
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
AHD.CVBS Image wireless transmission module specification Page 1 of 7 5G Wi-Fi Image Tr ansmission Module Model: ULINK_V5G 1. Features : Supports IOS/Android/Windows operating systems Supports 1080P/720 P/VGA resolution adaptive Supports NTSC/PAL adaptiv e Supports transparent serial port t ransmission Supports bidirectional control and com mand sending between handheld devices and modules Delayed ≤200ms Size:58.62m m*44.76mm*11.10mm The wireless communication distance 100m (Max. / open distance) Supports AHD HD/1080P , SD/CVBS, VGA analog video signals input adaptive AHD.CVBS Image wireless transmission module specification Page 2 of 7 2. Introduc tion Ulink 5.2/5.8G Wireless Image Transmission Module: A Wi-Fi video transmission module operating on the globally open 5.2/5.8G ISM frequency band. Support for video signals in multiple resolutions including 1080P,720P and VGA input adaptive, along with various analog video formats such as AHD, CVBS, CVI and TVI input. The system supports receiving and displaying images across multiple platforms including iOS, Android, and Windows. It enables wireless data exchange between modules and the system, allowing smart devices to control modules wirelessly while receiving real-time feedback such as battery level, indicator status, and motor rotation. Powered by the mature 5.2/5.8G wireless standard, this module delivers robust interference resistance, high bandwidth, and excellent device compatibility. Integrated with IOS/Android client software, it enables precise control command transmission and reception via mobile devices. Featuring versatile interfaces including UART, PWM, and GPIO, it supports multiple communication protocols with external devices. Its compact design allows integration into host application systems. 3. Electrical Para meters Ulink_5.2/5.8G_ Image wireless transmission module: Electrical characteristics 1 Working voltage6~12V 2 Working current300~500mA 3 Startup time 8 second±2 second 4Wireless communication 5.2/5.8G 5Rated dissipation3W 6Communication protocol(UART/GPI0) 7Maximum communication range100m open distance 8RF output power ≤23dBm 9Input signal formatAHD.CVBS 10Maximum image resolution1080P_30 frames 11Delayed ≤200ms AHD.CVBS Image wireless transmission module specification Page 3 of 7 Ulink_5.2/5.8G_ Image wireless transmission module: other parameters 1 AntennaExternal dual antenna 2 Size 58.62mm*44.76mm*11.10mm 3 Working temperature -10°C~ +50°C 4 Storage temperature -20°C~ +60°C Ulink_5.2/5.8G_ Image Wireless Transmission Module: Interface Definition 1 GPIO_1NC 2 GPIO_0NC 3 PWM0IO 4 PWM3IO 5 UART_RXSerial communication receive 6 UART_TXSerial Communication Transm ission 7 GNDVideo 8 AHD_VIDEOAHD CVBS video signal input 9 GNDPower supply 10 VBAT6~12V DC power supply Ulink_5.2/5.8G_ Image wireless transmission module: module size diagram 天线规格 Antenna Specification Electrical Properties Frequency 5150MHz~5850MHz Impedance 50 Ohm Nominal V.S.W.R≤1.5(Max) Return Loss ≤-10(Max) Radiation Omnidirectional Gain (Peak) 3.98dBi(Max) Polarization Linear ConnectorIPEX-1 Physical Properties Antenna MaterialCu Cable TypeO.D 1.13 Operating Temp.-10 ~ +60 ̊C Storage Temp.-10 ~ +70 ̊C Cable Colorblack Page 4 of 7 78.0±3.0 100.0±3.0 DC 6 REV. E 4 5 3 2 1 CDE 7 8 DESCRIPTION DATE B B A 8 6 7 5 4 A 1 2 3 A 首次发行 2025-09-12 SCALE: 1/1 UNITS: mm REVISION: A PART NAME: APPROVED BY Tolerance X.XX X.X X° ±3° ±3.0 ±0.50 PART NO.: CHECKED BY DESIGNED BY DATE: 2025-09-12 CUSTOMERPART NO S-JKH250912 5.8GHz Copper Tube Antenna NO PART NAME DESCRIPTION 12 Q.TY 1 4 11 Material IPEX-1 IPEX 1 代 Cu Au Plated O.D 1.13,Black Coaxial Cable CuO.D 1.13 3 1 L29.0mm/Ø4.0mm,Black Hot Shrink Tube EVA Ø4.4*10.5*1.4mm Copper Tube Dongguan Sibo Communication Co., Ltd 东莞市思博通讯有限公司 1 2 3 4 Cu Wei 深圳市金葵花科技有限公司 Page 5 of 7 AHD.CVBS Image wireless transmission module specification FCC warning: 1.This device should be installed and operated with minimum distance 20cm between the radiator & your body. 2.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. 3.Changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment. 4.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 or more 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. 5.The devices must be installed and used in strict accordance with the manufacturer's instructions as described in the user documentation that comes with the product. Any company of the host device which install this modular should perform the test of radiated emission and spurious emission according to FCC part 15C : 15.247 15.407 and 15.209 requirement, and the module should comply with the KDB file 996369 Module approval, Only if the test result comply with these requirement,then the host can be sold leg…
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Page 1 of 47 Test Report 5G WIFI B1 RF test data Page 2 of 47 Duty Cycle Condition Mode Frequency (MHz) Duty Cycle (%) Correction Factor (dB) NVNT 802.11a 5180 68 1.67 NVNT 802.11a 5200 60.71 2.17 NVNT 802.11a 5240 61.54 2.11 NVNT 802.11ac20 5180 94.16 0.26 NVNT 802.11ac20 5200 89.58 0.48 NVNT 802.11ac20 5240 90.21 0.45 NVNT 802.11ac40 5190 85.33 0.69 NVNT 802.11ac40 5230 82.89 0.81 NVNT 802.11ac80 5210 63.83 1.95 NVNT 802.11n(HT20) 5180 92.81 0.32 NVNT 802.11n(HT20) 5200 90.21 0.45 NVNT 802.11n(HT20) 5240 92.75 0.33 NVNT 802.11n(HT40) 5190 90 0.46 NVNT 802.11n(HT40) 5230 81.82 0.87 Duty Cycle NVNT 802.11a 5180MHz Page 3 of 47 Duty Cycle NVNT 802.11a 5200MHz Duty Cycle NVNT 802.11a 5240MHz Page 4 of 47 Duty Cycle NVNT 802.11ac20 5180MHz Duty Cycle NVNT 802.11ac20 5200MHz Page 5 of 47 Duty Cycle NVNT 802.11ac20 5240MHz Duty Cycle NVNT 802.11ac40 5190MHz Page 6 of 47 Duty Cycle NVNT 802.11ac40 5230MHz Duty Cycle NVNT 802.11ac80 5210MHz Page 7 of 47 Duty Cycle NVNT 802.11n(HT20) 5180MHz Duty Cycle NVNT 802.11n(HT20) 5200MHz Page 8 of 47 Duty Cycle NVNT 802.11n(HT20) 5240MHz Duty Cycle NVNT 802.11n(HT40) 5190MHz Page 9 of 47 Duty Cycle NVNT 802.11n(HT40) 5230MHz Page 10 of 47 Maximum Conducted Output Power Condition Mode Frequency (MHz) Antenna Conducted Power (dBm) Duty Factor (dB) Total Power (dBm) Limit (dBm) Verdict NVNT 802.11a 5180 Ant 1 10.839 1.67 12.509 24 Pass NVNT 802.11a 5180 Ant 2 11.369 1.67 13.039 24 Pass NVNT 802.11a 5180 Total 14.122 1.67 15.792 24 Pass NVNT 802.11a 5200 Ant 1 10.626 2.17 12.796 24 Pass NVNT 802.11a 5200 Ant 2 11.176 2.17 13.346 24 Pass NVNT 802.11a 5200 Total 13.92 2.17 16.090 24 Pass NVNT 802.11a 5240 Ant 1 9.208 2.11 11.318 24 Pass NVNT 802.11a 5240 Ant 2 9.819 2.11 11.929 24 Pass NVNT 802.11a 5240 Total 12.535 2.11 14.645 24 Pass NVNT 802.11ac20 5180 Ant 1 13.445 0.26 13.705 24 Pass NVNT 802.11ac20 5180 Ant 2 13.956 0.26 14.216 24 Pass NVNT 802.11ac20 5180 Total 16.718 0.26 16.978 24 Pass NVNT 802.11ac20 5200 Ant 1 12.23 0.48 12.710 24 Pass NVNT 802.11ac20 5200 Ant 2 12.767 0.48 13.247 24 Pass NVNT 802.11ac20 5200 Total 15.517 0.48 15.997 24 Pass NVNT 802.11ac20 5240 Ant 1 11.192 0.45 11.642 24 Pass NVNT 802.11ac20 5240 Ant 2 11.63 0.45 12.080 24 Pass NVNT 802.11ac20 5240 Total 14.427 0.45 14.877 24 Pass NVNT 802.11ac40 5190 Ant 1 12.905 0.69 13.595 24 Pass NVNT 802.11ac40 5190 Ant 2 13.432 0.69 14.122 24 Pass NVNT 802.11ac40 5190 Total 16.187 0.69 16.877 24 Pass NVNT 802.11ac40 5230 Ant 1 11.835 0.81 12.645 24 Pass NVNT 802.11ac40 5230 Ant 2 12.284 0.81 13.094 24 Pass NVNT 802.11ac40 5230 Total 15.076 0.81 15.886 24 Pass NVNT 802.11ac80 5210 Ant 1 13.372 1.95 15.322 24 Pass NVNT 802.11ac80 5210 Ant 2 13.859 1.95 15.809 24 Pass NVNT 802.11ac80 5210 Total 16.633 1.95 18.583 24 Pass NVNT 802.11n(HT20) 5180 Ant 1 14.023 0.32 14.343 24 Pass NVNT 802.11n(HT20) 5180 Ant 2 14.636 0.32 14.956 24 Pass NVNT 802.11n(HT20) 5180 Total 17.351 0.32 17.671 24 Pass NVNT 802.11n(HT20) 5200 Ant 1 13.358 0.45 13.808 24 Pass NVNT 802.11n(HT20) 5200 Ant 2 13.95 0.45 14.400 24 Pass NVNT 802.11n(HT20) 5200 Total 16.674 0.45 17.124 24 Pass NVNT 802.11n(HT20) 5240 Ant 1 12.063 0.33 12.393 24 Pass Page 11 of 47 NVNT 802.11n(HT20) 5240 Ant 2 12.609 0.33 12.939 24 Pass NVNT 802.11n(HT20) 5240 Total 15.355 0.33 15.685 24 Pass NVNT 802.11n(HT40) 5190 Ant 1 14.697 0.46 15.157 24 Pass NVNT 802.11n(HT40) 5190 Ant 2 15.212 0.46 15.672 24 Pass NVNT 802.11n(HT40) 5190 Total 17.972 0.46 18.432 24 Pass NVNT 802.11n(HT40) 5230 Ant 1 13.467 0.87 14.337 24 Pass NVNT 802.11n(HT40) 5230 Ant 2 13.906 0.87 14.776 24 Pass NVNT 802.11n(HT40) 5230 Total 16.702 0.87 17.572 24 Pass Power NVNT 802.11a 5180MHz Ant1 Page 12 of 47 Power NVNT 802.11a 5180MHz Ant2 Power NVNT 802.11a 5200MHz Ant1 Page 13 of 47 Power NVNT 802.11a 5200MHz Ant2 Power NVNT 802.11a 5240MHz Ant1 Page 14 of 47 Power NVNT 802.11a 5240MHz Ant2 Power NVNT 802.11ac20 5180MHz Ant1 Page 15 of 47 Power NVNT 802.11ac20 5180MHz Ant2 Power NVNT 802.11ac20 5200MHz Ant1 Page 16 of 47 Power NVNT 802.11ac20 5200MHz Ant2 Power NVNT 802.11ac20 5240MHz Ant1 Page 17 of 47 Power NVNT 802.11ac20 5240MHz Ant2 Power NVNT 802.11ac40 5190MHz Ant1 Page 18 of 47 Power NVNT 802.11ac40 5190MHz Ant2 Power NVNT 802.11ac40 5230MHz Ant1 Page 19 of 47 Power NVNT 802.11ac40 5230MHz Ant2 Power NVNT 802.11ac80 5210MHz Ant1 Page 20 of 47 Power NVNT 802.11ac80 5210MHz Ant2 Power NVNT 802.11n(HT20) 5180MHz Ant1 Page 21 of 47 Power NVNT 802.11n(HT20) 5180MHz Ant2 Power NVNT 802.11n(HT20) 5200MHz Ant1 Page 22 of 47 Power NVNT 802.11n(HT20) 5200MHz Ant2 Power NVNT 802.11n(HT20) 5240MHz Ant1 Page 23 of 47 Power NVNT 802.11n(HT20) 5240MHz Ant2 Power NVNT 802.11n(HT40) 5190MHz Ant1 Page 24 of 47 Power NVNT 802.11n(HT40) 5190MHz Ant2 Power NVNT 802.11n(HT40) 5230MHz Ant1 Page 25 of 47 Power NVNT 802.11n(HT40) 5230MHz Ant2 Page 26 of 47 Occupied Channel Bandwidth Condition Mode Frequency (MHz) Antenna 99% OBW (MHz) Verdict NVNT 802.11a 5180 Ant 1 16.230 Pass NVNT 802.11a 5180 Ant 2 16.133 Pass NVNT 802.11a 5200 Ant 1 16.251 Pass NVNT 802.11a 5200 Ant 2 16.161 Pass NVNT 802.11a 5240 Ant 1 16.286 Pass NVNT 802.11a 5240 Ant 2 16.198 Pass NVNT 802.11ac20 5180 Ant 1 17.304 Pass NVNT 802.11ac20 5180 Ant 2 17.365 Pass NVNT 802.11ac20 5200 Ant 1 17.291 Pass NVNT 802.11ac20 5200 Ant 2 17.282 Pass NVNT 802.11ac20 5240 Ant 1 17.355 Pass NVNT 802.11ac20 5240 Ant 2 17.293 Pass NVNT 802.11ac40 5190 Ant 1 35.668 Pass NVNT 802.11ac40 5190 Ant 2 35.668 Pass NVNT 802.11ac40 5230 Ant 1 35.600 Pass NVNT 802.11ac40 5230 Ant 2 35.722 Pass NVNT 802.11ac80 5210 Ant 1 75.232 Pass NVNT 802.11ac80 5210 Ant 2 74.421 Pass NVNT 802.11ax20 5180 Ant 1 18.609 Pass NVNT 802.11ax20 5180 Ant 2 18.642 Pass NVNT 802.11ax20 5200 Ant 1 18.630 Pass NVNT 802.11ax20 5200 Ant 2 18.650 Pass NVNT 802.11ax20 5240 Ant 1 18.650 Pass NVNT 802.11ax20 5240 Ant 2 18.376 Pass NVNT 802.11ax40 5190 Ant 1 37.118 Pass NVNT 802.11ax40 5190 Ant 2 37.122 Pass NVNT 802.11ax40 5230 Ant 1 37.117 Pass NVNT 802.11ax40 5230 Ant 2 37.089 Pass NVNT…
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Model: ULINK_V5G Radiated Emission test 30MHz-1000MHz Above 1GHz Model: ULINK_V5G CONDUCTED EMISSION RF Conducted test Model: ULINK_V5G
Page 1 of 67 Report No.: UNIA25090508ER-61 FCC RADIO TEST REPORT FCC ID: 2BSR2-ULINK-V5G Sample : 5G Wi-Fi Image Transmission Module Trade Mark : ULINKTEK / FORBEST Main Model : ULINK_V5G Additional Model : FORBEST_V5G, ULINK_V5G Series, FORBEST_V5G Series Report No. : UNIA25090508ER-61 Prepared for ULINKTEK (SHENZHEN) INDUSTRIES CO.,LTD 1F/2F/4F,Building 5,Lianchuang Science Park, Bulan Road, Longgang District, Shenzhen, China Prepared by Shenzhen United Testing Technology Co., Ltd. D101&D401, No. 107, Kaicheng High-Tech Park, Taoyuan Community, Dalang Sub-District, Longhua District, Shenzhen, Guangdong, China Page 2 of 67 Report No.: UNIA25090508ER-61 TEST RESULT CERTIFICATION Applicant .................................... : ULINKTEK (SHENZHEN) INDUSTRIES CO.,LTD Address ....................................... : 1F/2F/4F,Building 5,Lianchuang Science Park, Bulan Road, Longgang District, Shenzhen, China Manufacturer.............................. : ULINKTEK (SHENZHEN) INDUSTRIES CO.,LTD Address ....................................... : 1F/2F/4F,Building 5,Lianchuang Science Park, Bulan Road, Longgang District, Shenzhen, China Product description Product ........................................ : 5G Wi-Fi Image Transmission Module Trade Mark .................................. : ULINKTEK / FORBEST Model Name ................................ : ULINK_V5G, FORBEST_V5G, ULINK_V5G Series, FORBEST_V5G Series Test Methods ............................. : FCC Rules and Regulations Part 15 Subpart E Section 15.407 ANSI C63.10: 2020 This device described above has been tested by Shenzhen United Testing Technology Co., Ltd., and the test results show that the equipment under test (EUT) is in compliance with the FCC requirements. And it is applicable only to the tested sample identified in the report. This report shall not be reproduced except in full, without the written approval, this document may be altered or revised by Shenzhen United Testing Technology Co., Ltd., personnel only, and shall be noted in the revision of the document. Date of Test Date (s) of performance of tests ................... : Sep. 29, 2025 ~ Nov. 18, 2025 Date of Issue ................................................. : Nov. 19, 2025 Test Result .................................................... : Pass Edited by: Abe Yang Reviewed by: Kelly Cheng Approved by: Liuze Page 3 of 67 Report No.: UNIA25090508ER-61 Table of Contents Page 1 TEST SUMMARY 5 1.1 TEST PROCEDURES AND RESULTS 5 1.2 TEST FACILITY 6 1.3 MEASUREMENT UNCERTAINTY 7 1.4 ENVIRONMENTAL CONDITIONS 7 2 GENERAL INFORMATION 8 2.1 GENERAL DESCRIPTION OF EUT 8 2.2 CARRIER FREQUENCY OF CHANNELS 9 2.3 TEST MODE 9 2.4 DESCRIPTION OF THE TEST MODES 9 2.5 TEST SETUP 10 2.6 DESCRIPTION TEST PERIPHERAL AND EUT PERIPHERAL 10 2.7 MEASUREMENT INSTRUMENTS LIST 11 3 CONDUCTED EMISSION 12 3.1 TEST LIMIT 12 3.2 TEST SETUP 12 3.3 TEST PROCEDURE 13 3.4 TEST RESULT 13 4 RADIATED EMISSION 16 4.1 TEST LIMIT 16 4.2 TEST SETUP 17 4.3 TEST PROCEDURE 18 4.4 TEST RESULT 19 5 OCCUPIED BANDWIDTH 58 5.1 TEST LIMIT 58 5.2 TEST PROCEDURE 58 5.3 TEST SET-UP 59 5.4 TEST RESULT 59 6 MAXIMUM CONDUCTED OUTPUT AVERAGE POWER SPECTRAL DENSITY60 6.1 TEST LIMIT 60 6.2 TEST PROCEDURE 60 6.3 TEST SET-UP 60 6.4 EQUIPMENT USED 60 6.5 TEST RESULT 60 Page 4 of 67 Report No.: UNIA25090508ER-61 Table of Contents Page 7 AVARAGE OUTPUT POWER 61 7.1 TEST LIMIT 61 7.2 TEST PROCEDURE 61 7.3 TEST SET-UP 61 7.4 EQUIPMENT USED 61 7.5 TEST RESULT 61 8 CONDUCTED SPURIOUS EMISSION 62 8.1 TEST LIMIT 62 8.2 TEST SETUP 62 8.3 TEST PROCEDURE 62 8.4 TEST RESUL 62 9 ANTENNA REQUIREMENT 63 10 PHOTO OF TEST 64 11 EUT Constructional Details 66 Page 5 of 67 Report No.: UNIA25090508ER-61 1 TEST SUMMARY 1.1 TEST PROCEDURES AND RESULTS Note: 1. “N/A” denotes test is not applicable in this Test Report. 2.The EUT has two antennas, and both antennas can transmit simultaneously. Item FCC Rules Description Of Test Result 1 FCC Part 15.407 6dB Bandwidth Pass 2 FCC Part 15.407 Emission Bandwidth Pass 3 FCC Part 15.407 Maximum conducted output power Pass 4 FCC Part 15.407 Conducted Spurious Emission Pass 5 FCC Part 15.407 Maximum Conducted Output Power Density Pass 6 FCC Part 15.209 Radiated Emission Pass 7 FCC Part 15.407 Band Edges Pass 8 FCC Part 15.207 Line Conduction Emission Pass 9 FCC Part 15.203 Antenna Requirement Pass Page 6 of 67 Report No.: UNIA25090508ER-61 1.2 TEST FACILITY Test Firm : Shenzhen United Testing Technology Co., Ltd. Address : D101&D401, No. 107, Kaicheng High-Tech Park, Taoyuan Community, Dalang Sub-District, Longhua District, Shenzhen, Guangdong, China The testing quality ability of our laboratory meet with "Quality Law of People's Republic of China" Clause 19.The testing quality system of our laboratory meets with ISO/IEC-17025 requirements. This approval result is accepted by MRA of APLAC. Our test facility is recognized, certified, or accredited by the following organizations: A2LA Certificate Number: 4747.01 The EMC Laboratory has been accredited by A2LA, and in compliance with ISO/IEC 17025:2017 General Requirements for testing Laboratories. FCC Registration Number: 674885 The EMC Laboratory has been registered and fully described in a report filed with the (FCC) Federal Communications commission. IC Registration Number: 31584 The EMC Laboratory has been registered and fully described in a report filed with the (IC) Industry Canada. Page 7 of 67 Report No.: UNIA25090508ER-61 1.3 MEASUREMENT UNCERTAINTY The reported uncertainty of measurement y ± U, where expended uncertainty U is based on a standard uncertainty multiplied by a coverage factor of k=2, providing a level of confidence of approximately 95 %. A. Conducted Measurement: Test Site Method Measurement Frequency Range U, (dB) UNI ANSI 9kHz ~ 150kHz 2.96 150kHz ~ 30MHz 2.44 B. Radiated Measurement: Test Site Method Measurement Frequency Range U, (dB) UNI ANSI 9kHz ~ 30MHz 2.50 30MHz ~ 1000MHz 4.80 1000MHz ~ 18000MHz 4.13 C. RF Conducted Method: Item Measurem…
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客户 CUSTOMER: 客户料号 品名 PART NAME: 供方料号 SUPPLIER NO: S-JKH250912 送样日期 Date:2025-06-04送样数量Q“TY:50PCS 供方确认SUPPLIER SIGNATURE APPROVALCHECKDESIGN ZhangZhangWei 客户确认CUSTOMER APPROVED BY APPROVALCHIEFSUPERVISOR 日期2025/11/10 Date 编号25111001 File No 版本3.0 Revision 5.8G铜管天线 Copper tube antenna 东莞市思博通讯有限公司 Dongguan Sibo Communication Co., Ltd 规格承认书 SPECIFICATION FOR APPROVAL 深圳市金葵花科技有限公司 天线 Antenna 承认书项目表 NO. 内容 (Contents) 页数 (Number of Page) 页码 (Page Code) 1 承认书封面 (Spec Cover) 11 2 承认书项目表(Spec Item ) 12 3 工程成品图 (Drawing) 13 4 天线规格(Antenna Specification) 14 5 S参数测试 (S Parameter ) 15 6 无源测试 (Passive Test ) 26 ~ 7 7 天线辐射场型(Antenna Radiation Pattern) 28~9 8 天线图片(Antenna Profile) 110 9 RoHS报告(RoHS Test Report ) **** 10N/AN/AN/A 11--- 12--- 78.0±3.0 100.0±3.0 DC 6 REV. E 4 5 3 2 1 CDE 7 8 DESCRIPTION DATE B B A 8 6 7 5 4 A 1 2 3 A 首次发行 2025-09-12 SCALE: 1/1 UNITS: mm REVISION: A PART NAME: APPROVED BY Tolerance X.XX X.X X° ±3° ±3.0 ±0.50 PART NO.: CHECKED BY DESIGNED BY DATE: 2025-09-12 CUSTOMERPART NO S-JKH250912 5.8GHz Copper Tube Antenna NO PART NAME DESCRIPTION 12 Q.TY 1 4 11 Material IPEX-1 IPEX 1 代 Cu Au Plated O.D 1.13,Black Coaxial Cable CuO.D 1.13 3 1 L29.0mm/Ø4.0mm,Black Hot Shrink Tube EVA Ø4.4*10.5*1.4mm Copper Tube Dongguan Sibo Communication Co., Ltd 东莞市思博通讯有限公司 1 2 3 4 Cu Wei 深圳市金葵花科技有限公司 天线规格 Antenna Specification Electrical Properties Frequency 5150MHz~5850MHz Impedance 50 Ohm Nominal V.S.W.R≤1.5(Max) Return Loss ≤-10(Max) Radiation Omnidirectional Gain (Peak) 3.98dBi(M ax) Polarization Linear ConnectorIPEX-1 Physical Properties Antenna MaterialCu Cable TypeO.D 1.13 Operating Temp.-10 ~ +60 ̊C Storage Temp.-10 ~ +70 ̊C Cable Colorblack Agilent E5071C S Parameter Test // WIFI Antenna Performance Test Antenna Passive Test Passive Test For Antenna(5150/5850Mhz) Freq (MHz) Gain (dBi) Effi (dB) Effi (%) 51502.86-1.0778.16 51803.4-1.1277.27 52003.53-1.177.62 52203.68-1.1177.45 52403.98-0.9680.17 52503.98-0.8781.85 53003.53-1.1277.27 53503.53-1.1576.74 54003.7-0.9280.91 54503.54-1.1476.91 55002.92-0.7883.56 55502.43-1.177.62 56002.48-0.8182.99 56502.1-1.0478.7 57002.09-179.43 57501.65-1.0578.52 58001.44-1.0478.7 58501.66-1.0877.98 Antenna Radiation Pattern Phi 0 2D Phi 90 2D Theta 90 2D Antenna Radiation Pattern 3D 5150: 3D 5500: 3D 5850: Antenna Photo
Page 1 of 15 Test Report 5G WIFI B4 RF test data Band Edge&Spurious Emission-MIMO Page 2 of 15 Band Edge Condition Mode Frequency (MHz) Antenna Max Value (dBm) Verdict MIMO 802.11a 5745 Ant 1&2 -46.84 Pass MIMO 802.11a 5825 Ant 1&2 -49.39 Pass MIMO 802.11ac20 5745 Ant 1&2 -35.37 Pass MIMO 802.11ac20 5825 Ant 1&2 -44.08 Pass MIMO 802.11ac40 5755 Ant 1&2 -37.73 Pass MIMO 802.11ac40 5795 Ant 1&2 -48.4 Pass MIMO 802.11ac80 5775 Ant 1&2 -37.17 Pass MIMO 802.11n(HT20) 5745 Ant 1&2 -35.69 Pass MIMO 802.11n(HT20) 5825 Ant 1&2 -41.7 Pass MIMO 802.11n(HT40) 5755 Ant 1&2 -34.79 Pass MIMO 802.11n(HT40) 5795 Ant 1&2 -48.72 Pass Band Edge MIMO 802.11a 5745MHz Ant 1&2 Page 3 of 15 Band Edge MIMO 802.11a 5825MHz Ant 1&2 Band Edge MIMO 802.11ac20 5745MHz Ant 1&2 Page 4 of 15 Band Edge MIMO 802.11ac20 5825MHz Ant 1&2 Band Edge MIMO 802.11ac40 5755MHz Ant 1&2 Page 5 of 15 Band Edge MIMO 802.11ac40 5795MHz Ant 1&2 Band Edge MIMO 802.11ac80 5775MHz Ant 1&2 Page 6 of 15 Band Edge MIMO 802.11n(HT20) 5745MHz Ant 1&2 Band Edge MIMO 802.11n(HT20) 5825MHz Ant 1&2 Page 7 of 15 Band Edge MIMO 802.11n(HT40) 5755MHz Ant 1&2 Band Edge MIMO 802.11n(HT40) 5795MHz Ant 1&2 Page 8 of 15 Conducted RF Spurious Emission Condition Mode Frequency (MHz) Antenna Max Value (dBm) Limit (dBm) Verdict MIMO 802.11a 5745 Ant 1&2 -47.79 -27 Pass MIMO 802.11a 5785 Ant 1&2 -47.67 -27 Pass MIMO 802.11a 5825 Ant 1&2 -47.67 -27 Pass MIMO 802.11ac20 5745 Ant 1&2 -47.67 -27 Pass MIMO 802.11ac20 5785 Ant 1&2 -47.87 -27 Pass MIMO 802.11ac20 5825 Ant 1&2 -47.97 -27 Pass MIMO 802.11ac40 5755 Ant 1&2 -47.62 -27 Pass MIMO 802.11ac40 5795 Ant 1&2 -47.36 -27 Pass MIMO 802.11ac80 5775 Ant 1&2 -47.05 -27 Pass MIMO 802.11n(HT20) 5745 Ant 1&2 -46.06 -27 Pass MIMO 802.11n(HT20) 5785 Ant 1&2 -46.24 -27 Pass MIMO 802.11n(HT20) 5825 Ant 1&2 -47.68 -27 Pass MIMO 802.11n(HT40) 5755 Ant 1&2 -47.62 -27 Pass MIMO 802.11n(HT40) 5795 Ant 1&2 -47.5 -27 Pass Tx. Spurious MIMO 802.11a 5745MHz Ant 1&2 Emission Page 9 of 15 Tx. Spurious MIMO 802.11a 5785MHz Ant 1&2 Emission Tx. Spurious MIMO 802.11a 5825MHz Ant 1&2 Emission Page 10 of 15 Tx. Spurious MIMO 802.11ac20 5745MHz Ant 1&2 Emission Tx. Spurious MIMO 802.11ac20 5785MHz Ant 1&2 Emission Page 11 of 15 Tx. Spurious MIMO 802.11ac20 5825MHz Ant 1&2 Emission Tx. Spurious MIMO 802.11ac40 5755MHz Ant 1&2 Emission Page 12 of 15 Tx. Spurious MIMO 802.11ac40 5795MHz Ant 1&2 Emission Tx. Spurious MIMO 802.11ac80 5775MHz Ant 1&2 Emission Page 13 of 15 Tx. Spurious MIMO 802.11n(HT20) 5745MHz Ant 1&2 Emission Tx. Spurious MIMO 802.11n(HT20) 5785MHz Ant 1&2 Emission Page 14 of 15 Tx. Spurious MIMO 802.11n(HT20) 5825MHz Ant 1&2 Emission Tx. Spurious MIMO 802.11n(HT40) 5755MHz Ant 1&2 Emission Page 15 of 15 Tx. Spurious MIMO 802.11n(HT40) 5795MHz Ant 1&2 Emission
Page 1 of 28 Test Report 5G WIFI B4 RF test data Page 2 of 28 Band Edge Condition Mode Frequency (MHz) Antenna Max Value (dBm) Verdict NVNT 802.11a 5745 Ant 1 -34.44 Pass NVNT 802.11a 5745 Ant 2 -36.91 Pass NVNT 802.11a 5825 Ant 1 -43.84 Pass NVNT 802.11a 5825 Ant 2 -45.69 Pass NVNT 802.11ac20 5745 Ant 1 -41.36 Pass NVNT 802.11ac20 5745 Ant 2 -38.32 Pass NVNT 802.11ac20 5825 Ant 1 -35.23 Pass NVNT 802.11ac20 5825 Ant 2 -45.03 Pass NVNT 802.11ac40 5755 Ant 1 -37.05 Pass NVNT 802.11ac40 5755 Ant 2 -37.7 Pass NVNT 802.11ac40 5795 Ant 1 -46.82 Pass NVNT 802.11ac40 5795 Ant 2 -48.57 Pass NVNT 802.11ac80 5775 Ant 1 -39.21 Pass NVNT 802.11ac80 5775 Ant 2 -38.9 Pass NVNT 802.11n(HT20) 5745 Ant 1 -37.93 Pass NVNT 802.11n(HT20) 5745 Ant 2 -39.89 Pass NVNT 802.11n(HT20) 5825 Ant 1 -47.41 Pass NVNT 802.11n(HT20) 5825 Ant 2 -41.76 Pass NVNT 802.11n(HT40) 5755 Ant 1 -37.17 Pass NVNT 802.11n(HT40) 5755 Ant 2 -37.51 Pass NVNT 802.11n(HT40) 5795 Ant 1 -47.45 Pass NVNT 802.11n(HT40) 5795 Ant 2 -48.4 Pass Page 3 of 28 Band Edge NVNT 802.11a 5745MHz Ant1 Band Edge NVNT 802.11a 5745MHz Ant2 Page 4 of 28 Band Edge NVNT 802.11a 5825MHz Ant1 Band Edge NVNT 802.11a 5825MHz Ant2 Page 5 of 28 Band Edge NVNT 802.11ac20 5745MHz Ant1 Band Edge NVNT 802.11ac20 5745MHz Ant2 Page 6 of 28 Band Edge NVNT 802.11ac20 5825MHz Ant1 Band Edge NVNT 802.11ac20 5825MHz Ant2 Page 7 of 28 Band Edge NVNT 802.11ac40 5755MHz Ant1 Band Edge NVNT 802.11ac40 5755MHz Ant2 Page 8 of 28 Band Edge NVNT 802.11ac40 5795MHz Ant1 Band Edge NVNT 802.11ac40 5795MHz Ant2 Page 9 of 28 Band Edge NVNT 802.11ac80 5775MHz Ant1 Band Edge NVNT 802.11ac80 5775MHz Ant2 Page 10 of 28 Band Edge NVNT 802.11n(HT20) 5745MHz Ant1 Band Edge NVNT 802.11n(HT20) 5745MHz Ant2 Page 11 of 28 Band Edge NVNT 802.11n(HT20) 5825MHz Ant1 Band Edge NVNT 802.11n(HT20) 5825MHz Ant2 Page 12 of 28 Band Edge NVNT 802.11n(HT40) 5755MHz Ant1 Band Edge NVNT 802.11n(HT40) 5755MHz Ant2 Page 13 of 28 Band Edge NVNT 802.11n(HT40) 5795MHz Ant1 Band Edge NVNT 802.11n(HT40) 5795MHz Ant2 Page 14 of 28 Conducted RF Spurious Emission Condition Mode Frequency (MHz) Antenna Max Value (dBm) Limit (dBm) Verdict NVNT 802.11a 5745 Ant 1 -48.03 -27 Pass NVNT 802.11a 5745 Ant 2 -47.29 -27 Pass NVNT 802.11a 5785 Ant 1 -48.09 -27 Pass NVNT 802.11a 5785 Ant 2 -47.74 -27 Pass NVNT 802.11a 5825 Ant 1 -47.11 -27 Pass NVNT 802.11a 5825 Ant 2 -47.5 -27 Pass NVNT 802.11ac20 5745 Ant 1 -47.48 -27 Pass NVNT 802.11ac20 5745 Ant 2 -47.93 -27 Pass NVNT 802.11ac20 5785 Ant 1 -47.23 -27 Pass NVNT 802.11ac20 5785 Ant 2 -47.59 -27 Pass NVNT 802.11ac20 5825 Ant 1 -46.21 -27 Pass NVNT 802.11ac20 5825 Ant 2 -48.09 -27 Pass NVNT 802.11ac40 5755 Ant 1 -47.33 -27 Pass NVNT 802.11ac40 5755 Ant 2 -47.51 -27 Pass NVNT 802.11ac40 5795 Ant 1 -47.58 -27 Pass NVNT 802.11ac40 5795 Ant 2 -47.21 -27 Pass NVNT 802.11ac80 5775 Ant 1 -47.8 -27 Pass NVNT 802.11ac80 5775 Ant 2 -47.33 -27 Pass NVNT 802.11n(HT20) 5745 Ant 1 -47.2 -27 Pass NVNT 802.11n(HT20) 5745 Ant 2 -47.94 -27 Pass NVNT 802.11n(HT20) 5785 Ant 1 -47.54 -27 Pass NVNT 802.11n(HT20) 5785 Ant 2 -47.27 -27 Pass NVNT 802.11n(HT20) 5825 Ant 1 -47.76 -27 Pass NVNT 802.11n(HT20) 5825 Ant 2 -47.47 -27 Pass NVNT 802.11n(HT40) 5755 Ant 1 -46.87 -27 Pass NVNT 802.11n(HT40) 5755 Ant 2 -47.81 -27 Pass NVNT 802.11n(HT40) 5795 Ant 1 -47.72 -27 Pass NVNT 802.11n(HT40) 5795 Ant 2 -47.41 -27 Pass Page 15 of 28 Tx. Spurious NVNT 802.11a 5745MHz Ant1 Emission Tx. Spurious NVNT 802.11a 5745MHz Ant2 Emission Page 16 of 28 Tx. Spurious NVNT 802.11a 5785MHz Ant1 Emission Tx. Spurious NVNT 802.11a 5785MHz Ant2 Emission Page 17 of 28 Tx. Spurious NVNT 802.11a 5825MHz Ant1 Emission Tx. Spurious NVNT 802.11a 5825MHz Ant2 Emission Page 18 of 28 Tx. Spurious NVNT 802.11ac20 5745MHz Ant1 Emission Tx. Spurious NVNT 802.11ac20 5745MHz Ant2 Emission Page 19 of 28 Tx. Spurious NVNT 802.11ac20 5785MHz Ant1 Emission Tx. Spurious NVNT 802.11ac20 5785MHz Ant2 Emission Page 20 of 28 Tx. Spurious NVNT 802.11ac20 5825MHz Ant1 Emission Tx. Spurious NVNT 802.11ac20 5825MHz Ant2 Emission Page 21 of 28 Tx. Spurious NVNT 802.11ac40 5755MHz Ant1 Emission Tx. Spurious NVNT 802.11ac40 5755MHz Ant2 Emission Page 22 of 28 Tx. Spurious NVNT 802.11ac40 5795MHz Ant1 Emission Tx. Spurious NVNT 802.11ac40 5795MHz Ant2 Emission Page 23 of 28 Tx. Spurious NVNT 802.11ac80 5775MHz Ant1 Emission Tx. Spurious NVNT 802.11ac80 5775MHz Ant2 Emission Page 24 of 28 Tx. Spurious NVNT 802.11n(HT20) 5745MHz Ant1 Emission Tx. Spurious NVNT 802.11n(HT20) 5745MHz Ant2 Emission Page 25 of 28 Tx. Spurious NVNT 802.11n(HT20) 5785MHz Ant1 Emission Tx. Spurious NVNT 802.11n(HT20) 5785MHz Ant2 Emission Page 26 of 28 Tx. Spurious NVNT 802.11n(HT20) 5825MHz Ant1 Emission Tx. Spurious NVNT 802.11n(HT20) 5825MHz Ant2 Emission Page 27 of 28 Tx. Spurious NVNT 802.11n(HT40) 5755MHz Ant1 Emission Tx. Spurious NVNT 802.11n(HT40) 5755MHz Ant2 Emission Page 28 of 28 Tx. Spurious NVNT 802.11n(HT40) 5795MHz Ant1 Emission Tx. Spurious NVNT 802.11n(HT40) 5795MHz Ant2 Emission
Page 1 of 32 Test Report 5G WIFI B4 RF test data Page 2 of 32 Occupied Channel Bandwidth Condition Mode Frequency (MHz) Antenna 99% OBW (MHz) Verdict NVNT 802.11a 5745 Ant 1 17.5556 Pass NVNT 802.11a 5745 Ant 2 17.5316 Pass NVNT 802.11a 5785 Ant 1 17.5425 Pass NVNT 802.11a 5785 Ant 2 17.5351 Pass NVNT 802.11a 5825 Ant 1 17.5245 Pass NVNT 802.11a 5825 Ant 2 17.522 Pass NVNT 802.11ac20 5745 Ant 1 17.5443 Pass NVNT 802.11ac20 5745 Ant 2 17.5334 Pass NVNT 802.11ac20 5785 Ant 1 17.5484 Pass NVNT 802.11ac20 5785 Ant 2 17.5176 Pass NVNT 802.11ac20 5825 Ant 1 17.5505 Pass NVNT 802.11ac20 5825 Ant 2 17.5463 Pass NVNT 802.11ac40 5755 Ant 1 35.9691 Pass NVNT 802.11ac40 5755 Ant 2 36.0314 Pass NVNT 802.11ac40 5795 Ant 1 36.0394 Pass NVNT 802.11ac40 5795 Ant 2 36.0044 Pass NVNT 802.11ac80 5775 Ant 1 74.7631 Pass NVNT 802.11ac80 5775 Ant 2 74.6101 Pass NVNT 802.11n(HT20) 5745 Ant 1 17.548 Pass NVNT 802.11n(HT20) 5745 Ant 2 17.5319 Pass NVNT 802.11n(HT20) 5785 Ant 1 17.5523 Pass NVNT 802.11n(HT20) 5785 Ant 2 17.5458 Pass NVNT 802.11n(HT20) 5825 Ant 1 17.5287 Pass NVNT 802.11n(HT20) 5825 Ant 2 17.5535 Pass NVNT 802.11n(HT40) 5755 Ant 1 35.9923 Pass NVNT 802.11n(HT40) 5755 Ant 2 36.1106 Pass NVNT 802.11n(HT40) 5795 Ant 1 36.0333 Pass NVNT 802.11n(HT40) 5795 Ant 2 36.025 Pass Page 3 of 32 OBW NVNT 802.11a 5745MHz Ant1 OBW NVNT 802.11a 5745MHz Ant2 Page 4 of 32 OBW NVNT 802.11a 5785MHz Ant1 OBW NVNT 802.11a 5785MHz Ant2 Page 5 of 32 OBW NVNT 802.11a 5825MHz Ant1 OBW NVNT 802.11a 5825MHz Ant2 Page 6 of 32 OBW NVNT 802.11ac20 5745MHz Ant1 OBW NVNT 802.11ac20 5745MHz Ant2 Page 7 of 32 OBW NVNT 802.11ac20 5785MHz Ant1 OBW NVNT 802.11ac20 5785MHz Ant2 Page 8 of 32 OBW NVNT 802.11ac20 5825MHz Ant1 OBW NVNT 802.11ac20 5825MHz Ant2 Page 9 of 32 OBW NVNT 802.11ac40 5755MHz Ant1 OBW NVNT 802.11ac40 5755MHz Ant2 Page 10 of …
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15E | 5.18 GHz - 5.24 GHz | 72.16 mW |
| 2 | 15E | 5.75 GHz - 5.83 GHz | 165.04 mW |