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  3. 2BSW8-FORT200

2BSW8-FORT200Smart Phone

HONG KONG LELEGAO TECHNOLOGY CO.,LIMITED
Smart Phone - FCC ID 2BSW8-FORT200 - HONG KONG LELEGAO TECHNOLOGY CO.,LIMITED
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Application Details

Equipment Class
NII - Unlicensed National Information Infrastructure TX
Date of Grant
Apr 08, 2026
Application Purpose
Original Equipment
Equipment Note
Smart Phone
Frequency Range
5180.00000000 - 5240.00000000
Company
HONG KONG LELEGAO TECHNOLOGY CO.,LIMITED
Country
China

Documents & Files

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Users Manual

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Attestation Statements

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

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

Users Manual

Smart Phone

RF Exposure Info

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Test Setup Photos

Page 1 of 3 FCC ID: 2BSW8-FORT200 Setup photo AC Conduction RF Conduction Page 2 of 3 FCC ID: 2BSW8-FORT200 RE (Below 30MHz) RE (30 MHz-1GHz) Page 3 of 3 FCC ID: 2BSW8-FORT200 RE (1-18GHz) RE (Above 18GHz)

Test Setup Photos

SAR Setup photos for FCC ID: 2BSW8-FORT200 Right Touch Right Tilt Left Touch Left Tilt Body Front side(separation distance is 10mm) Body Back side(separation distance is 10mm) Body Left side(separation distance is 10mm) Body Right side(separation distance is 10mm) Body Bottom side(separation distance is 10mm) Body Top side(separation distance is 10mm)

Test Report

Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Duty Cycle Condition Mode Frequency (MHz) On Time (ms) Period (ms) Duty Cycle (%) Correction Factor (dB) 1/T (kHz) Max Variation (%) NVNT a 5745 0.192 0.24 80 0.97 5.21 0.24 NVNT a 5785 0.192 0.238 80.67 0.93 5.21 0.24 NVNT a 5825 0.192 0.239 80.33 0.95 5.21 0.29 NVNT n20 5745 0.192 0.239 80.33 0.95 5.21 0.25 NVNT n20 5785 0.192 0.239 80.33 0.95 5.21 0.22 NVNT n20 5825 0.193 0.24 80.42 0.95 5.19 0.23 NVNT n40 5755 0.201 0.248 81.05 0.91 4.99 0.23 NVNT n40 5795 0.2 0.248 80.65 0.93 5 0.23 NVNT ac20 5745 0.204 0.253 80.63 0.94 4.89 0.2 NVNT ac20 5785 0.205 0.253 81.03 0.91 4.89 0.22 NVNT ac20 5825 0.204 0.252 80.95 0.92 4.9 0.21 NVNT ac40 5755 0.184 0.233 78.97 1.03 5.42 0.21 NVNT ac40 5795 0.183 0.233 78.54 1.05 5.43 0.21 NVNT ac80 5775 0.176 0.224 78.57 1.05 5.67 0.21 Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Test Graphs Duty Cycle NVNT a 5745MHz Duty Cycle NVNT a 5785MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Duty Cycle NVNT a 5825MHz Duty Cycle NVNT n20 5745MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Duty Cycle NVNT n20 5785MHz Duty Cycle NVNT n20 5825MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Duty Cycle NVNT n40 5755MHz Duty Cycle NVNT n40 5795MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Duty Cycle NVNT ac20 5745MHz Duty Cycle NVNT ac20 5785MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Duty Cycle NVNT ac20 5825MHz Duty Cycle NVNT ac40 5755MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Duty Cycle NVNT ac40 5795MHz Duty Cycle NVNT ac80 5775MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Maximum Output Power Condition Mode Frequency (MHz) Conducted Power (dBm) Duty Factor (dB) Total Power (dBm) Limit (dBm) Verdict NVNT a 5745 11.44 0.97 12.41 <=30 Pass NVNT a 5785 11.95 0.93 12.88 <=30 Pass NVNT a 5825 11.98 0.95 12.93 <=30 Pass NVNT n20 5745 12.21 0.95 13.16 <=30 Pass NVNT n20 5785 12.63 0.95 13.58 <=30 Pass NVNT n20 5825 12.78 0.95 13.73 <=30 Pass NVNT n40 5755 12.06 0.91 12.97 <=30 Pass NVNT n40 5795 12.52 0.93 13.45 <=30 Pass NVNT ac20 5745 11.72 0.94 12.66 <=30 Pass NVNT ac20 5785 12.16 0.91 13.07 <=30 Pass NVNT ac20 5825 12.3 0.92 13.22 <=30 Pass NVNT ac40 5755 12.02 1.03 13.05 <=30 Pass NVNT ac40 5795 12.42 1.05 13.47 <=30 Pass NVNT ac80 5775 12.53 1.05 13.58 <=30 Pass Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Test Graphs Power NVNT a 5745MHz Power NVNT a 5785MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Power NVNT a 5825MHz Power NVNT n20 5745MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Power NVNT n20 5785MHz Power NVNT n20 5825MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Power NVNT n40 5755MHz Power NVNT n40 5795MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Power NVNT ac20 5745MHz Power NVNT ac20 5785MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Power NVNT ac20 5825MHz Power NVNT ac40 5755MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Power NVNT ac40 5795MHz Power NVNT ac80 5775MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 -6dB Bandwidth Condition Mode Frequency (MHz) -6 dB Bandwidth (MHz) Limit -6 dB Bandwidth (MHz) Verdict NVNT a 5745 15.12 >=0.5 Pass NVNT a 5785 15.14 >=0.5 Pass NVNT a 5825 15.09 >=0.5 Pass NVNT n20 5745 15.09 >=0.5 Pass NVNT n20 5785 15.12 >=0.5 Pass NVNT n20 5825 15.1 >=0.5 Pass NVNT n40 5755 35.11 >=0.5 Pass NVNT n40 5795 35.1 >=0.5 Pass NVNT ac20 5745 15.1 >=0.5 Pass NVNT ac20 5785 15.11 >=0.5 Pass NVNT ac20 5825 15.13 >=0.5 Pass NVNT ac40 5755 35.1 >=0.5 Pass NVNT ac40 5795 35.08 >=0.5 Pass NVNT ac80 5775 75.03 >=0.5 Pass Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Test Graphs -6dB Bandwidth NVNT a 5745MHz -6dB Bandwidth NVNT a 5785MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 -6dB Bandwidth NVNT a 5825MHz -6dB Bandwidth NVNT n20 5745MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 -6dB Bandwidth NVNT n20 5785MHz -6dB Bandwidth NVNT n20 5825MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 -6dB Bandwidth NVNT n40 5755MHz -6dB Bandwidth NVNT n40 5795MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 -6dB Bandwidth NVNT ac20 5745MHz -6dB Bandwidth NVNT ac20 5785MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 -6dB Bandwidth NVNT ac20 5825MHz -6dB Bandwidth NVNT ac40 5755MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 -6dB Bandwidth NVNT ac40 5795MHz -6dB Bandwidth NVNT ac80 5775MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Occupied Channel Bandwidth Condition Mode Frequency (MHz) 99% OBW (MHz) NVNT a 5745 16.485 NVNT a 5785 16.537 NVNT a 5825 16.61 NVNT n20 5745 16.507 NVNT n20 5785 16.528 NVNT n20 5825 16.546 NVNT n40 5755 36.071 NVNT n40 5795 36.08 NVNT ac20 5745 17.615 NVNT ac20 5785 17.645 NVNT ac20 5825 17.702 NVNT ac40 5755 36.081 NVNT ac40 5795 36.083 NVNT ac80 5775 75.154 Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Test Graphs OBW NVNT a 5745MHz OBW NVNT a 5785MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 OBW NVNT a 5825MHz OBW NVNT n20 5745MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 OBW NVNT n20 5785MHz OBW NVNT n20 5825MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 OBW NVNT n40 5755MHz OBW NVNT n40 5795MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 OBW NVNT ac20 5745MHz OBW NVNT ac20 5785MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 OBW NVNT ac20 5825MHz OBW NVNT ac40 5755MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 OBW NVNT ac40 5795MHz OBW NVNT ac80 5775MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-3 Maximum Power Spectral Density Level Conditio n Mod e Frequenc y (MHz) Conducted PSD (dBm/510kHz ) Duty Facto r (dB) Total PSD (dBm/510kHz ) Total PSD (dBm/500kHz ) Limit (dBm/500kHz ) Verdic t NVNT a 5745 -0.839 0.97 0.131 0.04 <=30 Pass NVNT a 5785 -0.632 0.93 0.298 0.21 <=30 Pass NVNT a 5825 -0.312 0.95 0.638 0.55 <=30 Pass NVNT n20 5745 -0.39 0.95 0.56 0.47 <=30 Pass NVNT n20 5785 0.201 0.95 1.151 1.06 <=30 Pass NVNT n20 5825 …

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Test Report

Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Duty Cycle Condition Mode Frequency (MHz) On Time (ms) Period (ms) Duty Cycle (%) Correction Factor (dB) 1/T (kHz) Max Variation (%) NVNT a 5180 0.192 0.239 80.33 0.95 5.19 0.22 NVNT a 5200 0.193 0.241 80.08 0.96 5.19 0.22 NVNT a 5240 0.192 0.241 79.67 0.99 5.19 0.27 NVNT n20 5180 0.212 0.26 81.54 0.89 4.71 0.3 NVNT n20 5200 0.213 0.26 81.92 0.87 4.69 0.25 NVNT n20 5240 0.213 0.26 81.92 0.87 4.71 0.26 NVNT n40 5190 0.201 0.249 80.72 0.93 4.99 0.27 NVNT n40 5230 0.201 0.248 81.05 0.91 4.99 0.23 NVNT ac20 5180 0.205 0.253 81.03 0.91 4.88 0.21 NVNT ac20 5200 0.204 0.252 80.95 0.92 4.89 0.24 NVNT ac20 5240 0.205 0.253 81.03 0.91 4.89 0.2 NVNT ac40 5190 0.184 0.232 79.31 1.01 5.42 0.25 NVNT ac40 5230 0.184 0.231 79.65 0.99 5.42 0.24 NVNT ac80 5210 0.176 0.225 78.22 1.07 5.67 0.25 Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Test Graphs Duty Cycle NVNT a 5180MHz Duty Cycle NVNT a 5200MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Duty Cycle NVNT a 5240MHz Duty Cycle NVNT n20 5180MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Duty Cycle NVNT n20 5200MHz Duty Cycle NVNT n20 5240MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Duty Cycle NVNT n40 5190MHz Duty Cycle NVNT n40 5230MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Duty Cycle NVNT ac20 5180MHz Duty Cycle NVNT ac20 5200MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Duty Cycle NVNT ac20 5240MHz Duty Cycle NVNT ac40 5190MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Duty Cycle NVNT ac40 5230MHz Duty Cycle NVNT ac80 5210MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Maximum Output Power Condition Mode Frequency (MHz) Conducted Power (dBm) Duty Factor (dB) Total Power (dBm) Limit (dBm) Verdict NVNT a 5180 11.59 0.95 12.54 <=24 Pass NVNT a 5200 11.78 0.96 12.74 <=24 Pass NVNT a 5240 12.56 0.99 13.55 <=24 Pass NVNT n20 5180 12.64 0.89 13.53 <=24 Pass NVNT n20 5200 12.91 0.87 13.78 <=24 Pass NVNT n20 5240 13.67 0.87 14.54 <=24 Pass NVNT n40 5190 12.17 0.93 13.1 <=24 Pass NVNT n40 5230 12.84 0.91 13.75 <=24 Pass NVNT ac20 5180 11.61 0.91 12.52 <=24 Pass NVNT ac20 5200 11.94 0.92 12.86 <=24 Pass NVNT ac20 5240 12.65 0.91 13.56 <=24 Pass NVNT ac40 5190 12.12 1.01 13.13 <=24 Pass NVNT ac40 5230 12.85 0.99 13.84 <=24 Pass NVNT ac80 5210 12.46 1.07 13.53 <=24 Pass Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Test Graphs Power NVNT a 5180MHz Power NVNT a 5200MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Power NVNT a 5240MHz Power NVNT n20 5180MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Power NVNT n20 5200MHz Power NVNT n20 5240MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Power NVNT n40 5190MHz Power NVNT n40 5230MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Power NVNT ac20 5180MHz Power NVNT ac20 5200MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Power NVNT ac20 5240MHz Power NVNT ac40 5190MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Power NVNT ac40 5230MHz Power NVNT ac80 5210MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 -26dB Bandwidth Condition Mode Frequency (MHz) -26 dB Bandwidth (MHz) Verdict NVNT a 5180 23.96 Pass NVNT a 5200 23.97 Pass NVNT a 5240 23.41 Pass NVNT n20 5180 24.14 Pass NVNT n20 5200 24.07 Pass NVNT n20 5240 24.22 Pass NVNT n40 5190 44.06 Pass NVNT n40 5230 42.61 Pass NVNT ac20 5180 23.53 Pass NVNT ac20 5200 23.8 Pass NVNT ac20 5240 23.14 Pass NVNT ac40 5190 44.33 Pass NVNT ac40 5230 44.22 Pass NVNT ac80 5210 83.77 Pass Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Test Graphs -26dB Bandwidth NVNT a 5180MHz -26dB Bandwidth NVNT a 5200MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 -26dB Bandwidth NVNT a 5240MHz -26dB Bandwidth NVNT n20 5180MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 -26dB Bandwidth NVNT n20 5200MHz -26dB Bandwidth NVNT n20 5240MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 -26dB Bandwidth NVNT n40 5190MHz -26dB Bandwidth NVNT n40 5230MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 -26dB Bandwidth NVNT ac20 5180MHz -26dB Bandwidth NVNT ac20 5200MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 -26dB Bandwidth NVNT ac20 5240MHz -26dB Bandwidth NVNT ac40 5190MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 -26dB Bandwidth NVNT ac40 5230MHz -26dB Bandwidth NVNT ac80 5210MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Occupied Channel Bandwidth Condition Mode Frequency (MHz) 99% OBW (MHz) NVNT a 5180 16.529 NVNT a 5200 16.581 NVNT a 5240 16.546 NVNT n20 5180 17.661 NVNT n20 5200 17.684 NVNT n20 5240 17.641 NVNT n40 5190 36.05 NVNT n40 5230 36.04 NVNT ac20 5180 17.642 NVNT ac20 5200 17.649 NVNT ac20 5240 17.63 NVNT ac40 5190 36.071 NVNT ac40 5230 35.937 NVNT ac80 5210 75.091 Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Test Graphs OBW NVNT a 5180MHz OBW NVNT a 5200MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 OBW NVNT a 5240MHz OBW NVNT n20 5180MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 OBW NVNT n20 5200MHz OBW NVNT n20 5240MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 OBW NVNT n40 5190MHz OBW NVNT n40 5230MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 OBW NVNT ac20 5180MHz OBW NVNT ac20 5200MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 OBW NVNT ac20 5240MHz OBW NVNT ac40 5190MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 OBW NVNT ac40 5230MHz OBW NVNT ac80 5210MHz Report No.: STS2601435W23_Appendix 5G RLAN U-NII-1 Maximum Power Spectral Density Level Condition Mode Frequency (MHz) Conducted PSD (dBm) Duty Factor (dB) Total PSD (dBm) Limit (dBm) Verdict NVNT a 5180 2.124 0.95 3.074 <=11 Pass NVNT a 5200 2.362 0.96 3.322 <=11 Pass NVNT a 5240 3.157 0.99 4.147 <=11 Pass NVNT n20 5180 3.014 0.89 3.904 <=11 Pass NVNT n20 5200 3.166 0.87 4.036 <=11 Pass NVNT n20 5240 4.339 0.87 5.209 <=11 Pass NVNT n40 5190 -0.840.93 0.090 <=11 Pass NVNT n40 5230 -0.0750.91 0.835 <=11 Pass NVNT ac20 5180 1.799 0.91 2.709 <=11 Pass NVNT ac20 5200 2.…

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Test Report

The test results presented in this report relate only to the object tested. This report shall not be reproduced, except in full, without the written approval of the Shenzhen STS Test Services Co., Ltd. Radio Test Report Report No.: STS2601435W23 Issued for HONG KONG LELEGAO TECHNOLOGY CO.,LIMITED 19H Maxgrand Plaza, No.3 Tai Yau Street, San Po Kong, Kowloon, HongKong Product Name: Smart Phone Brand Name: Blackview Model Name: FORT 200 Series Model(s): N/A FCC ID: 2BSW8-FORT200 Test Standards: FCC Part15.407 Page 2 of 84 Report No.: STS2601435W23 TEST REPORT Applicant’s Name ................. : HONG KONG LELEGAO TECHNOLOGY CO.,LIMITED Address .................................. : 19H Maxgrand Plaza, No.3 Tai Yau Street, San Po Kong, Kowloon, HongKong Manufacturer's Name ........... : Shenzhen Doke Electronic Co., LTD Address .................................. : 801, Building3, 7th Industrial Zone, Yulv Community, Yutang Road, Guangming District, Shenzhen, China Product Description Product Name ........................ : Smart Phone Brand Name ........................... : Blackview Model Name ........................... : FORT 200 Series Model(s) .................... : N/A Test Standards ..................... : FCC Part15.407 Test Procedure ............................... : ANSI C63.10-2020 This device described above has been tested by STS, 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. The test results presented in this report relate only to the object tested. This report shall not be reproduced, except in full, without the written approval of the Shenzhen STS Test Services Co., Ltd. Date of Test............................................ : Date of receipt of test item ...................... : 31 Jan. 2026 Date (s) of performance of tests ............. : 31 Jan. 2026 ~ 06 Mar. 2026 Date of Issue .......................................... : 06 Mar. 2026 Test Result .............................................. : Pass Testing Engineer : (Aaron Bu) Technical Manager : (Skylar Li) Authorized Signatory : (Bovey Yang) Page 3 of 84 Report No.: STS2601435W23 Table of Contents Page 1 . SUMMARY OF TEST RESULTS 6 1.1 TEST FACTORY 7 1.2 MEASUREMENT UNCERTAINTY 7 2. GENERAL INFORMATION 8 2.1 GENERAL DESCRIPTION OF THE EUT 8 2.2 DESCRIPTION OF TEST MODES 10 2.3 TEST SOFTWARE AND POWER LEVEL 11 2.4 BLOCK DIAGRAM SHOWING THE CONFIGURATION OF SYSTEM TESTED 12 2.5 DESCRIPTION OF NECESSARY ACCESSORIES AND SUPPORT UNITS 13 2.6 EQUIPMENTS LIST 14 3. EMC EMISSION TEST 15 3.1 CONDUCTED EMISSION MEASUREMENT 15 3.2 RADIATED EMISSION AND MEASUREMENT 19 4. POWER SPECTRAL DENSITY TEST 75 4.1 LIMIT 75 4.2 TEST PROCEDURE 75 4.3 DEVIATION FROM STANDARD 76 4.4 TEST SETUP 76 4.5 EUT OPERATION CONDITIONS 76 4.6 TEST RESULTS 76 5. DUTY CYCLE 77 5.1 TEST STANDARD 77 5.2 TEST PROCEDURE 77 5.3 DEVIATION FROM STANDARD 77 5.4 TEST SETUP 77 5.5 EUT OPERATION CONDITIONS 77 5.6 TEST RESULTS 77 6. BANDWIDTH MEASUREMENT 78 6.1 EMISSION BANDWIDTH (EBW) 26 BANDWID PROCEDURES / LIMIT 78 6.2 OCCUPIED BANDWIDTH ( 99%) TEST APPLIED PROCEDURES / LIMIT 79 6.3 MINIMUM EMISSION BANDWIDTH(6 DB) PROCEDURES / LIMIT 80 7. MAXIMUM OUTPUT POWER 81 7.1 LIMIT 81 7.2 TEST PROCEDURE 81 7.3 DEVIATION FROM STANDARD 81 Page 4 of 84 Report No.: STS2601435W23 Table of Contents Page 7.4 TEST SETUP 81 7.5 EUT OPERATION CONDITIONS 81 7.6 TEST RESULTS 81 8. AUTOMATICALLY DISCONTINUE TRANSMISSION 82 8.1 LIMIT OF AUTOMATICALLY DISCONTINUE TRANSMISSION 82 8.2 TEST RESULT OF AUTOMATICALLY DISCONTINUE TRANSMISSION 82 9. ANTENNA REQUIREMENT 83 9.1 STANDARD REQUIREMENT 83 9.2 EUT ANTENNA 83 APPENDIX - PHOTOS OF TEST SETUP 84 Page 5 of 84 Report No.: STS2601435W23 Revision History Rev. Issue Date Report No. Effect Page Contents 00 06 Mar. 2026 STS2601435W23 ALL Initial Issue Page 6 of 84 Report No.: STS2601435W23 1. SUMMARY OF TEST RESULTS Test procedures according to the technical standards: § 15.407,KDB 789033 D02 General U-NII Test Procedures New Rules v02r01 FCC Part 15.407 FCC standard Test Item Results 15.207 AC Conducted Emission PASS 15.407 (a) /15.407 (e) 26dB/6dB &99% Bandwidth PASS 15.407(a) Maximum Conducted Output Power PASS 15.407(b)/15.209 Radiated Emission And (bandedge Emissions) Measurement PASS 15.407(a) Power Spectral Density PASS 15.407(c) Automatically Discontinue Transmission PASS 15.203 Antenna Requirement PASS Note: (1) ‘N/A’ denotes test is not applicable in this Test Report. (2) All tests are according to ANSI C63.10-2020. Page 7 of 84 Report No.: STS2601435W23 1.1 TEST FACTORY SHENZHEN STS TEST SERVICES CO., LTD Add.: 101, Building B, Zhuoke Science Park, No.190 Chongqing Road, ZhanChengShequ, Fuhai Sub-District, Bao’an District, Shenzhen, Guang Dong, China FCC test Firm Registration Number: 625569 IC test Firm Registration Number: 12108A A2LA Certificate No.: 4338.01 1.2 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 %. No. Item Uncertainty 1 RF output power, conducted ±0.751dB 2 Unwanted Emissions, conducted ±2.888dB 3 All emissions, radiated 9K-30MHz ±2.48dB 4 All emissions, radiated 30M-1GHz ±2.52dB 5 All emissions, radiated 1G-18GHz ±3.48dB 6 All emissions, radiated>18GHz ±4.18dB 7 Conducted Emission (9KHz-150KHz) ±2.48dB 8 Conducted Emission (150KHz-30MHz) ±2.52dB 9 Occupied Channel Bandwidth ±3.6% 10 Power Spectral Density, conducted ±1.214dB 11 Duty Cycle ±3.2% Page 8 of 84 Report No.: STS2601435W23 2. GENERAL INFORMATION 2.1 GENERAL DESCRIPTION OF THE EUT Product Name Smart Phone Brand Name Blackview Model Name FORT 200 Series Model(s) N/A Model Difference N/A Product Description The EUT is Smart Phone Operation Frequency: IEEE 802.11a/n/ac(20M): 5.180GHz-5.240GHz IEEE 802.11n/ac(40M): 5.190GHz-5.230GHz IEEE 802.11 ac(80M): 5.2…

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Test Report

ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 1  Manufacturer: ShenzhenXinbinuo CommunicationTechnologyCo.,Ltd. Customer:Duoke Project:FORT5 ME:XiaoXiang TEL-13316888409 RF:ChenKai TEL-13145925658 Date:12.17.2025  Add.:Building25,FeipengIndustrialPark,Ping'an Avenue,PinghuSub-district,LonggangDistrict, Shenzhen,AreaA,ThirdFloor ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 2 Catalogue 1.Basicinformation..........................................................................................................................................3 2.TestMethodDescriptionandData.............................................................................................................6 3.Matchingcircuit............................................................................................................................................8 4.Antennareturnloss....................................................................................................................................11 5.Gain.............................................................................................................................................................12 6.OTA..............................................................................................................................................................17 7.Antennaradiationpattern.........................................................................................................................23 8.EMCoptimization.......................................................................................................................................26 9.DimensionInspectionReport....................................................................................................................28 ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 3 1.Basicinformation Frequencyband: GSM:850/900/1800/1900. WCDMA:B1/B2/B4/B5/B8. FDDLTE: B1/B2/B3/B4/B5/B7/B8/B12/B13/B17/B18/B19/B20/B26/B28A/B28B/B6 6 TDDLTE:B38/B40/B41. Others: GPS/Beidou/GLONASS/Galileo,80211.a/b/g/n/ac2.4G/5G,Bluetooth. ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 4 2.1TestMethodDescriptionandData DeviceNamePurpose VectorNetworkAnalyzerS11/Impedance/PassiveTest Agilent8960 SP6010 R&SCMU200 Testingofmobilecommunicationdevicesincluding GSM,GPRS,EDGE,CDMA2000,1xEV-DO,TD-SCDMA,WCDMA, andHSDPA R&SCMW500 MT8820C Testingofmobilecommunicationdevicesincluding TD-SCDMA,WCDMA,HSDPA,LTE,WIFI,andGPS AgilentE4438CTestGPS MVGChamberPassiveTest/OTAactiveTest/Efficiency/Gain MT8000ATestingof5GNRmobilecommunicationdevices 2PassiveTestReport Testequipment:Networkanalyzer Testmethod:Usea50ohmcabletoleadoutfromtheinstrumenttestport,calibrateitwitha calibrationpiece,thenconnectittotheSMAconnectorofthemobilephonedevice.Recordthe echolossorstandingwaveratiocorrespondingtorelevantfrequencypoints. ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 5 3ActiveTestReport TRP/TIS TestingTools:ComprehensiveTester,NetworkAnalyzer,Full-waveFar-fieldETS, FrenchMVGSG24LT(Satmio)near-field3Dmicrowaveanechoicchamber, high-precisionpositioningsystemanditscontroller,andacomputertest environmentwithautomatictestingprocedures:Temperature22°C±3°C, humidity60%±15%.TestingMethod:Thetestingmethodandcalculationsusing theESTorSatimo24LTsystemsoftwareTRParecarriedout.DuringTRPtesting, theDUT(DeviceUnderTest)isinitsmaximumtransmissionpowerstate.Three channels,high,medium,andlow,areselectedfortesting.Thepositionofthe DUTiscontrolledbythepositioningsystem,withastepsizeof15degrees, tomeasuretheeffectiveradiatedpower(EIRP)ateachpointinthree-dimensional space.Theaveragevalueonthesphericalsurfaceiscalculatedbyintegration, andtheformulaisasfollows: DuringtheTIStest,theDUTisinitsmaximumtransmissionpowerstate.Threechannels,high, medium,andlow,areselectedfortesting.BycontrollingthepositionoftheDUTandmeasuring thereceivedsensitivityateachpointinthree-dimensionalspacewithastepsizeof30degrees, theaveragevalueonthesphericalsurfaceiscalculatedthroughintegration.Thecalculation formulaisasfollows: ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 6 ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 7 2.Matchingcircuit ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 8 Mainantennaswitchlogic ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 9 Motherboard(upperantenna) 4.Antennareturnloss LowerantennaLOSS ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 10 upperantennaLOSS ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 11 GPStri-bandantennaLOSS ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 12 5.Gain ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 13 6.OTA 6.1AntennaOTA ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 14 ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 15 ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 16 ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 17 2NFCtesting ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 18 6.2GPStesting 7.1Antennaradiationpattern 7.2GPS/WIFI/BT ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 19 ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 20 7.3.2GSM/WCDMA/LTE ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 21 ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 22 ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 23 ShenzhenXinbinuoCommunicationTechnologyCo.,Ltd 24 8.EMCoptimization Asshowninthediagram: 1.Thebackpanelbasketisconnectedtothemiddleframewithconductivespongeandzincalloy grounding,ensuringthatthespongelengthdoesnotcovertheclearspaceofthemiddleframe …

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Contact Information

Applicant

Xiuying Zou
[email protected]Fax: 75532909320

Technical Contact

FCC US Agent, LLCTim Payne
[email protected]

3722 Illinois Avenue · Saint Charles, Illinois, 60174 · United States

Test Firm

SHENZHEN STS TEST SERVICES CO.,LTD.Bovey Yang
[email protected]

Technical Specifications

#Rule PartsFrequency RangePower Output
115E5.18 GHz - 5.24 GHz28.40 mW
215E5.75 GHz - 5.83 GHz23.60 mW
Confidentiality
Long Term
Grant Notes
Output power listed is conducted power. This device contains 20, 40 and 80 MHz signal bandwidth. SAR compliance for body-worn operating configurations is limited to the specific configurations tested for this filing. Body-worn operations are restricted to belt-clips, holsters or similar accessories that have no metallic component in the assembly and must provide at least 1.0 cm separation between the device and the body of the user. End-users must be informed of the body-worn operating requirements for satisfying RF exposure compliance. The highest reported SAR for head, body-worn accessory, product specific (wireless router), and simultaneous transmission use conditions is 0.27W/kg, 0.31W/kg, 0.31W/kg and 1.06W/kg respectively.

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