1. GENERAL INFORMATION GENERAL DESCRIPTION OF EUT EUT SPECIFICATION: 5 2.FACILITIES AND ACCREDITATIONS 6 2.

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2 Table of Contents Page. GENERL INFORMTION 3. GENERL DESCRIPTION OF EUT 4.2 EUT SPECIFICTION: 5 2.FCILITIES ND CCREDITTIONS 6 2. CCREDITTIONS 6 3.TEST DESCRIPTION 7 3.MESUREMENT UNCERTINTY DESCRIPTION OF TEST MODES TBLE OF PRMETERS OF TEXT SOFTWRE SETTING 9 3.4CONFIGURTION OF SYSTEM UNDER TEST 3.5 DESCRIPTION OF SUPPORT UNITS(CONDUCTED MODE) 4.SUMMRY OF TEST RESULTS 5. MESUREMENT INSTRUMENTS 2 6. EMC EMISSION TEST 3 6. CONDUCTED EMISSION MESUREMENT RDITED EMISSION MESUREMENT 7 7. NTENN PPLICTION NTENN REQUIREMENT RESULT 34 8 FCC PRT 5.47 REQUIREMENTS FOR 82./N SYSTEMS TEST EQUIPMENT TEST PROCEDURE LIMIT TEST RESULT MXIMUM CONDUCTED OUTPUT POWER 73. PEK POWER SPECTRL DENSITY 76.BND EDGE EMISSIONS 92. TEST EQUIPMENT TEST PROCEDURE LIMIT TEST RESULT IN RESTRICTED BND 5 3. FREQUENCY STBILITY Report No.: FCC8737-5GWi-Fi Page 2 of 2

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4 . GENERL DESCRIPTION OF EUT Equipment Type: Mobile phone Test Model: dditional Model: Trade Mark pplicant: ddress: Manufacturer: X62B N/ Infinix INFINIX MOBILITY LIMITED RMS 5-5, 3/F SOUTH TOWER WORLD FINNCE CTR HRBOUR CITY 7 CNTON RD TST KLN HONG KONG SHENZHEN TECNO TECHNOLOGY CO.,LTD. /F-4/F,7/F, BUILDING 3, TIPINGYNG INDUSTRIL ZONE, NO.288, ddress: SHENYN ROD, YNTIN DISTRICT, SHENZHEN CITY, GUNGDONG PROVINCE, P.R.C Hardware V2. version: Software X62B-Q636-O-872V6 version: Extreme Temp. - to +65 Tolerance: Li-Polymer Battery : BL-35BX Battery Voltage: 3.85V information: Capacity: 355mh/365mh(min/typ) Limited Charge Voltage: 4.4V dapter Information: Operating Frequency Channels dapter: CQ-8VX Input: C -24V 5/6Hz.5 Output: DC 5.V 3./ 9.V 2./ 2.V.5 see the below table see the below table Channel Spacing see the below table Modulation Type see the below table ntenna Type: ntenna gain: Deviation Condition of Test Sample Integral ntenna -.5dBi None Normal Report No.: FCC8737-5GWi-Fi Page 4 of 2

5 .2 EUT SPECIFICTION: Items Modulation Data Modulation Data Rate (Mbps) Frequency Range Description IEEE 82.a: OFDM IEEE 82.n: see the below table IEEE 82.ac: see the below table IEEE 82.n: OFDM (BPSK / QPSK / 6QM / 64QM) IEEE 82.ac: OFDM (BPSK / QPSK / 6QM / 64QM / 256QM) IEEE 82.a: OFDM 6,9,2,8,24,36,48, and 54 Mbps IEEE 82.n: MCS -5 up to 5 Mbps IEEE 82.ac: MCS -9 up to Mbps Band : 55 MHz ~ 525 MHz Band 4: 5725 MHz ~ 585 MHz Channel Number 3for 2MHz bandwidth ; 6 for 4MHz bandwidth ; Communication Mode IP Based (Load Based) Frame Based TPC Function With TPC Without TPC Weather Band With 56~565MHz Without 56~565MHz Beamforming Function With beamforming Without beamforming Operating Mode Outdoor access point Indoor access point Fixed point-to-point access points Master Slave without radar detection Mobile and portable client devices Slave with radar detection ntenna One (TX) Band width Mode 2 MHz 4 MHz 8 MHz IEEE 82.a V X X IEEE 82.n V V X IEEE 82.ac V V V Protocol Number of Transmit Chains (NTX) Data Rate / MCS 82.n (HT2) MCS n (HT4) MCS ac (HT2) MCS ac (HT4) MCS ac (HT8) MCS -9 Note : IEEE Std. 82.n modulation consists of HT2 and HT4 and HT8 (HT: High Throughput). Then EUT supports HT2 and HT4 and HT8. Note 2: Modulation modes consist of below configuration: HT2/HT4: IEEE 82.n HT2/HT4/HT8: IEEE 82.ac Report No.: FCC8737-5GWi-Fi Page 5 of 2

6 2.FCILITIES ND CCREDITTIONS ll measurement facilities used to collect the measurement data are located at Building -B, Baoshi Science & Technology Park, Baoshi Road, Bao an District, Shenzhen, Guangdong, China of the World Standardization Certification & Testing Group Co., Ltd The sites are constructed in conformance with the requirements of NSI C63.4 and CISPR Publication 22. ll receiving equipment conforms to CISPR Publication 6-, Radio Interference Measuring pparatus and Measurement Methods. Registration Number: CCREDITTIONS Our laboratories are accredited and approved by the following approval agencies according to ISO/IEC 725. US NVLP (The certificate registration number is NVLP LB CODE:642-) Japan VCCI (The certificate registration number is C-479, R-3684, G-837) Canada INDUSTRY CND (The certificated registration number is 77-) China CNS (The certificated registration number is L3732) Copies of granted accreditation certificates are available for downloading from our web site, Report No.: FCC8737-5GWi-Fi Page 6 of 2

7 3.TEST DESCRIPTION 3.MESUREMENT UNCERTINTY 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 % No. Item Uncertainty Conducted Emission Test ±3.2dB 2 RF power,conducted ±.6dB 3 Spurious emissions,conducted ±.2dB 4 ll emissions,radiated(<g) ±4.7dB 5 ll emissions,radiated(>g) ±4.7dB 6 Temperature ±.5 C 7 Humidity ±2% Report No.: FCC8737-5GWi-Fi Page 7 of 2

8 3.2 DESCRIPTION OF TEST MODES To investigate the maximum EMI emission characteristics generates from EUT, the test system was pre-scanning tested base on the consideration of following EUT operation mode or test configuration mode which possible have effect on EMI emission level. Each of these EUT operation mode(s) or test configuration mode(s) mentioned above was evaluated respectively. Pretest Mode Description Mode 82.a Mode 2 82.n2 Mode 3 82.n4 Mode 4 Mode 5 Mode 6 82.ac2 82.ac4 82.ac8 For Conducted Emission Final Test Mode Description Mode 82.a For Radiated Emission Final Test Mode Description Mode 82.a Mode 2 82.n2 Mode 3 82.n4 Mode 4 Mode 5 82.ac2 82.ac4 Mode 6 82.ac8 Note: () The measurements are performed at the highest, lowest available channels. (2) The EUT use new battery. (3) Record the worst case of each test item in this report. (4)When we test the equipment, duty cycle 98%. Report No.: FCC8737-5GWi-Fi Page 8 of 2

9 3.3 TBLE OF PRMETERS OF TEXT SOFTWRE SETTING During testing channel & power controlling software provided by the customer was used to control the operating channel as well as the output power level. The RF output power selection is for the setting of RF output power expected by the customer and is going to be fixed on the firmware of the final end product power parameters of FHSS Test Software Test program Mode 82.a 82.n MCS VHT2 82.ac MCS9 VHT2 Mode 82.n MCS VHT4 82.ac MCS9 VHT4 Mode 82.ac MCS9 VHT8 58 MHz 58 MHz 58 MHz 59 MHz 59 MHz 52 MHz 52 MHz 52 MHz 52 MHz 523 MHz 523 MHz 5775 MHz 524 MHz 524 MHz 524 MHz 5755 MHz 5755 MHz 5825 MHz 5825 MHz 5825 MHz 5795 MHz 5795 MHz N/ *#*#28#*#* Test Frequency NCB: 2MHz MHz MHz 5785 MHz 5785 MHz 5745 MHz 5745 MHz NCB: 4MHz NCB: 8MHz During testing, Channel and Power Controlling Software provided by the customer was used to control the operating channel as well as the output power level. The RF output power selection is for the setting of RF output power expected by the customer and is going to be fixed on the firmware of the final end product. Report No.: FCC8737-5GWi-Fi Page 9 of 2

10 3.4CONFIGURTION OF SYSTEM UNDER TEST C Mains dapter USB Cable EUT (EUT: Mobile phone) I/O Port of EUT I/O Port Type Q TY Cable Tested with USB port m USB cable, unshielded Power m 3.5 DESCRIPTION OF SUPPORT UNITS(CONDUCTED MODE) The EUT has been tested as an independent unit together with other necessary accessories or support units. The following support units or accessories were used to form a representative test configuration during the tests. Item Equipment Mfr/Brand Model/Type No. Series No. Note dapter / CQ-8VX / / 2 Earphone / N/ / / Note: () The support equipment was authorized by Declaration of Confirmation. (2) For detachable type I/O cable should be specified the length in cm in Length column. (3) YES is means shielded with core ; NO is means unshielded without core. (4) The adapter supply by the applicant. Report No.: FCC8737-5GWi-Fi Page of 2

11 4.SUMMRY OF TEST RESULTS Test procedures according to the technical standards: Standard Section (i) FCC Part5 Subpart C&E Test Item Judgment Remark 26dB & 99% Bandwidth PSS Complies 5.47(e) 6dB Spectrum Bandwidth PSS Complies 5.47(a) Maximum Conducted Output Power PSS Complies 5.47(a) Power Spectral Density PSS Complies 5.47(b) Unwanted Emissions PSS Complies 5.27 C Conducted Emission PSS Complies 5.47(g) Frequency Stability PSS Complies 5.23 & 5.47(a) ntenna Requirement PSS Complies NOTE: () N/ denotes test is not applicable in this test report. Report No.: FCC8737-5GWi-Fi Page of 2

12 5. MESUREMENT INSTRUMENTS NME OF EQUIPMENT MNUFCTURER MODEL SERIL NUMBER CLIBRTION CLIBRTI DTE ON DUE. EMI Test Receiver R&S ESCI 5 8/9/27 8/8/28 LISN FJ LS /9/27 8/8/28 LISN(EUT) Mestec N36 4/4 8/9/27 8/8/28 Universal Radio Communication Tester R&S CMU 2.8.8/9/27 8/8/28 Coaxial cable Megalon LMR4 N/ 8/2/27 8//28 GPIB cable Megalon GPIB N/ 8/2/27 8//28 Spectrum nalyzer R&S FSU 4 8/9/27 8/8/28 Pre mplifier H.P. HP8447E /3/27 /2/28 Pre-mplifier CDSI PP-G /3/27 /2/28 Bi-log ntenna SUNOL Sciences JB /3/27 9/2/28 9*6*6 nechoic /2/27 8/2/28 Horn ntenna COMPLINCE ENGINEERING CE8 -- 9/3/27 9/2/28 Horn ntenna SCHWRZBECK BBH92D 92D-638/23/27 8/22/28 Cable TIME MICROWVE LMR-4 N-TYPE4 4/25/28 4/24/29 System-Controller CCS N/ N/ N.C.R N.C.R Turn Table CCS N/ N/ N.C.R N.C.R ntenna Tower CCS N/ N/ N.C.R N.C.R RF cable Murata MXHQ87W3-8/2/27 8/2/28 Loop ntenna EMCO /22/27 8/2/28 Horn ntenna SCHWRZBECK BBH 97 28/9/27 8/8/28 Power meter nritsu ML2487 6K368/23/27 8/22/28 Power sensor nritsu MX248XD -- 8/9/27 8/8/28 Report No.: FCC8737-5GWi-Fi Page 2 of 2

13 6. EMC EMISSION TEST 6. CONDUCTED EMISSION MESUREMENT 6.. POWER LINE CONDUCTED EMISSION Limits (Frequency Range 5KHz-3MHz) FREQUENCY Conducted limit (dbμv) Quasi-peak Quasi-peak Conducted limit (dbμv) * * FCC FCC FCC Note: () The tighter limit applies at the band edges. (2) The limit of " * " marked band means the limitation decreases linearly with the logarithm of the frequency in the range. The following table is the setting of the receiver Receiver Parameters ttenuation Start Frequency Stop Frequency IF Bandwidth Setting db.5 MHz 3 MHz 9 khz Report No.: FCC8737-5GWi-Fi Page 3 of 2

14 6..2 TEST PROCEDURE a. The EUT was placed.4 meters from the horizontal ground plane with EUT being connected to the power mains through a line impedance stabilization network (LISN). ll other support equipments powered from additional LISN(s). The LISN provide 5 Ohm/ 5uH of coupling impedance for the measuring instrument. b. Interconnecting cables that hang closer than 4 cm to the ground plane shall be folded back and forth in the center forming a bundle 3 to 4 cm long. c. I/O cables that are not connected to a peripheral shall be bundled in the center. The end of the cable may be terminated, if required, using the correct terminating impedance. The overall length shall not exceed m. d. LISN at least 8 cm from nearest part of EUT chassis. e. For the actual test configuration, please refer to the related Item EUT Test Photos DEVITION FROM TEST STNDRD No deviation 6..4 TEST SETUP Vertical Reference Ground Plane Test Receiver 4cm EUT LISN 8cm Note:.Support units were connected to second LISN. cm 2.Both of LISNs (MN) are 8 cm from EUT and at least 8 from other units and other metal planes support. units. Horizontal Reference Ground Plane 6..5 EUT OPERTING CONDITIONS The EUT was configured for testing in a typical fashion (as a customer would normally use it). The EUT has been programmed to continuously transmit during test. This operating condition was tested and used to collect the included data. Report No.: FCC8737-5GWi-Fi Page 4 of 2

15 6..6TEST RESULTS Temperature 26 RelativeHumidity 54% Pressure hpa Phase L Test Mode Mode Remark: ll the modes have been investigated, and only worst mode is presented in this report. Report No.: FCC8737-5GWi-Fi Page 5 of 2

16 Temperature 26 Relative Humidity 54% Pressure hpa Phase N Test Mode Mode Remark: ll the modes have been investigated, and only worst mode is presented in this report. Report No.: FCC8737-5GWi-Fi Page 6 of 2

17 6.2 RDITED EMISSION MESUREMENT 6.2.Radiated Emission Limits (Frequency Range 9kHz-MHz) 2dBc in any khz bandwidth outside the operating frequency band. In case the emission fall within the restricted band specified on 5.25(a), then the 5.29(a) limit in the table below has to be followed. Frequencies Field Strength (micorvolts/meter) Measurement Distance (meters).9~.49 24/F(KHz) 3.49~.75 24/F(KHz) 3.75~ ~ ~ ~ bove LIMITS OF RDITED EMISSION MESUREMENT (bove MHz) FREQUENCY PEK Limit (dbuv/m) (at 3M) VERGE bove Notes: () The limit for radiated test was performed according to FCC PRT 5C. (2) The tighter limit applies at the band edges. (3) Emission level (dbuv/m)=2log Emission level (uv/m). Spectrum Parameter ttenuation Start Frequency Stop Frequency RB / VB (emission in restricted band) Receiver Parameter ttenuation Start ~ Stop Frequency Start ~ Stop Frequency Start ~ Stop Frequency Setting uto MHz th carrier harmonic MHz / MHz for Peak, MHz / Hz for verage Setting uto 9kHz~5kHz / RB 2Hz for QP 5kHz~3MHz / RB 9kHz for QP 3MHz~MHz / RB 2kHz for QP Report No.: FCC8737-5GWi-Fi Page 7 of 2

18 6.2.2 TEST PROCEDURE a. The measuring distance of at 3 m shall be used for measurements at frequency up to GHz. For frequencies above GHz, any suitable measuring distance may be used. b. The EUT was placed on the top of a rotating table.8 meters above the ground at a 3 meter open area test site. The table was rotated 36 degrees to determine the position of the highest radiation. c. The height of the equipment or of the substitution antenna shall be.8 m; the height of the test antenna shall vary between m to 4 m. Both horizontal and vertical polarizations of the antenna are set to make the measurement. d. The initial step in collecting conducted emission data is a spectrum analyzer peak detector mode pre-scanning the measurement frequency range. Significant peaks are then marked and then Quasi Peak detector mode re-measured. e. If the Peak Mode measured value compliance with and lower than Quasi Peak Mode Limit, the EUT shall be deemed to meet QP Limits and then no additional QP Mode measurement performed. f. For the actual test configuration, please refer to the related Item EUT Test Photos. Note: Both horizontal and vertical antenna polarities were tested and performed pretest to three orthogonal axis. The worst case emissions were reported DEVITION FROM TEST STNDRD No deviation Report No.: FCC8737-5GWi-Fi Page 8 of 2

19 6.2.4 TEST SETUP ()Radiated Emission Test-Up Frequency Below 3MHz (B)Radiated Emission Test-Up Frequency 3MHz~GHz Report No.: FCC8737-5GWi-Fi Page 9 of 2

20 (C)Radiated Emission Test-Up Frequency bove GHz EUT OPERTING CONDITIONS The EUT tested system was configured as the statements of 2.4 Unless otherwise a special operating condition is specified in the follows during the testing. Report No.: FCC8737-5GWi-Fi Page 2 of 2

21 RESULTS (Below 3 MHz) Temperature 2 Relative Humidity 48% Pressure hpa Polarization --- Test Mode Mode Freq. Reading Limit Margin State (dbuv/m) (dbuv/m) (db) P/F P P NOTE: No result in this part for margin above 2dB. Distance extrapolation factor =4 log (specific distance/test distance)(db); Limit line = specific limits(dbuv) + distance extrapolation factor. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Report No.: FCC8737-5GWi-Fi Page 2 of 2

22 TEST RESULTS (Between 3M MHz) Temperature 2 Relative Humidity 48% Pressure hpa Polarization : Horizontal Test Mode Mode Remark: ll the modes have been investigated, and only worst mode is presented in this report. Report No.: FCC8737-5GWi-Fi Page 22 of 2

23 Temperature 2 Relative Humidity 48% Pressure hpa Polarization : Vertical Test Mode Mode Remark: ll the modes have been investigated, and only worst mode is presented in this report. Report No.: FCC8737-5GWi-Fi Page 23 of 2

24 TEST RESULTS (GHz to 4GHz) Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode TX Frequency 58MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 36 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode TX Frequency 52MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 4 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode TX Frequency 524MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 48 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Report No.: FCC8737-5GWi-Fi Page 24 of 2

25 2 Relative Humidity 48% Pressure hpa Test Mode Mode TX Frequency 5745MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 49 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. 2 Relative Humidity 48% Pressure hpa Test Mode Mode TX Frequency 5785MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 57 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode TX Frequency 5825MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 65 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Report No.: FCC8737-5GWi-Fi Page 25 of 2

26 Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 2TX Frequency 58MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 36 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode TX Frequency 52MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 4 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 2TX Frequency 524MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 48 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Report No.: FCC8737-5GWi-Fi Page 26 of 2

27 Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 2TX Frequency 5745MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 49 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. 2 Relative Humidity 48% Pressure hpa Test Mode Mode TX Frequency 5785MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 57 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 2TX Frequency 5825MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 65 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Report No.: FCC8737-5GWi-Fi Page 27 of 2

28 Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 3TX Frequency 59MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 38 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 3TX Frequency 523MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 46 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 3TX Frequency 5755MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 5 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Report No.: FCC8737-5GWi-Fi Page 28 of 2

29 Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 3TX Frequency 5795MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 59 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 4TX Frequency 58MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 36 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode TX Frequency 52MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 4 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Report No.: FCC8737-5GWi-Fi Page 29 of 2

30 Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 4TX Frequency 524MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 48 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 4TX Frequency 5745MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 49 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. 2 Relative Humidity 48% Pressure hpa Test Mode Mode TX Frequency 5785MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 57 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Report No.: FCC8737-5GWi-Fi Page 3 of 2

31 Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 4TX Frequency 5825MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 65 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 5TX Frequency 59MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 38 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 5TX Frequency 523MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 46 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Report No.: FCC8737-5GWi-Fi Page 3 of 2

32 Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 5TX Frequency 5755MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 5 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 5TX Frequency 5795MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 59 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 6TX Frequency 52MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 42 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Report No.: FCC8737-5GWi-Fi Page 32 of 2

33 Temperature 2 Relative Humidity 48% Pressure hpa Test Mode Mode 6TX Frequency 5775MHz Freq. nt.pol. Emission Level(dBuV) Limit 3m(dBuV/m) Over(dB) H/V PK V PK V PK V 55 V V H H Remark: ll emissions not reported were more than 2dB below the specified limit or in the noise floor. Factor = ntenna Factor + Cable Loss Pre-amplifier. ll the x/y/z orientation has been investigated, and only worst case is presented in this report. Report No.: FCC8737-5GWi-Fi Page 33 of 2

34 7. NTENN PPLICTION 7. NTENN REQUIREMENT The EUT S antenna is met the requirement of FCC part 5C section 5.23 and FCC part 5C section FCC part 5C section 5.23 and FCC part 5C section 5.47 requirements: Systems operating in the 55~585MHz band that are used exclusively for fixed, point-to-point operations may employ transmitting antennas with directional gain greater than 6dBi provided the maximum peak output power of the intentional radiator is reduced by db for every 3dB that the directional gain of the antenna exceeds 6dBi. 7.2 RESULT The EUT s antenna Integral ntenna, The antenna s gain is -.5dBi and meets the requirement. Report No.: FCC8737-5GWi-Fi Page 34 of 2

35 8 FCC PRT 5.47 REQUIREMENTS FOR 82./N SYSTEMS 8. TEST EQUIPMENT Please refer to Section 5 this report TEST PROCEDURE 26dB Bandwidth and 99% Occupied Bandwidth: Test Method: a)the transmitter was radiated to the spectrum analyzer in peak hold mode. b)measure the maximum width of the emission that is 26 db down from the peak of the emission Compare this with the RBW setting of the analyzer. Readjust RBW and repeat measurement asneeded until the RBW/EBW ratio is approximately %. Test Equipment Setting 26dB Bandwidth: Test Equipment Setting 99%% Bandwidth: a)ttenuation: uto a)span:.5 times to 5. times the OBW b)span Frequency: > 26dB Bandwidth b)rbw: % to 5 % of the OBW c)rbw: pproximately % of the emission bandwidth c)vbw: 3 x RBW d)vbw: VBW > RBW d)detector: Peak e)detector: Peak e)trace: Max Hold f)trace: Max Hold g)sweep Time: uto 6 db Bandwidth: Test Method: Test Equipment Setting: a)ttenuation: uto b)span Frequency: > 6dB Bandwidth c)rbw: khz d)vbw: 3 x RBW a)the transmitter was radiated to the spectrum analyzer in peak hold mode. b)test was performed in accordance with KDB78933 D2 v for Compliance Testing of UnlicensedNational Information Infrastructure (U-NII) Devices - section (C) Emission Bandwidth. c)multiple antenna system was performed in accordance with KDB6629 D v2r Emissions Testing of Transmitters with Multiple Outputs in the Same Band. d)measured the spectrum width with power higher than 6dB below carrier. e)detector: Peak f)trace: Max Hold g)sweep Time: uto Maximum Conducted Output Power Measurement: Test Method: a)the transmitter output (antenna port) was connected to the power meter. b)test was performed in accordance with KDB78933 D2 v for Compliance Testing of UnlicensedNational Information Infrastructure (U-NII) Devices - section (E) Maximum conducted output power =>3. Measurement using a Power Meter (PM) =>b) Method PM-G (Measurement using a gated RFaverage power meter). c)multiple antenna systems was performed in accordance with KDB6629 D v2r Emissions Testing of Transmitters with Multiple Outputs in the Same Band. d)when measuring maximum conducted output power with multiple antenna systems,add every resultof the values by mathematic formula. Test Equipment Setting: Detector - verage PowerSpectral Density: Test Method: a)the transmitter output (antenna port) was connected RF switch to the spectrum analyzer. b)test was performed in accordance with KDB78933 D2 v for Compliance Testing of UnlicensedNational Information Infrastructure (U-NII) Devices - section (F) Maximum Power Spectral Density (PSD). c)multiple antenna systems was performed in accordance KDB6629 D v2r in-band Power Spectral Density (PSD) Measurements (a) Measure and sum the spectra across the outputs. d)when measuring first spectral bin of output is summed with that in the first spectral bin of output 2and that from the first spectral bin of output 3 and so on up to the Nth output to obtain the value for the first frequency bin of the summed spectrum. The summed spectrum value for each of the other frequency bins is computed in the same way. e)for 5.725~5.85 GHz, the measured result of PSD level must add log(5khz/rbw) and the finalresult should 3 dbm. Report No.: FCC8737-5GWi-Fi Page 35 of 2

36 Test Equipment Setting: a)ttenuation: uto b)span Frequency: Encompass the entire emissions bandwidth (EBW) of the signal c)rbw: khz d)vbw: 3 khz e)detector: RMS f)trace: VERGE g)sweep Time: uto h)trace verage: times Note: If measurement bandwidth of Maximum PSD is specified in 5 khz, add log(5khz/rbw) tothe measured result, whereas RBW (< 5 khz) is the reduced resolution bandwidth of thespectrum analyzer set during measurement. Frequency Stability Measurement: Test Method: a)the transmitter output (antenna port) was connected to the spectrum analyzer. b)eut have transmitted absence of modulation signal and fixed channelize. c)set the spectrum analyzer span to view the entire absence of modulation emissions bandwidth. d)set RBW = khz, VBW = khz with peak detector and maxhold settings. e)fc is declaring of channel frequency. Then the frequency error formula is (fc-f)/fc 6 ppm and the limit is less than ±2ppm (IEEE 82.nspecification). f)the test extreme voltage is to change the primary supply voltage from 85 to 5 percent of the nominal value g)extreme temperature is C~4 C Test Equipment Setting: a)ttenuation: uto b)span Frequency: Entire absence of modulation emissions bandwidth c)rbw: khz d)vbw: khz Test Setup e)sweep Time: uto EUT ttenuator SPECTRUM NLYZER Configuration of the EUT Same as section 3.4of this report EUT Operating Condition Same as section 3.2of this report. Report No.: FCC8737-5GWi-Fi Page 36 of 2

37 8. 3 LIMIT 26dB Bandwidth and 99% Occupied Bandwidth: Limit: No restriction limits. 6 db Bandwidth: Limit: For digital modulation systems, the minimum 6dB bandwidth shall be at least 5 khz. Test Equipment Setting: a)ttenuation: uto e)detector: Peak b)span Frequency: > 6dB Bandwidth f)trace: Max Hold c)rbw: khz g)sweep Time: uto d)vbw: 3 x RBW Maximum Conducted Output Power Measurement: 5.5~5.25 GHz Limit of Outdoor access point: The maximum conducted output power over the frequency band of operation shall not exceed W (3dBm) provided the maximum antenna gain does not exceed 6 dbi. If transmitting antennas of directional gain greater than 6 dbi are used, both the maximum conducted output power and the maximum power spectral density shall be reduced by the amount in db that the directional gain of the antenna exceeds 6 dbi. The maximum e.i.r.p. at any elevation angle above 3 degrees as measured from the horizon must not exceed 25 mw (2 dbm). Limit of Fixed point-to-point access points: The maximum conducted output power over the frequency band of operation shall not exceed W (3dBm). Fixed point-to-point U-NII devices may employ antennas with directional gain up to 23 dbi without any corresponding reduction in the maximum conducted output power or maximum power spectral density. For fixed point-to-point transmitters that employ a directional antenna gain greater than 23 dbi, a db reduction in maximum conducted output power and maximum power spectral density is required for each db of antenna gain in excess of 23 dbi. Limit of Indoor access point: The maximum conducted output power over the frequency band of operation shall not exceed W (3dBm) provided the maximum antenna gain does not exceed 6 dbi. If transmitting antennas of directional gain greater than 6 dbi are used, both the maximum conducted output power and the maximum power spectral density shall be reduced by the amount in db that the directional gain of the antenna exceeds 6 dbi. Limit of Mobile and portable client devices: The maximum conducted output power over the frequency band of operation shall not exceed 25 mw (24dBm) provided the maximum antenna gain does not exceed 6 dbi. If transmitting antennas of directional gain greater than 6 dbi are used, both the maximum conducted output power and the maximum power spectral density shall be reduced by the amount in db that the directional gain of the antenna exceeds 6 dbi GHz & GHz The maximum conducted output power over the frequency bands of operation shall not exceed the lesser of 25 mw (24dBm) or dbm log B, where B is the 26 db emission bandwidth in megahertz. If transmitting antennas of directional gain greater than 6 dbi are used, both the maximum conducted output power and the maximum power spectral density shall be reduced by the amount in db that the directional gain of the antenna exceeds 6 dbi ~5.85 GHz The maximum conducted output power over the frequency band of operation shall not exceed W (3dBm). If transmitting antennas of directional gain greater than 6 dbi are used, both the maximum conducted output power and the maximum power spectral density shall be reduced by the amount in db that the directional gain of the antenna exceeds 6 dbi. However, fixed point-to-point U-NII devices operating in this band may employ transmitting antennas with directional gain greater than 6 dbi without any corresponding reduction in transmitter conducted power. Power Spectral Density 5.5~5.25 GHz Limit of Outdoor access point:7 dbm/mhz Limit of Indoor access point:7 dbm/mhz Limit of Fixed point-to-point access points: 7 Limit of Mobile and portable client devices: dbm/mhz dbm/mhz GHz dbm/mhz GHz dbm/mhz 5.725~5.85 GHz 3 dbm/5khz Frequency Stability Measurement: Limit: In-band emission is maintained within the band of operation under all conditions of normal operation asspecified in the user s manual. The transmitter center frequency tolerance shall be ± 2 ppm maximum for the 5 GHz band (IEEE 82.n specification). Report No.: FCC8737-5GWi-Fi Page 37 of 2

38 8. 4 TEST RESULT 26dB Bandwidth&6dB Spectrum Bandwidth and 99% Occupied Bandwidth Product : Mobile phone Test Mode : See section 2.2 Test Item : 26dB Bandwidth and 99% Occupied Temperature : 25 Bandwidth Test Voltage : DC 3.85V Humidity : 56%RH Test Result : PSS 26dB Bandwidth IEEE 82.a Band Channel Frequency 26dBBandwidth FCC Limit (khz) Result PSS PSS PSS Band4 Channel Frequency 26dBBandwidth FCC Limit (khz) Result PSS PSS PSS IEEE 82.n 5G 2MHz Band Channel Frequency 26dBBandwidth FCC Limit (khz) Result PSS PSS PSS Band4 Channel Frequency 26dBBandwidth FCC Limit (khz) Result PSS PSS PSS IEEE 82.n 5G 4MHz Band Channel Frequency 26dBBandwidth FCC Limit (khz) Result PSS PSS Band4 Channel Frequency 26dBBandwidth FCC Limit (khz) Result PSS PSS IEEE 82.ac 5G 2MHz Band Channel Frequency 26dBBandwidth FCC Limit (khz) Result PSS PSS PSS Report No.: FCC8737-5GWi-Fi Page 38 of 2

39 ]Band4 Channel Frequency 26dBBandwidth FCC Limit (khz) Result PSS PSS PSS IEEE 82.ac 5G 4MHz Band Channel Frequency 26dBBandwidth FCC Limit (khz) Result PSS PSS Band4 Channel Frequency 26dBBandwidth FCC Limit (khz) Result PSS PSS IEEE 82.ac 5G 8MHz Band Channel Frequency 26dBBandwidth FCC Limit (khz) Result PSS Band4 Channel Frequency 26dBBandwidth FCC Limit (khz) Result PSS 99% Occupied IEEE 82.a Band Channel Frequency 99% Occupied FCC Limit Bandwidth (khz) Result PSS PSS PSS Band4 Channel Frequency 99% Occupied FCC Limit Bandwidth (khz) Result PSS PSS PSS IEEE 82.n 5G 2MHz Band Channel Frequency 99% Occupied FCC Limit Bandwidth (khz) Result PSS PSS PSS Report No.: FCC8737-5GWi-Fi Page 39 of 2

40 Band4 Channel Frequency 99% Occupied FCC Limit Bandwidth (khz) Result PSS PSS PSS IEEE 82.n 5G 4MHz Band Channel Frequency 99% Occupied FCC Limit Bandwidth (khz) Result PSS PSS Band4 Channel Frequency 99% Occupied FCC Limit Bandwidth (khz) Result PSS PSS IEEE 82.ac 5G 2MHz Band Channel Frequency 99% Occupied FCC Limit Bandwidth (khz) Result PSS PSS Band4 Channel Frequency 99% Occupied FCC Limit Bandwidth (khz) Result PSS PSS PSS IEEE 82.ac 5G 4MHz Band Channel Frequency 99% Occupied FCC Limit Bandwidth (khz) Result PSS PSS Band4 Channel Frequency 99% Occupied FCC Limit Bandwidth (khz) Result PSS PSS IEEE 82.ac 5G 8MHz Band Channel Frequency 99% Occupied FCC Limit Bandwidth (khz) Result PSS Band4 Channel Frequency 99% Occupied FCC Limit Bandwidth (khz) Result PSS Report No.: FCC8737-5GWi-Fi Page 4 of 2

41 IEEE 82.a Band (CH 36) * RBW 3 khz VBW MHz Delta [T ] -.33 db MHz OBW MHz dbm GHz Marker 2 [T ] 6.39 dbm GHz T Temp [T OBW] T dbm GHz - Temp 2 [T OBW] dbm - D -9.6 dbm GHz Center 5.8 GHz 4 MHz/ Span 4 MHz Date: 24.JUL.28 5:22:25 (CH 4) * RBW 3 khz VBW MHz * Marker 2 [T ] 6.88 dbm GHz OBW MHz dbm GHz Delta [T ].77 db MHz T Temp [T OBW] T2 -. dbm GHz - Temp 2 [T OBW] -.42 dbm - D -9.2 dbm GHz Center 5.2 GHz 4 MHz/ Span 4 MHz Date:.UG.28 2::39 Report No.: FCC8737-5GWi-Fi Page 4 of 2

42 (CH 48) * RBW 3 khz VBW MHz Delta [T ] -.4 db MHz OBW MHz dbm GHz Marker 2 [T ] 6.67 dbm GHz T Temp [T OBW] T dbm GHz - Temp 2 [T OBW] dbm - D dbm GHz Center 5.24 GHz 4 MHz/ Span 4 MHz Date: 24.JUL.28 5:24:54 IEEE 82.a Band4 (CH 49) * RBW 3 khz VBW MHz dbm GHz OBW MHz Marker 2 [T ] dbm GHz Delta [T ].9 db MHz T Temp [T OBW] dbm T GHz - Temp 2 [T OBW] dbm GHz - D dbm Center GHz 4 MHz/ Span 4 MHz Date: 24.JUL.28 5:35:4 Report No.: FCC8737-5GWi-Fi Page 42 of 2

43 (CH 57) * RBW 3 khz VBW MHz * -2.5 dbm GHz OBW MHz Marker 2 [T ] dbm GHz Delta [T ].56 db MHz T Temp [T OBW] T dbm GHz - Temp 2 [T OBW] -3.8 dbm - D dbm GHz Center GHz 4 MHz/ Span 4 MHz Date:.UG.28 2:5: (CH 65) * RBW 3 khz VBW MHz Delta [T ] -.39 db MHz OBW MHz dbm GHz Marker 2 [T ] 5.5 dbm GHz T Temp [T OBW] dbm T GHz - Temp 2 [T OBW] -5.7 dbm - D -2.5 dbm GHz Center GHz 4 MHz/ Span 4 MHz Date: 24.JUL.28 5:34:25 Report No.: FCC8737-5GWi-Fi Page 43 of 2

44 IEEE 82.n 5G 2MHz Band (CH 36) * RBW 3 khz VBW MHz Delta [T ].55 db MHz OBW MHz dbm GHz Marker 2 [T ] 4.4 dbm GHz T Temp [T OBW] T2-3.4 dbm GHz - Temp 2 [T OBW] dbm GHz - D -2.6 dbm Center 5.8 GHz 4 MHz/ Span 4 MHz Date: 24.JUL.28 5:37:2 (CH 4) * RBW 3 khz VBW MHz * Delta [T ].29 db MHz OBW MHz dbm GHz Marker 2 [T ] 4.36 dbm GHz T Temp [T OBW] T dbm GHz - Temp 2 [T OBW] dbm GHz - D dbm Center 5.2 GHz 4 MHz/ Span 4 MHz Date:.UG.28 2:8: Report No.: FCC8737-5GWi-Fi Page 44 of 2

45 (CH 48) * RBW 3 khz VBW MHz -2.3 dbm GHz OBW MHz Marker 2 [T ] dbm GHz Delta [T ].82 db MHz T Temp [T OBW] T2 -.9 dbm GHz - Temp 2 [T OBW] dbm - D -2. dbm GHz Center 5.24 GHz 4 MHz/ Span 4 MHz Date: 24.JUL.28 5:38:34 IEEE 82.n 5G 2MHz Band4 (CH 49) * RBW 3 khz VBW MHz Delta [T ].42 db MHz OBW MHz dbm GHz Marker 2 [T ] 6.74 dbm GHz T Temp [T OBW] -3.8 dbm T GHz - Temp 2 [T OBW] dbm - D dbm GHz Center GHz 4 MHz/ Span 4 MHz Date: 24.JUL.28 5:4:8 Report No.: FCC8737-5GWi-Fi Page 45 of 2

46 (CH 57) * RBW 3 khz VBW MHz * -2.8 dbm GHz OBW MHz Marker 2 [T ] dbm GHz Delta [T ].8 db MHz T Temp [T OBW] T dbm GHz - Temp 2 [T OBW] dbm GHz - D dbm Center GHz 4 MHz/ Span 4 MHz Date:.UG.28 2:2:3 (CH 65) * RBW 3 khz VBW MHz dbm GHz OBW MHz Marker 2 [T ] dbm GHz Delta [T ].3 db MHz T Temp [T OBW] T dbm GHz - Temp 2 [T OBW] dbm GHz - D dbm Center GHz 4 MHz/ Span 4 MHz Date: 24.JUL.28 5:42:58 Report No.: FCC8737-5GWi-Fi Page 46 of 2

47 IEEE 82.n 5G 4MHz Band (CH 38) * RBW 3 khz VBW MHz Delta [T ].86 db MHz OBW MHz T dbm GHz Marker 2 [T ] 2.89 dbm GHz Temp [T OBW] T dbm GHz - Temp 2 [T OBW] dbm GHz - D -23. dbm Center 5.9 GHz 8 MHz/ Span 8 MHz Date: 24.JUL.28 5:44:28 (CH 46) * RBW 3 khz VBW MHz dbm GHz OBW MHz Marker 2 [T ] T dbm GHz Delta [T ] -.6 db MHz Temp [T OBW] T2-2.4 dbm GHz - Temp 2 [T OBW] dbm GHz - D -23. dbm Center 5.23 GHz 8 MHz/ Span 8 MHz Date: 24.JUL.28 5:45: Report No.: FCC8737-5GWi-Fi Page 47 of 2

48 IEEE 82.n 5G 4MHz Band4 (CH 5) * RBW 3 khz VBW MHz Delta [T ].53 db MHz OBW MHz dbm GHz Marker 2 [T ] 3.76 dbm GHz - T Temp [T OBW] -4.3 dbm T GHz Temp 2 [T OBW] dbm GHz - D dbm Center GHz 8 MHz/ Span 8 MHz Date: 24.JUL.28 5:46:36 (CH 59) * RBW 3 khz VBW MHz dbm GHz OBW MHz Marker 2 [T ] T dbm GHz Delta [T ].44 db MHz Temp [T OBW] T dbm GHz - Temp 2 [T OBW] dbm GHz - D dbm Center GHz 8 MHz/ Span 8 MHz Date: 24.JUL.28 5:47:23 Report No.: FCC8737-5GWi-Fi Page 48 of 2

49 IEEE 82.ac 5G 2MHz Band (CH 36) * RBW 3 khz * VBW MHz Delta [T ].2 db MHz OBW MHz RM * dbm GHz Marker 2 [T ] dbm GHz 2 Temp [T OBW] dbm - T T GHz Temp 2 [T OBW] -8.2 dbm GHz - - D dbm Center 5.8 GHz 6 MHz/ Span 6 MHz Date: 24.JUL.28 7:: (CH 4) * RBW 3 khz VBW MHz * Delta [T ].3 db MHz OBW MHz dbm GHz Marker 2 [T ] 6.85 dbm GHz T T2 Temp [T OBW] -.45 dbm GHz - Temp 2 [T OBW] -2.3 dbm - D -9.5 dbm GHz Center 5.2 GHz 6 MHz/ Span 6 MHz Date:.UG.28 2:26:45 Report No.: FCC8737-5GWi-Fi Page 49 of 2

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