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2AT5W-O2066PMWi-Fi Tri-band 2x2 MIMO DBS 802.11ax + Bluetooth 5.2 Module

SHENZHEN OFEIXIN TECHNOLOGY LIMITED
Wi-Fi Tri-band 2x2 MIMO DBS 802.11ax + Bluetooth 5.2 Module - FCC ID 2AT5W-O2066PM - SHENZHEN OFEIXIN TECHNOLOGY LIMITED
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Application Details

Equipment Class
6XD - 15E 6 GHz Low Power Indoor Client
Date of Grant
Aug 23, 2023
Application Purpose
Original Equipment
Date of Application
Aug 17, 2023
Equipment Note
Wi-Fi Tri-band 2x2 MIMO DBS 802.11ax + Bluetooth 5.2 Module
Frequency Range
5955.00000000 - 7115.00000000
Company
SHENZHEN OFEIXIN TECHNOLOGY LIMITED
Country
China

Documents & Files

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Users Manual

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Attestation Statements

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Block Diagram

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

www.ofeixin.com 欧飞信科技 O2066PM Wi-Fi Tri-band 2x2 MIMO DBS 802.11ax + Bluetooth 5.2 Module Cover of Approval Sheet PRODUCT NAME Part No. Description O2066PM FWAAO2066PM10 QCA2066 M.2 3.3V 2T2R 22*30* 2.7mm DBS 11ax BT5.2-UART External 3antenna Shield CAN FWAAO2066PM20 QCA2066 M.2 3.3V 2T2R 22*30* 2.7mm DBS 11ax BT5.2-USB External 3antenna Shield CAN Customer: Customer P/N: Signature: Date: Maker Information: OFEIXIN TECHNOLOGY LIMITED Room 503, Building A3, Area B, Songbai Industrial Park, Minghuan East Road, Shangcun Community, Gongming Street, Guangming District, Shenzhen www.ofeixin.com Revision History Version Date Description Draft Approved V1.0 2022-04-06 -Preliminary Project version CCJ Turbo V1.1 2022-06-30 -append current description CCJ Turbo V1.2 2022-08-10 -Addition the description CCJ Turbo www.ofeixin.com CONTENTS 1.OVERVIEW ................................................................................................................................... 1 1.1 INTRODUCTION ............................................................................................................................... 1 1.2 FEATURES ...................................................................................................................................... 1 1.3 BLOCK DIAGRAM ............................................................................................................................ 2 1.4 GENERAL SPECIFICATION .............................................................................................................. 2 1.5 RECOMMENDED OPERATING RATING ............................................................................................ 2 2. RF SPECIFICATION ........................................................................................................................ 3 2.1 WI-FI RF SPECIFICATION .............................................................................................................. 3 2.2 BT RF SPECIFICATION .................................................................................................................. 7 3.PIN ASSIGNMENTS ....................................................................................................................... 8 3.1 PIN OUTLINE .................................................................................................................................. 8 3.2 PIN DEFINITION .............................................................................................................................. 9 4.DIMENSIONS .............................................................................................................................. 12 4.1 PHYSICAL DIMENSIONS AND MODULE PHOTO ............................................................................ 12 4.2 MODULE PHYSICAL DIMENSIONS................................................................................................. 13 5 REFERENCE DESIGN .................................................................................................................... 14 5.1 REFERENCE SCHEMATIC .............................................................................................................. 14 5.2 EXTERNAL ANTENNA .................................................................................................................... 15 5.3 REAL-WORLD TESTING ................................................................................................................ 15 6 HOST INTERFACE TIMING DIAGRAM ........................................................................................... 18 6.1 PCIE POWERUP SEQUENCE TIMING ....................................................................................................... 18 7 PACKAGE .................................................................................................................................... 18 7.1 REEL ............................................................................................................................................. 18 7.2 STORAGE TEMPERATURE AND HUMIDITY ................................................................................... 19 O2066PM DATESHEET www.ofeixin.com1OFEIXIN TECHNOLOGY LIMITED 1.Overview 1.1 Introduction The O2066PM1 device is a highly integrated module supporting 802.11ax Wi-Fi and Bluetooth (BT) Milan. The O2066PM1 device supporting simultaneous operation on 2.4 GHz and 5 GHz, or 6 GHz, also known as Dual Band Simultaneous (DBS). The wireless module complies with IEEE 802.11 a/b/g/n/ac/ax 2x2 MIMO standard and it can achieve up to a speed of 2975.6Mbps (5/6G 2x2 160MHz 11ax +2.4G 2x2 40MHz 11ax DBS). The integrated module provides PCIe interface for Wi-Fi, UART/PCM or USB interface for Bluetooth. 1.2 Features ⚫Supports 2x2 Multi-User Multiple-Input Multiple-Output (MU-MIMO). ⚫Dual Band Simultaneous (DBS), up to 3 Gbps data rate (5/6G 2x2 160MHz 11ax +2.4G 2x2 40MHz 11ax DBS). ⚫Tri-band 2.4 GHz/5 GHz/6 GHz support. ⚫20MHz/40MHz channel bandwidth for 2.4 GHz and 20MHz/40MHz/80MHz/160 MHz channel bandwidth for 5 GHz/6 GHz. ⚫Seamless antenna sharing with Bluetooth, LTE, LTE-U, and 5G. ⚫Dynamic Frequency Selection ⚫Offloading traffic for minimal host utilization at 802.11ac/ ax speeds. ⚫ Low-power PCIe (with L1 substate) interface. ⚫Integrated close-loop power detector. ⚫Supports 2 Mbps Bluetooth Low Energy (BLE), BLE Long Range. ⚫Split ACL support for A2DP true stereo (earbuds) . ⚫Dedicated Bluetooth antenna, and concurrent with 5G WLAN. ⚫Dual eSCO and dual A2DP streams. ⚫Backward-compatible with previous Bluetooth standards. ⚫Standard M.2 2230 Key E Golden Finger interface. O2066PM DATESHEET www.ofeixin.com 2 OFEIXIN TECHNOLOGY LIMITED 1.3 Block Diagram 1.4 General Specification Model Name O2066PM Product Description Support WiFi6E+BT5.2 Dimension L x W x H: 22 x 30 x 2.7 (typical) mm Wi-Fi Interface M.2 2230 Key E BT Interface UART/PCM or USB Operting temperature -30°C to 85°C* Storage…

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Block Diagram

11 A A SCHEMATIC, CCA, QCA2066.VER01, M.2 module,2X2 11AX BT 5.1 2x2+2x2 DBS 2G IPA/ILNA 5G/6G IPA/ILNA , 3ANT, CTEMP Block Diagram LNA_EN_2G(CH1) USB_3.3V PA_EN_5G(CH0) LNA_EN_5G(CH1) 5G/6G TRSW BT0 TX 2GSPDT TRSW LNA_EN_2G(CH1) WL_RFPA0_2G WL_RFRX0_2G PA_EN_2G(CH0) RX0 RX1 5G/6G P1P2 PCIE TX/RX/CLK P2 P1P2P1P2 WL_RFPA0_5G/6G BPF(OPTION) WL_RFRX1_2G CH1 2G CH0 TX0 Discrete BDF WL_RFRX0_5G/6GWL_RFPA1_5G/6G XTAL 5G/6G CH0 76.8M BPF(OPTION) 2G CH1 Discrete BDF Diplexer 5G/6G CH1 ANT Diplexer 3.3V CH0 Verona M.2 Interface TX1 WL_RFPA1_2G WL_RFRX1_5G/6G ANT PEWAKE0CLKREQ0PERST0 SPDT 2G P1 BT_XFEM_CTRL_ANT3_0 PA_EN_2G(CH0) 2.2V for 2.4G 2.2V for 5G/6G HCI_BT_UART BT_WAKE_HOST BT0 RX P1 BT P2XLNA+SPDT PA_EN_5G(CH0) CH2ANT LNA_EN_5G(CH1) Discrete BDF 2.2V@3A for IPA VDD18_IO@20mA 1.8V for IO CX LDO@741mA MX LDO@506mA BT LDO@12mA RFA 0P8 CMN LDO@13mAAON LDO@12mA RFA 0P8 LDO@260mA RFA 1P2 LDO@360mA RFA 1P7 LDO@360mA PCIE 0P92 LDO@32mA PCIE 1P8 LDO@1mA DC-DC SW 3.3v->0.95v 1.9v->1.35v 3.3v->1.9v DC-DC SW LDO BT_XFEM_CTRL_ANT3_0 PERST0CLKREQ0PEWAKE0 BT_WAKE_HOST EN EN EN SW_CTL R=10Kohm HOST_WAKE_BT HOST_WAKE_BT BT_USBBT_PCM BT_XFEM_CTRL_ANT3_1 BT_XFEM_CTRL_ANT3_1 3.3V 2.2V_2G 2.2V_2G 2.2V_5G 2.2V_5G L T/R SW RX(PC-P2) LNA_EN_2G_CH1 TX(PC-P2) SP2T-2.4G CH0 TX(PC-P1) RX(PC-P1) H PA_EN_2G_CH0 L SP2T-2.4G CH1 H T/R SW H T/R SW LNA_EN_5G_CH1 RX(PC-P1) H RX(PC-P2) TX(PC-P1) SP2T-5G CH1 T/R SW SP2T-5G CH0 L L TX(PC-P2) PA_EN_5G_CH0 L RX W/O xLNA RTC7680 TX RTC7680-BT HL BT_XFEM_CTRL_ANT3_1BT_XFEM_CTRL_ANT3_0 H RX w/ xLNA H H SLEEP_CLK LF_CLK_IN 3.3v->1.8v LDO EN3.3v->2.2v DC-DC SW EN WL_SW_CTRL Level Shifter BT_ENWL_ENWL_WAKE_HOST SHEET OF DRAWING NO REV SIZE TITLE SCALE NONE OFLYCOMM D 6 1 A O2066PM SHEET OF DRAWING NO REV SIZE TITLE SCALE NONE OFLYCOMM D 6 1 A O2066PM SHEET OF DRAWING NO REV SIZE TITLE SCALE NONE OFLYCOMM D 6 1 A O2066PM Bluetooth: 2402MHz-2480MHzWi-Fi(2.4GHz): 2412-24 6 2MHz Wi-Fi(5GHz)Band 1: 5150-5250MHz, Band 2: 5250-5350MHz, Band 3: 5470-5725MHz, Band 4: 5745-5825MHz Wi-Fi 6E: 59 5 5-64 1 5MHz ; 5955-6415MHz 6535-6865MHz; 6885-7115MHz QCA2066

External Photos

Reference No.: WTH23X04087275W001/002/003/004/005 Page 2 of 8 Waltek Testing Group (Shenzhen) Co., Ltd. Http://www.waltek.com.cn EXHIBIT 2 - EUT EXTERNAL PHOTOGRAPHS EUT View 1 EUT View 2 Reference No.: WTH23X04087275W001/002/003/004/005 Page 3 of 8 Waltek Testing Group (Shenzhen) Co., Ltd. Http://www.waltek.com.cn EUT View 3

ID Label/Location Info

Reference No.: WTH23X04087275W001/002/003/004/005 Page 1 of 8 Waltek Testing Group (Shenzhen) Co., Ltd. Http://www.waltek.com.cn ANNEX EXHIBIT 1 - PRODUCT LABELING Proposed FCC ID Label Format FCC ID: 2AT5W-O2066PM Specifications: The label shall be securely affixed to a permanently attached part of the device, in a location where it is visible or easily accessible to the user, and shall not be readily detachable. The label shall be sufficiently durable to remain fully legible and intact on the device in all normal conditions of use throughout the device’s expected lifetime. Proposed Label Location on EUT FCC ID Label Location

Internal Photos

Reference No.: WTH23X04087275W001/002/003/004/005 Page 4 of 8 Waltek Testing Group (Shenzhen) Co., Ltd. Http://www.waltek.com.cn EXHIBIT 3 - EUT INTERNAL PHOTOGRAPHS Solder Board-Component View 1 Solder Board-Component View 2 Reference No.: WTH23X04087275W001/002/003/004/005 Page 5 of 8 Waltek Testing Group (Shenzhen) Co., Ltd. Http://www.waltek.com.cn Antenna View

RF Exposure Info

1. RF Exposure Requirements 1.1 General Information Client Information Applicant: SHENZHEN OFEIXIN TECHNOLOGY LIMITED Address of applicant: Room 503, Building A3, Area B, Songbai Industrial Park, Guangming District, Shenzhen Manufacturer: SHENZHEN OFEIXIN TECHNOLOGY LIMITED Address of manufacturer: Room 503, Building A3, Area B, Songbai Industrial Park, Guangming District, Shenzhen General Description of EUT: Product Name: Wi-Fi Tri-band 2x2 MIMO DBS 802.11ax + Bluetooth 5.2 Module Trade Name OFLYCOMM Model No.: O2066PM Adding Model(s): / Rated Voltage: DC3.3V Battery Capacity: / FCC ID: 2AT5W-O2066PM Equipment Type: Mobile device Technical Characteristics of EUT: Bluetooth Bluetooth Version: V5.2 (BR/EDR/LE mode) Frequency Range: 2402-2480MHz RF Output Power: 11.88dBm (Conducted) Data Rate: 1Mbps, 2Mbps, 3Mbps Modulation: GFSK, π/4 DQPSK, 8DPSK Quantity of Channels: 79/40 Channel Separation: 1MHz/2MHz Type of Antenna: FPC Antenna Antenna Gain: 3.0dBi Wi-Fi(2.4GHz) Support Standards: 802.11b, 802.11g, 802.11n, 802.11ax Frequency Range: 2412-2462MHz for 802.11b/g/n/ax(HT20/HE20) 2422-2452MHz for 802.11n/ax(HT40/HE40) RF Output Power: Antenna 1:15.41dBm (Conducted) Antenna 2:15.36dBm (Conducted) AX: CCK, OFDM, QPSK, BPSK, 16QAM, 64QAM, 1024QAM Quantity of Channels: 11 for 802.11b/g/n/ax(HT20/HE20); 7 for 802.11n/ax(HT40/HE40) Channel Separation: 5MHz Type of Antenna: FPC Antenna Antenna Gain: 3.0dBi Wi-Fi(5GHz) Support Standards: 802.11a, 802.11n-HT20 , 802.11n-HT40, 802.11ac-VHT80, 802.11ac-VHT160, 802.11ax-HE20, 802.11ax-HE40, 802.11ax-HE80, 802.11ax-HE160 Frequency Range: 5150-5250MHz, 5250-5350MHz, 5470-5725MHz, 5725-5850MHz RF Output Power: 5150-5250MHz: Antenna 0: 16.83dBm (Conducted) Antenna 1: 16.70dBm (Conducted) 5250-5350MHz: Antenna 0: 16.87dBm (Conducted) Antenna 1: 16.59dBm (Conducted) 5470-5725MHz: Antenna 0: 16.42dBm (Conducted) Antenna 1: 16.64dBm (Conducted) 5725-5850MHz: Antenna 0: 16.47dBm (Conducted) Antenna 1: 16.42dBm (Conducted) Type of Modulation: QPSK, 16QAM, 64QAM, 256QAM, 1024QAM Type of Antenna: FPC Antenna Antenna Gain: 3.1dBi Wi-Fi( (5925-7125MHz) Description of categories LPI client sub-category device Support Standards: 802.11ax-HE20; 802.11ax-HE40; 802.11ax-HE80; 802.11ax-HE160 RF Output Power Antenna 1: Max. 15.68dBm (Conducted) Antenna 2: Max. 15.30dBm (Conducted) Operation Frequency: 5925-6425MHz; 6425-6525MHz 6525-6875MHz; 6875-7125MHz Modulation: BPSK, QPSK,16QAM,64QAM, 256QAM,1024QAM Antenna Type: FPC Antenna Antenna Gain: Antenna : 3.5dBi 1.2 RF Exposure Exemption According to §1.1307(b)(3) and KDB 447498 D04 Interim General RF Exposure Guidance v01, system operating under the provisions of this section shall be operating in a manner that the public is not exposed to radio frequency energy level in excess limit for maximum permissible exposure. Option A: FCC Rule Part 1.1307 (b)(3)(i)(A):The available maximum time-averaged power is no more than 1mW, regardless of separation distance. Option B: FCC Rule Part 1.1307 (b)(3)(i)(B): The available maximum time-averaged power or effective radiated power (ERP), whichever is greater, is less than or equal to the threshold P th (mW) described in the following formula. P th is given by: Option C: FCC Rule Part 1.1307 (b)(3)(i)(C): The minimum separation distance (R in meters) from the body of a nearby person for the frequency (f in MHz) at which the source operates, the ERP (watts) is no more than the calculated value prescribed for that frequency. R must be at least λ/2π, where λ is the free-space operating wavelength in meters. Single RF Sources Subject to Routine Environmental Evaluation RF Source frequency (MHz) Threshold ERP (watts) 0.3-1.34 1,920 R 2 1.34-30 3,450 R 2 /f 2 30-300 3.83 R 2 300-1,500 0.0128 R 2 f 1,500-100,000 19.2R 2 For Multiple RF sources: FCC Rule Part 1.1307(b)(3)(ii): (A) The available maximum time-averaged power of each source is no more than 1 mW and there is a separation distance of two centimeters between any portion of a radiating structure operating and the nearest portion of any other radiating structure in the same device, except if the sum of multiple sources is less than 1 mW during the time-averaging period, in which case they may be treated as a single source (separation is not required). (B) In the case of fixed RF sources operating in the same time-averaging period, or of multiple mobile or portable RF sources within a device operating in the same time averaging period, if the sum of the fractional contributions to the applicable thresholds is less than or equal to 1 as indicated in the following equation. 1.3 Calculated Result Radio Access Technology Prediction Frequency Output Power Antenna Gain Duty Cycle Tune-Up Time-Averaged Power ERP (MHz) (dBm) (dBi) (%) (dBm) (dBm) Bluetooth 2402 11.88 3.0 100 12.00 12.85 Wi-Fi Antenna 1 2412 15.41 3.0 100 16.00 16.85 5260 16.87 3.1 100 17.00 17.95 6895 15.68 3.5 81.41 15.00 16.35 Wi-Fi Antenna 2 2412 15.36 3.0 100 16.00 16.85 5180 16.70 3.1 100 17.00 17.95 6895 15.30 3.5 81.41 15.00 16.35 Frequency Option Min. Distance Max. Power Exposure Limit Ratio Result (MHz) (cm) (dBm) (mW) (mW) Pass/Fail 2402 C 20.00 12.85 19.28 768.00 0.03 Pass 2412 C 20.00 16.85 48.42 768.00 0.06 Pass 5260 C 20.00 17.95 62.37 768.00 0.08 Pass 6895 C 20.00 16.35 43.15 768.00 0.06 Pass 2412 C 20.00 16.85 48.42 768.00 0.06 Pass 5180 C 20.00 17.95 62.37 768.00 0.08 Pass 6895 C 20.00 16.35 43.15 768.00 0.06 Pass Note: 1. Time-Averaged Power=Output Power * Duty Cycle; ERP= Time-Averaged Power+ Antenna gain-2.15dB 2. Option A, B and C refers as clause 1.2. 3. For option B, Max (time-averaged power, effective radiated power (ERP)) converts to Max. Power. For option C, ERP converts to Max. Power; 4. For option B, P th (mW) converts to Exposure Limit (mW); For option C, ERP (W) converts to Exposure Limit (mW). 5. Ratio= Tune-Up ERP (mW)/ Exposure Limit (mW) Mode for Simultaneous Multi-band Transmission: Radio Access Technology Ratio 1 Ratio 2 Ratio 3 Simultaneous …

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Test Report

SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch SZEMC-TRF-01 Rev. A/0 Aug01,2022 Report No.: SZCR230600176901 Page: 1 of 144 Keny Xu EMC Laboratory Manager TEST REPORT Application No.: SZCR2306001769AT Applicant: SHENZHEN OFEIXIN TECHNOLOGY LIMITED Address of Applicant: Room 503, Building A3,Area B,Songbai Industrial Park,Guangming District,Shenzhen Manufacturer: SHENZHEN OFEIXIN TECHNOLOGY LIMITED Address of Manufacturer: Room 503, Building A3,Area B,Songbai Industrial Park,Guangming District,Shenzhen Equipment Under Test (EUT): EUT Name: Wi-Fi Tri-band 2x2 MIMO DBS 802.11ax + Bluetooth 5.2 Module Model No.: O2066PM FCC ID: 2AT5W-O2066PM Standard(s) : 47 CFR Part 15, Subpart E 15.407 Date of Receipt: 2023-06-07 Date of Test: 2023-06-16 to 2023-07-03 Date of Issue: 2023-07-04 Test Result: Pass* * In the configuration tested, the EUT complied with the standards specified above. SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch SZEMC-TRF-01 Rev. A/0 Aug01,2022 Report No.: SZCR230600176901 Page: 2 of 144 Revision Record Version Chapter Date Modifier Remark 01 2023-07-04 Original Authorized for issue by: Calvin Weng/Project Engineer Eric Fu/Reviewer SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch SZEMC-TRF-01 Rev. A/0 Aug01,2022 Report No.: SZCR230600176901 Page: 3 of 144 2 Test Summary Radio Spectrum Technical Requirement Item Standard Method Requirement Result Antenna Requirement 47 CFR Part 15, Subpart E 15.407 N/A 47 CFR Part 15, Subpart C 15.203 Pass Transmission in the Absence of Data N/A 47 CFR Part 15, Subpart E 15.407 (c) Pass Radio Spectrum Matter Part Item Standard Method Requirement Result Conducted Emissions at AC Power Line (150kHz-30MHz) 47 CFR Part 15, Subpart E 15.407 ANSI C63.10 (2013) Section 6.2 47 CFR Part 15, Subpart C 15.207 & Subpart E 15.407 b(9) Pass Duty Cycle ANSI C63.10 (2013) SECTION 12.2 ANSI C63.10 (2013) SECTION 12.2 Pass 99% Bandwidth ANSI C63.10 (2013) Section 12.4.2 ANSI C63.10 (2013) Section 12.4.2 Pass 26dB Emission bandwidth ANSI C63.10 (2013) Section 12.4.1 47 CFR Part 15, Subpart E 15.407 (a) Pass Maximum Conducted output power ANSI C63.10 (2013) Section 12.3 47 CFR Part 15, Subpart E 15.407 (a) Pass Peak Power spectrum density ANSI C63.10 (2013) Section 12.5 47 CFR Part 15, Subpart E 15.407 (a) Pass In-band Emission(Emission Mask) ANSI C63.10 (2013) Section 12.5 47 CFR Part 15, Subpart E 15.407 (b) Pass Radiated Emissions (Below 1GHz) ANSI C63.10 (2013) Section 6.4,6.5 47 CFR Part 15, Subpart C 15.209 & Subpart E 15.407(b) Pass Radiated Emissions (Above 1GHz) ANSI C63.10 (2013) Section 6.6 47 CFR Part 15, Subpart C 15.209 & Subpart E 15.407(b) Pass Radiated Emissions which fall in the restricted bands ANSI C63.10 (2013) Section 6.10.5 47 CFR Part 15, Subpart C 15.209 & Subpart E 15.407(b) Pass Frequency Stability ANSI C63.10 (2013) Section 6.8 47 CFR Part 15, Subpart E 15.407 (g) Pass Contention Based Protocol KDB 987597 D02 47 CFR Part 15, Subpart E 15.407 (d) Pass Remark: This device support partial RU and Full RU, only the worst case of Full RU test data was recorded in this report. SGS-CSTC Standards Technical Services Co., Ltd. Shenzhen Branch SZEMC-TRF-01 Rev. A/0 Aug01,2022 Report No.: SZCR230600176901 Page: 4 of 144 3 Contents Page 1 Cover Page ................................................................................................................................................ 1 2 Test Summary ........................................................................................................................................... 3 3 Contents .................................................................................................................................................... 4 4 General Information .................................................................................................................................. 6 4.1 Details of E.U.T. ................................................................................................................................. 6 4.2 Description of Support Units .............................................................................................................. 6 4.3 Measurement Uncertainty .................................................................................................................. 7 4.4 Test Location ...................................................................................................................................... 8 4.5 Test Facility ........................................................................................................................................ 8 4.6 Deviation from Standards ................................................................................................................... 8 4.7 Abnormalities from Standard Conditions ........................................................................................... 8 5 Equipment List .......................................................................................................................................... 9 6 Radio Spectrum Technical Requirement ............................................................................................. 13 6.1 Antenna Requirement ...................................................................................................................... 13 6.1.1 Test Requirement: ....................................................................................................................... 13 6.1.2 Conclusion ................................................................................................................................... 13 6.2 Transmission in the Absence of Data .............................................................................................. 14 6.2.1 Test Requirement: ....................................................................................................................... 14 6.2.2 Conclusion ..…

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Test Report

1 Wi-Fi 6/ 6E TRIPLE BAND EMBEDDED ANTENNA Part Numbers: 2118907-1, 2118907-2 2118907-3, 2118907-4, 2118907-5 2118907-6, 2118907-7, 2118907-8 2118907-9 •Wi-Fi 6, also including WiFi 6E new 6GHz band, Bluetooth, ZigBee •Flexible PCB antenna assembly •Adhesive backing on the flexible PCB simplifies mounting within the device •Global Frequency coverage •Different cable length and connector options available FEATURES& BENEFITS DATA AND DEVICES /// Wi-Fi 6/ 6E TRIPLE BAND EMBEDDED ANTENNA Frequency Range (MHz)2400-25005150-58755925-7125 VSWR< 1.4:1< 1.6:1< 1.9:1 Average Efficiency82%73%75% Peak Gain3.0 dBi3.1 dBi3.5 dBi AverageGain-0.9dBi-1.4dBi-1.4dBi Power Handling10-Watt cw Feed Point Impedance50 ohms unbalanced PolarizationLinear Size29.60 mm x 41.24 mm x 0.34 mm Weight< 3.3 g MountingAdhesive Tape Mating ConnectorMHF and MHF4-type Refer to page 5 Cable (Coaxial)1.37mmand1.13mm Dia. Refer to page 5 Operating Temperature-40 to +85°C Storage Temperature-40 to +85°C Hazardous MaterialsA certificate of conformance is available from the product page on TE website. SPECIFICATIONS (Shown as 2118907-1 : Others can vary with different cable lengths.) 2 Wi-Fi 6/ 6E TRIPLE BAND EMBEDDED ANTENNA Standard Antenna Solutions Return LossVSWR Efficiency DATA AND DEVICES /// Wi-Fi 6/ 6E TRIPLE BAND EMBEDDED ANTENNA Data measured in free space and on plastic device enclosure RF DATA(Shown as 2118907-1 : Others can vary with different cable lengths.) 3 Data measured in free space and on plastic device enclosure DATA AND DEVICES /// Wi-Fi 6/ 6E TRIPLE BAND EMBEDDED ANTENNA Wi-Fi 6/ 6E TRIPLE BAND EMBEDDED ANTENNA Standard Antenna Solutions Azimuth Elevation 2Elevation 1 Test setup 0° 90° 0° 90° Z Y X Azimuth Plane Elevation 1 Plane Elevation 2 Plane RADIATION PATTERN (Shown as 2118907-1 : Others can vary with different cable lengths.) 4 5.00(2X) 10.00(2X) Antenna Outline 5.00(2X) 5.00(2X) KEEP OUT AREA MOUNTINGGUIDE Dimensions: mm Diagram is not to scale NOTES: 1. No copper allowed in designated area on all PCB layers – 2. For more information please call TE. Dimensions: mm Diagram is not to scale DIMENSIONS DATA AND DEVICES /// Wi-Fi 6/ 6E TRIPLE BAND EMBEDDED ANTENNA Wi-Fi 6/ 6E TRIPLE BAND EMBEDDED ANTENNA Standard Antenna Solutions Keep Out Area 5 DATA AND DEVICES /// Wi-Fi 6/ 6E TRIPLE BAND EMBEDDED ANTENNA Wi-Fi 6/ 6E TRIPLE BAND EMBEDDED ANTENNA Standard Antenna Solutions PACKAGING MATING COMPONENTS TO PART NUMBERS AND DIMENSIONS 2118907-1115.04.5271.37MHF-TYPE PLUGRECEPTACLE (TE PN: 2337019-1) 2118907-250.01.9681.37MHF-TYPE PLUGRECEPTACLE (TE PN: 2337019-1) 2118907-3100.03.9371.37MHF-TYPE PLUGRECEPTACLE (TE PN: 2337019-1) 2118907-4150.05.9051.37MHF-TYPE PLUGRECEPTACLE (TE PN: 2337019-1) 2118907-5200.07.7841.37MHF-TYPE PLUGRECEPTACLE (TE PN: 2337019-1) 2118907-650.01.9681.13MHF4L-TYPE PLUGRECEPTACLE (TE PN: 2334884-1) 2118907-7100.03.9371.13MHF4L-TYPE PLUGRECEPTACLE (TE PN: 2334884-1) 2118907-8150.05.9051.13MHF4L-TYPE PLUGRECEPTACLE (TE PN: 2334884-1) 2118907-9200.07.7841.13MHF4L-TYPE PLUGRECEPTACLE (TE PN: 2334884-1) PARTMMINCHMMCONNECTOR TYPEPART NUMBER IMAGE NUMBER CABLE LENGTH(A) CABLE O.D(B)(ON CABLE)MATING COMPONENTS TE TECHNICAL SUPPORT CENTER USA: +1 (800) 522-6752 Canada: +1 (905) 475-6222 Mexico: +52 (0) 55-1106-0800 Latin/S. America: +54 (0) 11-4733-2200 Germany: +49 (0) 6251-133-1999 UK: +44 (0) 800-267666 France: +33 (0) 1-3420-8686 Netherlands: +31 (0) 73-6246-999 China: +86 (0) 400-820-6015 For phone numbers in other countries, go to te.com/support-center te.com TE Connectivity, TE Connectivity (logo) are trademarks. All other logos, products and/or company names referred to herein might be trademarks of their respective owners. The information given herein, including drawings, illustrations and schematics which are intended for illustration purposes only, is believed to be reliable. However, TE Connectivity makes no warranties as to its accuracy or completeness and disclaims any liability in connection with its use. TE Connectivity‘s obligations shall only be as set forth in TE Connectivity‘s Standard Terms and Conditions of Sale for this product and in no case will TE Connectivity be liable for any incidental, indirect or consequential damages arising out of the sale, resale, use or misuse of the product. Users of TE Connectivity products shouldmake their own evaluation to determine the suitability of each such product for the specific application. © 2020 TE Connectivity Ltd. family of companies All Rights Reserved. 12/2021

Test Report

802.11ax(HEW20)_LCH_6535MHz_RU242_Left_Ant1_NTNV 802.11ax(HEW20)_MCH_6695MHz_RU242_Left_Ant1_NTNV 802.11ax(HEW20)_HCH_6855MHz_RU242_Left_Ant1_NTNV 802.11ax(HEW40)_LCH_6565MHz_RU484_Left_Ant1_NTNV 802.11ax(HEW40)_MCH_6685MHz_RU484_Left_Ant1_NTNV 802.11ax(HEW40)_HCH_6845MHz_RU484_Left_Ant1_NTNV 802.11ax(HEW80)_LCH_6625MHz_RU996_Left_Ant1_NTNV 802.11ax(HEW80)_MCH_6705MHz_RU996_Left_Ant1_NTNV 802.11ax(HEW80)_HCH_6785MHz_RU996_Left_Ant1_NTNV 802.11ax(HEW160)_MCH_6665MHz_2xRU996_Left_Ant1_NTNV 6.4 EMask 6.4.1 Test Result ENV Mode TX Type Frequency (MHz) RU RU Pos ANT Test Result Limit Verdict NTNV 802.11ax (HEW20) SISO 6895 RU242 Left 1 Refer To Test Graph Pass 6995 RU242 Left 1 Refer To Test Graph Pass 7115 RU242 Left 1 Refer To Test Graph Pass 802.11ax (HEW40) SISO 6925 RU484 Left 1 Refer To Test Graph Pass 7005 RU484 Left 1 Refer To Test Graph Pass 7085 RU484 Left 1 Refer To Test Graph Pass 802.11ax (HEW80) SISO 6945 RU996 Left 1 Refer To Test Graph Pass 7025 RU996 Left 1 Refer To Test Graph Pass 802.11ax (HEW160) SISO 6985 2xRU996 Left 1 Refer To Test Graph Pass 802.11ax (HEW20) MIMO 6895 RU242 Left 1 Refer To Test Graph Pass 6995 RU242 Left 1 Refer To Test Graph Pass 7115 RU242 Left 1 Refer To Test Graph Pass 802.11ax (HEW40) MIMO 6925 RU484 Left 1 Refer To Test Graph Pass 7005 RU484 Left 1 Refer To Test Graph Pass 7085 RU484 Left 1 Refer To Test Graph Pass 802.11ax (HEW80) MIMO 6945 RU996 Left 1 Refer To Test Graph Pass 7025 RU996 Left 1 Refer To Test Graph Pass 802.11ax (HEW160) MIMO 6985 2xRU996 Left 1 Refer To Test Graph Pass 6.4.2 Test Graph 802.11ax(HEW20)_LCH_6895MHz_RU242_Left_Ant1_NTNV 802.11ax(HEW20)_MCH_6995MHz_RU242_Left_Ant1_NTNV 802.11ax(HEW20)_HCH_7115MHz_RU242_Left_Ant1_NTNV 802.11ax(HEW40)_LCH_6925MHz_RU484_Left_Ant1_NTNV 802.11ax(HEW40)_MCH_7005MHz_RU484_Left_Ant1_NTNV 802.11ax(HEW40)_HCH_7085MHz_RU484_Left_Ant1_NTNV 802.11ax(HEW80)_LCH_6945MHz_RU996_Left_Ant1_NTNV 802.11ax(HEW80)_HCH_7025MHz_RU996_Left_Ant1_NTNV 802.11ax(HEW160)_MCH_6985MHz_2xRU996_Left_Ant1_NTNV 802.11ax(HEW20)_LCH_6895MHz_RU242_Left_Ant1_NTNV 802.11ax(HEW20)_MCH_6995MHz_RU242_Left_Ant1_NTNV 802.11ax(HEW20)_HCH_7115MHz_RU242_Left_Ant1_NTNV 802.11ax(HEW40)_LCH_6925MHz_RU484_Left_Ant1_NTNV 802.11ax(HEW40)_MCH_7005MHz_RU484_Left_Ant1_NTNV 802.11ax(HEW40)_HCH_7085MHz_RU484_Left_Ant1_NTNV 802.11ax(HEW80)_LCH_6945MHz_RU996_Left_Ant1_NTNV 802.11ax(HEW80)_HCH_7025MHz_RU996_Left_Ant1_NTNV 802.11ax(HEW160)_MCH_6985MHz_2xRU996_Left_Ant1_NTNV 6.5 EMask 6.5.1 Test Result ENV Mode TX Type Frequency (MHz) RU RU Pos ANT Test Result Limit Verdict NTNV 802.11ax (HEW20) SISO 6875 RU242 Left 1 Refer To Test Graph Pass 802.11ax (HEW40) SISO 6885 RU484 Left 1 Refer To Test Graph Pass 802.11ax (HEW80) SISO 6865 RU996 Left 1 Refer To Test Graph Pass 802.11ax (HEW160) SISO 6825 2xRU996 Left 1 Refer To Test Graph Pass 802.11ax (HEW20) MIMO 6875 RU242 Left 1 Refer To Test Graph Pass 802.11ax (HEW40) MIMO 6885 RU484 Left 1 Refer To Test Graph Pass 802.11ax (HEW80) MIMO 6865 RU996 Left 1 Refer To Test Graph Pass 802.11ax (HEW160) MIMO 6825 2xRU996 Left 1 Refer To Test Graph Pass 6.5.2 Test Graph 802.11ax(HEW20)_HCH_6875MHz_RU242_Left_Ant1_NTNV 802.11ax(HEW40)_HCH_6885MHz_RU484_Left_Ant1_NTNV 802.11ax(HEW80)_HCH_6865MHz_RU996_Left_Ant1_NTNV 802.11ax(HEW160)_HCH_6825MHz_2xRU996_Left_Ant1_NTNV 802.11ax(HEW20)_HCH_6875MHz_RU242_Left_Ant1_NTNV 802.11ax(HEW40)_HCH_6885MHz_RU484_Left_Ant1_NTNV 802.11ax(HEW80)_HCH_6865MHz_RU996_Left_Ant1_NTNV 802.11ax(HEW160)_HCH_6825MHz_2xRU996_Left_Ant1_NTNV 6.6 EMask 6.6.1 Test Result ENV Mode TX Type Frequency (MHz) RU RU Pos ANT Test Result Limit Verdict NTNV 802.11ax (HEW40) SISO 6525 RU484 Left 1 Refer To Test Graph Pass 802.11ax (HEW80) SISO 6545 RU996 Left 1 Refer To Test Graph Pass 802.11ax (HEW160) SISO 6505 2xRU996 Left 1 Refer To Test Graph Pass 802.11ax (HEW40) MIMO 6525 RU484 Left 1 Refer To Test Graph Pass 802.11ax (HEW80) MIMO 6545 RU996 Left 1 Refer To Test Graph Pass 802.11ax (HEW160) MIMO 6505 2xRU996 Left 1 Refer To Test Graph Pass 6.6.2 Test Graph 802.11ax(HEW40)_HCH_6525MHz_RU484_Left_Ant1_NTNV 802…

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Contact Information

Applicant

yuanren yang(manager)
[email protected]13926509045Fax: 13926509045

Test Firm

SGS-CSTC Standards Technical Services Co., Ltd. ShKeny Xu
[email protected]+86 (0)755 2532 8629

Technical Specifications

#Rule PartsFrequency RangePower Output
115E5.96 GHz - 7.12 GHz37.00 mW
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Output power listed is EIRP. Single Modular Approval for mobile RF Exposure condition. The module antenna(s) must be installed to meet the RF exposure compliance separation distance of 20 cm and any additional testing and authorization process as required. Co-location of this module with other transmitters that operate simultaneously are required to be evaluated using the FCC multi-transmitter procedures. Approved for OEM integration only. The grantee must provide OEM integrators, or end-users if marketed directly to end-users, with installation and operating instructions for satisfying FCC multi-transmitter product guidelines. This grant is valid only when the device is sold to OEM integrators and the OEM integrators are instructed to ensure that the end-user has no manual instructions to remove or install the device. This device supports 20, 40, 80 and 160 MHz modes. Device 6 GHz operation is intended for indoor use only.

Other Applications from SHENZHEN OFEIXIN TECHNOLOGY LIMITED

WIFI Module - FCC ID 2AT5W-8121N-UH - SHENZHEN OFEIXIN TECHNOLOGY LIMITED
2AT5W-8121N-UH

WIFI Module

Jul 26, 2021

Equipment Class

NII - Unlicensed National Information Infrastructure TX