.0iPA1HDR4-6.178.0-14.1724414.0iPA38HDR4-6.118.0-14.1124784.0iPA75HDR4-7.238.0-15.2324048.0ePA1HDR8-2.558.0-10.5524418.0ePA38HDR8-2.398.0-10.3924788.0ePA75HDR8-3.418.0-11.4124048.0iPA1HDR8-6.638.0-14.6324418.0iPA38HDR8-6.508.0-14.5024788.0iPA75HDR8-7.458.0-15.45Frequency [MHz]Data Rate [Mbps]Power SchemeChannel No.Bluetooth ModeMeasured Power Spectral Density [dBm/3kHz]Maximum Permissible Power Density [dBm / 3kHz]Margin [dB]
Plot 7-7. Power Spectral Density Plot (Bluetooth (HDR4), 4Mbps, ePA Ch. 1) Plot 7-8. Power Spectral Density Plot (Bluetooth (HDR4), 4Mbps, ePA Ch. 38) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 22 of 55 EUT Type:
Plot 7-9. Power Spectral Density Plot (Bluetooth (HDR4), 4Mbps, ePA Ch. 75) Plot 7-10. Power Spectral Density Plot (Bluetooth (HDR4), 4Mbps, iPA Ch. 1) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 23 of 55 EUT Type:
Plot 7-11. Power Spectral Density Plot (Bluetooth (HDR4), 4Mbps, iPA Ch. 38) Plot 7-12. Power Spectral Density Plot (Bluetooth (HDR4), 4Mbps, iPA Ch. 75) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 24 of 55 EUT Type:
Plot 7-13. Power Spectral Density Plot (Bluetooth (HDR8), 8Mbps, ePA Ch. 1) Plot 7-14. Power Spectral Density Plot (Bluetooth (HDR8), 8Mbps, ePA Ch. 38) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 25 of 55 EUT Type:
Plot 7-15. Power Spectral Density Plot (Bluetooth (HDR8), 8Mbps, ePA Ch. 75) Plot 7-16. Power Spectral Density Plot (Bluetooth (HDR8), 8Mbps, iPA Ch. 1) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 26 of 55 EUT Type:
Plot 7-17. Power Spectral Density Plot (Bluetooth (HDR8), 8Mbps, iPA Ch. 38) Plot 7-18. Power Spectral Density Plot (Bluetooth (HDR8), 8Mbps, iPA Ch. 75) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 27 of 55 EUT Type:
Conducted Emissions at the Band Edge 7.5 15.247(d); RSS-247 [5.5]
Test Overview and Limit For the following out of band conducted spurious emissions plots at the band edge, the EUT was set to transmit at maximum power with the largest packet size available. These settings produced the worst-case emissions. The limit for out-of-band spurious emissions at the band edge is 20dB below the fundamental emission level, as determined from the in-band power measurement of the DTS channel performed in a 100kHz bandwidth. Test Procedure Used ANSI C63.10-2013 Section 11.11.3 KDB 558074 D01 v05r02 Section 8.7.2 Test Settings 1. Start and stop frequency were set such that the band edge would be placed in the center of the plot 2. Span was set large enough so as to capture all out of band emissions near the band edge 3. RBW = 100kHz 4. VBW = 300kHz 5. Detector = Peak 6. Number of sweep points 2 x Span/RBW 7. Trace mode = max hold 8. Sweep time = auto couple 9. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-4. Test Instrument & Measurement Setup Test Notes Both power schemes were investigated and only the worst case is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 28 of 55 EUT Type:
Plot 7-19. Band Edge Plot (Bluetooth (HDR4), ePA Ch. 1) FCC ID: BCG-A2157 Plot 7-20. Band Edge Plot (Bluetooth (HDR4), ePA Ch. 75) MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 29 of 55 EUT Type:
Plot 7-21. Band Edge Plot (Bluetooth (HDR8), ePA Ch. 1) Plot 7-22. Band Edge Plot (Bluetooth (HDR8), ePA Ch. 75) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 30 of 55 EUT Type:
Conducted Spurious Emissions 7.6 15.247(d); RSS-247 [5.5]
Test Overview and Limit For the following out of band conducted spurious emissions plots, the EUT was set to transmit at maximum power with the largest packet size available. The worst case spurious emissions were found in this configuration. The limit for out-of-band spurious emissions at the band edge is 20dB below the fundamental emission level, as determined from the in-band power measurement of the DTS channel performed in a 100kHz bandwidth per the procedure in Section 8.5 of KDB 558074 D01 v05r02 and Section 11.11.3 of ANSI C63.10-2013. Test Procedure Used ANSI C63.10-2013 Section 11.11.3 KDB 558074 D01 v05r02 Section 8.5 Test Settings 1. Start frequency was set to 30MHz and stop frequency was set to 25GHz (separated into two plots per channel) 2. RBW = 1MHz 3. VBW = 3MHz 4. Detector = Peak 5. Trace mode = max hold 6. Sweep time = auto couple 7. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-5. Test Instrument & Measurement Setup FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 31 of 55 EUT Type:
Test Notes 1. RBW was set to 1MHz rather than 100kHz in order to increase the measurement speed. 2. The display line shown in the following plots denotes the limit at 20dB below the fundamental emission level measured in a 100kHz bandwidth. However, since the traces in the following plots are measured with a 1MHz RBW, the display line may not necessarily appear to be 20dB below the level of the fundamental in a 1MHz bandwidth. 3. For plots showing conducted spurious emissions near the limit, the frequencies were investigated with a reduced RBW to ensure that no emissions were present. 4. The unit was tested with all possible mode and power schemes and only the highest emission is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 32 of 55 EUT Type:
Plot 7-23. Conducted Spurious Plot (Bluetooth (HDR4), 4Mbps, ePA Ch. 1) Plot 7-24. Conducted Spurious Plot (Bluetooth (HDR4), 4Mbps, ePA Ch. 1) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 33 of 55 EUT Type:
Plot 7-25. Conducted Spurious Plot (Bluetooth (HDR4), 4Mbps, ePA Ch. 38) Plot 7-26. Conducted Spurious Plot (Bluetooth (HDR4), 4Mbps, ePA Ch. 38) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 34 of 55 EUT Type:
Plot 7-27. Conducted Spurious Plot (Bluetooth (HDR4), 4Mbps, ePA Ch. 75) Plot 7-28. Conducted Spurious Plot (Bluetooth (HDR4), 4Mbps, ePA Ch. 75) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 35 of 55 EUT Type:
Radiated Spurious Emission Measurements Above 1GHz 7.7 15.205 15.209 15.247(d); RSS-Gen [8.9]
Test Overview and Limit All out of band radiated spurious emissions are measured with a spectrum analyzer connected to a receive antenna while the EUT is operating at maximum power and at the appropriate frequencies. Only the radiated emissions of the configuration that produced the worst case emissions are reported in this section. All out of band emissions appearing in a restricted band as specified in Section 15.205 of the Title 47 CFR and Table 7 of RSS-Gen (8.10) must not exceed the limits shown in Table 7-6 per Section 15.209 and RSS-
Gen (8.9). Frequency Above 960.0 MHz Field Strength Measured Distance
[V/m]
500
[Meters]
3 Test Procedures Used ANSI C63.10-2013 Section 6.6.4.3 Table 7-6. Radiated Limits KDB 558074 D01 v05r02 Section 8.6, 8.7 Test Settings Average Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 1MHz 3. VBW = 3MHz 4. Detector = power average (RMS) 5. Number of measurement points = 1001 (Number of points must be 2 x span/RBW) 6. Sweep time = auto 7. Trace (RMS) averaging was performed over at least 100 traces Peak Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 1MHz 3. VBW = 3MHz 4. Detector = peak 5. Sweep time = auto couple 6. Trace mode = max hold 7. Trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 36 of 55 EUT Type:
Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-6. Radiated Test Setup >1GHz Test Notes 1. The optional test procedures for antenna port conducted measurements of unwanted emissions per the guidance of KDB 558074 D01 v05r02 were not used to evaluate this device for compliance to radiated limits. All radiated spurious emissions levels were measured in a radiated test setup. 2. All emissions lying in restricted bands specified in 15.205 and Section 8.10 of RSS-Gen are below the limit shown in Table 7-6. 3. The antenna is manipulated through typical positions, polarity and length during the tests. The EUT is manipulated through three orthogonal planes. 4. This unit was tested with its standard battery. 5. The spectrum is measured from 9kHz to the 10th harmonic of the fundamental frequency of the transmitter using CISPR quasi peak detector below 1GHz. Above 1 GHz, average and peak measurements were taken using linearly polarized horn antennas. The worst-case emissions are reported however emissions whose levels were not within 20dB of the respective limits were not reported. 6. Emissions below 18GHz were measured at a 3 meter test distance while emissions above 18GHz were measured at a 1 meter test distance with the application of a distance correction factor. 7. The "-" shown in the following RSE tables are used to denote a noise floor measurement. 8. The unit was tested with all possible mode and power schemes and only the highest emission is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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Sample Calculations Determining Spurious Emissions Levels o Field Strength Level [dBV/m] = Analyzer Level [dBm] + 107 + AFCL [dB/m]
o AFCL [dB/m] = Antenna Factor [dB/m] + Cable Loss [dB]
o Margin [dB] = Field Strength Level [dBV/m] Limit [dBV/m]
Radiated Band Edge Measurement Offset o The amplitude offset shown in the radiated restricted band edge plots in Section 0 was calculated using the formula:
Offset (dB) = (Antenna Factor + Cable Loss + Attenuator) Preamplifier Gain FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 38 of 55 EUT Type:
Radiated Spurious Emission Measurements 15.205 15.209 15.247(d); RSS-Gen [8.9]
Plot 7-29. Radiated Spurious Plot Above 1GHz (4Mbps, HDR4, ePA Ch. 1, Ant. Pol. H & V) Plot 7-30. Radiated Spurious Plot Above 1GHz (4Mbps, HDR4, ePA Ch. 38, Ant. Pol. H & V) Plot 7-31. Radiated Spurious Plot Above 1GHz (4Mbps, HDR4, ePA Ch. 75, Ant. Pol. H & V) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 39 of 55 EUT Type:
Radiated Spurious Emission Measurements (Above 18GHz) 15.205 15.209 15.247(d); RSS-Gen [8.9]
Plot 7-32. Radiated Spurious Plot Above 18GHz (4Mbps, HDR, ePA Ch. 38, Ant. Pol. H) Plot 7-33. Radiated Spurious Plot Above 18GHz (4Mbps, HDR, ePA Ch. 38, Ant. Pol. V) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 40 of 55 EUT Type:
Radiated Spurious Emission Measurements 15.205 15.209 15.247(d); RSS-Gen [8.9]
Bluetooth Mode:
Power Scheme Distance of Measurements:
Operating Frequency:
Channel:
HDR4 ePA 3 Meters 2404MHz 1 Table 7-7. Radiated Measurements Bluetooth Mode:
Power Scheme Distance of Measurements:
Operating Frequency:
Channel:
HDR4 ePA 3 Meters 2441MHz 38 Table 7-8. Radiated Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 41 of 55 EUT Type:
4808.00AvgH---79.065.4933.4353.98-20.554808.00PeakH---66.865.4945.6373.98-28.3512020.00AvgH---82.6715.4839.8153.98-14.1712020.00PeakH---70.7415.4851.7473.98-22.24AFCL [dB/m]Field Strength [dBV/m]Limit [dBV/m]Margin [dB]Turntable Azimuth [degree]Analyzer Level [dBm]Frequency [MHz]DetectorAnt. Pol. [H/V]Antenna Height [cm]4882.00AvgH---79.015.6533.6453.98-20.334882.00PeakH---67.515.6545.1473.98-28.837323.00AvgH---79.718.4735.7653.98-18.227323.00PeakH---68.248.4747.2373.98-26.7512205.00AvgH---81.9814.9840.0053.98-13.9812205.00PeakH---70.7014.9851.2873.98-22.70Field Strength [dBV/m]Limit [dBV/m]Margin [dB]Analyzer Level [dBm]AFCL [dB/m]Frequency [MHz]DetectorAnt. Pol. [H/V]Antenna Height [cm]Turntable Azimuth [degree]
Radiated Spurious Emission Measurements 15.205 15.209 15.247(d); RSS-Gen [8.9]
Bluetooth Mode:
Power Scheme Distance of Measurements:
Operating Frequency:
Channel:
HDR4 ePA 3 Meters 2478MHz 75 Table 7-9. Radiated Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 42 of 55 EUT Type:
4956.00AvgH---78.955.8833.9353.98-20.054956.00PeakH---67.315.8845.5773.98-28.417434.00AvgH---79.758.7736.0253.98-17.967434.00PeakH---67.528.7748.2573.98-25.7312390.00AvgH---82.8915.3139.4253.98-14.5612390.00PeakH---71.6615.3150.6573.98-23.33Limit [dBV/m]Margin [dB]Analyzer Level [dBm]AFCL [dB/m]Frequency [MHz]DetectorAnt. Pol. [H/V]Antenna Height [cm]Turntable Azimuth [degree]Field Strength [dBV/m]
Radiated Restricted Band Edge Measurements 7.8 15.205 15.209; RSS-Gen [8.9]
The radiated restricted band edge measurements are measured with an EMI test receiver connected to the receive antenna while the EUT is transmitting. The amplitude offset shown in the following plots for average measurements was calculated using the formula:
Offset (dB) = (Antenna Factor + Cable Loss + Attenuator) Preamplifier Gain Bluetooth Mode:
Power Scheme:
HDR4 ePA Measurement Distance:
3 Meters Operating Frequency:
2404MHz Channel:
1 Plot 7-34. Radiated Restricted Lower Band Edge Measurement (Average & Peak) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 43 of 55 EUT Type:
Radiated Restricted Band Edge Measurements 15.205 15.209; RSS-Gen [8.9]
The amplitude offset shown in the following plots for average measurements was calculated using the formula:
Offset (dB) = (Antenna Factor + Cable Loss + Attenuator) Preamplifier Gain Bluetooth Mode:
Power Scheme:
HDR8 ePA Measurement Distance:
3 Meters Operating Frequency:
2404MHz Channel:
1 Plot 7-35. Radiated Restricted Lower Band Edge Measurement (Average & Peak) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 44 of 55 EUT Type:
Radiated Restricted Band Edge Measurements 15.205 15.209; RSS-Gen [8.9]
The amplitude offset shown in the following plots for average measurements was calculated using the formula:
Offset (dB) = (Antenna Factor + Cable Loss + Attenuator) Preamplifier Gain Bluetooth Mode:
Power Scheme:
HDR4 ePA Measurement Distance:
3 Meters Operating Frequency:
2478MHz Channel:
75 Plot 7-36. Radiated Restricted Upper Band Edge Measurement (Average & Peak) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 45 of 55 EUT Type:
Radiated Restricted Band Edge Measurements 15.205 15.209; RSS-Gen [8.9]
The amplitude offset shown in the following plots for average measurements was calculated using the formula:
Offset (dB) = (Antenna Factor + Cable Loss + Attenuator) Preamplifier Gain Bluetooth Mode:
Power Scheme:
HDR8 ePA Measurement Distance:
3 Meters Operating Frequency:
2478MHz Channel:
75 Plot 7-37. Radiated Restricted Upper Band Edge Measurement (Average & Peak) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 46 of 55 EUT Type:
Radiated Spurious Emissions Measurements Below 1GHz 7.9 15.209; RSS-Gen [8.9]
Test Overview and Limit All out of band radiated spurious emissions are measured with a spectrum analyzer connected to a receive antenna while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. All data rates and modes were investigated for radiated spurious emissions. Only the radiated emissions of the configuration that produced the worst case emissions are reported in this section. All out of band emissions appearing in a restricted band as specified in Section 15.205 of the Title 47 CFR and Table 7 of RSS-Gen (8.10) must not exceed the limits shown in Table 7-10 per Section 15.209 and RSS-Gen (8.9). Field Strength Measured Distance
[V/m]
2400/F (kHz) 24000/F (kHz) 30 100 150 200 500
[Meters]
300 30 30 3 3 3 3 Table 7-10. Radiated Limits Frequency 0.009 0.490 MHz 0.490 1.705 MHz 1.705 30.00 MHz 30.00 88.00 MHz 88.00 216.0 MHz 216.0 960.0 MHz Above 960.0 MHz Test Procedures Used ANSI C63.10-2013 Test Settings Quasi-Peak Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 120kHz (for emissions from 30MHz 1GHz) 3. Detector = quasi-peak 4. Sweep time = auto couple 5. Trace mode = max hold 6. Trace was allowed to stabilize Peak Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 120kHz (for emissions from 30MHz 1GHz) 3. VBW = 300kHz 4. Detector = peak 5. Sweep time = auto couple 6. Trace mode = max hold 7. Trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 47 of 55 EUT Type:
Test Setup The EUT and measurement equipment were set up as shown in the diagrams below. Figure 7-7. Radiated Test Setup < 30Mhz Figure 7-8. Radiated Test Setup < 1GHz FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 48 of 55 EUT Type:
Test Notes 1. All emissions lying in restricted bands specified in 15.205 and RSS-Gen (8.10) are below the limit shown in Table 7-10. 2. The broadband receive antenna is manipulated through vertical and horizontal polarizations during the tests. The EUT is manipulated through three orthogonal planes. 3. This unit was tested with its standard battery. 4. The spectrum is investigated using a peak detector and final measurements are recorded using CISPR quasi peak detector on emissions within 6dB of the limit. The worst-case emissions are reported however emissions whose levels were not within 20dB of the respective limits were not reported. 5. Emissions were measured at a 3 meter test distance. 6. Emissions are investigated while operating on the center channel of the mode, band, and modulation that produced the worst case results during the transmitter spurious emissions testing. 7. No spurious emissions were detected within 20dB of the limit below 30MHz. 8. The results recorded using the broadband antenna is known to correlate with the results obtained by using a tuned dipole with an acceptable degree of accuracy. The VSWR for the measurement antenna was found to be less than 2:1. 9. The wide spectrum spurious emissions plots shown on the following pages are used only for the purpose of emission identification. There were no emissions detected in the 30MHz 1GHz frequency range, as shown in the subsequent plots. 10. The unit was tested with all possible mode and power schemes and only the highest emission is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 49 of 55 EUT Type:
Radiated Spurious Emissions Measurements (Below 1GHz) 15.209; RSS-Gen [8.9]
Plot 7-38. Radiated Spurious below 1GHz (4Mbps, HDR ePA, Ch.38 with WCP + AC/DC Adapter attached) Table 7-11. Radiated Spurious below 1GHz (4Mbps, HDR ePA, Ch.38 with WCP + AC/DC Adapter attached) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 50 of 55 EUT Type:
0 10 20 30 40 50 60 70 8030M 5060 80100M200300400500 8001GLevel in dBV/mFrequency in HzPreview Result 1V-PK+Preview Result 1H-PK+Critical_Freqs PK+FCC Part 15C 30MHz-1GHzFCC Part 15C 30MHz-1GHz_-6Final_Result QPKFCC Part 15C 30MHz-1GHzFCC Part 15C 30MHz-1GHz_-630.19Max-PeakV10059-69.76-9.4527.7940.00-12.2136.16Max-PeakV100154-66.91-12.5927.5040.00-12.50171.43Max-PeakH10024-66.83-16.3823.7943.52-19.73198.78Max-PeakH10015-63.81-18.6424.5543.52-18.97277.54Max-PeakH10090-68.45-15.9222.6346.02-23.39965.47Max-PeakH100226-78.81-3.6524.5453.98-29.44Field Strength [dBV/m]Limit [dBV/m]Margin [dB]Analyzer Level [dBm]AFCL [dB/m]Frequency [MHz]DetectorAnt. Pol. [H/V]Antenna Height [cm]Turntable Azimuth [degree]
7.10 AC Line-Conducted Test Data 15.207; RSS-Gen [8.8]
Test Overview and Limit All AC line conducted spurious emissions are measured with a receiver connected to a grounded LISN while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. All data rates and modes were investigated for conducted spurious emissions. Only the conducted emissions of the configuration that produced the worst case emissions are reported in this section. All conducted emissions must not exceed the limits shown in the table below, per Section 15.207 and RSS-Gen (8.8). Frequency of emission Conducted Limit (dBV)
(MHz) 0.15 0.5 0.5 5 5 30 Quasi-peak 66 to 56*
56 60 Average 56 to 46*
46 50 Table 7-12. Conducted Limits
*Decreases with the logarithm of the frequency. Test Procedures Used ANSI C63.10-2013, Section 6.2 Test Settings Quasi-Peak Field Strength Measurements 7. Analyzer center frequency was set to the frequency of the spurious emission of interest 8. RBW = 9kHz (for emissions from 150kHz 30MHz) 9. Detector = quasi-peak 10. Sweep time = auto couple 11. Trace mode = max hold 12. Trace was allowed to stabilize Average Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the spurious emission of interest 2. RBW = 9kHz (for emissions from 150kHz 30MHz) 3. Detector = RMS 4. Sweep time = auto couple 5. Trace mode = max hold 6. Trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 51 of 55 EUT Type:
Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-9. Test Instrument & Measurement Setup Test Notes 1. 2. 3. 4. All modes of operation were investigated and the worst-case emissions are reported using mid channel. The emissions found were not affected by the choice of channel used during testing. The limit for an intentional radiator from 150kHz to 30MHz are specified in Part 15.207 and RSS-Gen (8.8). Corr. (dB) = Cable loss (dB) + LISN insertion factor (dB) QP/AV Level (dBV) = QP/AV Analyzer/Receiver Level (dBV) + Corr. (dB) 5. Margin (dB) = QP/AV Limit (dBV) - QP/AV Level (dBV) 6. 7. The traces on the plots were measured with a Quasi-peak and Average detectors. Deviations to the Specifications: None. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 52 of 55 EUT Type:
Plot 7-39. Line Conducted Plot with Bluetooth HDR (L1- 4Mbps, ePA, Ch.38 with WCP + AC/DC Adapter) Table 7-13. Line Conducted Data with Bluetooth HDR (L1- 4Mbps, ePA, Ch.38 with WCP + AC/DC Adapter) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 53 of 55 EUT Type:
0 10 20 30 40 50 60 70 80 90150k 300400500 8001M2M3M4M5M6 810M20M30MLevel in dBVFrequency in HzPreview Result 2-AVGPreview Result 1-QPKCritical_Freqs AVGCritical_Freqs QPKFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AVFinal_Result QPKFinal_Result AVGFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AV Plot 7-40. Line Conducted Plot with Bluetooth HDR (N- 4Mbps, ePA, Ch.38 with WCP + AC/DC Adapter) Table 7-14. Line Conducted Data with Bluetooth HDR (N- 4Mbps, ePA, Ch.38 with WCP + AC/DC Adapter) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 54 of 55 EUT Type:
0 10 20 30 40 50 60 70 80 90150k 300400500 8001M2M3M4M5M6 810M20M30MLevel in dBVFrequency in HzPreview Result 2-AVGPreview Result 1-QPKCritical_Freqs AVGCritical_Freqs QPKFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AVFinal_Result QPKFinal_Result AVGFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AV 8.0 C O N C L U S I O N data relate collected The the Apple Watch FCC ID: BCG-A2157 is in compliance with Part 15 Subpart C (15.247) of the FCC Rules and RSS-247 of the Innovation, Science and Economic Development Canada Rules. item(s) tested show only and that the FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-06.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 55 of 55 EUT Type:
1 2 3 4 | Bluetooth LE Test Report | Test Report | 2.74 MiB | March 09 2019 / October 09 2019 |
PCTEST ENGINEERING LABORATORY, INC. 18855 Adams Court, Morgan Hill, CA 95037 USA Tel. 410.290.6652 / Fax 410.290.6654 http://www.pctest.com MEASUREMENT REPORT FCC PART 15.247 / ISED RSS-247 Bluetooth (Low Energy) Date of Testing:
05/01/2019 - 08/09/2019 Test Site/Location:
PCTEST Lab. Morgan Hill, CA, USA Test Report Serial No.:
1C1905130011-07.BCG BCG-A2157 579C-A2157 Apple Inc. Certification A2157 Watch 57.943 mW (17.63 dBm) Peak Conducted 2402 2480MHz Digital Transmission System (DTS) Part 15 Subpart C (15.247) RSS-247 Issue 2 ANSI C63.10-2013, KDB 558074 D01 v05r02 Applicant Name:
Apple Inc. One Apple Park Way Cupertino, CA 95014 United States FCC ID:
IC:
APPLICANT:
Application Type:
Model/HVIN:
EUT Type:
Max. RF Output Power:
Frequency Range:
FCC Classification:
FCC Rule Part(s):
ISED Specification:
Test Procedure(s):
This equipment has been shown to be capable of compliance with the applicable technical standards as indicated in the measurement report and was tested in accordance with the measurement procedures specified in ANSI C63.10-2013 and KDB 558074 D01 v05r02. Test results reported herein relate only to the item(s) tested. I attest to the accuracy of data. All measurements reported herein were performed by me or were made under my supervision and are correct to the best of my knowledge and belief. I assume full responsibility for the completeness of these measurements and vouch for the qualifications of all persons taking them. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 1 of 56 EUT Type:
T A B L E O F C O N T E N T S 1.0 INTRODUCTION .......................................................................................................................................... 3 1.1 Scope ................................................................................................................................................................... 3 1.2 PCTEST Test Location ......................................................................................................................................... 3 1.3 Test Facility / Accreditations ................................................................................................................................. 3 2.0 PRODUCT INFORMATION .......................................................................................................................... 4 2.1 Equipment Description ......................................................................................................................................... 4 2.2 Device Capabilities ............................................................................................................................................... 4 2.3 Antenna Description ............................................................................................................................................. 5 2.4 Test Support Equipment ....................................................................................................................................... 5 2.5 Test Configuration ................................................................................................................................................ 6 2.6 Software and Firmware ........................................................................................................................................ 6 2.7 EMI Suppression Device(s)/Modifications ............................................................................................................ 6 3.0 DESCRIPTION OF TESTS .......................................................................................................................... 7 3.1 Evaluation Procedure ........................................................................................................................................... 7 3.2 AC Line Conducted Emissions ............................................................................................................................. 7 3.3 Radiated Emissions .............................................................................................................................................. 8 3.4 Environmental Conditions ..................................................................................................................................... 8 ANTENNA REQUIREMENTS ...................................................................................................................... 9 MEASUREMENT UNCERTAINTY ............................................................................................................. 10 TEST EQUIPMENT CALIBRATION DATA ................................................................................................ 11 TEST RESULTS ......................................................................................................................................... 12 7.1 Summary ............................................................................................................................................................ 12 7.2 6dB Bandwidth Measurement Bluetooth (LE) .................................................................................................. 13 7.3 Output Power Measurement Bluetooth (LE) .................................................................................................... 18 7.3.1 Peak Output Power Measurement Bluetooth (LE) ....................................................................................... 19 7.3.2 Average Output Power Measurement Bluetooth (LE) .................................................................................. 20 7.4 Power Spectral Density Bluetooth (LE) ........................................................................................................... 21 7.5 Conducted Emissions at the Band Edge ............................................................................................................ 29 7.6 Conducted Spurious Emissions .......................................................................................................................... 32 7.7 Radiated Spurious Emission Measurements Above 1GHz .............................................................................. 37 7.8 Radiated Restricted Band Edge Measurements ................................................................................................. 44 7.9 Radiated Spurious Emissions Measurements Below 1GHz ............................................................................ 48 AC Line-Conducted Test Data ........................................................................................................................ 52 7.10 CONCLUSION ............................................................................................................................................ 56 4.0 5.0 6.0 7.0 8.0 FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 2 of 56 EUT Type:
1.0 I N T R O D U C T I O N Scope 1.1 Measurement and determination of electromagnetic emissions (EMC) of radio frequency devices including intentional and/or unintentional radiators for compliance with the technical rules and regulations of the Federal Communications Commission and the Innovation, Science and Economic Development Canada. PCTEST Test Location 1.2 These measurement tests were conducted at the PCTEST Engineering Laboratory, Inc. facility located at 18855 Adams Court, Morgan Hill, CA 95037. The measurement facility is compliant with the test site requirements specified in ANSI C63.4-2014 and KDB 414788 D01 v01r01. 1.3 Measurements were performed at PCTEST Engineering Lab located in Morgan Hill, CA 95037, U.S.A. PCTEST is an ISO 17025-2005 accredited test facility under the American Association for Laboratory Accreditation (A2LA) with Certificate number 2041.02 for Specific Absorption Rate (SAR), Hearing Aid Compatibility (HAC) testing, where applicable, and Electromagnetic Compatibility (EMC) testing for FCC and Innovation, Science, and Economic Development Canada rules. Test Facility / Accreditations PCTEST TCB is a Telecommunication Certification Body (TCB) accredited to ISO/IEC 17065-2012 by A2LA
(Certificate number 2041.03) in all scopes of FCC Rules and ISED Standards (RSS). PCTEST facility is a registered (22831) test laboratory with the site description on file with ISED. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 3 of 56 EUT Type:
2.0 P R O D U C T I N F O R M A T I O N 2.1 Equipment Description The Equipment Under Test (EUT) is the Apple Watch FCC ID: BCG-A2157. The data found in this test report was taken with the EUT operating in Bluetooth low energy mode. While in low energy mode, the Bluetooth transmitter hops pseudo-randomly between 40 channels, three of which are advertising channels. When the transmitter is hopping only between the three advertising channels, the EUT does not fall under the category of a hopper as defined in 15.247(a)(iii) which states that a frequency hopping systems in the 24002483.5 MHz band shall use at least 15 channels. As operation on only the advertising channels does not qualify the EUT as a hopper, the EUT is certified as a DTS device in this mode. The data found in this report is representative of the device when it transmits on its advertising channels. Typical Bluetooth operation is covered under the DSS report found with this application. Test Device Serial No.: D92YD00QM8CJ, D92YF005M95Y, FN6911410ECKTRT5U 2.2 This device contains the following capabilities:
850/1700/1900 WCDMA/HSPA, Multi-band LTE, 802.11b/g/n WLAN, Bluetooth (1x, EDR, HDR4, HDR8, LE), NFC Device Capabilities Ch. 0
:
19
:
39 Frequency (MHz) 2402
:
2440
:
2480 Table 2-1. Frequency / Channel Operations Measured Duty Cycles BLE Mode Duty Cycle (%) 1Mbps 2Mbps ePA iPA ePA iPA 100.0 100.0 100.0 100.0 This device supports Bluetooth LE operations with 1Mbps and 2Mbps. Table 2-2. Measured Duty Cycles FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 4 of 56 EUT Type:
Antenna Description 2.3 Following antenna was used for the testing. Frequency [GHz]
Antenna Gain (dBi) 2.4
-10.4 Table 2-3. Highest Antenna Gain Note: This device is capable of operating in hopping and non-hopping mode. The EUT can hop between 40 different channels in the 2400 2483.5MHz band. 2.4 Test Support Equipment Table 2-4. Test Support Equipment Used FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 5 of 56 EUT Type:
1Apple MacBookModel:A1398S/N:C2QKP008F6F3w/AC/DC AdapterModel:A1435S/N:N/A2Apple USB CableModel:KanziS/N:311C81w/ Charging DockModel:FAPS73S/N:17481001022w/ DockModel:X241S/N:GW17F01ST223USB Lightning CableModel:N/AS/N:N/Aw/ AC AdapterModel:A1385S/N:N/A4Wireless Charging Pad (WCP)Model:EVTS/N:DLC915600ECLNWL3KWireless Charging Pad (WCP)Model:EVTS/N:DLC9156006TLNWK3V5Test Pathfinder Sinsa BoardModel:X1456S/N:920-062535-01w/ SiP CradleModel:P1 X1454SS/N:920-06373-026DC Power SupplyModel:KPS3010DS/N:N/A7Mobile Comm DC SourceModel:66321DS/N:MY52000555 Test Configuration 2.5 The EUT was tested per the guidance of ANSI C63.10-2013 and KDB 558074 D01 v05r02. ANSI C63.10-2013 was used to reference the appropriate EUT setup for radiated spurious emissions testing and AC line conducted testing. See Sections 3.2 for AC line conducted emissions test setups, 3.3 for radiated emissions test setups, and 7.2, 7.3, 7.4, 7.5, and 7.6 for antenna port conducted emissions test setups. The worst case configuration was investigated for all combinations of the four materials, aluminum, stainless steel, ceramic, and aluminum/ceramic mix, and various types of wristbands, metal and non-metal wristbands. The store display sample was investigated and determined as not the worst case. The EUT was also investigated with and without wireless charger. The worst case configuration found was used for all testing. For emissions from 1GHz 18GHz, low, mid, and high channels were tested with highest power and worst case configuration. The emissions below 1GHz and above 18GHz were tested with the highest transmitting power channel and the worst case configuration. The EUT was manipulated through three orthogonal planes of X-orientation (flatbed), Y-orientation (landscape), and Z-orientation (portrait) during the testing. Only the worst case emissions were reported in this test report. For AC line conducted and radiated test below 1GHz, following configurations were investigated and worst case was reported.
- EUT powered by AC/DC adaptor via USB cable with wireless charger
- EUT powered by host PC via USB cable with wireless charger Software and Firmware 2.6 The test was conducted with firmware version wOS 6.0 installed on the EUT. 2.7 EMI Suppression Device(s)/Modifications No EMI suppression device(s) were added and/or no modifications were made during testing. FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 6 of 56 EUT Type:
3.0 D E S C R I P T I O N O F T E S T S Evaluation Procedure AC Line Conducted Emissions 3.1 The measurement procedures described in the American National Standard of Procedures for Compliance Testing of Unlicensed Wireless Devices (ANSI C63.10-2013) and the guidance provided in KDB 558074 D01 v05r02 were used in the measurement of the EUT. Deviation from measurement procedure.....................................None 3.2 The line-conducted facility is located inside a 7m x 3.66m x 2.7m shielded enclosure. The shielded enclosure is manufactured by AP Americas. The shielding effectiveness of the shielded room is in accordance with MIL-Std-
285 or NSA 65-6. A 1m x 1.5m wooden table 80cm high is placed 40cm away from the vertical wall and 80cm away from the sidewall of the shielded room. Two 10kHz-30MHz, 50/50H Line-Impedance Stabilization Networks (LISNs) are bonded to the shielded room floor. Power to the LISNs is filtered by external high-current high-insertion loss power line filters. The external power line filter is EPCOS 2X60A Power Line Filter (100dB Attenuation, 14kHz-18GHz) and the two EPCOs 2X48A filters (100dB Minimum Insertion Loss, 14kHz 10GHz). These filters attenuate ambient signal noise from entering the measurement lines. These filters are also bonded to the shielded enclosure. The EUT is powered from one LISN and the support equipment is powered from the second LISN. If the EUT is a DC-powered device, power will be derived from the source power supply it normally will be powered from and this supply line(s) will be connected to the second LISN. All interconnecting cables more than 1 meter were shortened to a 1 meter length by non-inductive bundling (serpentine fashion) and draped over the back edge of the test table. All cables were at least 40cm above the horizontal reference groundplane. Power cables for support equipment were routed down to the second LISN while ensuring that that cables were not draped over the second LISN. Sufficient time for the EUT, support equipment, and test equipment was allowed in order for them to warm up to their normal operating condition. The RF output of the LISN was connected to the spectrum analyzer and exploratory measurements were made to determine the frequencies producing the maximum emission from the EUT. The spectrum was scanned from 150kHz to 30MHz with a spectrum analyzer. The detector function was set to peak mode for exploratory measurements while the bandwidth of the analyzer was set to 10kHz. The EUT, support equipment, and interconnecting cables were arranged and manipulated to maximize each emission. Once the worst case emissions have been identified, the one EUT cable configuration/arrangement and mode of operation that produced these emissions is used for final measurements on the same test site. The analyzer is set to CISPR quasi-peak and average detectors with a 9kHz resolution bandwidth for final measurements. Line conducted emissions test results are shown in Section 7.10. Automated test software was used to perform the AC line conducted emissions testing. Automated measurement software utilized is Rohde & Schwarz EMC32, Version 10.35.04. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 7 of 56 EUT Type:
Radiated Emissions 3.3 The radiated test facilities consisted of an indoor 3 meter semi-anechoic chamber used for final measurements and exploratory measurements, when necessary. The measurement area is contained within the semi-anechoic chamber which is shielded from any ambient interference. The test site inside the chamber is a 6m x 5.2m elliptical, obstruction-free area in accordance with Figure 5.7 of Clause 5 in ANSI C63.4-2014. Absorbers are arranged on the floor between the turn table and the antenna mast in such a way so as to maximize the reduction of reflections for measurements above 1GHz. An 80cm tall test table made of Styrodur is placed on top of the turn table. For measurements above 1GHz, an additional Styrodur pedestal is placed on top of the test table to bring the total table height to 1.5m. Per KDB 414788, radiated emission test sites other than open-field test sites (e.g., shielded anechoic chambers), may be employed for emission measurements below 30MHz if characterized so that the measurements correspond to those obtained at an open-field test site. To determine test site equivalency, a reference sample transmitting at 149kHz was measured on an open field test site (asphalt with no ground plane) and then measured in the 3m semi-anechoic chamber. A calibrated 60cm loop antenna was rotated about its vertical axis while the reference device was rotated through the X, Y and Z axis in order to capture the worst case level. A maximum deviation of 2.77dB at 149kHz was measured when comparing the 3 meter semi-anechoic chamber to the open field site. For all measurements, the spectrum was scanned through all EUT azimuths and from 1 to 4 meter receive antenna height using a broadband antenna from 30MHz up to the upper frequency shown in 15.33 depending on the highest frequency generated or used in the device or on which the device operates or tunes. For frequencies above 1GHz, linearly polarized double ridge horn antennas were used. For frequencies below 30MHz, a calibrated loop antenna was used. When exploratory measurements were necessary, they were performed at 1 meter test distance inside the semi-anechoic chamber using broadband antennas, broadband amplifiers, and spectrum analyzers to determine the frequencies and modes producing the maximum emissions. Sufficient time for the EUT, support equipment, and test equipment was allowed in order for them to warm up to their normal operating condition. The test set-up was placed on top of the 1 x 1.5 meter table. The EUT, support equipment, and interconnecting cables were arranged and manipulated to maximize each emission. Appropriate precaution was taken to ensure that all emissions from the EUT were maximized and investigated. The system configuration, mode of operation, turntable azimuth, and receive antenna height was noted for each frequency found. Final measurements were made in the semi-anechoic chamber using calibrated, linearly polarized broadband and horn antennas. The test setup was configured to the setup that produced the worst case emissions. The spectrum analyzer was set to investigate all frequencies required for testing to compare the highest radiated disturbances with respect to the specified limits. The turntable containing the EUT was rotated through 360 degrees and the height of the receive antenna was varied 1 to 4 meters and stopped at the azimuth and height producing the maximum emission. Each emission was maximized by changing the orientation of the EUT through three orthogonal planes and changing the polarity of the receive antenna, whichever produced the worst-case emissions. 3.4 The temperature is controlled within range of 15oC to 35oC. The relative humidity is controlled within range of 10%
to 75%. The atmospheric pressure is monitored within the range 86-106kPa (860-1060mbar). Environmental Conditions FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 8 of 56 EUT Type:
4.0 A N T E N N A R E Q U I R E M E N T S Excerpt from 15.203 of the FCC Rules/Regulations:
An intentional radiator antenna shall be designed to ensure that no antenna other than that furnished by the responsible party can be used with the device. The use of a permanently attached antenna or of an antenna that uses a unique coupling to the intentional radiator shall be considered sufficient to comply with the provisions of this section. The antenna(s) of the EUT are permanently attached. There are no provisions for connection to an external antenna. Conclusion:
The EUT complies with the requirement of 15.203. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 9 of 56 EUT Type:
5.0 M E A S U R E M E N T U N C E R T A I N T Y The measurement uncertainties shown below were calculated in accordance with the requirements of ANSI C63.10-2013. All measurement uncertainty values are shown with a coverage factor of k = 2 to indicate a 95% level of confidence. The measurement uncertainty shown below meets or exceeds the UCISPR measurement uncertainty values specified in CISPR 16-4-2 and, thus, can be compared directly to specified limits to determine compliance. Contribution Expanded Uncertainty (dB) Conducted Bench Top Measurements Line Conducted Disturbance Radiated Disturbance (<1GHz) Radiated Disturbance (>1GHz) Radiated Disturbance (>18GHz) 1.29 2.48 4.15 4.70 5.01 FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 10 of 56 EUT Type:
6.0 T E S T E Q U I P M E N T C A L I B R A T I O N D A T A Test Equipment Calibration is traceable to the National Institute of Standards and Technology (NIST). Measurements antennas used during testing were calibrated in accordance to the requirements of ANSI C63.5-
2017. Table 6-1. Annual Test Equipment Calibration Schedule Note:
For equipment listed above that has a calibration date or calibration due date that falls within the test date range, care was taken to ensure that this equipment was used after the calibration date and before the calibration due date. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 11 of 56 EUT Type:
Manufacturer Model Description Cal Date Cal Interval Cal Due Serial Number Agilent TechnologiesN9030A 3Hz-44GHz PXA Signal Analyzer 3/13/2019Annual3/13/2020MY49430244 AnritsuML2496APower Meter10/22/2018Annual10/22/2019184005AnritsuMA2411BPulse Power Sensor10/22/2018Annual10/22/20191726261AnritsuMA2411BPulse Power Sensor10/22/2018Annual10/22/20191726262ATM180-442A-KF20dB Nominal Gain Horn Antenna9/10/2018Annual9/10/2019T058701-03COM-POWER LIN-120A LISN 3/13/2019Annual3/13/2020241297Rohde & SchwarzESW26EMI Test Receiver5/21/2019Annual5/21/2020101299Rohde & Schwarz ESW44EMI Test Receiver11/20/2018Annual11/20/2019101570Rohde & Schwarz TS-PR1840Pre-Amplifier (18GHz - 40GHz)9/5/2018Annual 9/5/2019100050Rohde & Schwarz TS-PR8Pre-Amplifier (30MHz - 8GHz)1/7/2019Annual1/7/2020102325Rohde & Schwarz HL562EUltra Broadband Antenna (30MHz - 6GHz)10/24/2018Annual10/24/2019100810Rohde & Schwarz TC-TA18Cross Polarized Vivaldi Antenna (400MHz-18GHz)11/21/2018Annual11/21/2019101057Rohde & Schwarz TC-TA18Cross Polarized Vivaldi Antenna (400MHz-18GHz)12/7/2018Annual12/7/2019101063Rohde & Schwarz HFH2-Z2 Loop Antenna 3/21/2019Annual 3/21/2020100519 7.0 T E S T R E S U L T S Summary 7.1 Company Name:
Apple Inc. FCC ID:
BCG-A2157 FCC Classification:
Digital Transmission System (DTS) Number of Channels:
40 FCC Part Section(s) RSS Section(s) Test Description Test Limit Test Test Condition Result Reference 15.247(a)(2) RSS-247 [5.2]
6dB Bandwidth
> 500kHz PASS Section 7.2 15.247(b)(3) RSS-247 [5.4(d)]
Transmitter Output Power 1 Watt PASS Sections 7.3 15.247(e) RSS-247 [5.2]
Transmitter Power Spectral Density 8dBm / 3kHz Band PASS Section 7.4 CONDUCTED 15.247(d) RSS-247 [5.5]
Band Edge /
Out-of-Band Emissions 20dBc PASS Sections 7.5, 7.6 15.205 15.209 RSS-Gen [8.9]
General Field Strength Limits (Restricted Bands and Radiated Emission Limits) Emissions in restricted bands must meet the radiated limits detailed in 15.209 (RSS-Gen [8.9]) RADIATED PASS Sections 7.7, 7.8, 7.9 15.207 RSS-Gen [8.8]
AC Conducted Emissions 150kHz 30MHz
< FCC 15.207 limits
(RSS-Gen[8.8]) LINE CONDUCTED PASS Section 7.10 Table 7-1. Summary of Test Results Notes:
1. All modes of operation were investigated. The test results shown in the following sections represent the worst case emissions. 2. The analyzer plots shown in this section were all taken with a correction table loaded into the analyzer. The correction table was used to account for the losses of the cables and attenuators used as part of the system to connect the EUT to the analyzer at all frequencies of interest. 3. All antenna port conducted emissions testing was performed on a test bench with the antenna port of the EUT connected to the spectrum analyzer through calibrated cables and attenuators. 4. For conducted spurious emissions, automated test software was used to measure emissions and capture the corresponding plots necessary to show compliance. The measurement software utilized is PCTEST Bluetooth LE Automation, Version 3.1. 5. For radiated band edge, automated test software was used to measure emissions and capture the corresponding plots necessary to show compliance. The measurement software utilized is PCTEST Chamber Automation, Version 1.3.1. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 12 of 56 EUT Type:
6dB Bandwidth Measurement Bluetooth (LE) 7.2 15.247(a.2); RSS-247 [5.2]
Test Overview and Limit The bandwidth at 6dB down from the highest in-band spectral density is measured with a spectrum analyzer connected to the transmitter antenna terminal of the EUT while the EUT is operating at maximum power and at the appropriate frequencies. All modes of operation were investigated and the worst case configuration results are reported in this section. The minimum permissible 6dB bandwidth is 500 kHz. Test Procedure Used ANSI C63.10-2013 Section 11.8.2 Option 2 KDB 558074 D01 v05r02 Section 8.2 Test Settings 1. The signal analyzers automatic bandwidth measurement capability of the spectrum analyzer was used to perform the 6dB bandwidth measurement. The X dB bandwidth parameter was set to X = 6. The bandwidth measurement was not influenced by any intermediate power nulls in the fundamental emission. 2. RBW = 100kHz 3. VBW 3 x RBW 4. Detector = Peak 5. Trace mode = max hold 6. Sweep = auto couple 7. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-1. Test Instrument & Measurement Setup Test Notes Both power schemes were investigated, and only the worst case is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 13 of 56 EUT Type:
Table 7-2. Conducted Bandwidth Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 14 of 56 EUT Type:
24021.0ePA0LE716.0500Pass24401.0ePA19LE717.0500Pass24801.0ePA39LE721.3500Pass24022.0ePA0LE1386.2500Pass24402.0ePA19LE1386.3500Pass24802.0ePA39LE1378.5500PassPower SchemeChannel No.Bluetooth ModeMeasured Bandwidth [kHz]Minimum Bandwidth [kHz]Pass / FailFrequency [MHz]Data Rate Plot 7-1. 6dB Bandwidth Plot (Bluetooth (LE), 1Mbps ePA Ch. 0) Plot 7-2. 6dB Bandwidth Plot (Bluetooth (LE), 1Mbps ePA Ch. 19) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 15 of 56 EUT Type:
Plot 7-3. 6dB Bandwidth Plot (Bluetooth (LE), 1Mbps ePA Ch. 39) Plot 7-4. 6dB Bandwidth Plot (Bluetooth (LE), 2Mbps ePA Ch. 0) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 16 of 56 EUT Type:
Plot 7-5. 6dB Bandwidth Plot (Bluetooth (LE), 2Mbps ePA Ch. 19) Plot 7-6. 6dB Bandwidth Plot (Bluetooth (LE), 2Mbps ePA Ch. 39) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 17 of 56 EUT Type:
7.3 Output Power Measurement Bluetooth (LE) 15.247(b.3); RSS-247 [5.4(d)]
Test Overview and Limits The transmitter antenna terminal of the EUT is connected to the input of a spectrum analyzer. Measurements are made while the EUT is operating at maximum power and at the appropriate frequencies. The maximum permissible conducted output power is 1 Watt. Test Procedure Used KDB 558074 D01 v05r02 Section 8.3.1.3, 8.3.2.3 Test Settings Method PKPM1 (Peak Power Measurement) The maximum peak conducted output power may be measured using a broadband peak RF power meter. The power meter shall have a video bandwidth that is greater than or equal to the DTS bandwidth and shall utilize a fast-responding diode detector. Method AVGPM-G (Average Power Measurement) Average power measurements were performed only when the EUT was transmitting at its maximum power control level using a broadband power meter with a pulse sensor. The power meter implemented triggering and gating capabilities which were set up such that power measurements were recorded only during the ON time of the transmitter. The trace was averaged over 100 traces to obtain the final measured average power. Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-2. Test Instrument & Measurement Setup for Peak and Average Power Measurement Test Notes None FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 18 of 56 EUT Type:
7.3.1 Peak Output Power Measurement Bluetooth (LE) 15.247(b.3); RSS-247 [5.4(d)]
Table 7-3. Peak Conducted Output Power Measurements (Bluetooth (LE)) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 19 of 56 EUT Type:
[dBm][mW]24021.0ePA0LE17.6257.810-10.407.2236.02-28.8024401.0ePA19LE17.2953.580-10.406.8936.02-29.1324801.0ePA39LE17.3654.450-10.406.9636.02-29.0624021.0iPA0LE13.1220.512-10.402.7236.02-33.3024401.0iPA19LE12.7418.793-10.402.3436.02-33.6824801.0iPA39LE13.1620.701-10.402.7636.02-33.2624022.0ePA0LE17.6357.943-10.407.2336.02-28.7924402.0ePA19LE17.2953.580-10.406.8936.02-29.1324802.0ePA39LE17.4655.719-10.407.0636.02-28.9624022.0iPA0LE13.1420.606-10.402.7436.02-33.2824402.0iPA19LE12.7418.793-10.402.3436.02-33.6824802.0iPA39LE12.7418.793-10.402.3436.02-33.68Frequency [MHz]Channel No.Bluetooth ModeData Rate [Mbps]Ant. Gain [dBi]EIRP[dBm]Limit[dBm]Peak Conducted PowerPower SchemeMargin[dB]
7.3.2 Average Output Power Measurement Bluetooth (LE) 15.247(b.3); RSS-247 [5.4(d)]
Table 7-4. Average Conducted Output Power Measurements (Bluetooth (LE)) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 20 of 56 EUT Type:
[dBm][mW]24021.0ePA0LE17.5056.234-10.407.1036.02-28.9224401.0ePA19LE17.2653.211-10.406.8636.02-29.1624801.0ePA39LE17.2052.481-10.406.8036.02-29.2224021.0iPA0LE13.0019.953-10.402.6036.02-33.4224401.0iPA19LE12.7018.621-10.402.3036.02-33.7224801.0iPA39LE13.0019.953-10.402.6036.02-33.4224022.0ePA0LE17.5056.234-10.407.1036.02-28.9224402.0ePA19LE17.2553.088-10.406.8536.02-29.1724802.0ePA39LE17.2152.602-10.406.8136.02-29.2124022.0iPA0LE13.0019.953-10.402.6036.02-33.4224402.0iPA19LE12.7018.621-10.402.3036.02-33.7224802.0iPA39LE12.6918.578-10.402.2936.02-33.73Data Rate [Mbps]Power SchemeChannel No.Bluetooth ModeAverage Conducted PowerFrequency [MHz]Ant. Gain [dBi]EIRP[dBm]Limit[dBm]Margin[dB]
Power Spectral Density Bluetooth (LE) 7.4 15.247(e); RSS-247 [5.2]
Test Overview and Limit The peak power density is measured with a spectrum analyzer connected to the antenna terminal of the EUT while the EUT is operating at maximum power and at the appropriate frequencies. The maximum permissible power spectral density is 8 dBm in any 3 kHz band. Test Procedure Used ANSI C63.10-2013 Section 11.10.2 Method PKPSD KDB 558074 D01 v05r02 Section 8.4 DTS Maximum Power Spectral Density level in the fundamental emission Test Settings 1. Analyzer was set to the center frequency of the DTS channel under investigation 2. Span = 1.5 times the DTS channel bandwidth 3. RBW = 3kHz 4. VBW = 1MHz 5. Detector = peak 6. Sweep time = auto couple 7. Trace mode = max hold 8. Trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-3. Test Instrument & Measurement Setup Test Notes None FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 21 of 56 EUT Type:
Table 7-5. Conducted Power Density Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 22 of 56 EUT Type:
24021.0ePA0LE1.538.0-6.4724401.0ePA19LE1.768.0-6.2424801.0ePA39LE-0.098.0-8.0924021.0iPA0LE-2.848.0-10.8424401.0iPA19LE-2.568.0-10.5624801.0iPA39LE-4.478.0-12.4724022.0ePA0LE-3.908.0-11.9024402.0ePA19LE-3.578.0-11.5724802.0ePA39LE-5.348.0-13.3424022.0iPA0LE-8.208.0-16.2024402.0iPA19LE-7.888.0-15.8824802.0iPA39LE-9.808.0-17.80Frequency [MHz]Channel No.Bluetooth ModeMeasured Power Spectral Density [dBm/3kHz]Maximum Permissible Power Density [dBm / 3kHz]Margin [dB]Data Rate [Mbps]Power Scheme Plot 7-7. Power Spectral Density Plot (Bluetooth (LE), 1Mbps ePA Ch. 0) Plot 7-8. Power Spectral Density Plot (Bluetooth (LE), 1Mbps ePA Ch. 19) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 23 of 56 EUT Type:
Plot 7-9. Power Spectral Density Plot (Bluetooth (LE), 1Mbps ePA Ch. 39) Plot 7-10. Power Spectral Density Plot (Bluetooth (LE), 1Mbps iPA Ch. 0) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 24 of 56 EUT Type:
Plot 7-11. Power Spectral Density Plot (Bluetooth (LE), 1Mbps iPA Ch. 19) Plot 7-12. Power Spectral Density Plot (Bluetooth (LE), 1Mbps iPA Ch. 39) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 25 of 56 EUT Type:
Plot 7-13. Power Spectral Density Plot (Bluetooth (LE), 2Mbps ePA Ch. 0) Plot 7-14. Power Spectral Density Plot (Bluetooth (LE), 2Mbps ePA Ch. 19) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 26 of 56 EUT Type:
Plot 7-15. Power Spectral Density Plot (Bluetooth (LE), 2Mbps ePA Ch. 39) Plot 7-16. Power Spectral Density Plot (Bluetooth (LE), 2Mbps iPA Ch. 0) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 27 of 56 EUT Type:
Plot 7-17. Power Spectral Density Plot (Bluetooth (LE), 2Mbps iPA Ch. 19) Plot 7-18. Power Spectral Density Plot (Bluetooth (LE), 2Mbps iPA Ch. 39) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 28 of 56 EUT Type:
Conducted Emissions at the Band Edge 7.5 15.247(d); RSS-247 [5.5]
Test Overview and Limit For the following out of band conducted spurious emissions plots at the band edge, the EUT was set to transmit at maximum power with the largest packet size available. These settings produced the worst-case emissions. The limit for out-of-band spurious emissions at the band edge is 20dB below the fundamental emission level, as determined from the in-band power measurement of the DTS channel performed in a 100kHz bandwidth. Test Procedure Used ANSI C63.10-2013 Section 11.11.3 KDB 558074 D01 v05r02 Section 8.7.2 Test Settings 1. Start and stop frequency were set such that the band edge would be placed in the center of the plot 2. Span was set large enough so as to capture all out of band emissions near the band edge 3. RBW = 100kHz 4. VBW = 300kHz 5. Detector = Peak 6. Number of sweep points 2 x Span/RBW 7. Trace mode = max hold 8. Sweep time = auto couple 9. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-4. Test Instrument & Measurement Setup Test Notes Both power schemes were investigated, and only the worst case is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 29 of 56 EUT Type:
Plot 7-19. Band Edge Plot (Bluetooth (LE), 1Mbps ePA Ch. 0) Plot 7-20. Band Edge Plot (Bluetooth (LE), 1Mbps ePA Ch. 39) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 30 of 56 EUT Type:
Plot 7-21. Band Edge Plot (Bluetooth (LE), 2Mbps ePA Ch. 0) Plot 7-22. Band Edge Plot (Bluetooth (LE), 2Mbps ePA Ch. 39) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 31 of 56 EUT Type:
Conducted Spurious Emissions 7.6 15.247(d); RSS-247 [5.5]
Test Overview and Limit For the following out of band conducted spurious emissions plots, the EUT was set to transmit at maximum power with the largest packet size available. The worst case spurious emissions were found in this configuration. The limit for out-of-band spurious emissions at the band edge is 20dB below the fundamental emission level, as determined from the in-band power measurement of the DTS channel performed in a 100kHz bandwidth per the procedure in Section 8.5 of KDB 558074 D01 v05r02 and Section 11.11.3 of ANSI C63.10-2013. Test Procedure Used ANSI C63.10-2013 Section 11.11.3 KDB 558074 D01 v05r02 Section 8.5 Test Settings 1. Start frequency was set to 30MHz and stop frequency was set to 25GHz (separated into two plots per channel) 2. RBW = 1MHz 3. VBW = 3MHz 4. Detector = Peak 5. Trace mode = max hold 6. Sweep time = auto couple 7. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-5. Test Instrument & Measurement Setup FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 32 of 56 EUT Type:
Test Notes 1. RBW was set to 1MHz rather than 100kHz in order to increase the measurement speed. 2. The display line shown in the following plots denotes the limit at 20dB below the fundamental emission level measured in a 100kHz bandwidth. However, since the traces in the following plots are measured with a 1MHz RBW, the display line may not necessarily appear to be 20dB below the level of the fundamental in a 1MHz bandwidth. 3. For plots showing conducted spurious emissions near the limit, the frequencies were investigated with a reduced RBW to ensure that no emissions were present. 4. The unit was tested with all possible mode and power schemes and only the highest emission is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 33 of 56 EUT Type:
Plot 7-23. Conducted Spurious Plot (Bluetooth (LE), 1Mbps ePA Ch. 0) Plot 7-24. Conducted Spurious Plot (Bluetooth (LE), 1Mbps ePA Ch. 0) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 34 of 56 EUT Type:
Plot 7-25. Conducted Spurious Plot (Bluetooth (LE), 1Mbps ePA Ch. 19) Plot 7-26. Conducted Spurious Plot (Bluetooth (LE), 1Mbps ePA Ch. 19) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 35 of 56 EUT Type:
Plot 7-27. Conducted Spurious Plot (Bluetooth (LE), 1Mbps ePA Ch. 39) Plot 7-28. Conducted Spurious Plot (Bluetooth (LE), 1Mbps ePA Ch. 39) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 36 of 56 EUT Type:
Radiated Spurious Emission Measurements Above 1GHz 7.7 15.205 15.209 15.247(d); RSS-Gen [8.9]
Test Overview and Limit All out of band radiated spurious emissions are measured with a spectrum analyzer connected to a receive antenna while the EUT is operating at maximum power and at the appropriate frequencies. Only the radiated emissions of the configuration that produced the worst case emissions are reported in this section. All out of band emissions appearing in a restricted band as specified in Section 15.205 of the Title 47 CFR and Table 7 of RSS-Gen (8.10) must not exceed the limits shown in Table 7-6 per Section 15.209 and RSS-
Gen (8.9). Frequency Above 960.0 MHz Field Strength Measured Distance
[V/m]
500
[Meters]
3 Test Procedures Used ANSI C63.10-2013 Section 6.6.4.3 Table 7-6. Radiated Limits KDB 558074 D01 v05r02 Section 8.6, 8.7 Test Settings Average Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 1MHz 3. VBW = 3MHz 4. Detector = power average (RMS) 5. Number of measurement points = 1001 (Number of points must be 2 x span/RBW) 6. Sweep time = auto 7. Trace (RMS) averaging was performed over at least 100 traces Peak Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 1MHz 3. VBW = 3MHz 4. Detector = peak 5. Sweep time = auto couple 6. Trace mode = max hold 7. Trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 37 of 56 EUT Type:
Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-6. Radiated Test Setup >1GHz Test Notes 1. The optional test procedures for antenna port conducted measurements of unwanted emissions per the guidance of KDB 558074 D01 v05r02 were not used to evaluate this device for compliance to radiated limits. All radiated spurious emissions levels were measured in a radiated test setup. 2. All emissions lying in restricted bands specified in 15.205 and Section 8.10 of RSS-Gen are below the limit shown in Table 7-6. 3. The antenna is manipulated through typical positions, polarity and length during the tests. The EUT is manipulated through three orthogonal planes. 4. This unit was tested with its standard battery. 5. The spectrum is measured from 9kHz to the 10th harmonic of the fundamental frequency of the transmitter using CISPR quasi peak detector below 1GHz. Above 1 GHz, average and peak measurements were taken using linearly polarized horn antennas. The worst-case emissions are reported however emissions whose levels were not within 20dB of the respective limits were not reported. 6. Emissions below 18GHz were measured at a 3 meter test distance while emissions above 18GHz were measured at a 1 meter test distance with the application of a distance correction factor. 7. The "-" shown in the following RSE tables are used to denote a noise floor measurement. 8. The unit was tested with all possible mode and power schemes and only the highest emission is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 38 of 56 EUT Type:
Sample Calculations Determining Spurious Emissions Levels o Field Strength Level [dBV/m] = Analyzer Level [dBm] + 107 + AFCL [dB/m]
o AFCL [dB/m] = Antenna Factor [dB/m] + Cable Loss [dB]
o Margin [dB] = Field Strength Level [dBV/m] Limit [dBV/m]
Radiated Band Edge Measurement Offset o The amplitude offset shown in the radiated restricted band edge plots in Section 7.8 was calculated using the formula:
Offset (dB) = (Antenna Factor + Cable Loss + Attenuator) Preamplifier Gain FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 39 of 56 EUT Type:
Radiated Spurious Emission Measurements 15.205 15.209 15.247(d); RSS-Gen [8.9]
Plot 7-29. Radiated Spurious Plot Above 1GHz (1Mbps, ePA Ch. 0) Plot 7-30. Radiated Spurious Plot Above 1GHz (1Mbps, ePA Ch. 19) Plot 7-31. Radiated Spurious Plot Above 1GHz (1Mbps, ePA Ch. 39) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 40 of 56 EUT Type:
Radiated Spurious Emission Measurements (Above 18GHz) 15.205 15.209 15.247(d); RSS-Gen [8.9]
Plot 7-32. Radiated Spurious Plot Above 18GHz (1Mbps, ePA Ch. 19, Ant. Pol. H) Plot 7-33. Radiated Spurious Plot Above 18GHz (1Mbps, ePA Ch. 19, Ant. Pol. V) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 41 of 56 EUT Type:
Radiated Spurious Emission Measurements 15.205 15.209 15.247(d); RSS-Gen [8.9]
Bluetooth Mode:
Distance of Measurements:
Operating Frequency:
Channel:
LE 3 Meters 2402MHz 0 Table 7-7. Radiated Measurements Bluetooth Mode:
Distance of Measurements:
Operating Frequency:
Channel:
LE 3 Meters 2440MHz 19 Table 7-8. Radiated Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 42 of 56 EUT Type:
4804.00AvgH---78.615.5033.8953.98-20.094804.00PeakH---66.395.5046.1173.98-27.8712010.00AvgH222217-80.3515.0041.6553.98-12.3312010.00PeakH222217-69.6515.0052.3573.98-21.63Margin [dB]Analyzer Level [dBm]AFCL [dB/m]Field Strength [dBV/m]Ant. Pol. [H/V]Limit [dBV/m]Antenna Height [cm]Turntable Azimuth [degree]Frequency [MHz]Detector4880.00AvgH---79.095.6533.5653.98-20.424880.00PeakH---67.905.6544.7573.98-29.237320.00AvgH111198-78.568.4936.9353.98-17.057320.00PeakH111198-67.528.4947.9773.98-26.0112200.00AvgH210148-79.7614.9742.2153.98-11.7712200.00PeakH210148-69.4914.9752.4873.98-21.50Margin [dB]Antenna Height [cm]Turntable Azimuth [degree]Frequency [MHz]Analyzer Level [dBm]DetectorAnt. Pol. [H/V]AFCL [dB/m]Field Strength [dBV/m]Limit [dBV/m]
Radiated Spurious Emission Measurements 15.205 15.209 15.247(d); RSS-Gen [8.9]
Bluetooth Mode:
Distance of Measurements:
Operating Frequency:
Channel:
LE 3 Meters 2480MHz 39 Table 7-9. Radiated Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 43 of 56 EUT Type:
4960.00AvgH---79.185.7633.5853.98-20.404960.00PeakH---67.455.7645.3173.98-28.677440.00AvgH---79.428.9236.5053.98-17.487440.00PeakH---68.268.9247.6673.98-26.3212400.00AvgH---83.0415.8839.8453.98-14.1412400.00PeakH---71.8815.8851.0073.98-22.98Antenna Height [cm]Margin [dB]Limit [dBV/m]Turntable Azimuth [degree]Field Strength [dBV/m]AFCL [dB/m]Frequency [MHz]Analyzer Level [dBm]DetectorAnt. Pol. [H/V]
Radiated Restricted Band Edge Measurements 7.8 15.205 15.209; RSS-Gen [8.9]
The radiated restricted band edge measurements are measured with an EMI test receiver connected to the receive antenna while the EUT is transmitting. The amplitude offset shown in the following plots for average measurements was calculated using the formula:
Offset (dB) = (Antenna Factor + Cable Loss + Attenuator) Preamplifier Gain Bluetooth Mode:
Data Rate:
Power Scheme:
LE 1Mbps ePA Measurement Distance:
3 Meters Operating Frequency:
2402MHz Channel:
0 Plot 7-34. Radiated Restricted Lower Band Edge Measurement (Average & Peak) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 44 of 56 EUT Type:
Radiated Restricted Band Edge Measurements 15.205 15.209; RSS-Gen [8.9]
The amplitude offset shown in the following plots for average measurements was calculated using the formula:
Offset (dB) = (Antenna Factor + Cable Loss + Attenuator) Preamplifier Gain Bluetooth Mode:
Data Rate:
Power Scheme:
LE 2Mbps ePA Measurement Distance:
3 Meters Operating Frequency:
2402MHz Channel:
0 Plot 7-35. Radiated Restricted Lower Band Edge Measurement (Average & Peak) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 45 of 56 EUT Type:
Radiated Restricted Band Edge Measurements 15.205 15.209; RSS-Gen [8.9]
The amplitude offset shown in the following plots for average measurements was calculated using the formula:
Offset (dB) = (Antenna Factor + Cable Loss + Attenuator) Preamplifier Gain Bluetooth Mode:
Data Rate:
Power Scheme:
LE 1Mbps ePA Measurement Distance:
3 Meters Operating Frequency:
2480MHz Channel:
39 Plot 7-36. Radiated Restricted Upper Band Edge Measurement (Average & Peak) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 46 of 56 EUT Type:
Radiated Restricted Band Edge Measurements 15.205 15.209; RSS-Gen [8.9]
The amplitude offset shown in the following plots for average measurements was calculated using the formula:
Offset (dB) = (Antenna Factor + Cable Loss + Attenuator) Preamplifier Gain Bluetooth Mode:
Data Rate:
Power Scheme:
LE 2Mbps ePA Measurement Distance:
3 Meters Operating Frequency:
2480MHz Channel:
39 Plot 7-37. Radiated Restricted Upper Band Edge Measurement (Average & Peak) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 47 of 56 EUT Type:
Radiated Spurious Emissions Measurements Below 1GHz 7.9 15.209; RSS-Gen [8.9]
Test Overview and Limit All out of band radiated spurious emissions are measured with a spectrum analyzer connected to a receive antenna while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. All data rates and modes were investigated for radiated spurious emissions. Only the radiated emissions of the configuration that produced the worst case emissions are reported in this section. All out of band emissions appearing in a restricted band as specified in Section 15.205 of the Title 47 CFR and Table 7 of RSS-Gen (8.10) must not exceed the limits shown in Table 7-10 per Section 15.209 and RSS-Gen (8.9). Field Strength Measured Distance
[V/m]
2400/F (kHz) 24000/F (kHz) 30 100 150 200 500
[Meters]
300 30 30 3 3 3 3 Table 7-10. Radiated Limits Frequency 0.009 0.490 MHz 0.490 1.705 MHz 1.705 30.00 MHz 30.00 88.00 MHz 88.00 216.0 MHz 216.0 960.0 MHz Above 960.0 MHz Test Procedures Used ANSI C63.10-2013 Test Settings Quasi-Peak Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 120kHz (for emissions from 30MHz 1GHz) 3. Detector = quasi-peak 4. Sweep time = auto couple 5. Trace mode = max hold 6. Trace was allowed to stabilize Peak Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 120kHz (for emissions from 30MHz 1GHz) 3. VBW = 300kHz 4. Detector = peak 5. Sweep time = auto couple 6. Trace mode = max hold 7. Trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 48 of 56 EUT Type:
Test Setup The EUT and measurement equipment were set up as shown in the diagrams below. Figure 7-7. Radiated Test Setup < 30Mhz Figure 7-8. Radiated Test Setup < 1GHz FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 49 of 56 EUT Type:
Test Notes 1. All emissions lying in restricted bands specified in 15.205 and RSS-Gen(8.10) are below the limit shown in Table 7-10. 2. The broadband receive antenna is manipulated through vertical and horizontal polarizations during the tests. The EUT is manipulated through three orthogonal planes. 3. This unit was tested with its standard battery. 4. The spectrum is investigated using a peak detector and final measurements are recorded using CISPR quasi peak detector on emissions within 6dB of the limit. The worst-case emissions are reported however emissions whose levels were not within 20dB of the respective limits were not reported. 5. Emissions were measured at a 3 meter test distance. 6. Emissions are investigated while operating on the center channel of the mode, band, and modulation that produced the worst case results during the transmitter spurious emissions testing. 7. No spurious emissions were detected within 20dB of the limit below 30MHz. 8. The results recorded using the broadband antenna is known to correlate with the results obtained by using a tuned dipole with an acceptable degree of accuracy. The VSWR for the measurement antenna was found to be less than 2:1. 9. The wide spectrum spurious emissions plots shown on the following pages are used only for the purpose of emission identification. There were no emissions detected in the 30MHz 1GHz frequency range, as shown in the subsequent plots. 10. The unit was tested with all possible mode and power schemes and only the highest emission is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 50 of 56 EUT Type:
Radiated Spurious Emissions Measurements (Below 1GHz) 15.209; RSS-Gen [8.9]
Plot 7-38. Radiated Spurious Plot below 1GHz (1Mbps, ePA, Ch.19 with WCP + AC/DC Adapter) Table 7-11. Radiated Spurious Emissions below 1GHz (1Mbps, ePA, Ch.19 with WCP + AC/DC Adapter) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 51 of 56 EUT Type:
0 10 20 30 40 50 60 70 8030M 5060 80100M200300400500 8001GLevel in dBV/mFrequency in HzPreview Result 1V-PK+Preview Result 1H-PK+Critical_Freqs PK+FCC Part 15C 30MHz-1GHzFCC Part 15C 30MHz-1GHz_-6Final_Result QPKFCC Part 15C 30MHz-1GHzFCC Part 15C 30MHz-1GHz_-630.29Max-PeakV1009-69.36-9.5528.0940.00-11.9136.06Max-PeakV100132-67.07-12.5527.3840.00-12.62173.27Max-PeakH10033-66.50-16.2124.2943.52-19.23192.28Max-PeakH10013-63.54-18.9624.5043.52-19.02703.08Max-PeakH10039-78.46-6.7621.7846.02-24.24908.04Max-PeakH25085-79.12-3.8024.0846.02-21.94Field Strength [dBV/m]Margin [dB]Analyzer Level [dBm]AFCL [dB/m]Limit [dBV/m]Frequency [MHz]DetectorAnt. Pol. [H/V]Antenna Height [cm]Turntable Azimuth [degree]
7.10 AC Line-Conducted Test Data 15.207; RSS-Gen [8.8]
Test Overview and Limit All AC line conducted spurious emissions are measured with a receiver connected to a grounded LISN while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. All data rates and modes were investigated for conducted spurious emissions. Only the conducted emissions of the configuration that produced the worst case emissions are reported in this section. All conducted emissions must not exceed the limits shown in the table below, per Section 15.207 and RSS-Gen (8.8). Frequency of emission Conducted Limit (dBV)
(MHz) 0.15 0.5 0.5 5 5 30 Quasi-peak 66 to 56*
56 60 Average 56 to 46*
46 50 Table 7-12. Conducted Limits
*Decreases with the logarithm of the frequency. Test Procedures Used ANSI C63.10-2013, Section 6.2 Test Settings Quasi-Peak Field Strength Measurements 7. Analyzer center frequency was set to the frequency of the spurious emission of interest 8. RBW = 9kHz (for emissions from 150kHz 30MHz) 9. Detector = quasi-peak 10. Sweep time = auto couple 11. Trace mode = max hold 12. Trace was allowed to stabilize Average Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the spurious emission of interest 2. RBW = 9kHz (for emissions from 150kHz 30MHz) 3. Detector = RMS 4. Sweep time = auto couple 5. Trace mode = max hold 6. Trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 52 of 56 EUT Type:
Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-9. Test Instrument & Measurement Setup Test Notes 1. 2. 3. 4. All modes of operation were investigated and the worst-case emissions are reported using mid channel. The emissions found were not affected by the choice of channel used during testing. The limit for an intentional radiator from 150kHz to 30MHz are specified in Part 15.207 and RSS-Gen (8.8). Corr. (dB) = Cable loss (dB) + LISN insertion factor (dB) QP/AV Level (dBV) = QP/AV Analyzer/Receiver Level (dBV) + Corr. (dB) 5. Margin (dB) = QP/AV Limit (dBV) - QP/AV Level (dBV) 6. 7. The traces on the plots were measured with Quasi-peak and Average detectors. Deviations to the Specifications: None. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 53 of 56 EUT Type:
Plot 7-39. Line Conducted Plot with Bluetooth LE (L1 - 1Mbps, ePA, Ch.19 with WCP + AC/DC Adapter) Table 7-13. Line Conducted Data with Bluetooth LE (L1 - 1Mbps, ePA, Ch.19 with WCP + AC/DC Adapter) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 54 of 56 EUT Type:
0 10 20 30 40 50 60 70 80 90150k 300400500 8001M2M3M4M5M6 810M20M30MLevel in dBVFrequency in HzPreview Result 2-AVGPreview Result 1-QPKCritical_Freqs AVGCritical_Freqs QPKFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AVFinal_Result QPKFinal_Result AVGFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AV Plot 7-40. Line Conducted Plot with Bluetooth LE (N - 1Mbps, ePA, Ch.19 with WCP + AC/DC Adapter) Table 7-14. Line Conducted Data with Bluetooth LE (N - 1Mbps, ePA, Ch.19 with WCP + AC/DC Adapter) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 55 of 56 EUT Type:
0 10 20 30 40 50 60 70 80 90150k 300400500 8001M2M3M4M5M6 810M20M30MLevel in dBVFrequency in HzPreview Result 2-AVGPreview Result 1-QPKCritical_Freqs AVGCritical_Freqs QPKFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AVFinal_Result QPKFinal_Result AVGFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AV 8.0 C O N C L U S I O N data relate collected The the Apple Watch FCC ID: BCG-A2157 is in compliance with Part 15 Subpart C (15.247) of the FCC Rules and RSS-247 of the Innovation, Science and Economic Development Canada Rules. item(s) tested show only and that the FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-07.BCG 2019 PCTEST Engineering Laboratory, Inc. V 9.0 02/01/2019 All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 56 of 56 EUT Type:
1 2 3 4 | WLAN Test Report | Test Report | 3.70 MiB | March 09 2019 / October 09 2019 |
PCTEST ENGINEERING LABORATORY, INC. 18855 Adams Court, Morgan Hill, CA 95037 USA Tel. 410.290.6652 / Fax 410.290.6654 http://www.pctest.com MEASUREMENT REPORT FCC PART 15.247 / ISED RSS-247 WLAN 802.11b/g/n Date of Testing:
05/01/2019 - 08/09/2019 Test Site/Location:
PCTEST Lab. Morgan Hill, CA, USA Test Report Serial No.:
1C1905130011-05.BCG BCG-A2157 579C-A2157 Apple Inc. Certification A2157 Watch 2412 2472MHz Digital Transmission System (DTS) Part 15 Subpart C (15.247) RSS-247 Issue 2 ANSI C63.10-2013, KDB 558074 D01 v05r02 Applicant Name:
Apple Inc. One Apple Park Way Cupertino, CA 95014 United States FCC ID:
IC:
APPLICANT:
Application Type:
Model/HVIN:
EUT Type:
Frequency Range:
FCC Classification:
FCC Rule Part(s):
ISED Specification:
Test Procedure(s):
This equipment has been shown to be capable of compliance with the applicable technical standards as indicated in the measurement report and was tested in accordance with the measurement procedures specified in ANSI C63.10-2013 and KDB 558074 D01 v05r02. Test results reported herein relate only to the item(s) tested. I attest to the accuracy of data. All measurements reported herein were performed by me or were made under my supervision and are correct to the best of my knowledge and belief. I assume full responsibility for the completeness of these measurements and vouch for the qualifications of all persons taking them. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 1 of 62 EUT Type:
V 9.0 02/01/2019 T A B L E O F C O N T E N T S 1.0 INTRODUCTION .............................................................................................................................................. 4 1.1 1.2 1.3 Scope ................................................................................................................................................................... 4 PCTEST Test Location ......................................................................................................................................... 4 Test Facility / Accreditations ................................................................................................................................. 4 2.0 PRODUCT INFORMATION ............................................................................................................................. 5 2.1 2.2 2.3 2.4 2.5 2.6 2.7 Equipment Description ......................................................................................................................................... 5 Device Capabilities ............................................................................................................................................... 5 Antenna Description ............................................................................................................................................. 6 Test Support Equipment ....................................................................................................................................... 6 Test Configuration ................................................................................................................................................ 7 Software and Firmware ........................................................................................................................................ 7 EMI Suppression Device(s)/Modifications ............................................................................................................ 7 3.0 DESCRIPTION OF TESTS .............................................................................................................................. 8 3.1 3.2 3.3 3.4 Evaluation Procedure ........................................................................................................................................... 8 AC Line Conducted Emissions ............................................................................................................................. 8 Radiated Emissions .............................................................................................................................................. 9 Environmental Conditions ..................................................................................................................................... 9 4.0 ANTENNA REQUIREMENTS ........................................................................................................................ 10 5.0 MEASUREMENT UNCERTAINTY ................................................................................................................. 11 6.0 7.0 TEST EQUIPMENT CALIBRATION DATA .................................................................................................... 12 TEST RESULTS ............................................................................................................................................. 13 7.1 7.2 7.3 Summary ............................................................................................................................................................ 13 6dB Bandwidth Measurement ............................................................................................................................ 14 Output Power Measurement ............................................................................................................................... 21 7.3.1 Peak Output Power Measurement ................................................................................................................................. 22 7.3.2 Average Output Power Measurement ............................................................................................................................ 23 7.4 Power Spectral Density ...................................................................................................................................... 24 7.5 Conducted Emissions at the Band Edge ............................................................................................................ 30 7.6 Conducted Spurious Emissions .......................................................................................................................... 37 7.7 Radiated Spurious Emission Measurements Above 1 GHz ............................................................................. 42 7.8 Radiated Restricted Band Edge Measurements ................................................................................................. 49 7.9 Radiated Spurious Emissions Measurements Below 1GHz ............................................................................ 54 7.10 AC Line-Conducted Test Data ............................................................................................................................ 58 8.0 CONCLUSION ............................................................................................................................................... 62 FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 2 of 62 EUT Type:
V 9.0 02/01/2019 MEASUREMENT REPORT EUT Overview FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 3 of 62 EUT Type:
V 9.0 02/01/2019 802.11b2412 - 247279.43319.00133.96821.27802.11g2412 - 247270.79518.50203.23623.08802.11n2412 - 247270.79518.50201.83723.05Max. Power (dBm)ModeTx Frequency (MHz)Peak ConductedMax. Power (mW)Max. Power (dBm)Avg ConductedConducted PowerMax. Power (mW) 1.0 I N T R O D U C T I O N Scope 1.1 Measurement and determination of electromagnetic emissions (EMC) of radio frequency devices including intentional and/or unintentional radiators for compliance with the technical rules and regulations of the Federal Communications Commission and the Innovation, Science and Economic Development Canada. PCTEST Test Location 1.2 These measurement tests were conducted at the PCTEST Engineering Laboratory, Inc. facility located at 18855 Adams Court, Morgan Hill, CA 95037. The measurement facility is compliant with the test site requirements specified in ANSI C63.4-2014 and KDB 414788 D01 v01r01. 1.3 Measurements were performed at PCTEST Engineering Lab located in Morgan Hill, CA 95037, U.S.A. PCTEST is an ISO 17025-2005 accredited test facility under the American Association for Laboratory Accreditation (A2LA) with Certificate number 2041.02 for Specific Absorption Rate (SAR), Hearing Aid Compatibility (HAC) testing, where applicable, and Electromagnetic Compatibility (EMC) testing for FCC and Innovation, Science, and Economic Development Canada rules. Test Facility / Accreditations PCTEST TCB is a Telecommunication Certification Body (TCB) accredited to ISO/IEC 17065-2012 by A2LA
(Certificate number 2041.03) in all scopes of FCC Rules and ISED Standards (RSS). PCTEST facility is a registered (22831) test laboratory with the site description on file with ISED. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 4 of 62 EUT Type:
V 9.0 02/01/2019 2.0 P R O D U C T I N F O R M A T I O N 2.1 Equipment Description The Equipment Under Test (EUT) is the Apple Watch FCC ID: BCG-A2157. The test data contained in this report pertains only to the emissions due to the EUTs WLAN (DTS) transmitter. Test Device Serial No.: D92YD00QM8CJ, D92YF005M95Y, FN6911410ECKTRT5U 2.2 This device contains the following capabilities:
850/1700/1900 WCDMA/HSPA, Multi-band LTE, 802.11b/g/n WLAN, Bluetooth (1x, EDR, HDR4, HDR8, LE), NFC Device Capabilities Ch. Frequency (MHz) Ch. Frequency (MHz) 1 2 3 4 5 6 7 2412 2417 2422 2427 2432 2437 2442 8 9 10 11 12 13 2447 2452 2457 2462 2467 2472 Table 2-1. Frequency/ Channel Operations 1. The maximum achievable duty cycles for all modes were determined based on measurements performed on a spectrum analyzer in zero-span mode with RBW = 8MHz, VBW = 50MHz, and detector = peak per the guidance of Section 6.0 b) of KDB 558074 D01 v05r02 and ANSI C63.10-2013. The RBW and VBW were both greater than 50/T, where T is the minimum transmission duration, and the number of sweep points across T was greater than 100. The duty cycles are as follows:
Measured Duty Cycles 802.11 Mode/Band Duty Cycle (%) 2.4GHz b g n 100.0 98.3 98.1 Table 2-2. Measured Duty Cycles Notes:
FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 5 of 62 EUT Type:
V 9.0 02/01/2019 2. This device supports simultaneous transmission operation, which allows for two transmitters to transmit simultaneously on the same antenna. The table below shows all configurations possible. Simultaneous Tx Configurations WIFI 2.4GHz Bluetooth LTE Mid Bands LTE High Bands Configuration 1 Configuration 2 Configuration 3 Configuration 4 Antenna FCM Table 2-3. Simultaneous Tx Configurations
= Support ; = NOT Support a. The worst simultaneous Tx configuration was found to be Bluetooth and LTE Mid Band transmitting on antenna FCM. These results can be found in the RF Bluetooth and RF LTE FCC reports. Data Rates Supported: 1Mbps, 2Mbps, 5.5Mbps, 11Mbps (b) 6Mbps, 9Mbps, 12Mbps, 18Mbps, 24Mbps, 36Mbps, 48Mbps, 54Mbps (g) 6.5/7.2Mbps, 13/14.4Mbps, 19.5/21.7Mbps, 26/28.9Mbps, 39/43.3Mbps, 52/57.8Mbps, 58.5/65Mbps, 65/72.2Mbps (n) Antenna Description 2.3 Following antenna was used for the testing. Frequency [GHz]
Antenna Gain [dBi]
2.4
-10.4 Table 2-4. Highest Antenna Gain Test Support Equipment 2.4 FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 6 of 62 EUT Type:
V 9.0 02/01/2019 1Apple MacBookModel:A1398S/N:C2QKP008F6F3w/AC/DC AdapterModel:A1435S/N:N/A2Apple USB CableModel:KanziS/N:311C81w/ Charging DockModel:FAPS73S/N:17481001022w/ DockModel:X241S/N:GW17F01ST223USB Lightning CableModel:N/AS/N:N/Aw/ AC AdapterModel:A1385S/N:N/A4Wireless Charging Pad (WCP)Model:EVTS/N:DLC915600ECLNWL3KWireless Charging Pad (WCP)Model:EVTS/N:DLC9156006TLNWK3V5Test Pathfinder Sinsa BoardModel:X1456S/N:920-062535-01w/ SiP CradleModel:P1 X1454SS/N:920-06373-026DC Power SupplyModel:KPS3010DS/N:N/A7Mobile Comm DC SourceModel:66321DS/N:MY52000555 Test Configuration 2.5 The EUT was tested per the guidance of ANSI C63.10-2013 and KDB 558074 D01 v05r02. ANSI C63.10-2013 was used to reference the appropriate EUT setup for radiated spurious emissions testing and AC line conducted testing. See Sections 3.2 for AC line conducted emissions test setups, 3.3 for radiated emissions test setups, and 7.2, 7.3, 7.4, 7.5, and 7.6 for antenna port conducted emissions test setups. The worst case configuration was investigated for all combinations of the four materials, aluminum, stainless steel, ceramic, and aluminum/ceramic mix, and various types of wristbands, metal and non-metal wristbands. The store display sample was investigated and determined as not the worst case. The EUT was also investigated with and without wireless charger. The worst case configuration found was used for all testing. For emissions from 1GHz 18GHz, low, mid, and high channels were tested with highest power and worst case configuration. The emissions below 1GHz and above 18GHz were tested with the highest transmitting power channel and the worst case configuration. The EUT was manipulated through three orthogonal planes of X-orientation (flatbed), Y-orientation (landscape), and Z-orientation (portrait) during the testing. Only the worst case emissions were reported in this test report. For AC line conducted and radiated test below 1GHz, following configuration were investigated and worst case was reported.
- EUT powered by AC/DC adaptor via USB cable with wireless charger
- EUT powered by host PC via USB cable with wireless charger Software and Firmware 2.6 The test was conducted with firmware version wOS 6.0 installed on the EUT. 2.7 EMI Suppression Device(s)/Modifications No EMI suppression device(s) were added and/or no modifications were made during testing. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 7 of 62 EUT Type:
V 9.0 02/01/2019 3.0 D E S C R I P T I O N O F T E S T S Evaluation Procedure AC Line Conducted Emissions 3.1 The measurement procedures described in the American National Standard of Procedures for Compliance Testing of Unlicensed Wireless Devices (ANSI C63.10-2013) and the guidance provided in KDB 558074 D01 v05r02 were used in the measurement of the EUT. Deviation from measurement procedure.....................................None 3.2 The line-conducted facility is located inside a 7m x 3.66m x 2.7m shielded enclosure. The shielded enclosure is manufactured by AP Americas. The shielding effectiveness of the shielded room is in accordance with MIL-Std-
285 or NSA 65-5. A 1m x 1.5m wooden table 80cm high is placed 40cm away from the vertical wall and 80cm away from the sidewall of the shielded room. Two 10kHz-30MHz, 50/50H Line-Impedance Stabilization Networks (LISNs) are bonded to the shielded room floor. Power to the LISNs is filtered by external high-current high-insertion loss power line filters. The external power line filter is EPCOS 2X60A Power Line Filter (100dB Attenuation, 14kHz-18GHz) and the two EPCOs 2X48A filters (100dB Minimum Insertion Loss, 14kHz 10GHz). These filters attenuate ambient signal noise from entering the measurement lines. These filters are also bonded to the shielded enclosure. The EUT is powered from one LISN and the support equipment is powered from the second LISN. If the EUT is a DC-powered device, power will be derived from the source power supply it normally will be powered from and this supply line(s) will be connected to the second LISN. All interconnecting cables more than 1 meter were shortened to a 1 meter length by non-inductive bundling (serpentine fashion) and draped over the back edge of the test table. All cables were at least 40cm above the horizontal reference groundplane. Power cables for support equipment were routed down to the second LISN while ensuring that that cables were not draped over the second LISN. Sufficient time for the EUT, support equipment, and test equipment was allowed in order for them to warm up to their normal operating condition. The RF output of the LISN was connected to the spectrum analyzer and exploratory measurements were made to determine the frequencies producing the maximum emission from the EUT. The spectrum was scanned from 150kHz to 30MHz with a spectrum analyzer. The detector function was set to peak mode for exploratory measurements while the bandwidth of the analyzer was set to 10kHz. The EUT, support equipment, and interconnecting cables were arranged and manipulated to maximize each emission. Once the worst case emissions have been identified, the one EUT cable configuration/arrangement and mode of operation that produced these emissions is used for final measurements on the same test site. The analyzer is set to CISPR quasi-peak and average detectors with a 9kHz resolution bandwidth for final measurements. Line conducted emissions test results are shown in Section 7.10. Automated test software was used to perform the AC line conducted emissions testing. Automated measurement software utilized is Rohde & Schwarz EMC32, Version 10.35.04. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 8 of 62 EUT Type:
V 9.0 02/01/2019 Radiated Emissions 3.3 The radiated test facilities consisted of an indoor 3 meter semi-anechoic chamber used for final measurements and exploratory measurements, when necessary. The measurement area is contained within the semi-anechoic chamber which is shielded from any ambient interference. The test site inside the chamber is a 6m x 5.2m elliptical, obstruction-free area in accordance with Figure 5.7 of Clause 5 in ANSI C63.4-2014. Absorbers are arranged on the floor between the turn table and the antenna mast in such a way so as to maximize the reduction of reflections for measurements above 1GHz. An 80cm tall test table made of Styrodur is placed on top of the turn table. For measurements above 1GHz, an additional Styrodur pedestal is placed on top of the test table to bring the total table height to 1.5m. Per KDB 414788, radiated emission test sites other than open-field test sites (e.g., shielded anechoic chambers), may be employed for emission measurements below 30MHz if characterized so that the measurements correspond to those obtained at an open-field test site. To determine test site equivalency, a reference sample transmitting at 149kHz was measured on an open field test site (asphalt with no ground plane) and then measured in the 3m semi-anechoic chamber. A calibrated 60cm loop antenna was rotated about its vertical axis while the reference device was rotated through the X, Y and Z axis in order to capture the worst case level. A maximum deviation of 2.77dB at 149kHz was measured when comparing the 3 meter semi-anechoic chamber to the open field site. For all measurements, the spectrum was scanned through all EUT azimuths and from 1 to 4 meter receive antenna height using a broadband antenna from 30MHz up to the upper frequency shown in 15.33 depending on the highest frequency generated or used in the device or on which the device operates or tunes. For frequencies above 1GHz, linearly polarized double ridge horn antennas were used. For frequencies below 30MHz, a calibrated loop antenna was used. When exploratory measurements were necessary, they were performed at 1 meter test distance inside the semi-anechoic chamber using broadband antennas, broadband amplifiers, and spectrum analyzers to determine the frequencies and modes producing the maximum emissions. Sufficient time for the EUT, support equipment, and test equipment was allowed in order for them to warm up to their normal operating condition. The test set-up was placed on top of the 1 x 1.5 meter table. The EUT, support equipment, and interconnecting cables were arranged and manipulated to maximize each emission. Appropriate precaution was taken to ensure that all emissions from the EUT were maximized and investigated. The system configuration, mode of operation, turntable azimuth, and receive antenna height was noted for each frequency found. Final measurements were made in the semi-anechoic chamber using calibrated, linearly polarized broadband and horn antennas. The test setup was configured to the setup that produced the worst case emissions. The spectrum analyzer was set to investigate all frequencies required for testing to compare the highest radiated disturbances with respect to the specified limits. The turntable containing the EUT was rotated through 360 degrees and the height of the receive antenna was varied 1 to 4 meters and stopped at the azimuth and height producing the maximum emission. Each emission was maximized by changing the orientation of the EUT through three orthogonal planes and changing the polarity of the receive antenna, whichever produced the worst-case emissions. 3.4 The temperature is controlled within range of 15oC to 35oC. The relative humidity is controlled within range of 10%
to 75%. The atmospheric pressure is monitored within the range 86-106kPa (860-1060mbar). Environmental Conditions FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 9 of 62 EUT Type:
V 9.0 02/01/2019 4.0 A N T E N N A R E Q U I R E M E N T S Excerpt from 15.203 of the FCC Rules/Regulations:
An intentional radiator antenna shall be designed to ensure that no antenna other than that furnished by the responsible party can be used with the device. The use of a permanently attached antenna or of an antenna that uses a unique coupling to the intentional radiator shall be considered sufficient to comply with the provisions of this section. The antennas of the EUT are permanently attached. There are no provisions for connections to an external antenna. Conclusion:
The EUT unit complies with the requirement of 15.203. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 10 of 62 EUT Type:
V 9.0 02/01/2019 5.0 M E A S U R E M E N T U N C E R T A I N T Y The measurement uncertainties shown below were calculated in accordance with the requirements of ANSI C63.10-2013. All measurement uncertainty values are shown with a coverage factor of k = 2 to indicate a 95% level of confidence. The measurement uncertainty shown below meets or exceeds the UCISPR measurement uncertainty values specified in CISPR 16-4-2 and, thus, can be compared directly to specified limits to determine compliance. Contribution Expanded Uncertainty (dB) Conducted Bench Top Measurements Line Conducted Disturbance Radiated Disturbance (<1GHz) Radiated Disturbance (>1GHz) Radiated Disturbance (>18GHz) 1.29 2.48 4.15 4.70 5.01 FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 11 of 62 EUT Type:
V 9.0 02/01/2019 6.0 T E S T E Q U I P M E N T C A L I B R A T I O N D A T A Test Equipment Calibration is traceable to the National Institute of Standards and Technology (NIST). Measurements antennas used during testing were calibrated in accordance to the requirements of ANSI C63.5-
2017. Table 6-1. Annual Test Equipment Calibration Schedule Note:
For equipment listed above that has a calibration date or calibration due date that falls within the test date range, care was taken to ensure that this equipment was used after the calibration date and before the calibration due date. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 12 of 62 EUT Type:
V 9.0 02/01/2019 Manufacturer Model Description Cal Date Cal Interval Cal Due Serial Number Agilent TechnologiesN9030A 3Hz-44GHz PXA Signal Analyzer 3/13/2019Annual3/13/2020MY49430244 AnritsuML2496APower Meter10/22/2018Annual10/22/2019184005AnritsuMA2411BPulse Power Sensor10/22/2018Annual10/22/20191726261AnritsuMA2411BPulse Power Sensor10/22/2018Annual10/22/20191726262ATM180-442A-KF20dB Nominal Gain Horn Antenna9/10/2018Annual9/10/2019T058701-03COM-POWER LIN-120A LISN 3/13/2019Annual3/13/2020241297Rohde & SchwarzESW26EMI Test Receiver5/21/2019Annual5/21/2020101299Rohde & Schwarz ESW44EMI Test Receiver11/20/2018Annual11/20/2019101570Rohde & Schwarz TS-PR1840Pre-Amplifier (18GHz - 40GHz)9/5/2018Annual 9/5/2019100050Rohde & Schwarz TS-PR8Pre-Amplifier (30MHz - 8GHz)1/7/2019Annual1/7/2020102325Rohde & Schwarz HL562EUltra Broadband Antenna (30MHz - 6GHz)10/24/2018Annual10/24/2019100810Rohde & Schwarz TC-TA18Cross Polarized Vivaldi Antenna (400MHz-18GHz)11/21/2018Annual11/21/2019101057Rohde & Schwarz TC-TA18Cross Polarized Vivaldi Antenna (400MHz-18GHz)12/7/2018Annual12/7/2019101063Rohde & Schwarz HFH2-Z2 Loop Antenna 3/21/2019Annual 3/21/2020100519 7.0 T E S T R E S U L T S 7.1 Summary Company Name:
Apple Inc. FCC ID:
BCG-A2157 FCC Classification:
Digital Transmission System (DTS) FCC Part Section(s) RSS Section(s) Test Description Test Limit Test Test Condition Result Reference 15.247(a)(2) RSS-247 [5.2]
6dB Bandwidth
> 500kHz PASS Section 7.2 15.247(b)(3) RSS-247 [5.4]
Transmitter Output Power 1 Watt PASS Sections 7.3 15.247(e) RSS-247 [5.2]
Transmitter Power Spectral Density 8dBm / 3kHz Band PASS Section 7.4 CONDUCTED 15.247(d) RSS-247 [5.5]
Band Edge /
Out-of-Band Emissions 20dBc PASS Sections 7.5, 7.6 15.205 15.209 RSS-Gen [8.9]
General Field Strength Limits (Restricted Bands and Radiated Emission Limits) Emissions in restricted bands must meet the radiated limits detailed in 15.209 (RSS-Gen [8.9]) RADIATED PASS Sections 7.7, 7.9 15.207 RSS-Gen [8.8]
AC Conducted Emissions 150kHz 30MHz
< FCC 15.207 limits
(RSS-Gen[8.8]) LINE CONDUCTED PASS Section 7.10 Table 7-1. Summary of Test Results Notes:
1) All modes of operation and data rates were investigated. The test results shown in the following sections represent the worst case emissions. 2) The analyzer plots shown in this section were all taken with a correction table loaded into the analyzer. The correction table was used to account for the losses of the cables and attenuators used as part of the system to connect the EUT to the analyzer at all frequencies of interest. 3) All antenna port conducted emissions testing was performed on a test bench with the antenna port of the EUT connected to the spectrum analyzer through calibrated cables and attenuators. 4) For conducted spurious emissions, automated test software was used to measure emissions and capture the corresponding plots necessary to show compliance. The measurement software utilized is PCTEST WLAN Automation, Version 3.5. 5) For radiated band edge, automated test software was used to measure emissions and capture the corresponding plots necessary to show compliance. The measurement software utilized is PCTEST Chamber Automation, Version 1.3.1. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 13 of 62 EUT Type:
V 9.0 02/01/2019 6dB Bandwidth Measurement 7.2 15.247(a.2); RSS-247 [5.2]
Test Overview and Limit The bandwidth at 6dB down from the highest in-band spectral density is measured with a spectrum analyzer connected to the transmitter antenna terminal of the EUT while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. All data rates were investigated and the worst case configuration results are reported in this section. The minimum permissible 6dB bandwidth is 500 kHz. Test Procedure Used ANSI C63.10-2013 Section 11.8.2 Option 2 KDB 558074 D01 v05r02 Section 8.2 Test Settings 1. The signal analyzers automatic bandwidth measurement capability was used to perform the 6dB bandwidth measurement. The X dB bandwidth parameter was set to X = 6. The bandwidth measurement was not influenced by any intermediate power nulls in the fundamental emission. 2. RBW = 100kHz 3. VBW 3 x RBW 4. Detector = Peak 5. Trace mode = max hold 6. Sweep = auto couple 7. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Test Notes None FCC ID: BCG-A2157 Figure 7-1. Test Instrument & Measurement Setup MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 14 of 62 EUT Type:
V 9.0 02/01/2019 Table 7-2. Conducted Bandwidth Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 15 of 62 EUT Type:
V 9.0 02/01/2019 24121b19.0860.50024376b19.0900.500246211b19.0910.50024121g618.360.50024376g618.340.500246211g618.350.50024121n6.5/7.2 (MCS0)18.330.50024376n6.5/7.2 (MCS0)18.410.500246211n6.5/7.2 (MCS0)18.420.500Data Rate [Mbps]802.11 ModeChannel No.Measured Bandwidth [MHz]Frequency [MHz]Minimum Bandwidth [MHz]
Plot 7-1. 6dB Bandwidth Plot (802.11b Ch. 1) Plot 7-2. 6dB Bandwidth Plot (802.11b Ch. 6) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 16 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-3. 6dB Bandwidth Plot (802.11b Ch. 11) Plot 7-4. 6dB Bandwidth Plot (802.11g Ch. 1) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 17 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-5. 6dB Bandwidth Plot (802.11g Ch. 6) Plot 7-6. 6dB Bandwidth Plot (802.11g Ch. 11) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 18 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-7. 6dB Bandwidth Plot (802.11n (2.4GHz) Ch. 1) Plot 7-8. 6dB Bandwidth Plot (802.11n (2.4GHz) Ch. 6) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 19 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-9. 6dB Bandwidth Plot (802.11n (2.4GHz) Ch. 11) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 20 of 62 EUT Type:
V 9.0 02/01/2019 7.3 Output Power Measurement 15.247(b.3); RSS-247 [5.4]
Test Overview and Limits A transmitter antenna terminal of EUT is connected to the input of an RF power sensor. Measurement is made using a broadband power meter capable of making peak and average measurements while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. The maximum permissible conducted output power is 1 Watt. Test Procedure Used ANSI C63.10-2013 Section 11.9.1.3 PKPM1 Peak Power Method KDB 558074 D01 v05r02 Section 8.3.1.3 PKPM1 Peak-reading Power Meter Method ANSI C63.10-2013 Section 11.9.2.3.2 Method AVGPM-G KDB 558074 D01 v05r02 Section 8.3.2.3 Measurement using a Power Meter (PM) Test Settings Method PKPM1 (Peak Power Measurement) Peak power measurements were performed only when the EUT was transmitting at its maximum power control level using a broadband power meter with a pulse sensor. The pulse sensor employs a VBW =
50MHz so this method was only used for signals whose DTS bandwidth was less than or equal to 50MHz. Method AVGPM-G (Average Power Measurement) Average power measurements were performed only when the EUT was transmitting at its maximum power control level using a broadband power meter with a pulse sensor. The power meter implemented triggering and gating capabilities which were set up such that power measurements were recorded only during the ON time of the transmitter. The trace was averaged over 100 traces to obtain the final measured average power. Test Setup The EUT and measurement equipment were set up as shown in the diagrams below. Figure 7-2. Test Instrument & Measurement Setup for Power Meter Measurements Test Notes None FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 21 of 62 EUT Type:
V 9.0 02/01/2019 7.3.1 Peak Output Power Measurement 15.247(b.3); RSS-247 [5.4]
Table 7-3. Peak Conducted Output Power Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 22 of 62 EUT Type:
V 9.0 02/01/2019 802.11b802.11g802.11n24121PEAK21.2722.1722.1630.00-7.83-10.4011.7736.02-24.2524172PEAK21.2623.0823.0530.00-6.92-10.4012.6836.02-23.3424376PEAK21.1922.8722.8630.00-7.13-10.4012.4736.02-23.55245710PEAK21.2623.0122.9930.00-6.99-10.4012.6136.02-23.41246211PEAK21.1721.5721.5430.00-8.43-10.4011.1736.02-24.85246712PEAK21.2519.6519.6330.00-8.75-10.4010.8536.02-25.17247213PEAK20.2317.5317.4730.00-9.77-10.409.8336.02-26.19Freq [MHz]ChannelDetectorIEEE Transmission ModeConducted Power Limit [dBm]Conducted Power Margin [dB]Ant. Gain [dBi]Max e.i.r.p. [dBm]Max e.i.r.p. Limit [dBm]e.i.r.p. Margin [dB]
7.3.2 Average Output Power Measurement 15.247(b.3); RSS-247 [5.4]
Table 7-4. Average Conducted Output Power Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 23 of 62 EUT Type:
V 9.0 02/01/2019 802.11b802.11g802.11n24121AVG19.0017.5017.4830.00-11.00-10.408.6036.02-27.4224172AVG18.9918.4918.4830.00-11.01-10.408.5936.02-27.4324376AVG18.9618.5018.5030.00-11.04-10.408.5636.02-27.46245710AVG19.0018.5018.4830.00-11.00-10.408.6036.02-27.42246211AVG18.9616.9916.9730.00-11.04-10.408.5636.02-27.46246712AVG18.9914.9914.9630.00-11.01-10.408.5936.02-27.43247213AVG18.007.007.0030.00-12.00-10.407.6036.02-28.42IEEE Transmission ModeConducted Power Limit [dBm]Conducted Power Margin [dB]Ant. Gain [dBi]Max e.i.r.p. [dBm]Max e.i.r.p. Limit [dBm]e.i.r.p. Margin [dB]Freq [MHz]ChannelDetector Power Spectral Density 7.4 15.247(e); RSS-247 [5.2]
Test Overview and Limit The peak power density is measured with a spectrum analyzer connected to the antenna terminal of the EUT while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. All data rates were investigated and the worst case configuration results are reported in this section. The maximum permissible power spectral density is 8 dBm in any 3 kHz band. Test Procedure Used ANSI C63.10-2013 Section 11.10.2 Method PKPSD KDB 558074 D01 v05r02 Section 8.4 DTS Maximum Power Spectral Density level in the fundamental emission Test Settings 1. Analyzer was set to the center frequency of the DTS channel under investigation 2. Span = 1.5 times the DTS channel bandwidth 3. RBW = 3kHz 4. VBW = 1MHz 5. Detector = peak 6. Sweep time = auto couple 7. Trace mode = max hold 8. Trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-3. Test Instrument & Measurement Setup Test Notes Lowest and highest channel that can transmit at maximum power for each mode has been reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 24 of 62 EUT Type:
V 9.0 02/01/2019 Table 7-5. Conducted Power Density Measurements FCC ID: BCG-A2157 Plot 7-10. Power Spectral Density Plot (802.11b Ch. 1) MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 25 of 62 EUT Type:
V 9.0 02/01/2019 24121b1-0.078.00-8.07Pass24376b1-0.798.00-8.79Pass246211b1-1.048.00-9.04Pass24121g6-3.918.00-11.91Pass24376g6-3.978.00-11.97Pass246211g6-3.848.00-11.84Pass24121n6.5/7.2 (MCS0)-4.488.00-12.48Pass24376n6.5/7.2 (MCS0)-4.868.00-12.86Pass246211n6.5/7.2 (MCS0)-4.368.00-12.36PassData Rate [Mbps]Maximum Permissible Power Density [dBm / 3kHz]Pass / FailMargin [dB]Frequency [MHz]Measured Power Spectral Density [dBm/3kHz]Channel No.802.11 Mode Plot 7-11. Power Spectral Density Plot (802.11b Ch. 6) Plot 7-12. Power Spectral Density Plot (802.11b Ch. 11) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 26 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-13. Power Spectral Density Plot (802.11g Ch. 1) Plot 7-14. Power Spectral Density Plot (802.11g Ch. 6) FCC ID: BCG-A2157 MEASUREMENT REPORT
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05/01/2019 - 08/09/2019 Watch Page 27 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-15. Power Spectral Density Plot (802.11g Ch. 11) Plot 7-16. Power Spectral Density Plot (802.11n (2.4GHz) Ch. 1) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 28 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-17. Power Spectral Density Plot (802.11n (2.4GHz) Ch. 6) Plot 7-18. Power Spectral Density Plot (802.11n (2.4GHz) Ch. 11) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 29 of 62 EUT Type:
V 9.0 02/01/2019 Conducted Emissions at the Band Edge 7.5 15.247(d); RSS-247 [5.5]
Test Overview and Limit All out of band emissions are measured with a spectrum analyzer connected to the antenna terminal of the EUT while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. All data rates were investigated to determine the worst case configuration. For the following out of band conducted spurious emissions plots at the band edge, the EUT was set at a data rate of 1Mbps for b mode, 6 Mbps for g mode, and 6.5/7.2Mbps for n mode as these settings produced the worst-case emissions. The limit for out-of-band spurious emissions at the band edge is 20dB below the fundamental emission level, as determined from the in-band power measurement of the DTS channel performed in a 100kHz bandwidth per the PSD procedure (Section 7.4). Test Procedure Used ANSI C63.10-2013 Section 11.11.3 KDB 558074 D01 v05r02 Section 8.7.2 Test Settings 1. Start and stop frequency were set such that the band edge would be placed in the center of the plot 2. Span was set large enough so as to capture all out of band emissions near the band edge 3. RBW = 100kHz 4. VBW = 1MHz 5. Detector = Peak 6. Number of sweep points 2 x Span/RBW 7. Trace mode = max hold 8. Sweep time = auto couple 9. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-4. Test Instrument & Measurement Setup Test Notes Lowest and highest channel that can transmit at maximum power for each mode has been reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 30 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-19. Band Edge Plot (802.11b Ch. 1) Plot 7-20. Band Edge Plot (802.11b Ch. 11) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 31 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-21. Band Edge Plot (802.11b Ch. 12) Plot 7-22. Band Edge Plot (802.11b Ch. 13) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 32 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-23. Band Edge Plot (802.11g Ch. 1) Plot 7-24. Band Edge Plot (802.11g Ch. 11) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 33 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-25. Band Edge Plot (802.11g Ch. 12) Plot 7-26. Band Edge Plot (802.11g Ch. 13) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 34 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-27. Band Edge Plot (802.11n (2.4GHz) Ch. 1) Plot 7-28. Band Edge Plot (802.11n (2.4GHz) Ch. 11) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 35 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-29. Band Edge Plot (802.11n (2.4GHz) Ch. 12) Plot 7-30. Band Edge Plot (802.11n (2.4GHz) Ch. 13) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 36 of 62 EUT Type:
V 9.0 02/01/2019 Conducted Spurious Emissions 7.6 15.247(d); RSS-247 [5.5]
Test Overview and Limit All out of band emissions are measured with a spectrum analyzer connected to the antenna terminal of the EUT while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. All data rates were investigated to determine the worst case configuration. For the following out of band conducted spurious emissions plots, the EUT was investigated in all available data rates for b, g, and n modes. The worst case spurious emissions for the 2.4GHz band were found while transmitting in b mode at 1 Mbps and are shown in the plots below. The limit for out-of-band spurious emissions at the band edge is 20dB below the fundamental emission level, as determined from the in-band power measurement of the DTS channel performed in a 100kHz bandwidth per the procedure in Section 11.1 of ANSI C63.10-2013 and KDB 558074 D01 v05r02. Test Procedure Used ANSI C63.10-2013 Section 11.11.3 KDB 558074 D01 v05r02 Section 8.5 Test Settings 1. Start frequency was set to 30MHz and stop frequency was set to 25GHz (separated into two plots per channel) 2. RBW = 1MHz 3. VBW = 3MHz 4. Detector = Peak 5. Trace mode = max hold 6. Sweep time = auto couple 7. The trace was allowed to stabilize Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-5. Test Instrument & Measurement Setup FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 37 of 62 EUT Type:
V 9.0 02/01/2019 Test Notes 1. RBW was set to 1MHz rather than 100kHz in order to increase the measurement speed. 2. The display line shown in the following plots denotes the limit at 20dB below the fundamental emission level measured in a 100kHz bandwidth. However, since the traces in the following plots are measured with a 1MHz RBW, the display line may not necessarily appear to be 20dB below the level of the fundamental in a 1MHz bandwidth. 3. For plots showing conducted spurious emissions near the limit, the frequencies were investigated with a reduced RBW to ensure that no emissions were present. 4. The unit was tested with all possible modes and only the highest emission is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 38 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-31. Conducted Spurious Plot (802.11b Ch. 1) Plot 7-32. Conducted Spurious Plot (802.11b Ch. 1) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 39 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-33. Conducted Spurious Plot (802.11b Ch. 6) Plot 7-34. Conducted Spurious Plot (802.11b Ch. 6) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 40 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-35. Conducted Spurious Plot (802.11b Ch. 11) Plot 7-36. Conducted Spurious Plot (802.11b Ch. 11) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 41 of 62 EUT Type:
V 9.0 02/01/2019 Radiated Spurious Emission Measurements Above 1 GHz 7.7 15.247(d) 15.205 & 15.209; RSS-Gen [8.9]
Test Overview and Limit All out of band radiated spurious emissions are measured with a spectrum analyzer connected to a receive antenna while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. All data rates and modes were investigated for radiated spurious emissions. Only the radiated emissions of the configuration that produced the worst case emissions are reported in this section. All out of band emissions appearing in a restricted band as specified in Section 15.205 of the Title 47 CFR and Table 7 of RSS-Gen (8.10) must not exceed the limits shown in Table 7-6 per Section 15.209 and RSS-
Gen (8.9). Frequency Above 960.0 MHz Field Strength Measured Distance
[V/m]
500
[Meters]
3 Table 7-6. Radiated Limits Test Procedures Used ANSI C63.10-2013 Section 6.6.4.3 KDB 558074 D01 v05r02 Sections 8.6, 8.7 Test Settings Average Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 1MHz 3. VBW = 3MHz 4. Detector = power average (RMS) 5. Number of measurement points = 1001 (Number of points must be > 2 x span/RBW) 6. Sweep time = auto 7. Trace (RMS) averaging was performed over at least 100 traces Peak Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 1MHz 3. VBW = 3MHz 4. Detector = peak 5. Sweep time = auto couple 6. Trace mode = max hold 7. Trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 42 of 62 EUT Type:
V 9.0 02/01/2019 Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-6. Test Instrument & Measurement Setup Test Notes 1. The optional test procedures for antenna port conducted measurements of unwanted emissions per the guidance of KDB 558074 D01 v05r02 were not used to evaluate this device for compliance to radiated limits. All radiated spurious emissions levels were measured in a radiated test setup. 2. All emissions lying in restricted bands specified in Section 15.205 and Section 8.10 of RSS-Gen are below the limit shown in Table 7-6. 3. The antenna is manipulated through typical positions, polarity and length during the tests. The EUT is manipulated through three orthogonal planes. 4. This unit was tested with its standard battery. 5. The spectrum is measured from 9kHz to the 10th harmonic of the fundamental frequency of the transmitter using CISPR quasi peak detector below 1GHz. Above 1 GHz, average and peak measurements were taken using linearly polarized horn antennas. The worst-case emissions are reported however emissions whose levels were not within 20dB of the respective limits were not reported. 6. Emissions below 18GHz were measured at a 3 meter test distance while emissions above 18GHz were measured at a 1 meter test distance with the application of a distance correction factor. 7. The wide spectrum spurious emissions plots shown on the following pages are used only for the purpose of emission identification. Any emissions found to be within 20dB of the limit are fully investigated and the results are shown in this section. 8. The "-" shown in the following RSE tables are used to denote a noise floor measurement. 9. The unit was tested with all possible modes and only the highest emission is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 43 of 62 EUT Type:
V 9.0 02/01/2019 Sample Calculations Determining Spurious Emissions Levels o Field Strength Level [dBV/m] = Analyzer Level [dBm] + 107 + AFCL [dB/m]
o AFCL [dB/m] = Antenna Factor [dB/m] + Cable Loss [dB]
o Margin [dB] = Field Strength Level [dBV/m] Limit [dBV/m]
Radiated Band Edge Measurement Offset o The amplitude offset shown in the radiated restricted band edge plots in Section 7.7 was calculated using the formula:
Offset (dB) = (Antenna Factor + Cable Loss + Attenuator) Preamplifier Gain FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 44 of 62 EUT Type:
V 9.0 02/01/2019 Radiated Spurious Emission Measurements 15.247(d) 15.205 & 15.209; RSS-Gen [8.9]
Plot 7-37. Radiated Spurious Plot above 1GHz (802.11b Ch. 1) Plot 7-38. Radiated Spurious Plot above 1GHz (802.11b Ch. 6) Plot 7-39. Radiated Spurious Plot above 1GHz (802.11b Ch. 11) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 45 of 62 EUT Type:
V 9.0 02/01/2019 Radiated Spurious Emissions Measurements (Above 18GHz) 15.209; RSS-Gen [8.9]
Plot 7-40. Radiated Spurious Plot above 18GHz (802.11b Ch. 6, Ant. Pol. H) Plot 7-41. Radiated Spurious Plot above 18GHz (802.11b Ch. 6, Ant. Pol. V) FCC ID: BCG-A2157 MEASUREMENT REPORT
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 46 of 62 EUT Type:
V 9.0 02/01/2019 Radiated Spurious Emission Measurements 15.247(d) 15.205 & 15.209; RSS-Gen [8.9]
Worst Case Mode:
Worst Case Transfer Rate:
Distance of Measurements:
Operating Frequency:
Channel:
802.11b 1 Mbps 3 Meters 2412MHz 01 Table 7-7. Radiated Measurements Worst Case Mode:
Worst Case Transfer Rate:
Distance of Measurements:
Operating Frequency:
Channel:
802.11b 1 Mbps 3 Meters 2437MHz 06 Table 7-8. Radiated Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 47 of 62 EUT Type:
V 9.0 02/01/2019 4824.00AvgH - --78.945.6433.7053.98-20.284824.00PeakH - --67.065.6445.5873.98-28.4012060.00AvgH - --82.2715.2840.0153.98-13.9712060.00PeakH - --70.7715.2851.5173.98-22.47Analyzer Level [dBm]Ant. Pol. [H/V]Turntable Azimuth [degree]DetectorFrequency [MHz]Antenna Height [cm]AFCL [dB/m]Margin [dB]Field Strength [dBV/m]Limit [dBV/m]4874.00AvgH313190-78.385.7234.3453.98-19.644874.00PeakH313190-66.285.7246.4473.98-27.547311.00AvgH120353-78.918.5836.6753.98-17.317311.00PeakH120353-67.668.5847.9273.98-26.0612185.00AvgH - --81.7415.1540.4153.98-13.5712185.00PeakH - --69.8215.1552.3373.98-21.65Turntable Azimuth [degree]Analyzer Level [dBm]Ant. Pol. [H/V]Frequency [MHz]DetectorAntenna Height [cm]AFCL [dB/m]Margin [dB]Limit [dBV/m]Field Strength [dBV/m]
Worst Case Mode:
Worst Case Transfer Rate:
Distance of Measurements:
Operating Frequency:
Channel:
802.11b 1 Mbps 3 Meters 2462MHz 11 Table 7-9. Radiated Measurements FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 48 of 62 EUT Type:
V 9.0 02/01/2019 4924.00AvgH159230-78.555.7134.1653.98-19.824924.00PeakH159230-67.335.7145.3873.98-28.607386.00AvgH - --79.528.6736.1553.98-17.837386.00PeakH - --67.938.6747.7473.98-26.2412310.00AvgH - --82.3215.6240.3053.98-13.6812310.00PeakH - --71.1015.6251.5273.98-22.46Frequency [MHz]Analyzer Level [dBm]Turntable Azimuth [degree]Antenna Height [cm]DetectorAnt. Pol. [H/V]AFCL [dB/m]Field Strength [dBV/m]Limit [dBV/m]Margin [dB]
Radiated Restricted Band Edge Measurements 7.8 15.205 15.209; RSS-Gen [8.9]
The radiated restricted band edge measurements are measured with an EMI test receiver connected to the receive antenna while the EUT is transmitting. Worst Case Mode:
Worst Case Transfer Rate:
Distance of Measurements:
Operating Frequency:
Channel:
802.11b 1Mbps 3 Meters 2412MHz 1 Plot 7-42. Radiated Restricted Lower Band Edge Measurement Worst Case Mode:
Worst Case Transfer Rate:
Distance of Measurements:
Operating Frequency:
Channel:
802.11b 1Mbps 3 Meters 2467MHz 12 FCC ID: BCG-A2157 Plot 7-43. Radiated Restricted Upper Band Edge Measurement MEASUREMENT REPORT
(CERTIFICATION) Approved by:
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1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 49 of 62 EUT Type:
V 9.0 02/01/2019 Worst Case Mode:
Worst Case Transfer Rate:
Distance of Measurements:
Operating Frequency:
Channel:
802.11b 1Mbps 3 Meters 2472MHz 13 Plot 7-44. Radiated Restricted Upper Band Edge Measurement FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 50 of 62 EUT Type:
V 9.0 02/01/2019 Worst Case Mode:
Worst Case Transfer Rate:
Distance of Measurements:
Operating Frequency:
Channel:
802.11n MCS0 3 Meters 2412MHz 1 Plot 7-45. Radiated Restricted Lower Band Edge Measurement Worst Case Mode:
Worst Case Transfer Rate:
Distance of Measurements:
Operating Frequency:
Channel:
802.11n MCS0 3 Meters 2417MHz 2 Plot 7-46. Radiated Restricted Lower Band Edge Measurement FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 51 of 62 EUT Type:
V 9.0 02/01/2019 Worst Case Mode:
Worst Case Transfer Rate:
Distance of Measurements:
Operating Frequency:
Channel:
802.11n MCS0 3 Meters 2457MHz 10 Plot 7-47. Radiated Restricted Upper Band Edge Measurement Worst Case Mode:
Worst Case Transfer Rate:
Distance of Measurements:
Operating Frequency:
Channel:
802.11n MCS0 3 Meters 2462MHz 11 Plot 7-48. Radiated Restricted Upper Band Edge Measurement FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 52 of 62 EUT Type:
V 9.0 02/01/2019 Worst Case Mode:
Worst Case Transfer Rate:
Distance of Measurements:
Operating Frequency:
Channel:
802.11n MCS0 3 Meters 2467MHz 12 Plot 7-49. Radiated Restricted Upper Band Edge Measurement Worst Case Mode:
Worst Case Transfer Rate:
Distance of Measurements:
Operating Frequency:
Channel:
802.11n MCS0 3 Meters 2472MHz 13 Plot 7-50. Radiated Restricted Upper Band Edge Measurement FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 53 of 62 EUT Type:
V 9.0 02/01/2019 Radiated Spurious Emissions Measurements Below 1GHz 7.9 15.209; RSS-Gen [8.9]
Test Overview and Limit All out of band radiated spurious emissions are measured with a spectrum analyzer connected to a receive antenna while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. All data rates and modes were investigated for radiated spurious emissions. Only the radiated emissions of the configuration that produced the worst case emissions are reported in this section. All out of band emissions appearing in a restricted band as specified in Section 15.205 of the Title 47 CFR and Table 7 of RSS-Gen (8.10) must not exceed the limits shown in Table 7-10 per Section 15.209 and RSS-Gen (8.9). Field Strength Measured Distance
[V/m]
2400/F (kHz) 24000/F (kHz) 30 100 150 200 500
[Meters]
300 30 30 3 3 3 3 Table 7-10. Radiated Limits Frequency 0.009 0.490 MHz 0.490 1.705 MHz 1.705 30.00 MHz 30.00 88.00 MHz 88.00 216.0 MHz 216.0 960.0 MHz Above 960.0 MHz Test Procedures Used ANSI C63.10-2013 Test Settings Quasi-Peak Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 120kHz (for emissions from 30MHz 1GHz) 3. Detector = quasi-peak 4. Sweep time = auto couple 5. Trace mode = max hold 6. Trace was allowed to stabilize Peak Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the radiated spurious emission of interest 2. RBW = 120kHz (for emissions from 30MHz 1GHz) 3. VBW = 300kHz 4. Detector = peak 5. Sweep time = auto couple 6. Trace mode = max hold 7. Trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 54 of 62 EUT Type:
V 9.0 02/01/2019 Test Setup The EUT and measurement equipment were set up as shown in the diagrams below. Figure 7-7. Radiated Test Setup < 30Mhz Figure 7-8. Radiated Test Setup < 1GHz FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 55 of 62 EUT Type:
V 9.0 02/01/2019 Test Notes 1. All emissions lying in restricted bands specified in 15.205 and RSS-Gen(8.10) are below the limit shown in Table 7-10. 2. The broadband receive antenna is manipulated through vertical and horizontal polarizations during the tests. The EUT is manipulated through three orthogonal planes. 3. This unit was tested with its standard battery. 4. The spectrum is investigated using a peak detector and final measurements are recorded using CISPR quasi peak detector on emissions within 6dB of the limit. The worst-case emissions are reported however emissions whose levels were not within 20dB of the respective limits were not reported. 5. Emissions were measured at a 3 meter test distance. 6. Emissions are investigated while operating on the center channel of the mode, band, and modulation that produced the worst case results during the transmitter spurious emissions testing. 7. No spurious emissions were detected within 20dB of the limit below 30MHz. 8. The results recorded using the broadband antenna is known to correlate with the results obtained by using a tuned dipole with an acceptable degree of accuracy. The VSWR for the measurement antenna was found to be less than 2:1. 9. The wide spectrum spurious emissions plots shown on the following pages are used only for the purpose of emission identification. There were no emissions detected in the 30MHz 1GHz frequency range, as shown in the subsequent plots. 10. The unit was tested with all possible modes and only the highest emission is reported. FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 56 of 62 EUT Type:
V 9.0 02/01/2019 Radiated Spurious Emissions Measurements (Below 1GHz) 15.209; RSS-Gen [8.9]
Plot 7-51. Radiated Spurious Plot below 1GHz (802.11b Ch.6, with WCP + AC/DC Adapter) Table 7-11. Radiated Spurious Emissions below 1GHz (802.11b Ch.6, with WCP + AC/DC Adapter) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 57 of 62 EUT Type:
V 9.0 02/01/2019 0 10 20 30 40 50 60 70 8030M 5060 80100M200300400500 8001GLevel in dBV/mFrequency in HzPreview Result 1V-PK+Preview Result 1H-PK+Critical_Freqs PK+FCC Part 15C 30MHz-1GHzFCC Part 15C 30MHz-1GHz_-6Final_Result QPKFCC Part 15C 30MHz-1GHzFCC Part 15C 30MHz-1GHz_-630.44Max-PeakV100177-71.80-9.6925.5140.00-14.4934.17Max-PeakV10085-73.22-11.3022.4840.00-17.52177.15Max-PeakH10045-66.82-17.7422.4443.52-21.08208.92Max-PeakH1009-68.02-18.5120.4743.52-23.05267.99Max-PeakH100198-71.40-16.1319.4746.02-26.55993.21Max-PeakH100130-79.05-3.0724.8853.98-29.10Frequency [MHz]Analyzer Level [dBm]DetectorAnt. Pol. [H/V]Antenna Height [cm]Turntable Azimuth [degree]AFCL [dB/m]Field Strength [dBV/m]Limit [dBV/m]Margin [dB]
7.10 AC Line-Conducted Test Data 15.207; RSS-Gen [8.8]
Test Overview and Limit All AC line conducted spurious emissions are measured with a receiver connected to a grounded LISN while the EUT is operating at its maximum duty cycle, at maximum power, and at the appropriate frequencies. All data rates and modes were investigated for conducted spurious emissions. Only the conducted emissions of the configuration that produced the worst case emissions are reported in this section. All conducted emissions must not exceed the limits shown in the table below, per Section 15.207 and RSS-Gen (8.8). Frequency of emission Conducted Limit (dBV)
(MHz) 0.15 0.5 0.5 5 5 30 Quasi-peak 66 to 56*
56 60 Average 56 to 46*
46 50 Table 7-12. Conducted Limits
*Decreases with the logarithm of the frequency. Test Procedures Used ANSI C63.10-2013, Section 6.2 Test Settings Quasi-Peak Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the spurious emission of interest 2. RBW = 9kHz (for emissions from 150kHz 30MHz) 3. Detector = quasi-peak 4. Sweep time = auto couple 5. Trace mode = max hold 6. Trace was allowed to stabilize Average Field Strength Measurements 1. Analyzer center frequency was set to the frequency of the spurious emission of interest 2. RBW = 9kHz (for emissions from 150kHz 30MHz) 3. Detector = RMS 4. Sweep time = auto couple 5. Trace mode = max hold 6. Trace was allowed to stabilize FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 58 of 62 EUT Type:
V 9.0 02/01/2019 Test Setup The EUT and measurement equipment were set up as shown in the diagram below. Figure 7-9. Test Instrument & Measurement Setup Test Notes 1. 2. 3. 4. All modes of operation were investigated and the worst-case emissions are reported using mid channel. The emissions found were not affected by the choice of channel used during testing. The limit for an intentional radiator from 150kHz to 30MHz are specified in Part 15.207 and RSS-Gen(8.8). Corr. (dB) = Cable loss (dB) + LISN insertion factor (dB) QP/AV Level (dBV) = QP/AV Analyzer/Receiver Level (dBV) + Corr. (dB) 5. Margin (dB) = QP/AV Limit (dBV) - QP/AV Level (dBV) 6. 7. Traces shown in plot are made using Quasi-peak and Average detectors. Deviations to the Specifications: None. FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 59 of 62 EUT Type:
V 9.0 02/01/2019 Plot 7-52. Line Conducted Plot with 802.11b (L1, with WCP + AC/DC Adapter) Table 7-13. Line Conducted Data with 802.11b (L1, with WCP + AC/DC Adapter) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 60 of 62 EUT Type:
V 9.0 02/01/2019 0 10 20 30 40 50 60 70 80 90150k 300400500 8001M2M3M4M5M6 810M20M30MLevel in dBVFrequency in HzPreview Result 2-AVGPreview Result 1-QPKCritical_Freqs AVGCritical_Freqs QPKFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AVFinal_Result QPKFinal_Result AVGFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AV Plot 7-53. Line Conducted Plot with 802.11b (N, with WCP + AC/DC Adapter) Table 7-14. Line Conducted Data with 802.11b (N, with WCP + AC/DC Adapter) FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 61 of 62 EUT Type:
V 9.0 02/01/2019 0 10 20 30 40 50 60 70 80 90150k 300400500 8001M2M3M4M5M6 810M20M30MLevel in dBVFrequency in HzPreview Result 2-AVGPreview Result 1-QPKCritical_Freqs AVGCritical_Freqs QPKFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AVFinal_Result QPKFinal_Result AVGFCC Part 15 Class B Voltage on Mains QPFCC Part 15 Class B Voltage on Mains AV 8.0 C O N C L U S I O N data relate collected the Apple Watch The FCC ID: BCG-A2157 is in compliance with Part 15 Subpart C (15.247) of the FCC Rules and RSS-247 of the Innovation, Science and Economic Development Canada Rules. item(s) tested show only and that the FCC ID: BCG-A2157 MEASUREMENT REPORT
(CERTIFICATION) Approved by:
Quality Manager Test Report S/N:
1C1905130011-05.BCG 2019 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM. Test Dates:
05/01/2019 - 08/09/2019 Watch Page 62 of 62 EUT Type:
V 9.0 02/01/2019
frequency | equipment class | purpose | ||
---|---|---|---|---|
1 | 2019-09-10 | 2500 ~ 2570 | PCT - PCS Licensed Transmitter worn on body | Original Equipment |
2 | 2402 ~ 2480 | DSS - Part 15 Spread Spectrum Transmitter | ||
3 | 13.56 ~ 13.56 | DXX - Part 15 Low Power Communication Device Transmitter | ||
4 | 2412 ~ 2472 | DTS - Digital Transmission System |
app s | Applicant Information | |||||
---|---|---|---|---|---|---|
1 2 3 4 | Effective |
2019-09-10
|
||||
1 2 3 4 | Applicant's complete, legal business name |
Apple Inc.
|
||||
1 2 3 4 | FCC Registration Number (FRN) |
0005899216
|
||||
1 2 3 4 | Physical Address |
One Apple Park Way
|
||||
1 2 3 4 |
Cupertino, CA
|
|||||
1 2 3 4 |
Cupertino
|
|||||
1 2 3 4 |
United States
|
|||||
app s | TCB Information | |||||
1 2 3 4 | TCB Application Email Address |
t******@pctest.com
|
||||
1 2 3 4 | TCB Scope |
B1: Commercial mobile radio services equipment in the following 47 CFR Parts 20, 22 (cellular), 24,25 (below 3 GHz) & 27
|
||||
1 2 3 4 |
A4: UNII devices & low power transmitters using spread spectrum techniques
|
|||||
1 2 3 4 |
A1: Low Power Transmitters below 1 GHz (except Spread Spectrum), Unintentional Radiators, EAS (Part 11) & Consumer ISM devices
|
|||||
app s | FCC ID | |||||
1 2 3 4 | Grantee Code |
BCG
|
||||
1 2 3 4 | Equipment Product Code |
A2157
|
||||
app s | Person at the applicant's address to receive grant or for contact | |||||
1 2 3 4 | Name |
M**** D******
|
||||
1 2 3 4 | Title |
EMC Engineer
|
||||
1 2 3 4 | Telephone Number |
408 9********
|
||||
1 2 3 4 | Fax Number |
408 9********
|
||||
1 2 3 4 |
m******@apple.com
|
|||||
app s | Technical Contact | |||||
1 2 3 4 | Firm Name |
Apple Inc.
|
||||
1 2 3 4 | Name |
M****** D****
|
||||
1 2 3 4 | Physical Address |
One Apple Park Way
|
||||
1 2 3 4 |
Cupertino, California 95014
|
|||||
1 2 3 4 |
United States
|
|||||
1 2 3 4 | Telephone Number |
40899********
|
||||
1 2 3 4 |
m******@apple.com
|
|||||
app s | Non Technical Contact | |||||
n/a | ||||||
app s | Confidentiality (long or short term) | |||||
1 2 3 4 | Does this application include a request for confidentiality for any portion(s) of the data contained in this application pursuant to 47 CFR § 0.459 of the Commission Rules?: | Yes | ||||
1 2 3 4 | Long-Term Confidentiality Does this application include a request for confidentiality for any portion(s) of the data contained in this application pursuant to 47 CFR § 0.459 of the Commission Rules?: | Yes | ||||
1 2 3 4 | If so, specify the short-term confidentiality release date (MM/DD/YYYY format) | 02/29/2020 | ||||
if no date is supplied, the release date will be set to 45 calendar days past the date of grant. | ||||||
app s | Cognitive Radio & Software Defined Radio, Class, etc | |||||
1 2 3 4 | Is this application for software defined/cognitive radio authorization? | No | ||||
1 2 3 4 | Equipment Class | PCT - PCS Licensed Transmitter worn on body | ||||
1 2 3 4 | DSS - Part 15 Spread Spectrum Transmitter | |||||
1 2 3 4 | DXX - Part 15 Low Power Communication Device Transmitter | |||||
1 2 3 4 | DTS - Digital Transmission System | |||||
1 2 3 4 | Description of product as it is marketed: (NOTE: This text will appear below the equipment class on the grant) | Apple Watch | ||||
1 2 3 4 | Related OET KnowledgeDataBase Inquiry: Is there a KDB inquiry associated with this application? | No | ||||
1 2 3 4 | Modular Equipment Type | Does not apply | ||||
1 2 3 4 | Purpose / Application is for | Original Equipment | ||||
1 2 3 4 | Composite Equipment: Is the equipment in this application a composite device subject to an additional equipment authorization? | Yes | ||||
1 2 3 4 | Related Equipment: Is the equipment in this application part of a system that operates with, or is marketed with, another device that requires an equipment authorization? | No | ||||
1 2 3 4 | Grant Comments | Output power listed is ERP for Part 22 and 27 for frequencies below 1 GHz, EIRP for Part 24 and 27 for frequencies above 1 GHz, and conducted for Part 90S. This device supports bandwidths of 1.4/3/5/10 MHz for LTE Bands 5 and 26. This device supports bandwidths of 1.4/3/5/10/15/20 MHz for LTE Bands 2, 25, 4, and 66. This device supports bandwidths of 5/10/15/20 MHz for LTE Bands 7 and 41. The highest reported SAR for product specific (next-to-mouth), simultaneous transmission, and extremity (wrist) use conditions is 0.52 W/kg, 0.71 W/kg, and 0.32 W/kg, respectively. This device also contains functions that are not operational in U.S. Territories. This filing is only applicable for US operations. | ||||
1 2 3 4 | Power output is conducted. The highest reported SAR for product specific (next-to-mouth), simultaneous transmission, and extremity (wrist) use conditions is 0.13 W/kg, 0.71 W/kg, and 0.32 W/kg, respectively. | |||||
1 2 3 4 | Output power is peak conducted. The highest reported SAR for product specific (next-to-mouth), simultaneous transmission, and extremity (wrist) use conditions is 0.20 W/kg, 0.71 W/kg, and 0.32 W/kg, respectively. | |||||
1 2 3 4 | Is there an equipment authorization waiver associated with this application? | No | ||||
1 2 3 4 | If there is an equipment authorization waiver associated with this application, has the associated waiver been approved and all information uploaded? | No | ||||
app s | Test Firm Name and Contact Information | |||||
1 2 3 4 | Firm Name |
PCTEST Engineering Laboratory, Inc.
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1 2 3 4 | Name |
R**** O********
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1 2 3 4 | Telephone Number |
41029********
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1 2 3 4 | Fax Number |
41029********
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1 2 3 4 |
r******@pctest.com
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Equipment Specifications | |||||||||||||||||||||||||||||||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Line | Rule Parts | Grant Notes | Lower Frequency | Upper Frequency | Power Output | Tolerance | Emission Designator | Microprocessor Number | |||||||||||||||||||||||||||||||||
1 | 1 | 22H | 826.4 | 846.6 | 0.0005 | 2.5 ppm | 4M10F9W | ||||||||||||||||||||||||||||||||||
1 | 2 | 27 | 1712.4 | 1752.6 | 0.0138 | 2.5 ppm | 4M08F9W | ||||||||||||||||||||||||||||||||||
1 | 3 | 24E | 1852.4 | 1907.6 | 0.0123 | 2.5 ppm | 4M09F9W | ||||||||||||||||||||||||||||||||||
1 | 4 | 9 | 814 | 824 | 0.3162 | 2.5 ppm | 9M04G7W | ||||||||||||||||||||||||||||||||||
1 | 5 | 9 | 814 | 824 | 0.2761 | 2.5 ppm | 5M13D7W | ||||||||||||||||||||||||||||||||||
1 | 6 | 22H | 824 | 849 | 0.0005 | 2.5 ppm | 9M14G7W | ||||||||||||||||||||||||||||||||||
1 | 7 | 22H | 824 | 849 | 0.0004 | 2.5 ppm | 5M44D7W | ||||||||||||||||||||||||||||||||||
1 | 8 | 27 | 1710 | 1780 | 0.0138 | 2.5 ppm | 18M4G7W | ||||||||||||||||||||||||||||||||||
1 | 9 | 27 | 1710 | 1780 | 0.0123 | 2.5 ppm | 8M13D7W | ||||||||||||||||||||||||||||||||||
1 | 1 | 24E | 1850 | 1915 | 0.0123 | 2.5 ppm | 18M3G7W | ||||||||||||||||||||||||||||||||||
1 | 11 | 24E | 1850 | 1915 | 0.0109 | 2.5 ppm | 7M74D7W | ||||||||||||||||||||||||||||||||||
1 | 12 | 27 | 2500 | 2570 | 0.0191 | 2.5 ppm | 18M3G7W | ||||||||||||||||||||||||||||||||||
1 | 13 | 27 | 2500 | 2570 | 0.0169 | 2.5 ppm | 7M72D7W | ||||||||||||||||||||||||||||||||||
1 | 14 | 27 | 2496 | 2690 | 0.0191 | 2.5 ppm | 18M3G7W | ||||||||||||||||||||||||||||||||||
1 | 15 | 27 | 2496 | 2690 | 0.0168 | 2.5 ppm | 7M42D7W | ||||||||||||||||||||||||||||||||||
Line | Rule Parts | Grant Notes | Lower Frequency | Upper Frequency | Power Output | Tolerance | Emission Designator | Microprocessor Number | |||||||||||||||||||||||||||||||||
2 | 1 | 15C | CC | 2402.00000000 | 2480.00000000 | 0.0580000 | |||||||||||||||||||||||||||||||||||
Line | Rule Parts | Grant Notes | Lower Frequency | Upper Frequency | Power Output | Tolerance | Emission Designator | Microprocessor Number | |||||||||||||||||||||||||||||||||
3 | 1 | 15C | CC | 13.56000000 | 13.56000000 | ||||||||||||||||||||||||||||||||||||
Line | Rule Parts | Grant Notes | Lower Frequency | Upper Frequency | Power Output | Tolerance | Emission Designator | Microprocessor Number | |||||||||||||||||||||||||||||||||
4 | 1 | 15C | CC | 2412 | 2472 | 0.2032 | |||||||||||||||||||||||||||||||||||
4 | 2 | 15C | CC | 2404 | 2478 | 0.0327 | |||||||||||||||||||||||||||||||||||
4 | 3 | 15C | CC | 2402 | 2480 | 0.0579 |
some individual PII (Personally Identifiable Information) available on the public forms may be redacted, original source may include additional details
This product uses the FCC Data API but is not endorsed or certified by the FCC