SKI.W6022.1 1. Introduction SKI.W6022.1 module is based on ALTOBEAM ATBM6022, complied with IEEE 802.11 b/g/n standard from 2.4GHz ISM band.This documentation describes the engineering requirements specification. SKI.W6022.1 ALTOBEAM WIFI ATBM6022 2.4GHz ISM IEEE 802.11b/g/n 2. FEATURES Reserving System Chip Solution Band Dimensions IEEE Std. 802.11b IEEE Std. 802.11g IEEE Std. 802.11n ATBM6022 2.4G 12.3mm*12.7mm*1.5mm model SKI.W6022.1 Installat ion mode SMD Radio Technology IEEE 802.11b/g/n Data rate MAX 150Mbps Operation frequency 2.4 GHz Antenna port Remark 12.3mm x 12.7mm x 1.5mm 3. Block Diagram Figure 2.1 SKI.W6022.1 Block Diagram 1 QR-ZZPJ-017A 4. Package Outline and Mounting SKI.W6022.1 5. Pin Definition PIN SYMBOL 1 2 3 4,5 6 VCC DM DP GND ANT DESCRIPTION 3.3V Power Supply USB D-
USB D+
Connected to Ground RF Signal Throughout QR-ZZPJ-017A 2 6. Product Pictures SKI.W6022.1 top view bottom view 1 2 7. Key Materials PCB ATBM6022 SKI.W6022.1 1 2 3
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32-QFN FR-4,4LAY ALTOBEAM PF4040M00012T2115138 40MHz
(JWT) 3 8. General Requirements No. Feature Description SKI.W6022.1 Ripple Operation Voltage Current Consumption 8-1 8-2 8-3 8-4 8-5 8-6 8-7 USB 4.7pF C1C2 Operation Temperature Storage Temperature Antenna Type USB 3.3V+/-0.3 500mA 70mV
-10C to +70C External antenna High Speed USB 2.0 Interface
-40C to +125C 4 9. Electrical Characteristics SKI.W6022.1 9.1 IEEE 802.11b Section Items Specification Mode Channel Data rate Contents IEEE802.11b CCK CH1 to CH13 1, 2, 5.5, 11Mbps TX Characteristics Min. Typ. Max. Unit Remark 1. Power Levels(Calibrated) 1) For Each antenna port 2. Spectrum Mask @ target power 1) fc +/-11MHz to +/-22MHz 2) fc > +/-22MHz 3 Constellation Error(EVM)@ target power 1) 1Mbps 2) 2Mbps 3) 5.5Mbps 4) 11Mbps 4. Frequency Error RX Characteristics 5 Minimum Input Level Sensitivity
(each chain) 1) 1Mbps (FER 8%) 2) 2Mbps (FER 8%) 3) 5.5Mbps (FER 8%) 4) 11Mbps (FER 8%) 6 Maximum Input Level (FER 8%) 14.5 16.5 18.5 dBm
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Typ.
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-30
-50
-10
-10
-10
-10 25 Max.
-83
-80
-79
-76
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dBr dBr dB dB dB dB ppm Unit dBm dBm dBm dBm dBm
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-25 Min.
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-10 5 SKI.W6022.1 9.2 IEEE 802.11g Section Items Specification Mode Channel Data rate Contents IEEE802.11g OFDM CH1 to CH13 6, 9, 12, 18, 24, 36, 48, 54Mbps TX Characteristics Min. Typ. Max. Unit Remark 1. Power Levels 1) For Each antenna port 13 15 2. Spectrum Mask @ target power 1) at fc +/-11MHz 2) at fc +/-20MHz 3) at fc > +/-30MHz 3 Constellation Error(EVM)@ target power 1) 6Mbps 2) 9Mbps 3) 12Mbps 4) 18Mbps 5) 24Mbps 6) 36Mbps 7) 48Mbps 8) 54Mbps 4 Frequency Error RX Characteristics 5 Minimum Input Level Sensitivity
(each chain) 1) 6Mbps (PER 10%) 2) 9Mbps (PER 10%) 3) 12Mbps (PER 10%) 4) 18Mbps (PER 10%) 5) 24Mbps (PER 10%) 6) 36Mbps (PER 10%) 7) 48Mbps (PER 10%) 8) 54Mbps (PER 10%) 6 Maximum Input Level (PER 10%)
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Typ.
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-25 Min.
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-20 6 17
-20
-28
-40
-5
-8
-10
-13
-16
-19
-22
-25 25 Max.
-85
-84
-82
-80
-77
-73
-69
-65
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dBm dBr dBr dBr dB dB dB dB dB dB dB dB ppm Unit dBm dBm dBm dBm dBm dBm dBm dBm dBm SKI.W6022.1 9.3 IEEE 802.11n HT20 Section Items Specification Mode Channel Data rate (MCS index) Contents EEE802.11n HT20 @ 2.4GHz OFDM CH1 to CH13 MCS0/1/2/3/4/5/6/7 TX Characteristics Min. Typ. Max. Unit 2. Power Levels 1) For Each antenna port 12 14 3. Spectrum Mask @ target power 1) at fc +/-11MHz 2) at fc +/-20MHz 3) at fc > +/-30MHz 4. Constellation Error(EVM)@ target power 1) MCS0 2) MCS1 3) MCS2 4) MCS3 5) MCS4 6) MCS5 7) MCS6 8) MCS7 5. Frequency Error RX Characteristics 6. Minimum Input Level Sensitivity
(each chain) 1) MCS0 (PER 10%) 2) MCS1 (PER 10%) 3) MCS2 (PER 10%) 4) MCS3 (PER 10%) 5) MCS4 (PER 10%) 6) MCS5 (PER 10%) 7) MCS6 (PER 10%) 8) MCS7 (PER 10%) 7. Maximum Input Level (PER 10%)
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-25 Min.
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-20
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Typ.
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16
-20
-28
-45
-5
-10
-13
-16
-19
-22
-25
-28 25 Max.
-82
-79
-77
-74
-70
-66
-65
-64
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dBm dBr dBr dBr dB dB dB dB dB dB dB dB ppm Unit dBm dBm dBm dBm dBm dBm dBm dBm dBm QR-ZZPJ-017A 7 9.4 IEEE 802.11n HT40 Section SKI.W6022.1 Remark Items Specification Mode Channel Data rate (MCS index) TX Characteristics 1. Power Levels (Calibrated) 1) For Each antenna port 2. Spectrum Mask @target power 1) at fc +/-22MHz 2) at fc +/-40MHz 3) at fc > +/-60MHz 3. Constellation Error(EVM)@ target power 1) MCS0 2) MCS1 3) MCS2 4) MCS3 5) MCS4 6) MCS5 7) MCS6 8) MCS7 4. Frequency Error RX Characteristics 5. Minimum Input Level Sensitivity
(each chain) 1) MCS0 (PER 10%) 2) MCS1 (PER 10%) 3) MCS2 (PER 10%) 4) MCS3 (PER 10%) 5) MCS4 (PER 10%) 6) MCS5 (PER 10%) 7) MCS6 (PER 10%) 8) MCS7 (PER 10%) 6. Maximum Input Level (PER 10%) Contents IEEE802.11n HT40 @ 2.4GHz OFDM CH3 to CH11 MCS0/1/2/3/4/5/6/7 Typ. Typ. 13
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Typ.
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Max. Max. 15
-20
-28
-45
-5
-10
-13
-16
-19
-22
-25
-28 25 Max.
-79
-76
-74
-71
-67
-63
-62
-61
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Unit Unit dBm dBr dBr dBr dB dB dB dB dB dB dB dB ppm Unit dBm dBm dBm dBm dBm dBm dBm dBm dBm Min. Min. 11
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-20 8 10. Mechanical,Environmental and Reliability Tests Test Items Test Conditions Qty Criteria Condition SKI.W6022.1 4-1 Drop test 4-2 Vibration test 4-3 Impact test The packed samples within 100Kg can be tested Drop height:
Face Side: 800/600/450mm Edge line: 600/450/350mm Drop time: 1 each Face and edge. X-Y-Z direction, first Frequency changing from 10Hz to 30Hz to 10Hz,amplitude 0.75mm, 5 times vibrations, then frequency Changing from 30Hz to 55 Hz to 30 Hz, amplitude 0.15mm, 5 time vibration. Impact acceleration:
50m/sec2;
Impact duration: 16ms Impact times: 1000. 4-4 Soldering ability test Soldering temperature:
2355 Soldering duration:
20.5S 4-5 Humidity test Leave samples in 403, 93% RH @ 96 hours 1xBox After drop test, the outer box and inner box will not been broken by appearance visual inspection. 3 3 3 3 After test, the Appearance, Power EVM and Frequency error shall be satisfied with the specification. After test, the Appearance, Power EVM and Frequency error shall be satisfied with the specification. 1.After soldering, the soldered area must be covered by a smooth bright solder layer, some deficiencies such as a small amount of the pinhole, not wetting are allowed, but the deficiencies can not be in the same place 2.At least 90% of soldered area shall be covered continuously by the soldering material. Leave samples in standard test condition for 2 hours then test, the Appearance, Power, EVM and Frequency error functional parameter shall be satisfied with the test specification. 9 Thermostat cabinet temperature:
555 Applied voltage:
110% rated voltage Working duration: 200 hour (Supply Voltage Cycle 23h power on, 1h power off) Temperature: 555 Samples work for 16 hours Leave the samples in
-253@24 hours 4-6 High temperature load life test High 4-7 temperature load test Low 4-8 temperature storage test Low 4-9 temperature load test Leave samples in -153@ 2 hours, samples function shall be normal, the let samples work for 1 hour 4-10 Temperature circle test 4-11 Continuous TP test One cycle duration
-103@3H 403 @3H Total cycle: 10x Twice cycle duration
-103@4H
+603@4H,
+25@2H@2H 4-12 ESD Discharge voltage: 1kV C: 150pF Discharge resistance330 Positive10 times 1 time for each second SKI.W6022.1 60 After test, leave samples in standard condition for 1 hour and test, Power, EVM and Frequency error shall be satisfied with the test specification. 3 3 3 3 3 3 After test, the Appearance, Power, EVM and Frequency error shall be Satisfied with the test specification. Leave samples in standard test condition for 2 hours then test, the Appearance, Power, EVM and Frequency error shall be satisfied with the test specification. After test, leave the samples in standard condition and tested the Appearance, Power, EVM and Frequency error shall be satisfied with the test specification. After test, leave the samples in standard condition and tested Power EVM and Frequency error shall be qualified and all the characters shall be satisfied with the test specification. During test, There will not been appeared signal disconnection or interruption between DUT and AP. The products can recoverable smoothly after ESD test. 10 Federal Communication Commission Interference Statement This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one of the following measures:
- Reorient or relocate the receiving antenna.
- Increase the separation between the equipment and receiver.
- Connect the equipment into an outlet on a circuit different from that to which the receiver is connected.
- Consult the dealer or an experienced radio/TV technician for help. FCC Caution:
Any changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate this equipment. This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions:
(1) This device may not cause harmful interference, and
(2) This device must accept any interference received, including interference that may cause undesired operation. The module must be professionally. IMPORTANT NOTE:
In the event that these conditions can not be met (for example certain laptop configurations or co-location with another transmitter), then the FCC authorization is no longer considered valid and the FCC ID can not be used on the final product. In these circumstances, the OEM integrator will be responsible for re-evaluating the end product (including the transmitter) and obtaining a separate FCC authorization. End Product Labeling The final end product must be labeled in a visible area with the following:
Contains FCC ID:2AR82-SKIW6022101. Manual Information to the End User The OEM integrator has to be aware not to provide information to the end user regarding how to install or remove this RF module in the users manual of the end product which integrates this module.