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  3. 2AJMN-A681L

2AJMN-A681LMobile Phone

ITEL MOBILE LIMITED

Application Details

Equipment Class
NII - Unlicensed National Information Infrastructure TX
Date of Grant
Aug 21, 2026
Application Purpose
Original Equipment
Equipment Note
Mobile Phone
Frequency Range
5180.00000000 - 5240.00000000
Company
ITEL MOBILE LIMITED
Country
Hong Kong

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Test Report

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Document Text

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

Test Report

Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 2 of 179 TABLE OF CONTENTS 1 TEST CERTIFICATION 3 2 EUT DESCRIPTION 4 3 TEST DESCRIPTION 5 3.1 MEASUREMENT UNCERTAINTY 5 3.2 TEST ENVIRONMENT AND MODE 6 3.3 TABLE OF PARAMETERS OF TEXT SOFTWARE SETTING 7 3.4 DESCRIPTION OF SUPPORT UNITS (CONDUCTED MODE) 8 4 SUMMARY OF TEST RESULTS 9 5 MEASUREMENT INSTRUMENTS 10 6 FACILITIES AND ACCREDITATIONS 11 6.1 FACILITIES 11 6.2 ACCREDITATIONS 11 7 TEST RESULTS AND MEASUREMENT DATA 12 7.1 CONDUCTED EMISSION MEASUREMENT 12 7.2 DEVIATION FROM TEST STANDARD 13 7.3 RADIATED EMISSION MEASUREMENT 16 7.4 ANTENNA REQUIREMENT 40 7.5 EMISSION BANDWIDTH 41 7.6 MAXIMUM CONDUCTED OUTPUT POWER 69 7.7 POWER SPECTRAL DENSITY 93 7.8 FREQUENCY STABILITY 117 7.9 BAND EDGE EMISSIONS 141 7.10 DYNAMIC FREQUENCY SELECTION (DFS) 167 8 TEST SETUP PHOTOGRAPHS 179 Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 4 of 179 2 EUT Description Product: Mobile Phone Model No.: A681L Trade Mark: itel Operation Frequency: Band 1: 5180-5240 MHz Band 2: 5260-5320 MHz Band 3: 5500-5700 MHz Band 4: 5745-5825 MHz Modulation type: IEEE 802.11a/n/ac: OFDM (BPSK/QPSK/16QAM/64QAM/256QAM) Antenna Type: Integral Antenna Antenna Gain -1.52dBi Operating Voltage: Adapter1: U180ISB(BJD) Input: 100-240V~50/60Hz 0.6A Output: 5.0V2.4A 12.0W or 7.5V2.4A 18.0W Max Adapter2: U180ISB(CY) Input: 180-240V~50/60Hz 0.6A Output: 5.0V2.4A 12.0W or 7.5V2.4A 18.0W Max Rechargeable Li-ion Polymer Battery Model: BL-58CI Nominal Voltage: 3.87V Rated Capacity: 5850mAh/22.64Wh Typical Capacity: 6000mAh/23.22Wh Limited Charge Voltage: 4.45V Remark: N/A. Note: 1. N/A stands for no applicable. 2. The antenna gain is provided by the customer. For any reported data issues caused by the antenna gain, World Standardization Certification&Testing Group (Shenzhen) Co., Ltd assumes no responsibility. 3. Adapter 1 and adapter 2 only have different manufacturers, everything else is completely the same. The report only displays the worst adapter data, with the worst being adapter 1 Configuration differences Configuration Model Memory 1 A681L EMCP4 2 A681L EMCP3 Note: Prototypes of all three configurations have been tested, with Configuration 1 yielding the poorest results; this is also the primary model tested in the report. Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 5 of 179 3 TEST DESCRIPTION 3.1 MEASUREMENT UNCERTAINTY No. Item Uncertainty 1 Conducted Emission Test ±3.2dB 2 RF power, conducted ±0.16dB 3 Spurious emissions, conducted ±0.21dB 4 All emissions, radiated(<1GHz) ±4.7dB 5 All emissions, radiated(>1GHz) ±4.7dB 6 Temperature ±0.5°C 7 Humidity ±2% 8 Receiver Spurious Emissions ±2.5% 9 Transmitter Unwanted Emissions in the Spurious Domain ±2.5% 10 Transmitter Unwanted Emission in the out-of Band ±1.3% 11 Occupied Channel Bandwidth ±2.4% Note:1.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 %. 2. The Ulab is less than Ucispr, compliance is deemed to occur if no measured disturbance level exceeds the disturbance limit;non-compliance is deemed to occur if any measured disturbance level exceeds the disturbance limit. 3. For conducted emission test of laboratory have a measurement uncertainty greater than that specified in harmonized standard, this equipment can still be used provided that an adjustment is made follows:any additionan uncertaimty in the test system over and above that specified in harmonized standard should be used to tighter the test requirements-making the test harder to pass. This procedure will ensure that a test system not comliant with harmonized standard does not increase the probability of passing a EUT that would otherwise have failed a test if a test system comliant with harmonized standard had been used. Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 6 of 179 3.2 TEST ENVIRONMENT AND MODE Operating Environment: Temperature: 25.0 C Humidity: 56 % RH Atmospheric Pressure: 1010 mbar Test Mode: Engineering mode: Keep the EUT in continuous transmitting by select channel and modulations(The value of duty cycle is 98.46%) The sample was placed (0.8m below 1GHz, 1.5m above 1GHz) above the ground plane of 3m chamber. Measurements in both horizontal and vertical polarities were performed. During the test, each emission was maximized by: having the EUT continuously working, investigated all operating modes, rotated about all 3 axis (X, Y & Z) and considered typical configuration to obtain worst position, manipulating interconnecting cables, rotating the turntable, varying antenna height from 1m to 4m in both horizontal and vertical polarizations. The emissions worst-case are shown in Test Results of the following pages. For the full battery state and The output power to the maximum state. 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. Test Mode Description Mode 1 802.11a Mode 2 802.11n20 Mode 3 802.11n40 Mode 4 802.11ac20 Mode 5 802.11ac40 Mode 6 802.11ac80 Note: (1) 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. Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 7 of 179 3.3 TABLE OF PARAMETERS OF TEXT SOFTWARE SETTING Test program QRCT Mode Test Frequency (MHz) NCB: 20MHz 802.11a 5180 5240 5260 5320 5500 5700 5745 5825 802.11n 5180 5240 5260 5320 5500 5700 5745 5825 802.11ac 5180 5240 5260 5320 5500 5700 5745 5825 NCB: 40MHz 802.11n 5190 5230 5270 …

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Test Report

偶极子天线验证记录表 Dipole antenna verification record table date Frequency (MHz) Return Loss (dB) Lmpedance,transformed to feed point Manufacturer data 2024.08.19 750 -32.20 51.4Ω-2.06jΩ test data 2025.11.21 750 -32.02 51.6Ω-1.46jΩ Expected next lmpedance,transformed to feed point test on November 20, 2026 date Frequency (MHz) Return Loss (dB) Lmpedance,transformed to feed point Manufacturer data 2024.08.20 835 -29.90 49.1Ω-3.05jΩ test data 2025.11.21 835 -30.60 49.9Ω-4.30jΩ Expected next lmpedance,transformed to feed point test on November 20, 2026 date Frequency (MHz) Return Loss (dB) Lmpedance,transformed to feed point Manufacturer data 2024.08.20 1750 -32.80 47.8Ω-0.26jΩ test data 2025.11.21 1750 -31.33 48.3Ω-2.16jΩ Expected next lmpedance,transformed to feed point test on November 20, 2026 date Frequency (MHz) Return Loss (dB) Lmpedance,transformed to feed point Manufacturer data 2024.08.19 1900 -27.10 50.8Ω+4.38jΩ test data 2025.11.21 1900 -24.33 51.8Ω-5.94jΩ Expected next lmpedance,transformed to feed point test on November 20, 2026 date Frequency (MHz) Return Loss (dB) Lmpedance,transformed to feed point Manufacturer data 2024.08.16 2550 -37.40 50.4Ω-1.3jΩ test data 2025.11.21 2550 -37.11 50.7Ω-1.99jΩ Expected next lmpedance,transformed to feed point test on November 20, 2026 date Frequency (MHz) Return Loss (dB) Lmpedance,transformed to feed point Manufacturer data 2024.10.17 3500 -27.00 51.7Ω+4.2jΩ test data 2025.11.22 3500 -26.57 49.5Ω+0.56jΩ Expected next lmpedance,transformed to feed point test on November 20, 2026 date Frequency (MHz) Return Loss (dB) Lmpedance,transformed to feed point Manufacturer data 2024.10.17 3700 -22.60 43.3Ω+1.6jΩ test data 2025.11.22 3700 -22.19 43.4Ω-4.67jΩ Expected next lmpedance,transformed to feed point test on November 20, 2026 date Frequency (MHz) Return Loss (dB) Lmpedance,transformed to feed point Manufacturer data 2024.10.17 5200 -25.00 53.3Ω-4.8jΩ test data 2025.11.24 5200 -25.53 52.7Ω-2.40jΩ Expected next lmpedance,transformed to feed point test on November 20, 2026 date Frequency (MHz) Return Loss (dB) Lmpedance,transformed to feed point Manufacturer data 2024.10.17 5500 -29.50 47.6Ω-2.2jΩ test data 2025.11.24 5500 -28.65 49.8Ω-2.98jΩ Expected next lmpedance,transformed to feed point test on November 20, 2026 date Frequency (MHz) Return Loss (dB) Lmpedance,transformed to feed point Manufacturer data 2024.10.17 5800 -27.50 50.5Ω+4.2jΩ test data 2025.11.24 5800 -27.67 49.2Ω+5.12jΩ Expected next lmpedance,transformed to feed point test on November 20, 2026

Test Report

Page 1 Annex C Calibration Reports Tested Model : A681L Report Number: WSCT-ANAB-R&E260700059A-SAR

Test Report

Page 1 Annex B: Measurement Results Tested Model :A681L Report Number: WSCT-ANAB-R&E260700059A-SAR . Measurement Report for Device, TILT, GSM 850,Channel 190 (836.600MHz) Device under Test Properties Model, Manufacturer Dimensions [mm] IMEI DUT Type Device, Phone Exposure Conditions Phantom Section, TSL Position, Test Distance [mm] Band Group, UID Frequency [MHz], Channel Number Conversion Factor TSL Conductivity [S/m] TSL Permittivity RightHead, Head Simulating Liquid TILT, 0.00 GSM 850 836.600, 190 8.89 0.914 43.6 Hardware Setup Phantom TSL, Measured Date Probe, Calibration Date DAE, Calibration Date Twin-SAM V8.0 (30deg probe tilt) - 2216 HBBL-600-10000 Charge:xxxx, EX3DV4 - SN7951, 2025-09-10 DAE4ip Sn1921, 2025-09-04 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 120.0 x 210.0 30.0 x 30.0 x 30.0 Grid Steps [mm] 15.0 x 15.0 6.0 x 6.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Graded Grid N/A Yes Grading Ratio N/A 1.5 MAIA N/A N/A Surface Detection VMS + 6p VMS + 6p Scan Method Measured Measured Measurement Results Area Scan Zoom Scan Date 2026-07-15 2026-07-15 psSAR1g [W/kg] 0.444 0.532 psSAR10g [W/kg] 0.269 0.256 Power Drift [dB] 0.05 -0.04 Power Scaling Disabled Disabled Scaling Factor [dB] TSL Correction No correction No correction M2/M1 [%] 60.6 Dist 3dB Peak [mm] 6.2 Warning(s) / Error(s) Details Area Scan Zoom Scan Warning(s) Error(s) . Measurement Report for Device, BACK, GSM 850, Channel 190 (836.600MHz) Device under Test Properties Model, Manufacturer Dimensions [mm] IMEI DUT Type Device, Phone Exposure Conditions Phantom Section, TSL Position, Test Distance [mm] Band Group, UID Frequency [MHz], Channel Number Conversion Factor TSL Conductivity [S/m] TSL Permittivity Flat, Head Simulating Liquid BACK, 10.00 GSM 850 836.600, 190 8.89 0.914 43.6 Hardware Setup Phantom TSL, Measured Date Probe, Calibration Date DAE, Calibration Date Twin-SAM V8.0 (30deg probe tilt) - 2216 HBBL-600-10000 Charge:xxxx, EX3DV4 - SN7951, 2025-09-10 DAE4ip Sn1921, 2025-09-04 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 120.0 x 210.0 30.0 x 30.0 x 30.0 Grid Steps [mm] 15.0 x 15.0 6.0 x 6.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Graded Grid N/A Yes Grading Ratio N/A 1.5 MAIA Y Y Surface Detection VMS + 6p VMS + 6p Scan Method Measured Measured Measurement Results Area Scan Zoom Scan Date 2026-07-15 2026-07-15 psSAR1g [W/kg] 0.119 0.122 psSAR10g [W/kg] 0.078 0.078 Power Drift [dB] -0.04 -0.23 Power Scaling Disabled Disabled Scaling Factor [dB] TSL Correction No correction No correction M2/M1 [%] 77.0 Dist 3dB Peak [mm] 11.4 Warning(s) / Error(s) Details Area Scan Zoom Scan Warning(s) Error(s) . Measurement Report for Device, TILT, PCS 1800, Channel 810 (1909.800MHz) Device under Test Properties Model, Manufacturer Dimensions [mm] IMEI DUT Type Device, Phone Exposure Conditions Phantom Section, TSL Position, Test Distance [mm] Band Group, UID Frequency [MHz], Channel Number Conversion Factor TSL Conductivity [S/m] TSL Permittivity RightHead, Head Simulating Liquid TILT, 0.00 PCS 1800 1909.800, 810 7.33 1.42 41.7 Hardware Setup Phantom TSL, Measured Date Probe, Calibration Date DAE, Calibration Date Twin-SAM V8.0 (30deg probe tilt) - 2216 HBBL-600-10000 Charge:xxxx, EX3DV4 - SN7951, 2025-09-10 DAE4ip Sn1921, 2025-09-04 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 120.0 x 210.0 30.0 x 30.0 x 30.0 Grid Steps [mm] 15.0 x 15.0 6.0 x 6.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Graded Grid N/A Yes Grading Ratio N/A 1.4 MAIA Y Y Surface Detection VMS + 6p VMS + 6p Scan Method Measured Measured Measurement Results Area Scan Zoom Scan Date 2026-07-17 2026-07-17 psSAR1g [W/kg] 0.106 0.146 psSAR10g [W/kg] 0.052 0.062 Power Drift [dB] 0.00 -0.11 Power Scaling Disabled Disabled Scaling Factor [dB] TSL Correction No correction No correction M2/M1 [%] 75.5 Dist 3dB Peak [mm] 5.9 Warning(s) / Error(s) Details Area Scan Zoom Scan Warning(s) Error(s) . Measurement Report for Device, EDGE TOP, PCS 1800, Channel 810 (1909.800MHz) Device under Test Properties Model, Manufacturer Dimensions [mm] IMEI DUT Type Device, Phone Exposure Conditions Phantom Section, TSL Position, Test Distance [mm] Band Group, UID Frequency [MHz], Channel Number Conversion Factor TSL Conductivity [S/m] TSL Permittivity Flat, Head Simulating Liquid EDGE TOP, 10.00 PCS 1800 1909.800, 810 7.33 1.42 41.7 Hardware Setup Phantom TSL, Measured Date Probe, Calibration Date DAE, Calibration Date Twin-SAM V8.0 (30deg probe tilt) - 2216 HBBL-600-10000 Charge:xxxx, EX3DV4 - SN7951, 2025-09-10 DAE4ip Sn1921, 2025-09-04 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 48.0 x 120.0 30.0 x 30.0 x 30.0 Grid Steps [mm] 8.0 x 15.0 6.0 x 6.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Graded Grid N/A Yes Grading Ratio N/A 1.5 MAIA N/A N/A Surface Detection VMS + 6p VMS + 6p Scan Method Measured Measured Measurement Results Area Scan Zoom Scan Date 2026-07-17 2026-07-17 psSAR1g [W/kg] 0.439 0.481 psSAR10g [W/kg] 0.212 0.226 Power Drift [dB] -0.02 -0.09 Power Scaling Disabled Disabled Scaling Factor [dB] TSL Correction No correction No correction M2/M1 [%] 78.9 Dist 3dB Peak [mm] 7.3 Warning(s) / Error(s) Details Area Scan Zoom Scan Warning(s) Error(s) . Measurement Report for Device, TILT, Band 2,Channel 9538 (1907.600MHz) Device under Test Properties Model, Manufacturer Dimensions [mm] IMEI DUT Type Device, Phone Exposure Conditions Phantom Section, TSL Position, Test Distance [mm] Band Group, UID Frequency [MHz], Channel Number Conversion Factor TSL Conductivity [S/m] TSL Permittivity RightHead, Head Simulating Liquid TILT, 0.00 Band 2 1907.600, 9538 7.33 1.42 41.7 Hardware Setup Phantom TSL, Measured Date Probe, Calibration Date DAE, Calibration Date Twin-SAM V8.0 (30deg probe tilt) - 2216 HBBL-600-10000 Charge:xxxx, EX3DV4 - SN7951, 2025-09-10 DAE4ip Sn1921, 2025-09-04 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 120.0 x 210.0 30.0 x 30.0 x 30.0 Grid Steps [mm] 15.0 x 15.0 6.0 x 6.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Graded Grid N/A Yes Grading Ratio N/A 1.4 MAIA N/A N/A Surface Dete…

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Test Report

Page 1 Annex A: System Check Report Number: WSCT-ANAB-R&E260700059A-SAR Tested Model : A681L . Measurement Report for Device, , , UID 0 -, Channel 0 (750.000MHz) Device under Test Properties Model, Manufacturer Dimensions [mm] IMEI DUT Type Device, 50.0 x 10.0 x 8.0 Dipole Exposure Conditions Phantom Section, TSL Position, Test Distance [mm] Band Group, UID Frequency [MHz], Channel Number Conversion Factor TSL Conductivity [S/m] TSL Permittivity Flat, Head Simulating Liquid , CW, 0-- 750.000, 0 9.16 0.885 43.9 Hardware Setup Phantom TSL, Measured Date Probe, Calibration Date DAE, Calibration Date Twin-SAM V5.0 (30deg probe tilt) - 2216 HBBL-600-10000 Charge:xxxx, -- EX3DV4 - SN7951, 2025-09-10DAE4ip Sn1921, 2025-09-04 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 40.0 x 90.0 30.0 x 30.0 x 30.0 Grid Steps [mm] 10.0 x 15.0 6.0 x 6.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Graded Grid N/A Yes Grading Ratio N/A 1.5 MAIA N/A N/A Surface Detection VMS + 6p VMS + 6p Scan Method Measured Measured Measurement Results Area Scan Zoom Scan Date 2026-07-132026-07-13 psSAR1g [W/kg] 0.853 0.858 psSAR10g [W/kg] 0.573 0.570 Power Drift [dB] 0.00 0.01 Power Scaling Disabled Disabled Scaling Factor [dB] TSL Correction No correction No correction M2/M1 [%] 86.4 Dist 3dB Peak [mm] 22.1 . Measurement Report for Device, , , UID 0 -, Channel 0 (835.000MHz) Device under Test Properties Model, Manufacturer Dimensions [mm] IMEI DUT Type Device, 50.0 x 10.0 x 8.0 Dipole Exposure Conditions Phantom Section, TSL Position, Test Distance [mm] Band Group, UID Frequency [MHz], Channel Number Conversion Factor TSL Conductivity [S/m] TSL Permittivity Flat, Head Simulating Liquid , CW, 0-- 835.000, 0 8.89 0.914 43.6 Hardware Setup Phantom TSL, Measured Date Probe, Calibration Date DAE, Calibration Date Twin-SAM V5.0 (30deg probe tilt) - 2216 HBBL-600-10000 Charge:xxxx, -- EX3DV4 - SN7951, 2025-09-10DAE4ip Sn1921, 2025-09-04 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 40.0 x 90.0 30.0 x 30.0 x 30.0 Grid Steps [mm] 10.0 x 15.0 6.0 x 6.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Graded Grid N/A Yes Grading Ratio N/A 1.5 MAIA N/A N/A Surface Detection VMS + 6p VMS + 6p Scan Method Measured Measured Measurement Results Area Scan Zoom Scan Date 2026-07-152026-07-15 psSAR1g [W/kg] 0.993 0.981 psSAR10g [W/kg] 0.653 0.642 Power Drift [dB] 0.01 0.02 Power Scaling Disabled Disabled Scaling Factor [dB] TSL Correction No correction No correction M2/M1 [%] 86.2 Dist 3dB Peak [mm] 16.4 . Measurement Report for Device, , , UID 0 -, Channel 0 (1750.000MHz) Device under Test Properties Model, Manufacturer Dimensions [mm] IMEI DUT Type Device, 50.0 x 10.0 x 8.0 Dipole Exposure Conditions Phantom Section, TSL Position, Test Distance [mm] Band Group, UID Frequency [MHz], Channel Number Conversion Factor TSL Conductivity [S/m] TSL Permittivity Flat, Head Simulating Liquid , CW, 0-- 1750.000, 0 7.6 1.34 41.9 Hardware Setup Phantom TSL, Measured Date Probe, Calibration Date DAE, Calibration Date Twin-SAM V5.0 (30deg probe tilt) - 2216 HBBL-600-10000 Charge:xxxx, -- EX3DV4 - SN7951, 2025-09-10DAE4ip Sn1921, 2025-09-04 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 40.0 x 90.0 30.0 x 30.0 x 30.0 Grid Steps [mm] 10.0 x 15.0 6.0 x 6.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Graded Grid N/A Yes Grading Ratio N/A 1.5 MAIA N/A N/A Surface Detection VMS + 6p VMS + 6p Scan Method Measured Measured Measurement Results Area Scan Zoom Scan Date 2026-07-172026-07-17 psSAR1g [W/kg] 3.62 3.61 psSAR10g [W/kg] 1.92 1.96 Power Drift [dB] 0.01 0.00 Power Scaling Disabled Disabled Scaling Factor [dB] TSL Correction No correction No correction M2/M1 [%] 83.2 Dist 3dB Peak [mm] 10.8 . Measurement Report for Device, , , UID 0 -, Channel 0 (1900.000MHz) Device under Test Properties Model, Manufacturer Dimensions [mm] IMEI DUT Type Device, 50.0 x 10.0 x 8.0 Dipole Exposure Conditions Phantom Section, TSL Position, Test Distance [mm] Band Group, UID Frequency [MHz], Channel Number Conversion Factor TSL Conductivity [S/m] TSL Permittivity Flat, Head Simulating Liquid , CW, 0-- 1900.000, 0 7.33 1.44 41.7 Hardware Setup Phantom TSL, Measured Date Probe, Calibration Date DAE, Calibration Date Twin-SAM V5.0 (30deg probe tilt) - 2216 HBBL-600-10000 Charge:xxxx, -- EX3DV4 - SN7951, 2025-09-10DAE4ip Sn1921, 2025-09-04 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 40.0 x 90.0 30.0 x 30.0 x 30.0 Grid Steps [mm] 10.0 x 15.0 6.0 x 6.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Graded Grid N/A Yes Grading Ratio N/A 1.5 MAIA N/A N/A Surface Detection VMS + 6p VMS + 6p Scan Method Measured Measured Measurement Results Area Scan Zoom Scan Date 2026-07-172026-07-17 psSAR1g [W/kg] 4.01 4.04 psSAR10g [W/kg] 2.10 2.11 Power Drift [dB] -0.010.02 Power Scaling Disabled Disabled Scaling Factor [dB] TSL Correction No correction No correction M2/M1 [%] 83.0 Dist 3dB Peak [mm] 9.6 . Measurement Report for Device, , , UID 0 , Channel 0 (2450.000MHz) Device under Test Properties Model, Manufacturer Dimensions [mm] IMEI DUT Type Device, 50.0 x 10.0 x 8.0 Dipole Exposure Conditions Phantom Section, TSL Position, Test Distance [mm] Band Group, UID Frequency [MHz], Channel Number Conversion Factor TSL Conductivity [S/m] TSL Permittivity Flat, Head Simulating Liquid , CW, 0-- 2450.000, 0 6.94 1.82 41.0 Hardware Setup Phantom TSL, Measured Date Probe, Calibration Date DAE, Calibration Date Twin-SAM V5.0 (30deg probe tilt) - 2216 HBBL-600-10000 Charge:xxxx, EX3DV4 - SN7951, 2025-09-10DAE4ip Sn1921, 2025-09-04 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 40.0 x 80.0 30.0 x 30.0 x 30.0 Grid Steps [mm] 10.0 x 10.0 5.0 x 5.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Graded Grid N/A Yes Grading Ratio N/A 1.5 MAIA N/A N/A Surface Detection VMS + 6p VMS + 6p Scan Method Measured Measured Measurement Results Area Scan Zoom Scan Date 2026-07-20 2026-07-20 psSAR1g [W/kg] 5.18 5.36 psSAR10g [W/kg] 2.40 2.52 Power Drift [dB] -0.06 0.03 Power Scaling Disabled Disabled Scaling Factor [dB] TSL Correction No correction No correction M2/M1 [%]…

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Test Report

Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 166 of 179 Band Edge ac80 5775MHz Low Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 167 of 179 7.10 DYNAMIC FREQUENCY SELECTION (DFS) 7.10.1 DFS OVERVIEW A U-NII network will employ a DFS function to detect signals from radar systems and to avoid co-channel operation with these systems. This applies to the 5250-5350 MHz and/or 5470-5725 MHz bands. Within the context of the operation of the DFS function, a U-NII device will operate in either Master Mode or Client Mode. U-NII devices operating in Client Mode can only operate in a network controlled by a U-NII device operating in Master Mode. Tables 1 and 2 shown below summarize the information contained in sections 5.1.1 and 5.1.2 Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 168 of 179 The operational behavior and individual DFS requirements that are associated with these modes are as follows: DFS Detection Thresholds Table 3 below provides the DFS Detection Thresholds for Master Devices as well as Client Devices incorporating In-Service Monitoring. Response Requirements Table 4 provides the response requirements for Master and Client Devices incorporating DFS. Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 169 of 179 RADAR TEST WAVEFORMS This section provides the parameters for required test waveforms, minimum percentage of successful detections, and the minimum number of trials that must be used for determining DFS conformance. Step intervals of 0.1 microsecond for Pulse Width, 1 microsecond for PRI, 1 MHz for chirp width and 1 for the number of pulses will be utilized for the random determination of specific test waveforms. Short Pulse Radar Test Waveforms A minimum of 30 unique waveforms are required for each of the Short Pulse Radar Types 2 through 4. If more than 30 waveforms are used for Short Pulse Radar Types 2 through 4, then each additional waveform must also be unique and not repeated from the previous waveforms. If more than 30 waveforms are used for Short Pulse Radar Type 1, then each additional waveform is generated with Test B and must also be unique and not repeated from the previous waveforms in Tests A or B. For example if in Short Pulse Radar Type 1 Test B a PRI of 3066 μsec is selected, the number of pulses would be Roundup = Round up {17.2} = 18. Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 170 of 179 The aggregate is the average of the percentage of successful detections of Short Pulse Radar Types 1-4. For example, the following table indicates how to compute the aggregate of percentage of successful detections. Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 171 of 179 Long Pulse Radar Test Waveform The parameters for this waveform are randomly chosen. Thirty unique waveforms are required for the Long Pulse Radar Type waveforms. If more than 30 waveforms are used for the Long Pulse Radar Type waveforms, then each additional waveform must also be unique and not repeated from the previous waveforms. Each waveform is defined as follows: 1) The transmission period for the Long Pulse Radar test signal is 12 seconds. 2) There are a total of 8 to 20 Bursts in the 12 second period, with the number of Bursts being randomly chosen. This number is Burst Count. 3) Each Burst consists of 1 to 3 pulses, with the number of pulses being randomly chosen. Each Burst within the 12 second sequence may have a different number of pulses. 4) The pulse width is between 50 and 100 microseconds, with the pulse width being randomly chosen. Each pulse within a Burst will have the same pulse width. Pulses in different Bursts may have different pulse widths. 5) Each pulse has a linear frequency modulated chirp between 5 and 20 MHz, with the chirp width being randomly chosen. Each pulse within a transmission period will have the same chirp width. The chirp is centered on the pulse. For example, with a radar frequency of 5300 MHz and a 20 MHz chirped signal, the chirp starts at 5290 MHz and ends at 5310 MHz. 6) If more than one pulse is present in a Burst, the time between the pulses will be between 1000 and 2000 microseconds, with the time being randomly chosen. If three pulses are present in a Burst, the random time interval between the first and second pulses is chosen independently of the random time interval between the second and third pulses. 7) The 12 second transmission period is divided into even intervals. The number of intervals is equal to Burst Count. Each interval is of length (12,000,000 / Burst Count) microseconds. Each interval contains one Burst. The start time for the Burst, relative to the beginning of the interval, is between 1 and [(12,000,000 / Burst Count) – (Total Burst Length) + (One Random PRI Interval)] microseconds, with the start time being randomly chosen. The step interval for the start time is 1 microsecond. The start time for each Burst is chosen randomly. A representative example of a Long Pulse Radar Type waveform: 1) The total test waveform length is 12 seconds. 2) Eight (8) Bursts are randomly generated for the Burst Count. Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 172 of 179 3) Burst 1 has 2 randomly generated pulses. 4) The pulse width (for both pulses) is randomly selected to be 75 microseconds. 5) The PRI is randomly selected to be at 1213 microseconds. 6) Bursts 2 through 8 are generated using steps 3 – 5. 7) Each Burst is contained in even intervals of 1,500,000 microseconds. The starting location for Pulse 1, Burst 1 is randomly generated (1 to 1,500,000 minus the total Burst 1 length + 1 random PRI interval) at the 325,001 microsecond step. Bursts 2 through 8 randomly fall in successive 1,500,000 microsecond intervals (i.e. Burst 2 falls in the 1,500,001 – 3,000,000 microsecond range). Figure 1 provides a graphical representation of the Long Pulse…

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Test Report

Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 127 of 179 Freq. Stability n40 5270MHz 0 Minutes Freq. Stability n40 5310MHz 0 Minutes Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 128 of 179 Freq. Stability n40 5510MHz 0 Minutes Freq. Stability n40 5670MHz 0 Minutes Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 129 of 179 Freq. Stability n40 5755MHz 0 Minutes Freq. Stability n40 5795MHz 0 Minutes Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 130 of 179 Freq. Stability ac20 5180MHz 0 Minutes Freq. Stability ac20 5240MHz 0 Minutes Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 131 of 179 Freq. Stability ac20 5260MHz 0 Minutes Freq. Stability ac20 5320MHz 0 Minutes Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 132 of 179 Freq. Stability ac20 5500MHz 0 Minutes Freq. Stability ac20 5700MHz 0 Minutes Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 133 of 179 Freq. Stability ac20 5745MHz 0 Minutes Freq. Stability ac20 5825MHz 0 Minutes Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 134 of 179 Freq. Stability ac40 5190MHz 0 Minutes Freq. Stability ac40 5230MHz 0 Minutes Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 135 of 179 Freq. Stability ac40 5270MHz 0 Minutes Freq. Stability ac40 5310MHz 0 Minutes Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 136 of 179 Freq. Stability ac40 5510MHz 0 Minutes Freq. Stability ac40 5670MHz 0 Minutes Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 137 of 179 Freq. Stability ac40 5755MHz 0 Minutes Freq. Stability ac40 5795MHz 0 Minutes Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 138 of 179 Freq. Stability ac80 5210MHz 0 Minutes Freq. Stability ac80 5290MHz 0 Minutes Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 139 of 179 Freq. Stability ac80 5530MHz 0 Minutes Freq. Stability ac80 5610MHz 0 Minutes Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 140 of 179 Freq. Stability ac80 5775MHz 0 Minutes Report No.: WSCT-ANAB-R&E260700059A-Wi-Fi2 Issued Date: 05 August 2026 Page 141 of 179 7.9 BAND EDGE EMISSIONS 7.9.1 TEST EQUIPMENT Please refer to Section 4 this report. 7.9.2 TEST PROCEDURE Band Edge Emissions Measurement: Test Method: a.)The EUT was tested according to ANSI C63.10. b)The EUT, peripherals were put on the turntable which table size is 1m x 1.5 m, table high 1.5 m. All set up is according to ANSI C63.10. c)The frequency spectrum from 9 kHz to 40 GHz was investigated. All readings from 9 kHz to 150 kHz are quasi-peak values with a resolution bandwidth of 200 Hz. All readings from 150 kHz to 30 MHz are quasi-peak values with a resolution bandwidth of 9 KHz. All readings from 30 MHz to 1 GHz are quasi-peak values with a resolution bandwidth of 120 KHz. All readings are above 1 GHz , peak values with a resolution bandwidth of 1 MHz . Measurements were made at 3 meters. d)The emissions from the EUT were measured continuously at every azimuth by rotating the turntable. The Receiving antenna high is varied from 1 m to 4 m high to find the maximum emission for each frequ…

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Contact Information

Applicant

Yiting Luo
[email protected]Fax: 86 755 33979211

Technical Contact

Picus Advisors US LLCIvan Wang
[email protected]

5855 SOVEREIGN DRSTE B-1, HOUSTON, TX 77036 · HOUSTON, Texas, 77036 · United States

Test Firm

World Standardization Certification & Testing GrouWeng Fengbing
[email protected]

Technical Specifications

#Rule PartsFrequency RangePower Output
115E5.18 GHz - 5.24 GHz53.10 mW
215E5.26 GHz - 5.32 GHz49.30 mW
Confidentiality
Long Term
Grant Notes
Output power listed is conducted. The device supports 20MHz, 40MHz and 80MHz bandwidths. For body worn operation, this phone has been tested and meets FCC RF exposure guidelines when used with an accessory that contains no metal and that positions the handset a minimum of 10mm from the body. Use of other accessories may not ensure compliance with FCC RF exposure guidelines. Highest reported SAR for Head, Body-worn accessory, product specific (wireless router), and simultaneous transmission are 0.54W/kg, 0.52W/kg, 0.52W/kg, 1.52W/kg respectively.

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