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1 | Users Manual | Users Manual | 1.03 MiB | September 03 2021 / September 15 2021 |
Reference design 60 GHz radar FF module User manual and integration instructions Introduction 60 GHz radar form factor module based on Infineon reference design User manual and integration instructions for host product manufacturers About this document Scope and purpose This document is the user manual with integration instructions for the radar embedded form factor (FF) module with presence detection software. Intended audience Manufacturers who intend to integrate the Infineon 60 GHz radar (BGT60TR13C) embedded form factor solution into their host product. 1 Reference design 60 GHz radar FF module User manual and integration instructions Introduction Table of contents About this document ....................................................................................................................... 1 Table of contents ............................................................................................................................ 2 1 1.1 1.2 2 2.1 2.2 2.3 2.4 3 3.1 4 4.1 4.2 5 5.1 5.2 5.3 5.4 5.5 5.6 5.7 5.8 5.9 5.10 6 6.1 6.2 7 7.1 7.2 8 8.1 8.2 9 Introduction .......................................................................................................................... 4 General features ...................................................................................................................................... 4 Presence detection features ................................................................................................................... 4 Hardware information ............................................................................................................ 5 Block diagram .......................................................................................................................................... 5 Module pin definitions ............................................................................................................................ 6 Recommended operating conditions ..................................................................................................... 7 Module RF parameters ............................................................................................................................ 8 UART interface connection ...................................................................................................... 9 Example command ................................................................................................................................. 9 Radar radiation pattern ......................................................................................................... 10 Test setup .............................................................................................................................................. 10 Radiation pattern .................................................................................................................................. 10 FCC considerations ................................................................................................................ 12 List of applicable FCC rules ................................................................................................................... 12 Specific operational use conditions ..................................................................................................... 12 Limited module procedures ................................................................................................................. 12 Trace antenna design ............................................................................................................................ 13 RF exposure considerations .................................................................................................................. 13 Antennas ................................................................................................................................................ 13 Label and compliance information ...................................................................................................... 13 Information on test modes and additional testing requirements ...................................................... 13 Test mode command ............................................................................................................................ 13 Important notes .................................................................................................................................... 14 Reference design ................................................................................................................... 15 Design recommendation....................................................................................................................... 15 Integration of module without RF shield into host product ................................................................ 15 Module information ............................................................................................................... 17 Module dimensions ............................................................................................................................... 17 Recommended land pattern ................................................................................................................. 18 SMT/baking information ........................................................................................................ 19 Baking recommendations ..................................................................................................................... 19 SMT recommendations ......................................................................................................................... 19 Revision history .................................................................................................................... 21 2 Reference design 60 GHz radar FF module User manual and integration instructions Introduction Glossary Table 1 Abbreviations Abbreviation CW FCC FMCW GPIO LDO mmWave PIR RX SPI TX UART Comment Name Continuous wave Federal Communications Commission Frequency-modulated continuous wave General-purpose input/output Low dropout Millimeter wave Passive infrared sensing Receiver Serial peripheral interface Transmitter Universal asynchronous receiver/transmitter 3 Reference design 60 GHz radar FF module User manual and integration instructions Introduction 1 Introduction Motion sensing is a standard feature present in many devices. Todays devices become smarter by knowing if the user is around or not. Traditionally, motion sensors have been designed using passive infrared sensing (PIR). As simple as PIR is, there are performance limitations. For example, PIR sensors cannot detect micro motions. In addition, they require a lens, whereas radar sensors can be covered and disguised behind plastic enclosures. Infineons presence detection sensor module integrates 60 GHz mmWave technology. The module simplifies the implementation of mmWave sensors in the band of 61.0 to 61.5 GHz, and it includes the ARM Cortex-M4F based processor system, 1TX 3RX antennas and onboard regulator. This presence detection sensor module targets low-power and high-resolution presence detection in smart home, office, and diverse other use cases. 1.1 General features ARM Cortex-M4F 150 MHz, 1024 kB Flash, 288 kB RAM Built-in antennas (1TX 3RX) Built-in regulator UART interface and GPIOs 3.6~5 V power input 26-pin pitch 1.27 mm castellated holes Dimensions: 20 x 15 x 2.3 mm Figure 1 60 GHz radar form factor module 1.2 Presence detection features Low power and high resolution Presence sensing for home, office and commercial buildings Adjustable detection range Field of view of radar: azimuth: 45 degrees/elevation: 40 degrees Immune to environmental factors such as temperature, wind, sunlight and dust/debris Detection range:
o Detection up to 10 m for macro motion (1) o Detection up to 5 m for micro motion (2)
(1) Macro motion: Human movements.
(2) Micro motion: Stationary human (normally breathing and blinking eyes) in sitting or standing position with no active movements for at least 30 s. 4 Reference design 60 GHz radar FF module User manual and integration instructions Hardware information 2 Hardware information 2.1 Block diagram Figure 2 Module block diagram The main components of the module are the 60 GHz radar chip, the ARM based MCU and the 80 MHz oscillator. The module has its own power supply regulation. UART is the communication interface to the host device. 5 Reference design 60 GHz radar FF module User manual and integration instructions Hardware information 2.2 Module pin definitions Figure 3 Components on the module Table 2 P1 pin definitions Pin no. P1-1 P1-2 P1-3 P1-4 P1-5 P1-6 P1-7 P1-8 P1-9 P1-10 P1-11 P1-12 P1-13 Signal name DC_IN DC_IN Description Power supply input. Range from 3.6 V to 5.5 V. Power supply input. Range from 3.6 V to 5.5 V. NC NC NC NC NC nRESET UART_TX UART_RX NC NC GND Not used Not used Not used Not used Not used Reset for radar module. Internal pull high default. Active low. UART transmit. Reserve test point for firmware upgrade. UART receive. Reserve test point for firmware upgrade. Not used Not used Ground Table 3 P2 Pin definitions 6 Reference design 60 GHz radar FF module User manual and integration instructions Hardware information Pin no. P2-1 P2-2 P2-3 P2-4 P2-5 P2-6 P2-7 P2-8 P2-9 P2-10 P2-11 P2-12 Signal name NC NC GPIO0 GPIO1 GPIO2 NC NC NC NC NC NC GPIO9 P2-13 GND Description Not used Not used GPIO0. Default low, green color for presence indication. GPIO1. Default low, red color for no presence indication. GPIO2. Default low, blue color for bootloader mode indication. Not used Not used Not used Not used Not used Not used GPIO9. Please pull high 1 k to VIO. Executing a hardware reset (using pin P1-8) with this pin pulled to low will trigger the module to enter bootloader mode after reset. Bootloader mode is used for firmware update. Ground 2.3 Recommended operating conditions Parameter DC_IN VIH VIL Current consumption at DC_IN = 5 V (1) Phase noise Operating temperature (2) Storage temperature DC supply input IO high-level input voltage IO low-level input voltage Presence detect mode on Presence detect mode off Deep sleep mode At 100 kHz offset Min. 3.6 2.3
-10
-40 Typ. 12.0 3.7 0.04
-80 Max. 5.5 1 70 85 Units V mA dBc/Hz C C
(1) Based on firmware 237a4fe version.
(2) Means ambient temperature when working. 7 Reference design 60 GHz radar FF module User manual and integration instructions Hardware information 2.4 Module RF parameters Parameter RX_BW, TX_BW Output power Operating frequency1 EIRP Antenna gain of single TX Antenna gain of single RX E-plane of TX and RX antenna H-plane of TX and RX antenna Min. 61.0 2.0 2.0 25 30 Typ.
+7.5 3.5 3.5 40 45 Max. 61.5 5.0 5.0 55 60 Units GHz dBm dBi dBi Deg. Deg. 1 Fixed by firmware to comply with granted FCC certification. Figure 4 Module E- and H-plane 8 Reference design 60 GHz radar FF module User manual and integration instructions UART interface connection 3 UART interface connection A UART interface is used to communicate with the radar module through binary commands. The UART TX and RX pins operate at TTL 3.3 V level. A detailed configuration of the UART interface is shown in the table below. Baud rate 115200 Bit width 8 Parity None Stop bit 1 3.1 Example command Example command to get firmware version:
Command send to UART_RX D9 00 00 00 B4 DF Reply command receive at UART_TX D9 00 1E 00 50 72 65 73 65 6E 63 65 44 65 74 65 63 74 5F 31 2E 33 2E 30 20 28 31 35 36 61 34 62 63 29 52 EF The binary command is in the format of header + length + payload + checksum. For detailed information please refer to the Infineon BGT60TR13C embed MCU4 binary command protocol manual. 9 Reference design 60 GHz radar FF module User manual and integration instructions Radar radiation pattern 4 Radar radiation pattern 4.1 Test setup E-plane H-plane
-90
+90
-90
+90 Figure 5 Turning direction of antenna 4.2 Radiation pattern Figure 6 Radiation pattern of the E-plane 10 Reference design 60 GHz radar FF module User manual and integration instructions Radar radiation pattern Figure 7 Radiation pattern of the H-plane 11 Reference design 60 GHz radar FF module User manual and integration instructions FCC considerations 5 FCC considerations The reference module has been certified at FCC according to the rules as stated in chapter 5.1. Host product manufacturers must immediately file a 2.933 Change-in-ID application to obtain their own FCC ID for the module, and then a C2P application to authorize the module in their specific host device(s). Host product manufacturers are advised to carefully read the whole of chapter 5 and follow the guidelines according to KDB 996369 D04, or the latest updates of it. 5.1 List of applicable FCC rules The modular transmitter was tested according to the following rules:
FCC Rules and Regulations Part 15, Subpart A General (September 2019) Part 15, Subpart A, Section 15.31 Measurement standards FCC Rules and Regulations Part 15, Subpart C Intentional Radiators (September 2019) Part 15, Subpart C, Section 15.203 Antenna requirements Part 15, Subpart C, Section 15.204 External radio frequency power amplifiers and antenna modifications Part 15, Subpart C, Section 15.205 Restricted bands of operation Part 15, Subpart C, Section 15.207 Conducted limits Part 15, Subpart C, Section 15.209 Radiated emission limits, general requirements Part 15, Subpart C, Section 15.255 Operation within the band 57 to 71 GHz. The modular transmitter is only FCC authorized for the specific rule parts listed on the grant. The host product manufacturer is responsible for compliance with any other FCC rules that apply to the host not covered by the modular transmitter grant of certification. 5.2 Specific operational use conditions The module is classified for use in fixed equipment, refer to chapter 5.5. The module is FCC- certified for the operating frequency range 61 to 61.5 GHz. The application software (SW) has the firmware (FW) ID 1.0.0. 5.3 Limited module procedures The modular transmitter is approved by FCC as a limited module due to the following limitations:
The module does not have its own RF shielding. The module does not have an FCC ID label attached to it. 12 Reference design 60 GHz radar FF module User manual and integration instructions FCC considerations Notes:
See also chapter 5.5 for human exposure considerations. The module has not been tested for simultaneous transmission operations. Refer to chapter 6.2 for integration methods that address the limitation due to RF shielding. 5.4 Trace antenna design Not applicable. 5.5 RF exposure considerations The performed human exposure evaluation is described in the Human exposure RF test report No. :
T46134-04-00HS The module is classified for use in fixed equipment. o The host product operating conditions must be such that there is a minimum separation distance of 20 cm (or possibly greater than 20 cm) between the module and nearby persons. o The host product manufacturer is required to provide the following text in its end user manual:
In order to comply with FCC RF Exposure requirements this device must be operated with a minimum separation distance of 20 cm between the equipment and a persons body. 5.6 Antennas The antenna is integrated into the radar chip (on-chip antenna). Type: Linear polarized strip patch array antenna; gain 5 dBi. 5.7 Label and compliance information The module does not have a FCC label attached to it. The host product manufacturer is advised to provide a physical or e-label stating Contains FCC ID: . with the finished product. The manufacturer is advised to read Guidelines for Labeling and User Information for RF Devices KDB Publication 784748. 5.8 Information on test modes and additional testing requirements Infineon provides software that enables the host module manufacturer to operate the module in certain test modes, including the modes that have been used for FCC certification of the module:
CW low frequency: Operates the module in CW at 61.019 GHz. CW mid frequency: Operates the module in CW at 61.249 GHz. CW high frequency: Operates the module in CW at 61.479 GHz. FMCW: Chirp mode V 1.0.0 (presence detection SW) according to FW version 1.0.0. The SW also provides additional options that might be useful in testing the host system e.g. a mode that puts the module into sleep mode. See the next chapter for information on initializing and using the SW. 13 Reference design 60 GHz radar FF module User manual and integration instructions FCC considerations 5.9 Test mode command The UART interface can be used to set up the module in test mode. The following table show the commands for entering different test modes. After power-up or reset, the module will be in presence detection mode, which is sending FMCW chirps. An acknowledge command will be sent from the module after a valid command is received. Command name Binary command Enable presence detection D9 0A 01 00 01 28 C1 Disable presence detection D9 0A 01 00 00 09 D1 Enable RFCW output at 61.019 GHz (low) D9 0B 01 00 01 9C B7 Enable RFCW output at 61.249 GHz (mid) D9 0B 01 00 02 FF 87 Enable RFCW output at 61.479 GHz (high) D9 0B 01 00 03 DE 97 Disable RFCW output D9 0B 01 00 00 BD A7 Deep sleep mode D9 0E 01 00 01 D9 0B To enable RFCW mode, please follow the below command sequence:
Disable presence detection Enable RFCW output (low/mid/high) To resume chirp mode from RFCW mode, please follow the below command sequence:
Disable RFCW output Enable presence detection 5.10 Important notes The host product manufacturer must provide the below text to the end-user:
a) Changes or modifications not expressly approved by the party responsible for compliance could void the users authority to operate the equipment. b) This device complies with Part 15 of the FCC rules. Operation is subject to the following conditions:
This device may not cause interference. This device must accept any interference, including interference that may cause undesired operation of the device. 14 Reference design 60 GHz radar FF module User manual and integration instructions Reference design 6 6.1 Reference design Design recommendation Please reserve the test points of the UART for FW upgrade in the future. Please keep the module solder layer free of ground plane/trace rout in the keep-out area (shown in Figure 12). The power trace for DC_IN must be at least 20 mm wide. Figure 8 Recommended layout of radar module 6.2 Integration of radar module into host product Considerations when integrating are to ensure that the emissions from the host electronics are not advertently impacting the module and preventing proper operation. Conversely, the module emissions shall not prevent the rest of the host from operating properly. The complete host must still comply with applicable FCC regulations. Therefore, a verification of the final product must be done, by at least spot-checking emissions from the device while operating the host as a complete system. This testing should be performed with the host product configured in typical operational modes to check the fundamental frequency and spurious emissions for compliance with all applicable rules. To reduce the impact of the module on emissions, the host product manufacturer is advised to follow these guidelines:
Ensure that the maximum amount of the radar signal is indeed leaving the host device by ensuring that the signal is not unnecessarily reflected inside the host. See the Infineon 60 GHz radar radome design guide for proper distances to housing surfaces and recommended housing materials. Place the radar module inside the host as far away as technically feasible from other electronics that have been identified as susceptible to RF emissions, or identified to be a potential source of such 15 Reference design 60 GHz radar FF module User manual and integration instructions Reference design emissions. Such potential sources include other intentional transmitters or digital electronics operating at MHz clock rates. Put the PCB with the radar module soldered onto it within a separate section of the host, where it can be shielded from other host electronics. The shielding should be made of sheet metal, metal mesh or a metallic ink-coated material expressly designed as an effective shield. Any holes in the shield must be significantly smaller than the wavelength of the radiation that is being blocked. For 60 GHz radar that would mean maximum 0.5 mm. Whereas the first item should always be followed by the host manufacturer, the manufacturer can evaluate whether items two or three are suitable for the product and take measures to keep overall emissions below regulatory limits. 16 Reference design 60 GHz radar FF module User manual and integration instructions Module information 7 7.1 Module information Module dimensions Top view Side view Bottom view Figure 9 Module dimensions 17 Reference design 60 GHz radar FF module User manual and integration instructions Module information 7.2 Recommended land pattern Figure 10 Recommended land pattern dimensions 18 Reference design 60 GHz radar FF module User manual and integration instructions SMT/baking information 8 8.1 SMT/baking information Baking recommendations Baking conditions:
Follow MSL Level 4 to carry out the baking process. After the bag is opened, devices that will be subjected to reflow solder or other high-temperature processes must be:
o mounted within 72 hours of factory conditions at less than 30C/60 percent RH o stored at less than 10 percent RH. Devices require baking before mounting if the humidity indicator card reads more than 10 percent. If baking is required, devices may be baked for 8 hours at 125C. 8.2 SMT recommendations Recommended reflow profile:
Figure 11 Reflow profile of module 19 Reference design 60 GHz radar FF module User manual and integration instructions SMT/baking information Table 4 Description of parameters in reflow profile 1 2 3 Pre-heat Soldering D1: 140 ~ D2: 200 T1: 80~120 D2: 220 T2: 60 +/-10 Peak temperature D3: 250C max. Note: Reflow soldering is recommended a maximum of twice. Note: Add nitrogen during the reflow process to improve SMT solderability. Stencil thickness: 0.1~0.13 mm (recommended) Soldering paste (without Pb): SENJU N705-GRN3360-K2-V for best soldering effects. 20 60 GHz Radar FF Module for Presence Detection based on Infineon Reference Design Table of contents Quick start guide 9 Revision history Date of release Document version Description of changes 03. 03. 2021 29. 06. 2021 0.3 1.0 Reviewed version Updates in chapter 5.0 / 5.5 / 5.10 21 Trademarks All referenced product or service names and trademarks are the property of their respective owners. Edition June 2021 Published by Infineon Technologies AG 81726 Munich, Germany 2021 Infineon Technologies AG. All Rights Reserved. Do you have a question about this document?
Email: erratum@infineon.com Document reference AppNote Number IMPORTANT NOTICE The information contained in this application note is given as a hint for the implementation of the product only and shall in no event be regarded as a description or warranty of a certain functionality, condition or quality of the product. Before implementation of the product, the recipient of this application note must verify any function and other technical information given herein in the real application. Infineon Technologies hereby disclaims any and all warranties and liabilities of any kind
(including without limitation warranties of non-
infringement of intellectual property rights of any third party) with respect to any and all information given in this application note. The data contained in this document is exclusively intended for technically trained staff. It is the responsibility of customers technical departments to evaluate the suitability of the product for the intended application and the completeness of the product information given in this document with respect to such application. For further information on the product, technology, delivery terms and conditions and prices please contact your nearest Infineon Technologies office
(www.infineon.com). WARNINGS Due to technical requirements products may contain dangerous substances. For information on the types in question please contact your nearest Infineon Technologies office. Except as otherwise explicitly approved by Infineon Technologies in a written document signed by authorized Infineon Technologies, Infineon Technologies products may not be used in any applications where a failure of the product or any consequences of the use thereof can reasonably be expected to result in personal injury. representatives of
1 | Label Exhibit | ID Label/Location Info | 119.86 KiB | September 03 2021 / September 15 2021 |
CSA Internal | 3rd Party American Certification Body Inc. 6731 Whittier Ave, Suite C110 McLean, VA22101 Date: September 3, 2021 FCC ID: 2AYSQ-6011 FCC/IC Label & Location FCC: Per KDB 784748 themarking may be placed in the user manual if the device is unquestionably too small to be readable (smaller than 4 pt font). The model with the FCC ID mentioned above is considered to meet this criteria since the size is 20 mm x 16 mm and 3 pt font is the largest that can be used for module labelling which requires magnification for clear viewing. The certification number FCC (per KDB 784748) will be displayed in the user manual. Yours sincerely, Christa Jaeger Project Coordinator GMA CSA Group Bayern GmbH Ohmstr. 1-4 94342 Strasskirchen Germany
1 | Attestation | Attestation Statements | 132.13 KiB | September 01 2021 / September 15 2021 |
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1 | Authorization Letter | Cover Letter(s) | 213.44 KiB | September 01 2021 / September 15 2021 |
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1 | Confidentiality Request | Cover Letter(s) | 294.12 KiB | September 01 2021 / September 15 2021 |
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1 | Modular Checklist | Cover Letter(s) | 537.11 KiB | September 01 2021 / September 15 2021 |
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frequency | equipment class | purpose | ||
---|---|---|---|---|
1 | 2021-09-15 | 61019.5 ~ 61479.1 | DXX - Part 15 Low Power Communication Device Transmitter | Original Equipment |
app s | Applicant Information | |||||
---|---|---|---|---|---|---|
1 | Effective |
2021-09-15
|
||||
1 | Applicant's complete, legal business name |
Infineon Technologies AG
|
||||
1 | FCC Registration Number (FRN) |
0029911930
|
||||
1 | Physical Address |
Am Campeon 1-15
|
||||
1 |
Neubiberg, N/A
|
|||||
1 |
Germany
|
|||||
app s | TCB Information | |||||
1 | TCB Application Email Address |
h******@acbcert.com
|
||||
1 | TCB Scope |
A2: Low Power Transmitters (except Spread Spectrum) and radar detectors operating above 1 GHz
|
||||
app s | FCC ID | |||||
1 | Grantee Code |
2AYSQ
|
||||
1 | Equipment Product Code |
6011
|
||||
app s | Person at the applicant's address to receive grant or for contact | |||||
1 | Name |
W**** M********
|
||||
1 | Title |
Director
|
||||
1 | Telephone Number |
+49 8********
|
||||
1 | Fax Number |
+49 8********
|
||||
1 |
w******@infineon.com
|
|||||
app s | Technical Contact | |||||
1 | Firm Name |
CSA Group Bayern GmbH
|
||||
1 | Name |
C**** J******
|
||||
1 | Physical Address |
Ohmstrasse 1-4
|
||||
1 |
Strasskirchen, 94342
|
|||||
1 |
Germany
|
|||||
1 |
c******@csagroup.org
|
|||||
app s | Non Technical Contact | |||||
n/a | ||||||
app s | Confidentiality (long or short term) | |||||
1 | 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 | 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?: | No | ||||
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 | Is this application for software defined/cognitive radio authorization? | No | ||||
1 | Equipment Class | DXX - Part 15 Low Power Communication Device Transmitter | ||||
1 | Description of product as it is marketed: (NOTE: This text will appear below the equipment class on the grant) | Form Factor Module with BGT60TR13C Radar | ||||
1 | Related OET KnowledgeDataBase Inquiry: Is there a KDB inquiry associated with this application? | Yes | ||||
1 | Modular Equipment Type | Limited Single Modular Approval | ||||
1 | Purpose / Application is for | Original Equipment | ||||
1 | Composite Equipment: Is the equipment in this application a composite device subject to an additional equipment authorization? | No | ||||
1 | 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 | Grant Comments | Limited Modular Approval Output power listed is conducted, calculated from a radiated measurement. The grantee is required to inform all parties to whom this device is marketed that they are required to file a Change-in-ID (Section 2.933) to certify it under their own FCC ID, immediately followed by a Class II Permissive Change to authorize the LMA in their specific host device, before they may market it. RF exposure compliance is addressed for 1.1310 and 2.1091 MPE limits - this device complies with KDB 447498 and is approved for mobile/fixed operation. The antenna(s) used for this transmitter must not transmit simultaneously with any other co-located antenna or transmitter, except in accordance with FCC multi- transmitter product procedures. Grantee must provide installation and operating instructions for complying with FCC multi-transmitter product procedures and RF exposure requirements. | ||||
1 | Is there an equipment authorization waiver associated with this application? | No | ||||
1 | 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 | Firm Name |
CSA Group Bayern GmbH
|
||||
1 | Name |
F******** S********
|
||||
1 | Telephone Number |
49-94********
|
||||
1 | Fax Number |
49-94********
|
||||
1 |
f******@csagroup.org
|
|||||
Equipment Specifications | |||||||||||||||||||||||||||||||||||||||||
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Line | Rule Parts | Grant Notes | Lower Frequency | Upper Frequency | Power Output | Tolerance | Emission Designator | Microprocessor Number | |||||||||||||||||||||||||||||||||
1 | 1 | 15C | 61019.50000000 | 61479.10000000 | 0.0036000 |
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