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Date: 2025/8/8 01_LTE Band 12_10M_QPSK_1RB_0Offset_Back_10mm_Ch23095 Communication System: LTE-FDD (SC-FDMA, 1 RB, 10 MHz, QPSK) RBPosition:Mid AntennaCfg:SISO; Frequency: 707.500 MHz; Duty Cycle: 1:1 Medium: Head Simulating Liquid Medium parameters used: f= 707.500 MHz; σ= 0.871 S/m; ε r = 44.0 Ambient Temperature: 23.5°C; Liquid Temperature: 22.3°C DASY6 Configuration: - Probe: EX3DV4 - SN7641; ConvF(10.53, 10.34, 10.38); Calibrated: 2025/6/26 - Sensor-Surface: 1.4 mm - Electronics: DAE4 Sn1386; Calibrated: 2024/8/30 - Phantom: Twin-SAM V5.0 (30deg probe tilt); Serial: 1670; Section: Flat - Measurement Software: 16.4.0.5005 - UID: LTE-FDD, 10175-CAH Area Scan (120.0 mm x 180.0 mm): Measurement Grid: 15.0 mm x 15.0 mm SAR (1g) = 0.320 W/kg; SAR (10g) = 0.228 W/kg; Zoom Scan (30.0 mm x 30.0 mm x 30.0 mm): Measurement Grid: 6.0 mm x 6.0 mm x 1.5 mm Power Drift = 0.01 dB SAR (1g) = 0.338 W/kg; SAR (10g) = 0.260 W/kg Smallest distance from peaks to all points 3 dB below = > 15.0 mm Ratio of SAR at M2 to SAR at M1 = 92.9 % Appendix BReport No. : FA562417 Page:1/15 Date: 2025/8/8 02_LTE Band 13_10M_QPSK_1RB_0Offset_Front_10mm_Ch23230 Communication System: LTE-FDD (SC-FDMA, 1 RB, 10 MHz, QPSK) RBPosition:Mid AntennaCfg:SISO; Frequency: 782.000 MHz; Duty Cycle: 1:1 Medium: Head Simulating Liquid Medium parameters used: f= 782.000 MHz; σ= 0.896 S/m; ε r = 43.8 Ambient Temperature: 23.5°C; Liquid Temperature: 22.3°C DASY6 Configuration: - Probe: EX3DV4 - SN7641; ConvF(10.53, 10.34, 10.38); Calibrated: 2025/6/26 - Sensor-Surface: 1.4 mm - Electronics: DAE4 Sn1386; Calibrated: 2024/8/30 - Phantom: Twin-SAM V5.0 (30deg probe tilt); Serial: 1670; Section: Flat - Measurement Software: 16.4.0.5005 - UID: LTE-FDD, 10175-CAH Area Scan (120.0 mm x 180.0 mm): Measurement Grid: 15.0 mm x 15.0 mm SAR (1g) = 0.476 W/kg; SAR (10g) = 0.336 W/kg; Zoom Scan (30.0 mm x 30.0 mm x 30.0 mm): Measurement Grid: 6.0 mm x 6.0 mm x 1.5 mm Power Drift = -0.02 dB SAR (1g) = 0.502 W/kg; SAR (10g) = 0.381 W/kg Smallest distance from peaks to all points 3 dB below = > 15.0 mm Ratio of SAR at M2 to SAR at M1 = 93.3 % Appendix BReport No. : FA562417 Page:2/15 Date: 2025/8/11 03_LTE Band 5_10M_QPSK_1RB_0Offset_Back_10mm_Ch20525 Communication System: LTE-FDD (SC-FDMA, 1 RB, 10 MHz, QPSK) RBPosition:Mid AntennaCfg:SISO; Frequency: 836.500 MHz; Duty Cycle: 1:1 Medium: Head Simulating Liquid Medium parameters used: f= 836.500 MHz; σ= 0.914 S/m; ε r = 43.6 Ambient Temperature: 23.5°C; Liquid Temperature: 22.8°C DASY6 Configuration: - Probe: EX3DV4 - SN7641; ConvF(10.23, 10.04, 10.08); Calibrated: 2025/6/26 - Sensor-Surface: 1.4 mm - Electronics: DAE4 Sn1386; Calibrated: 2024/8/30 - Phantom: Twin-SAM V5.0 (30deg probe tilt); Serial: 1670; Section: Flat - Measurement Software: 16.4.0.5005 - UID: LTE-FDD, 10175-CAH Area Scan (120.0 mm x 180.0 mm): Measurement Grid: 15.0 mm x 15.0 mm SAR (1g) = 0.445 W/kg; SAR (10g) = 0.309 W/kg; Zoom Scan (30.0 mm x 30.0 mm x 30.0 mm): Measurement Grid: 6.0 mm x 6.0 mm x 1.5 mm Power Drift = -0.08 dB SAR (1g) = 0.462 W/kg; SAR (10g) = 0.344 W/kg Smallest distance from peaks to all points 3 dB below = > 15.0 mm Ratio of SAR at M2 to SAR at M1 = 92.1 % Appendix BReport No. : FA562417 Page:3/15 Date: 2025/8/11 04_FR1 n5_25M_QPSK_1RB_1Offset_DFT-15_Back_10mm_Ch167300 Communication System: 5G NR (DFT-s-OFDM, 1 RB, 25 MHz, QPSK, 15 kHz) RBPosition:Mid AntennaCfg:SISO; Frequency: 836.500 MHz; Duty Cycle: 1:1 Medium: Head Simulating Liquid Medium parameters used: f= 836.500 MHz; σ= 0.919 S/m; ε r = 43.6 Ambient Temperature: 23.5°C; Liquid Temperature: 22.8°C DASY6 Configuration: - Probe: EX3DV4 - SN7641; ConvF(10.23, 10.04, 10.08); Calibrated: 2025/6/26 - Sensor-Surface: 1.4 mm - Electronics: DAE4 Sn1386; Calibrated: 2024/8/30 - Phantom: Twin-SAM V5.0 (30deg probe tilt); Serial: 1670; Section: Flat - Measurement Software: 16.4.0.5005 - UID: 5G NR FR1 FDD, 10931-AAC Area Scan (120.0 mm x 180.0 mm): Measurement Grid: 15.0 mm x 15.0 mm SAR (1g) = 0.410 W/kg; SAR (10g) = 0.287 W/kg; Zoom Scan (30.0 mm x 30.0 mm x 30.0 mm): Measurement Grid: 6.0 mm x 6.0 mm x 1.5 mm Power Drift = -0.02 dB SAR (1g) = 0.434 W/kg; SAR (10g) = 0.336 W/kg Smallest distance from peaks to all points 3 dB below = > 15.0 mm Ratio of SAR at M2 to SAR at M1 = 94.6 % Appendix BReport No. : FA562417 Page:4/15 Date: 2025/8/13 05_LTE Band 66_20M_QPSK_1RB_0Offset_Bottom Side_24mm_Ch132322 Communication System: LTE-FDD (SC-FDMA, 1 RB, 20 MHz, QPSK) RBPosition:Mid AntennaCfg:SISO; Frequency: 1745.000 MHz; Duty Cycle: 1:1 Medium: Head Simulating Liquid Medium parameters used: f= 1745.000 MHz; σ= 1.34 S/m; ε r = 41.9 Ambient Temperature: 23.5°C; Liquid Temperature: 22.4°C DASY6 Configuration: - Probe: EX3DV4 - SN7641; ConvF(8.61, 8.45, 8.49); Calibrated: 2025/6/26 - Sensor-Surface: 1.4 mm - Electronics: DAE4 Sn1386; Calibrated: 2024/8/30 - Phantom: Twin-SAM V5.0 (30deg probe tilt); Serial: 1670; Section: Flat - Measurement Software: 16.4.0.5005 - UID: LTE-FDD, 10169-CAF Area Scan (60.0 mm x 120.0 mm): Measurement Grid: 15.0 mm x 15.0 mm SAR (1g) = 0.458 W/kg; SAR (10g) = 0.275 W/kg; Zoom Scan (30.0 mm x 30.0 mm x 30.0 mm): Measurement Grid: 6.0 mm x 6.0 mm x 1.5 mm Power Drift = 0.06 dB SAR (1g) = 0.469 W/kg; SAR (10g) = 0.296 W/kg Smallest distance from peaks to all points 3 dB below = 17.8 mm Ratio of SAR at M2 to SAR at M1 = 89.1 % Appendix BReport No. : FA562417 Page:5/15 Date: 2025/8/13 06_FR1 n66_45M_QPSK_120RB_60Offset_DFT-15_Bottom Side_10mm_Ch349000 Communication System: 5G NR (DFT-s-OFDM, 1 RB, 45 MHz, QPSK, 15 kHz) RBPosition:Mid AntennaCfg:SISO; Frequency: 1745.000 MHz; Duty Cycle: 1:1 Medium: Head Simulating Liquid Medium parameters used: f= 1745.000 MHz; σ= 1.34 S/m; ε r = 41.9 Ambient Temperature: 23.5°C; Liquid Temperature: 22.4°C DASY6 Configuration: - Probe: EX3DV4 - SN7641; ConvF(8.61, 8.45, 8.49); Calibrated: 2025/6/26 - Sensor-Surface: 1.4 mm - Electronics: DAE4 Sn1386; Calibrated: 2024/8/30 - Phantom: Twin-SAM V5.0 (30deg probe til…
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Sporton International Inc. (ShenZhen) Page Number : 1 of 31 TEL : +86-755-8637-9589 Report Issued Date : Sep. 05, 2025 FAX : +86-755-8637-9595 Report Version : Rev. 01 FCC ID : 2ACCJSCD006 Report Template No.: BU5-FR15EWL AC MA Version 2.0 FCC RF Test Report Report No. : FR562417B FCC RF Test Report APPLICANT : TCL Communication Ltd. EQUIPMENT : TCL LINKZONE Go 5G BRAND NAME : TCL MODEL NAME : MW501UV FCC ID : 2ACCJSCD006 STANDARD : FCC Part 15 Subpart E §15.407 CLASSIFICATION : (NII) Unlicensed National Information Infrastructure TEST DATE(S) : Aug. 08, 2025 ~ Aug. 26, 2025 We, Sporton International Inc. (ShenZhen), would like to declare that the tested sample has been evaluated in accordance with the test procedures and has been in compliance with the applicable technical standards. The test results in this report apply exclusively to the tested model / sample. Without written approval of Sporton International Inc. (ShenZhen), the test report shall not be reproduced except in full. Approved by: Fly Liang Sporton International Inc. (ShenZhen) 1/F, 2/F, Bldg 5, Shiling Industrial Zone, Xinwei Village, Xili, Nanshan, Shenzhen, 518055 People’s Republic of China Sporton International Inc. (ShenZhen) Page Number : 2 of 31 TEL : +86-755-8637-9589 Report Issued Date : Sep. 05, 2025 FAX : +86-755-8637-9595 Report Version : Rev. 01 FCC ID : 2ACCJSCD006 Report Template No.: BU5-FR15EWL AC MA Version 2.0 FCC RF Test Report Report No. : FR562417B TABLE OF CONTENTS REVISION HISTORY .......................................................................................................................................... 3 SUMMARY OF TEST RESULT ......................................................................................................................... 4 1 GENERAL DESCRIPTION .......................................................................................................................... 5 1.1 Applicant ............................................................................................................................................ 5 1.2 Manufacturer ...................................................................................................................................... 5 1.3 Product Feature of Equipment Under Test ........................................................................................ 5 1.4 Product Specification of Equipment Under Test ................................................................................ 6 1.5 Modification of EUT ........................................................................................................................... 6 1.6 Testing Location ................................................................................................................................ 7 1.7 Test Software ..................................................................................................................................... 7 1.8 Applicable Standards ......................................................................................................................... 7 2 TEST CONFIGURATION OF EQUIPMENT UNDER TEST ........................................................................ 8 2.1 Carrier Frequency and Channel ........................................................................................................ 8 2.2 Test Mode .......................................................................................................................................... 9 2.3 Connection Diagram of Test System ............................................................................................... 10 2.4 Support Unit used in test configuration and system ........................................................................ 11 2.5 EUT Operation Test Setup .............................................................................................................. 11 2.6 Measurement Results Explanation Example ................................................................................... 11 3 TEST RESULT ........................................................................................................................................... 12 3.1 6dB and 26dB and 99% Occupied Bandwidth Measurement ......................................................... 12 3.2 Maximum Conducted Output Power Measurement ........................................................................ 17 3.3 Power Spectral Density Measurement ............................................................................................ 19 3.4 Unwanted Emissions Measurement ................................................................................................ 23 3.5 AC Conducted Emission Measurement........................................................................................... 27 3.6 Antenna Requirements .................................................................................................................... 29 4 LIST OF MEASURING EQUIPMENT ........................................................................................................ 30 5 MEASUREMENT UNCERTAINTY ............................................................................................................ 31 APPENDIX A. CONDUCTED TEST RESULTS APPENDIX B. AC CONDUCTED EMISSION TEST RESULT APPENDIX C. RADIATED SPURIOUS EMISSION APPENDIX D. DUTY CYCLE PLOTS APPENDIX E. SETUP PHOTOGRAPHS Sporton International Inc. (ShenZhen) Page Number : 3 of 31 TEL : +86-755-8637-9589 Report Issued Date : Sep. 05, 2025 FAX : +86-755-8637-9595 Report Version : Rev. 01 FCC ID : 2ACCJSCD006 Report Template No.: BU5-FR15EWL AC MA Version 2.0 FCC RF Test Report Report No. : FR562417B REVISION HISTORY REPORT NO. VERSION DESCRIPTION ISSUED DATE FR562417B Rev. 01 Initial issue of report Sep. 05, 2025 Sporton International Inc. (ShenZhen) Page Number : 4 of 31 TEL : +86-755-8637-9589 Report Issued Date : Sep. 05, 2025 FAX : +86-75…
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SPECIFICATION Antenna Manufacturer Name Zhejiang Haitong communications electronic Limited by Share Ltd. Address 1St floor, Phoenix Tower, 15 Science and Technology North First Road, Shenzhen, Guangdong Province. Test DATE 2025-7-24 DATASHEET REVISION Ant. Name ANT1、ANT2、ANT3、ANT5、ANT6、WIFI Ant. Type ANT1、ANT2、ANT3、ANT5:PIFA; ANT6、WIFI: MONOPOLE ____________ Test Engineer: Jay Description of Antenna Antenna Peak Gain: ANT1 Gain Band Average Gain(dBi) Maximum Gain(dBi) LTE-FDD B1 -3.01 2.33 LTE-FDD B2 -2.98 2.53 LTE-FDD B3 -2.75 2.53 LTE-FDD B4 -2.2 1.63 LTE-FDD B5 -2.8 3.45 LTE-FDD B12 -3.5 1.69 LTE-FDD B13 -3.1 2.52 LTE-FDD B20 -2.6 3.45 LTE-FDD B28 -3.3 2.52 LTE-FDD B66 -2.2 1.63 NR-FDD B2 -2.98 2.53 NR-FDD B5 -2.8 3.45 NR-FDD B66 -2.2 1.63 ANT2 Gain Band Average Gain(dBi) Maximum Gain(dBi) LTE-FDD B2 -3 2.39 LTE-FDD B4 -2.6 1.36 LTE-FDD B66 -2.6 1.36 NR-FDD B2 -3 2.39 NR-FDD B66 -2.6 1.36 ANT3 Gain Band Average Gain(dBi) Maximum Gain(dBi) LTE-FDD B7 -3.5 2.73 ANT5 Gain Band Average Gain(dBi) Maximum Gain(dBi) LTE-TDD B48 -3.5 1.22 NR-TDD N48 -3.5 1.22 NR-TDD N77 -3.7 0.2 NR-TDD N78 -3.8 1.39 n77 (Part27Q 3450-3550MHz) -3.5 1.32 n77 (Part27O 3700-3980MHz) -4.8 0.01 n78 (Part27Q 3450-3550MHz) -3.5 1.32 n78 (Part27O 3700-3800MHz) -4.8 0.01 ANT6 Gain Band Average Gain(dBi) Maximum Gain(dBi) NR-TDD N48 -4.5 0.23 NR-TDD N77 -4.6 -0.16 NR-TDD N78 -4.6 1.36 n77 (Part27Q 3450-3550MHz) -4.6 0.56 n77 (Part27O 3700-3980MHz) -4.7 -0.16 n78 (Part27Q 3450-3550MHz) -4.6 0.56 n78 (Part27O 3700-3800MHz) -4.7 -0.81 WIFI Gain Band Average Gain(dBi) Maximum Gain(dBi) 2.4G -3.9 2.6 5G-UNII-1(5150-5250MHz) -5.3 -1.42 5G-UNII-3(5720-5850MHz) -5.05 -0.68 Antenna Pattern: B2/n2 B1 B3 B4 B5/n5 B7 B12 B13 B20 B28 B48/n48 B66/n66 n77 n78 WIFI 2.4G WIFI 5G Test Environment, list of calibrated test equipment Test equipment: E5071C CMW500 E7515B Test equipment: GTS 2800 Last Calibration date: 2024/10/21 Next Calibration date: 2025/10/20
Sporton International Inc. (Shenzhen) Page : 1 of 63 TEL : +86-755-86379589 / FAX : +86-755-86379595 Issued Date : Sep. 10, 2025 FCC ID : 2ACCJSCD006 Report Template No. : 200414 FCC SAR Test Report Report No. : FA562417 FCC SAR Test Report APPLICANT : TCL Communication Ltd. EQUIPMENT : TCL LINKZONE Go 5G BRAND NAME : TCL MODEL NAME : MW501UV FCC ID : 2ACCJSCD006 STANDARD : FCC 47 CFR Part 2 (2.1093) We, Sporton International Inc. (Shenzhen), would like to declare that the tested sample has been evaluated in accordance with the test procedures given in 47 CFR Part 2.1093 and FCC KDB and has been in compliance with the applicable technical standards. The test results in this report apply exclusively to the tested model / sample. Without written approval of Sporton International Inc. (Shenzhen), the test report shall not be reproduced except in full. Approved by: Hank Huang Sporton International Inc. (Shenzhen) 1/F, 2/F, Bldg 5, Shiling Industrial Zone, Xinwei Village, Xili, Nanshan, Shenzhen, 518055 People’s Republic of China Sporton International Inc. (Shenzhen) Page : 2 of 63 TEL : +86-755-86379589 / FAX : +86-755-86379595 Issued Date : Sep. 10, 2025 FCC ID : 2ACCJSCD006 Report Template No. : 200414 FCC SAR Test Report Report No. : FA562417 Table of Contents 1. Statement of Compliance ............................................................................................................................................. 4 2. Administration Data ...................................................................................................................................................... 5 3. Guidance Applied .......................................................................................................................................................... 5 4. Equipment Under Test (EUT) Information ................................................................................................................... 6 4.1 General Information ............................................................................................................................................... 6 4.2 General LTE SAR Test and Reporting Considerations ........................................................................................... 8 4.3 General 5G NR SAR Test and Reporting Considerations ..................................................................................... 11 5. Proximity Sensor Triggering Test ...............................................................................................................................14 6. RF Exposure Limits......................................................................................................................................................15 6.1 Uncontrolled Environment .....................................................................................................................................15 6.2 Controlled Environment .........................................................................................................................................15 7. Specific Absorption Rate (SAR) ..................................................................................................................................16 7.1 Introduction ...........................................................................................................................................................16 7.2 SAR Definition .......................................................................................................................................................16 8. System Description and Setup ...................................................................................................................................17 8.1 E-Field Probe ........................................................................................................................................................18 8.2 Data Acquisition Electronics (DAE) .......................................................................................................................18 8.3 Phantom ................................................................................................................................................................19 8.4 Device Holder........................................................................................................................................................20 9. Measurement Procedures ...........................................................................................................................................21 9.1 Spatial Peak SAR Evaluation ................................................................................................................................21 9.2 Power Reference Measurement............................................................................................................................22 9.3 Area Scan .............................................................................................................................................................22 9.4 Zoom Scan ............................................................................................................................................................23 9.5 Volume Scan Procedures ......................................................................................................................................23 9.6 Power Drift Monitoring ...........................................................................................................................................23 10. Test Equipment List ...................................................................................................................................................24 11. System Verification ....................................................................................................................................................25 11.1 Tissue Simulatin…
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Power reduction mechanism verification According to the May 2017 TCBC Workshop, Demonstration of proper functioning of the detection and triggering mechanisms is required to support the corresponding RF exposure conditions. The verification is through a base station simulator is used to establish a conducted RF connection and monitor output power under different operating conditions related to the power reduction mechanisms. Detail of power reduction mechanisms referring to Operational Description 1. Power Verification Procedure The power verification was performed according to the following procedure: 1. A base station simulator was used to establish a conducted RF connection and the output power was monitored. The power measurements were confirmed to be within expected tolerances for all states before and after a power reduction mechanism was triggered. 2. Step 1 was repeated for all relevant modes and frequency bands for the mechanism being investigated. 3. Steps 1 and 2 were repeated for all individual power reduction mechanisms and combinations thereof. For the combination cases, one mechanism was switched to a 'triggered' state at a time; powers were confirmed to be within tolerances after each additional mechanism was activated. General Note: 1. This device uses Proximity sensors detect mechanism to configure different time averaged power levels based on certain exposure scenarios. sensor on and receiver off represents the case when Body exposure condition. 2. Select the bands with the largest power reduction for power verification: a. Establish data connection monitor body worn power state. LTE Band 2/48 is set at ‘highest BW, 1RB, RB Offset = 0, 5G FR1 n77 is set at highest BW, 1RB, RB offset = 1. Body Detect mechanism was performed for the in-hand and on a stationary object (placed on a table) 3. In this power validation purpose is to demonstrate of proper functioning of the detection and triggering mechanisms to support the corresponding RF exposure conditions. 4. Verification performed for one technology/Band to demonstrate that the power reduction applies for same technology/band and call origination. 2. Verification output Power Results Body exposure condition Sensor output Status: OFF ON Wireless technology Antenna Measured (dBm) Max. Tune-up (dBm) Measured (dBm) Max. Tune-up (dBm) LTE Band 2 Ant 1 23.16 24.00 18.11 19.00 LTE Band 48 Ant 5 21.02 21.50 18.23 19.00 n77 Ant 5 26.11 27.00 21.06 21.50 Appendix GReport No. : FA562417 Page:1/1
Power measurement connection diagram: The power measurement for 2G/3G/LTE/5G FR1/UL and DL CA is to establish a connection between device and call box, and via call box to configure Bands, channel, BWs, RB size, carrier aggregation of CA, frequency channels, SCS and maximum output power. Hereunder is screenshot call box connection information for 2G/3G/LTE/5G FR1/UL and DL CA. <LTE> Appendix FReport No. : FA562417 Page: 1/10 <LTE TDD Power class 3> Appendix FReport No. : FA562417 Page: 2/10 <5GNR FR1> Appendix FReport No. : FA562417 Page: 3/10 Appendix FReport No. : FA562417 Page: 4/10 LTE Uplink and Downlink Carrier Aggregation configurations: 1. Change the Scenario in the Configuration of Phone1 LTE Signaling and Preset. 2. If Select “RMC (DL/UL CA)” for Uplink Carrier Aggregation; If Select “RMC (DL CA)” for Downlink Carrier Aggregation. For example, Uplink Carrier Aggregation: Detailed operation: PCC Common Signal Channel Coding Select【RMC (DL/UL CA)】 Appendix FReport No. : FA562417 Page: 5/10 3. PCC parameter Settings: on the screen, and then select the PCC tab and Set operating band, BW, channel and RB configurations for PCC; RB configurations (Number of RB / Starting RB) for PCC; Appendix FReport No. : FA562417 Page: 6/10 4. SCC parameter Settings: Select the SCC1 tab, Set operating band, BW, channel, and RB configurations for SCC1; RB configurations (Number of RB / Starting RB) for SCC1; Appendix FReport No. : FA562417 Page: 7/10 5. Select the PCC tab, then set “SIM Model Number” and select max power; 6. Click the “Connect” button at the Right of the screen, if necessary, turn the Airplane mode on/off in the DUT 7. The inter-band ULCA test method is similar to intra-band ULCA, and DLCA test method is similar to intra-band ULCA too. Appendix FReport No. : FA562417 Page: 8/10 RB SizeRB offsetRB SizeRB offsetRB SizeRB offsetRB SizeRB offset 2045020549QPSK10001 0 Full22.8524.00132047132140QPSK10001 0 Full22.8724.00 2057520476QPSK10001 0 Full22.9124.00132322132415QPSK10001 0 Full22.6524.00 2060020501QPSK10001 0 Full22.7224.00132597132504QPSK10001 0 Full22.8124.00 2045020549QPSK10001 0 Sensor on20.9222.00132047132140QPSK10001 0 Sensor on17.7819.00 2057520476QPSK10001 0 Sensor on20.8822.00132322132415QPSK10001 0 Sensor on17.8919.00 2060020501QPSK10001 0 Sensor on20.7522.00132597132504QPSK10001 0 Sensor on17.6719.00 Uplink CA Power CA_66B_Ant 1 Combination 15MHz+5MHz (75RB+25RB) PCC Channel SCC Channel Modulation PCCSCC Total RB Size Target MPR Level (dB) Measured Power (dBm) Tune up Power (dBm) CA_5B_Ant 1 Combination 10MHz+10MHz (50RB+50RB) PCC Channel SCC Channel Modulation PCCSCC Total RB Size Target MPR Level (dB) Measured Power (dBm) Tune up Power (dBm) Power Reduction Power Reduction Appendix FReport No. : FA562417 Page: 9/10 RB SizeRB offsetRB SizeRB offsetRB SizeRB offsetRB SizeRB offset 132072132270QPSK10001 0 Full22.8224.005534055538QPSK10001 0 Full20.3721.50 132322132520QPSK10001 0 Full23.1524.005583056028QPSK10001 0 Full20.8821.50 132572132374QPSK10001 0 Full22.7024.005615056348QPSK10001 0 Full20.9221.50 132072132270QPSK10001 0 Sensor on17.8819.005664056442QPSK10001 0 Full 21.02 21.50 132322132520QPSK10001 0 Sensor on17.9219.005534055538QPSK10001 0 Sensor on17.5519.00 132572132374QPSK10001 0 Sensor on17.7319.005583056028QPSK10001 0 Sensor on17.9819.00 5615056348QPSK10001 0 Sensor on18.0119.00 5664056442QPSK10001 0 Sensor on 18.13 19.00 CA_48C For FCC_Ant 5 Combination 20MHz+20MHz (100RB+100RB) PCC Channel SCC Channel Modulation PCCSCC Total RB Size Target MPR Level (dB) Measured Power (dBm) Tune up Power (dBm) Power Reduction CA_66C_Ant 1 Combination 20MHz+20MHz (100RB+100RB) PCC Channel PCCSCC Modulation SCC Channel Power Reduction Tune up Power (dBm) Measured Power (dBm) Total RB Size Target MPR Level (dB) Appendix FReport No. : FA562417 Page: 10/10
BW [MHz] Modulation RB Size RB Offset Power Low Ch. / Freq. Power Middle Ch. / Freq. Power High Ch. / Freq. BW [MHz] Modulation RB Size RB Offset Power Low Ch. / Freq. Power Middle Ch. / Freq. Power High Ch. / Freq. BW [MHz] Modulation RB Size RB Offset Power Low Ch. / Freq. Power Middle Ch. / Freq. Power High Ch. / Freq. BW [MHz] Modulation RB Size RB Offset Power Low Ch. / Freq. Power Middle Ch. / Freq. Power High Ch. / Freq. 187001890019100187001890019100200502017520300200502017520300 18601880190018601880190017201732.5174517201732.51745 20QPSK1023.1223.1523.1020QPSK1022.8822.9222.8720QPSK1023.2523.3023.2320QPSK1023.0323.0523.01 20QPSK14922.9723.1023.0720QPSK14922.8722.8222.8020QPSK14923.1523.2123.2120QPSK14922.9222.9122.89 20QPSK19922.9523.0822.9320QPSK19922.7722.7822.7820QPSK19923.1923.1523.2220QPSK19922.9122.9622.92 20QPSK50022.1322.1522.1020QPSK50021.8721.8921.8520QPSK50022.2722.2822.2520QPSK50022.0322.0522.01 20QPSK502422.0122.1021.9620QPSK502421.7521.7921.7520QPSK502422.1922.2422.2420QPSK502422.0222.0421.96 20QPSK505021.9922.1022.0220QPSK505021.7721.7421.7520QPSK505022.2222.1922.2420QPSK505022.0122.0221.87 20QPSK100022.1122.1322.1020QPSK100021.8521.8721.8320QPSK100022.2522.2622.2320QPSK100022.0122.0322.00 2016QAM1022.1222.2322.182016QAM1021.7621.7821.682016QAM1022.2022.1422.172016QAM1021.9321.9421.93 2016QAM14922.3022.3822.232016QAM14921.8021.7721.712016QAM14922.1122.2322.202016QAM14921.9422.0021.88 2016QAM19922.1822.3322.312016QAM19921.7121.7421.812016QAM19922.1522.1722.092016QAM19922.0021.9921.88 2016QAM50021.0721.0820.932016QAM50020.8220.8620.752016QAM50021.1321.2121.202016QAM50020.9820.9920.85 2016QAM502421.0621.0921.032016QAM502420.8120.7520.692016QAM502421.2121.1421.092016QAM502420.9220.8820.97 2016QAM505020.9821.0821.052016QAM505020.7020.8420.692016QAM505021.1721.2021.102016QAM505020.9421.0020.90 2016QAM100021.0021.0920.952016QAM100020.7520.7420.802016QAM100021.2021.2021.172016QAM100020.9420.9320.86 2064QAM1021.1121.1821.172064QAM1020.7720.7720.692064QAM1021.2321.1521.082064QAM1020.9520.9820.90 2064QAM14921.2621.3021.262064QAM14920.8320.8320.752064QAM14921.2021.1521.102064QAM14920.9221.0220.98 2064QAM19921.0921.2421.122064QAM19920.8420.7320.752064QAM19921.1621.1721.192064QAM19920.9620.9920.93 2064QAM50019.9820.0720.022064QAM50019.8019.7719.762064QAM50020.1020.2220.212064QAM50019.9219.9219.98 2064QAM502420.0420.1120.002064QAM502419.7519.8019.712064QAM502420.1720.2120.192064QAM502419.8619.9219.87 2064QAM505020.0320.0819.932064QAM505019.7119.8419.822064QAM505020.2420.2120.172064QAM505019.9519.8919.91 2064QAM100019.9520.0820.062064QAM100019.8119.7319.792064QAM100020.1620.2320.172064QAM100019.9419.9919.92 20256QAM1018.0118.1118.0120256QAM1017.8317.8617.8020256QAM1018.1418.2118.0920256QAM1017.9517.9517.93 20256QAM14918.1118.2018.1120256QAM14917.8017.7917.6920256QAM14918.1418.1618.1820256QAM14917.9917.9617.85 20256QAM19918.1618.1818.1220256QAM19917.8317.8317.7620256QAM19918.1918.2118.1520256QAM19917.8718.0117.99 20256QAM50017.9818.0517.9820256QAM50017.7917.8317.7520256QAM50018.2218.2018.1720256QAM50017.9917.8817.90 20256QAM502417.9118.0618.0120256QAM502417.7317.8417.8020256QAM502418.1718.2518.1420256QAM502417.9617.9517.98 20256QAM505017.9518.0518.0020256QAM505017.7717.7617.7320256QAM505018.2118.1618.1420256QAM505017.8617.9217.97 20256QAM100017.9218.0617.9720256QAM100017.8217.7917.7020256QAM100018.2018.1218.0820256QAM100017.8917.9817.97 186751890019125186751890019125200252017520325200252017520325 1857.518801902.51857.518801902.51717.51732.51747.51717.51732.51747.5 15QPSK1023.0023.1423.0515QPSK1022.8422.8222.8315QPSK1023.1323.2123.0815QPSK1022.8823.0022.87 15QPSK13722.9523.0023.0615QPSK13722.8622.7322.7115QPSK13723.0223.1423.1115QPSK13722.8222.…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15E | 5.18 GHz - 5.24 GHz | 61.20 mW |
| 2 | 15E | 5.75 GHz - 5.83 GHz | 60.70 mW |