
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
1. Overview The 00WIMRA is a highly integrated single chip Module which has built in a 2x2 dual-band wireless LAN radio and Bluetooth radio.It supports IEEE 802.11a/b/g/n 11ac standard and provides the highest PHY rate up to 867Mbps,offering feature-rich wireless connectivity and reliable throughput from an extended distance.It includes Bluetooth EDR and LE radio which complies with Bluetooth v2.1+EDR,v3.0,and v5.0+BLE The 00WIMRA integrates PA/LNA such that the number of the external components is reduced to minimum.Intelligent MAC design deploys a high efficient DMA engine and hardware data processing accelerators which offloads the host processor. The 00WIMRA supports the 802.11i security standard and implements hardware acceleration for TKIP,CCMP and WAPI. The device also supports 802.11e Qos for video,voice,and multimedia applications. The 00WIMRA can provide a comcurrent operation of Wi-Fi and Bluetooth over USB interace. An intelligent Wi-Fi/Bluetooth coexistence algorithm is implemented to reach the best Wi-Fi and Bluetooth radio performance. 2. Features 2.1 Platform ■ Embedded high-performance 32-bit RISC microprocessor ■ Highly integrated RF with 55nm CMOS technology ■ Integrate high efficiency switching regulator ■ 40MHz crystal clock support with low power operation in sleep mode ■ Best-in-class active and idle power consumption performance ■ Fully Compliance with USB v2.0 specification ■ Iternal thermal sensor for temperature compensation and thermal protection. ■ Self calibration. ■ Advanced FDD/TDD mode Wi-Fi/Bluetooth coexistence scheme. ■ Wi-Fi and Bluetooth over USB. 2.2 WLAN ■ IEEE 802.11a/b/g/n 11ac compliant ■ Support 20MHz,40MHz,80MHz in 5GHz band,and 20MHz,40MHz bandwidth in 2.4GHz band. ■ Embedded high-performance 32-bit RISC microprocessor ■ Dual-band 2T2R mode with data rate up to 867Mbps ■ Support STBC,LDPC,MRC,and transmit Beamforming ■ Greenfield,mixed mode,legacy modes support ■ Frame aggregation ■ Integrated LNA,PA,and T/R switch ■ Optional external LNA and PA support. ■ IEEE 802.11d/e/h/i/k/r/w support ■ Security support for WGA WPA/WPA2 personal,WPS2.0,WAPI ■ Supports 802.11w proteced managed frames ■ QoS support of WFA WMM,WMM PS ■ Supports Wi-Fi Direct ■ Fully compliance with USB v2.0 High-speed mode ■ Wake on WLAN 2.3 Bluetooth ■ Bluetooth specification v2.1+EDR ■ Bluetooth v5.0 Low Energy(LE) ■ Standard HCI interface over USB super-speed,high-speed and full-speed mode ■ Integrated BALUN and PA with 9dBm transmit power ■ Best-in-class BT/Wi-Fi coexistence performance ■ Scatternet support:Up to 4 piconets simultaneously with background inquiry/page scan ■ Up to 3 simulaneous active ACL links ■ Support SCO and SCO link with re-transmission ■ Support wide-band speech and hardware accelerated SBC codec for A2DP streaming ■ Packet loss concealment ■ Channel assessment or AFH ■ 3DD support 3. General Specification Model 00WIMRA Product Name WI-Fi 11a/b/g/n ac 2T2R +BT5.0 Module Major Chipset MT7668AUN Standard 802.11a/b/g/n/ac Data Transfer Rate 1,2,5.5,6,11,12,18,22,24,30,36,48,54,60, 90,120,300,480,540,max867 Mbps, Modulation Method BPSK/ QPSK/ 16-QAM/ 64-QAM Frequency Band 2.4~2.4835 GHz ISM Band 5.180~5.240GHz/5.745~5.825GHz Spread Spectrum IEEE 802.11b: DSSS (Direct Sequence Spread Spectrum)IEEE802.11g/n:OFDM(Orthogonal Frequency Division Multiplexing) RF Output Power 2.4GHz: 11n >= 13dBm,11g >= 14dBm,11b < 20dBm 5GHz: 11n >= 13dBm,11a >=13dBm,11ac>=11dbm; BT RF Output Power 0< BT RF <=5 dBm Operation Mode Ad hoc, Infrastructure WLAN Receiver Sensitivity 2.4G: 11b CCK11(PER<8%) < -85dBm , 11g OFDM54(PER<10%) < -75dBm , 11n HT20 MCS7(PER<10%) < -73dBm , 11n HT40 MCS7(PER<10%) < -70dBm 5G : 11a 54Mbps(PER<10%)< -73dBm, 11n HT20 MCS7(PER<10%) < -71dBm , 11n HT40 MCS7(PER<10%) < -68dBm 11ac VHT80 MCS9(PER<10%) < -58dBm BT Receiver Sensitivity 86 @ BER=0.1% for GFSK (1Mbps) 86 @ BER=0.01% for π/4-DQPSK (2Mbps) 80 BER=0.01% for 8DPSK (3Mbps) Operation Range Up to 180 meters in open space OS Support Win7 32/64,Win8 32/64,Android Security WEP, TKIP, AES, WPA, WPA2 Interface USB 2.0 Power Consumption DC3.3V Max 882mA Operating Temperature -20~ +60° C ambient temperature Storage Temperature -40 ~ 85°C ambient temperature Humidity 5 to 90 % maximum (non-condensing) Dimension 15.8x27x0.8mm (LxWxH) 4. DC Characteristics 4.1 WLAN current consumption Description TYP Unit Sleep mode 1.5 mA 2GHz RX Active,HT40,MCS15 296 mA 5GHz RX Active,HT80,MCS9 372 mA RX Power saving,DTIM=1 65 mA RX Listen 236 mA 2GHz TX HT40,mcs15 @17dBm 672 mA 2GHz TX HT40,mcs8 @20dBm 756 mA 5GHz TX HT80,mcs9 @15dBm 792 mA 5GHz TX HT80,mcs0 @17.5dBm 882 mA 2GHz TX CCK,11Mbps @20dBm 464 mA Note: All result is measured at the antenna port and VDD33 is 3.3V 4.2 Bluetooth current consumption Note:All result is measured at the antenna port and VDD33 is 3.3V Description TYP Unit Sleep mode 1.5 mA Bluetooth continuous transmit(TX output power:9dBm) 69 mA Bluetooth continuous receive 44 mA Bluetooth SCO connection, HV3 packets+sniff mode+scan (Page scan internal=1.28sec,inquiry scan in terval=2.56s,sniff interval=500ms) 32 mA Bluetooth page scan+inquiry scan (Page scan interval=1.28s,inquiry scan interval=2.56s) 2 mA Bluetooth page scan (Page scan interval=1.28s) 2 mA 5. Pin Description and PCB size (Top view) NO. Nam Description 1 BTWAKE Bluetooth wake 2 GND Ground connections 3 UDP USB positive differential data lines 4 UDM USB negative differential data lines 5 RST reset 6 3.3V Power supply 3.3V is required 7 WFWOW WIFI wake 8 3D -GLASS Platform 60 hz synchronization signal is given 9 GND Ground connections 10 WF-RF0 WIFI-RF signal 11 GND Ground connections 12 GND Ground connections 13 WF-RF1 WIFI-RF signal 14 GND Ground connections 15 GND Ground connections 16 BT-RF Blue tooth ANT 17 GND Ground connections 6. Modular photo PCBA physical photo BT-RF 7. Recommended Reflow Profile Referred IPC/JEDEC standard. Peak Temperature : <250°C Number of Times : es2 tim * Note: compatibility of the connected device…
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External Photos M/N:00WIMRA External Photos M/N:00WIMRA External Photos M/N:00WIMRA External Photos M/N:00WIMRA
主板WIFI模块 1.0 背胶类型 厦门厦华科技有限公司 物料名称:主板WIFI后铭牌贴纸 料号: 印刷要求:银底,黑字+亚膜 尺寸:47.1X50.5(mm) 3个角为R2+3X3 纸质:50g反银龙纸 背胶类型:不干胶 检验:不干胶系列规格书 安规/专利 安规/专利 00WIMRA 2APQQ-00WIMRA
Internal Photos M/N:00WIMRA Internal Photos M/N:00WIMRA
FCC ID: 2APQQ-00WIMRA EST Technology Co. ,Ltd Report No. ESTE-R2003054 Page 1 of 10 FCC 47 CFR MPE REPORT CTOUCH Europe B.V. WIFI MODULE Model Number: 00WIMRA FCC ID: 2APQQ-00WIMRA Prepared for: CTOUCH Europe B.V. Achtseweg Zuid 153R, 5651 GW Eindhoven, Netherlands Prepared By: EST Technology Co., Ltd. Chilingxiang, Qishantou, Santun, Houjie, Dongguan, Guangdong, China Tel: 86-769-83081888-808 Report Number: ESTE-R2003054 Date of Test: Dec. 23, 2019-Mar. 06, 2020 Date of Report: Mar. 16, 2020 FCC ID: 2APQQ-00WIMRA EST Technology Co. ,Ltd Report No. ESTE-R2003054 Page 2 of 10 Maximum Permissible Exposure 1. Applicable Standards Systems operating under the provisions of this section shall be operated in a manner that ensures that the public is not exposed to radio frequency energy level in excess limit for maximum permissible exposure. In accordance with 47 CFR FCC Part 2 Subpart J, section 2.1091 this device has been defined as a mobile device whereby a distance of 0.2m normally can be maintained between the user and the device. 1.1. Limits for Maximum Permissible Exposure (MPE) (a) Limits for Occupational/Controlled Exposure Frequency Range (MHz) Electric Field Strength (E) (V/m) Magnetic Field Strength (H) (A/m) Power Density (S) (mW/cm 2 ) Averaging Times ︱E︱ 2 ,︱H︱ 2 or S (minutes) 0.3-3.0 614 1.63 (100)* 6 3.0-30 1842/f 4.89/f (900/f)* 6 30-300 61.4 0.163 1.0 6 300-1500 F/300 6 1500-10000 5 6 (b) Limits for General Population / Uncontrolled Exposure Frequency Range (MHz) Electric Field Strength (E) (V/m) Magnetic Field Strength (H) (A/m) Power Density (S) (mW/cm 2 ) Averaging Times ︱E︱ 2 ,︱H︱ 2 or S (minutes) 0.3-1.34 614 1.63 (100)* 30 1.34-30 824/f 2.19/f (180/f)* 30 30-300 27.5 0.073 0.2 30 300-1500 F/1500 30 1500-10000 1.o 30 Note: f=frequency in MHz; *Plane-wave equivalent power density FCC ID: 2APQQ-00WIMRA EST Technology Co. ,Ltd Report No. ESTE-R2003054 Page 3 of 10 1.2. MPE Calculation Method E (V/m) = d G×P×30 Power Density: Pd (W/m 2 ) = 377 E 2 E = Electric Field (V/m) P = Peak RF output Power (W) G = EUT Antenna numeric gain (numeric) d = Separation distance between radiator and human body (m) The formula can be changed to Pd = 2 d×377 G×P×30 From the peak EUT RF output power, the minimum mobile separation distance, d=0.2m, as well as the gain of the used antenna, the RF power density can be obtained FCC ID: 2APQQ-00WIMRA EST Technology Co. ,Ltd Report No. ESTE-R2003054 Page 4 of 10 2. Conducted Power Result Antenna 1 Mode Frequency (MHz) Peak output power (dBm) Peak output power (mW) Target power (dBm) Antenna gain (dBi) (Linear) GFSK 2402 5.98 3.9628 5 ±1 2 1.58489 2441 5.44 3.4995 5±1 2 1.58489 2480 4.79 3.0130 4±1 2 1.58489 8-DPSK 2402 7.70 5.8884 7 ±1 2 1.58489 2441 7.04 5.0582 7±1 2 1.58489 2480 6.54 4.5082 6±1 2 1.58489 BLE 2402 9.78 9.5060 9 ±1 2 1.58489 2440 8.88 7.7268 8±1 2 1.58489 2480 8.20 6.6069 8±1 2 1.58489 IEEE 802.11b 2412 15.00 31.6228 15 ±1 2 1.58489 2437 14.78 30.0608 14±1 2 1.58489 2462 14.80 30.1995 14±1 2 1.58489 IEEE 802.11g 2412 18.12 64.8634 18 ±1 2 1.58489 2437 17.89 61.5177 17±1 2 1.58489 2462 17.91 61.8016 17±1 2 1.58489 IEEE 802.11n HT20 (2.4G) 2412 16.81 47.9733 16 ±1 2 1.58489 2437 16.79 47.7529 16±1 2 1.58489 2462 16.74 47.2063 16 ±1 2 1.58489 IEEE 802.11n HT40 (2.4G) 2422 16.02 39.9945 16 ±1 2 1.58489 2437 16.01 39.9025 16±1 2 1.58489 2452 16.01 39.9025 16 ±1 2 1.58489 IEEE 802.11a 5180 11.74 14.9279 11 ±1 2 1.58489 5200 12.10 16.2181 12±1 2 1.58489 5240 11.46 13.9959 11±1 2 1.58489 5745 12.02 15.9221 12±1 2 1.58489 5785 12.72 18.7068 12±1 2 1.58489 5825 12.57 18.0717 12±1 2 1.58489 FCC ID: 2APQQ-00WIMRA EST Technology Co. ,Ltd Report No. ESTE-R2003054 Page 5 of 10 Mode Frequency (MHz) Peak output power (dBm) Peak output power (mW) Target power (dBm) Antenna gain (dBi) (Linear) IEEE 802.11n HT20 (5G) 5180 10.73 11.8304 10 ±1 2 1.58489 5200 11.32 13.5519 11±1 2 1.58489 5240 10.84 12.1339 10±1 2 1.58489 5745 11.66 14.6555 11±1 2 1.58489 5785 12.30 16.9824 12±1 2 1.58489 5825 12.05 16.0325 12±1 2 1.58489 IEEE 802.11ac VHT20 5180 10.93 12.3880 10 ±1 2 1.58489 5200 11.33 13.5831 11±1 2 1.58489 5240 10.73 11.8304 10±1 2 1.58489 5745 11.74 14.9279 11±1 2 1.58489 5785 12.17 16.4816 12±1 2 1.58489 5825 11.83 15.2405 11±1 2 1.58489 IEEE 802.11n HT40 (5G) 5190 10.71 11.7761 10 ±1 2 1.58489 5230 10.52 11.2720 10±1 2 1.58489 5755 11.27 13.3968 11±1 2 1.58489 5795 11.96 15.7036 11±1 2 1.58489 IEEE 802.11ac VHT40 5190 10.60 11.4815 10 ±1 2 1.58489 5230 10.22 10.5196 10±1 2 1.58489 5755 11.64 14.5881 11±1 2 1.58489 5795 11.75 14.9624 11±1 2 1.58489 IEEE 802.11ac VHT80 5210 11.21 13.2130 11 ±1 2 1.58489 5775 11.23 13.2739 11 ±1 2 1.58489 FCC ID: 2APQQ-00WIMRA EST Technology Co. ,Ltd Report No. ESTE-R2003054 Page 6 of 10 Antenna 2 Mode Frequency (MHz) Peak output power (dBm) Peak output power (mW) Target power (dBm) Antenna gain (dBi) (Linear) IEEE 802.11b 2412 15.97 39.5367 15 ±1 2 1.58489 2437 15.91 38.9942 15±1 2 1.58489 2462 15.88 38.7258 15±1 2 1.58489 IEEE 802.11g 2412 19.29 84.9180 19 ±1 2 1.58489 2437 19.20 83.1764 19±1 2 1.58489 2462 19.26 84.3335 19±1 2 1.58489 IEEE 802.11n HT20 (2.4G) 2412 18.07 64.1210 18 ±1 2 1.58489 2437 18.12 64.8634 18±1 2 1.58489 2462 18.06 63.9735 18 ±1 2 1.58489 IEEE 802.11n HT40 (2.4G) 2422 17.18 52.2396 17 ±1 2 1.58489 2437 17.36 54.4503 17±1 2 1.58489 2452 17.74 59.4292 17 ±1 2 1.58489 IEEE 802.11a 5180 9.65 9.2257 9 ±1 2 1.58489 5200 9.93 9.8401 9±1 2 1.58489 5240 9.25 8.4140 9±1 2 1.58489 5745 9.56 9.0365 9±1 2 1.58489 5785 9.26 8.4333 9±1 2 1.58489 5825 10.21 10.4954 10±1 2 1.58489 IEEE 802.11n HT20 (5G) 5180 9.22 8.3560 9 ±1 2 1.58489 5200 9.61 9.1411 9±1 2 1.58489 5240 8.98 7.9068 8±1 2 1.58489 5745 9.61 9.1411 9±1 2 1.58489 5785 9.20 8.3176 9±1 2 1.58489 5825 10.15 10.3514 10±1 2 1.58489 IEEE 802.11ac VHT20 5180 9.14 8.2035 9 ±1 2 1.58489 5200 9.52 8.9536 9±1 2 1.58489 5240 8.97 7.8886 8±1 2 1.58489 5745 9.58 9.0782 9±1 2 1.58489 5785 8.98 7.9068 8±1 2 1.58489 5825 9.87 9.7051 9±1 2 1.58489 FCC ID: 2APQQ-00WIM…
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FCC ID: 2APQQ-00WIMRA EST Technology Co., Ltd Report No.ESTE-R2003053 Page 1 of 103 FCC PART 15E TEST REPORT FOR CERTIFICATION On Behalf of CTOUCH Europe B.V. WIFI MODULE Model Number: 00WIMRA FCC ID: 2APQQ-00WIMRA Prepared for: CTOUCH Europe B.V. Achtseweg Zuid 153R, 5651 GW Eindhoven, Netherlands Prepared By: EST Technology Co., Ltd. Chilingxiang, Qishantou, Santun, Houjie, Dongguan, Guangdong, China Tel: 86-769-83081888-808 Report Number: ESTE-R2003053 Date of Test: Dec. 23, 2019-Mar. 06, 2020 Date of Report: Mar. 16, 2020 FCC ID: 2APQQ-00WIMRA EST Technology Co., Ltd Report No.ESTE-R2003053 Page 2 of 103 TABLE OF CONTENTS Description Page TEST REPORT VERIFICATION ........................................................................................................................ 3 1. GENERAL INFORMATION ................................................................................................................. 5 1.1. Description of Device (EUT) ........................................................................................................... 5 1.2. The antenna information for EUT .................................................................................................... 6 2. SUMMARY OF TEST ......................................................................................................................... 7 2.1. Summary of test result ...................................................................................................................... 7 2.2. Test Facilities .................................................................................................................................... 8 2.3. Measurement uncertainty for EST Technology Co., Ltd. ................................................................ 9 2.4. Assistant equipment used for test ..................................................................................................... 9 2.5. Block Diagram .................................................................................................................................. 9 2.6. Test Mode ......................................................................................................................................... 9 2.7. Channel List .................................................................................................................................... 12 2.8. Power Setting of Test Software ...................................................................................................... 13 2.9. Duty Cycle of Test Signal .............................................................................................................. 14 2.10. Test Equipment List ....................................................................................................................... 18 3. 6DB BANDWIDTH &26DB BANDWIDTH & 99% OCCUPIED BANDWIDTH ..................................... 20 3.1. Limit ............................................................................................................................................... 20 3.2. Test Setup ....................................................................................................................................... 20 3.3. Spectrum Analyzer Setting ............................................................................................................. 20 3.4. Test Procedure ................................................................................................................................ 21 3.5. Test Result ...................................................................................................................................... 22 3.6. Test Result ...................................................................................................................................... 24 4. MAXIMUM CONDUCTED OUTPUT POWER ..................................................................................... 44 4.1. Limit ............................................................................................................................................... 44 4.2. Test Setup ....................................................................................................................................... 44 4.3. Test Procedure ................................................................................................................................ 44 4.4. Test Result ...................................................................................................................................... 45 5. PEAK POWER SPECTRAL DENSITY ................................................................................................ 47 5.1. Limit ............................................................................................................................................... 47 5.2. Test Setup ....................................................................................................................................... 47 5.3. Spectrum Analyzer Setting ............................................................................................................. 47 5.4. Test Procedure ................................................................................................................................ 47 5.5. Test Result ...................................................................................................................................... 48 6. UNWANTED EMISSIONS AND BAND EDGE ..................................................................................... 62 6.1. Limit ............................................................................................................................................... 62 6.2. Test Setup ....................................................................................................................................... 63 6.3. Spectrum Analyzer Setting .........................................…
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Conducted Test M/N:00WIMRA Radiated Test (Below 1GHz) M/N:00WIMRA Radiated Test (Above 1GHz) M/N:00WIMRA
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15E | 5.72 GHz - 5.85 GHz | 26.40 mW |

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