Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Channel 167300 (836.5 MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) Conducted Power [dBm] 1121.450.0 14021.420.0 17721.520.0 36021.510.0 362221.5400.0 364321.570.0 75021.540.0 1121.530.0 CP-OFDM QPSK 1121.520-1.50.0 Channel 167300 (836.5 MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) Conducted Power [dBm] 1121.940.0 12622.040.0 15022.070.0 25022.010.0 251422.0300.0 252722.010.0 50022.010.0 1121.920.0 CP-OFDM QPSK 1122.100-1.50.0 Channel 165300 (826.5 MHz) 167300 (836.5 MHz) 169300 (846.5 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) Conducted Power [dBm] 1121.8121.5721.590.0 11321.6021.5021.520.0 12321.8221.5121.530.0 12021.7121.5921.530.0 12721.6221.5921.5900.0 121321.7521.5521.540.0 25021.7021.5821.510.0 1121.5921.7121.660.0 CP-OFDM QPSK 1121.4921.6321.600-1.50.0 NR Band n5 Antenna A DFT-s-OFDM QPSK 0 0-1 0-1 DFT-s-OFDM 16QAM 0-1 NR Band n5 Antenna A Measured Plimit for RSI = 0 (Body-worn, Hotspot, or Phablet) - 15 MHz Bandwidth NR Band n5 15 MHz Bandwidth MPR Allowed per 3GPP [dB] MPR [dB] ModulationRB SizeRB Offset DFT-s-OFDM QPSK 0 0-1 0-1 DFT-s-OFDM 16QAM 0-1 NR Band n5 Antenna A Measured Plimit for RSI = 0 (Body-worn, Hotspot, or Phablet) - 10 MHz Bandwidth NR Band n5 10 MHz Bandwidth MPR Allowed per 3GPP [dB] MPR [dB] ModulationRB SizeRB Offset DFT-s-OFDM QPSK 0 0-1 0-1 DFT-s-OFDM 16QAM 0-1 NR Band n5 Antenna A Measured Plimit for RSI = 0 (Body-worn, Hotspot, or Phablet) - 5 MHz Bandwidth NR Band n5 5 MHz Bandwidth MPR Allowed per 3GPP [dB] MPR [dB] ModulationRB SizeRB Offset H33 Channel 167300 (836.5 MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) Conducted Power [dBm] 1124.330.0 14024.340.0 17724.420.0 36023.361.0 362224.4100.0 364323.411.0 75023.371.0 1123.311.0 CP-OFDM QPSK 1122.760-1.51.5 Channel 167300 (836.5 MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) Conducted Power [dBm] 1124.500.0 12624.430.0 15024.630.0 25023.491.0 251424.5800.0 252723.471.0 50023.451.0 1123.491.0 CP-OFDM QPSK 1122.920-1.51.5 Channel 165300 (826.5 MHz) 167300 (836.5 MHz) 169300 (846.5 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) Conducted Power [dBm] 1124.3024.2724.210.0 11324.3524.3924.240.0 12324.4024.2624.350.0 12023.3323.2723.331.0 12724.3024.2324.3300.0 121323.3423.2223.311.0 25023.2723.2023.291.0 1123.4323.2623.221.0 CP-OFDM QPSK 1122.8022.7122.470-1.51.5 DFT-s-OFDM QPSK 0 0-1 0-1 DFT-s-OFDM 16QAM 0-1 NR Band n5 Antenna A Measured Pmax for RSI = 1 (Head) - 15 MHz Bandwidth NR Band n5 15 MHz Bandwidth MPR Allowed per 3GPP [dB] MPR [dB] ModulationRB SizeRB Offset DFT-s-OFDM QPSK 0 0-1 0-1 DFT-s-OFDM 16QAM 0-1 NR Band n5 Antenna A Measured Pmax for RSI = 1 (Head) - 10 MHz Bandwidth NR Band n5 10 MHz Bandwidth MPR Allowed per 3GPP [dB] MPR [dB] ModulationRB SizeRB Offset DFT-s-OFDM QPSK 0 0-1 0-1 DFT-s-OFDM 16QAM 0-1 NR Band n5 Antenna A Measured Pmax for RSI = 1 (Head) - 5 MHz Bandwidth NR Band n5 5 MHz Bandwidth MPR Allowed per 3GPP [dB] MPR [dB] ModulationRB SizeRB Offset H34 Channel 167300 (836.5 MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) Conducted Power [dBm] 1118.680.0 14018.630.0 17718.580.0 36018.630.0 362218.5200.0 364318.450.0 75018.550.0 1118.750.0 CP-OFDM QPSK 1118.750-1.50.0 Channel 167300 (836.5 MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) Conducted Power [dBm] 1118.650.0 12618.560.0 15018.430.0 25018.590.0 251418.5200.0 252718.470.0 50018.540.0 1118.630.0 CP-OFDM QPSK 1118.700-1.50.0 Channel 165300 (826.5 MHz) 167300 (836.5 MHz) 169300 (846.5 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) 0 (0 MHz) Conducted Power [dBm] 1118.7218.5918.400.0 11318.6918.4518.260.0 12318.7418.4918.320.0 12018.7718.5518.350.0 12718.7518.5218.3300.0 121318.7518.4918.300.0 1118.8518.6218.410.0 CP-OFDM QPSK 1118.8018.5918.400-1.50.0 NR Band n5 Antenna E DFT-s-OFDM QPSK 0 0-1 0-1 DFT-s-OFDM 16QAM 0-1 NR Band n5 Antenna E Measured Plimit, nom for RSI = 0 (Body-worn, Hotspot, or Phablet), RSI = 1 (Head) - 15 MHz Bandwidth NR Band n5 15 MHz Bandwidth MPR Allowed per 3GPP [dB] MPR [dB] ModulationRB SizeRB Offset DFT-s-OFDM QPSK 0 0-1 0-1 DFT-s-OFDM 16QAM 0-1 NR Band n5 Antenna E Measured Plimit, nom for RSI = 0 (Body-worn, Hotspot, or Phablet), RSI = 1 (Head) - 10 MHz Bandwidth NR Band n5 10 MHz Bandwidth MPR Allowed per 3GPP [dB] MPR [dB] ModulationRB SizeRB Offset DFT-s-OFDM QPSK 0 0-1 0-1 DFT-s-OFDM 16QAM 0-1 NR Band n5 Antenna E Measured Plimit, nom for RSI = 0 (Body-worn, Hotspot, or Phablet), RSI = 1 (Head) - 5 MHz Bandwidth NR Band n5 5 MHz Bandwidth MPR Allowed per 3GPP [dB] MPR [dB] ModulationRB SizeRB Offset H35 Channel 508200 (2541 MHz) 528996 (2644.98 MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) Conducted Power [dBm] 1117.8717.280.0 112317.7616.930.0 124317.4817.350.0 120017.8616.990.0 1206317.7116.8400.0 12012517.5017.220.0 243017.5517.010.0 1117.8817.380.0 CP-OFDM QPSK 1117.7817.330-1.50.0 Channel 507204 (2536.02 MHz) 529998 (2649.99 MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) Not Supported (Not Supported MHz) Conducted Power [dβ¦
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A P P E N D I X B : S A R D I P O L E V E R I F I C A T I O N P L O T S B1 ELEMENT DUT: Dipole 13.000 MHz; Type: CLA-13 - SN1002 Communication System: UID: 0, CW; Frequency: 13.000 MHz Medium: Head; Medium parameters used: f = 13.000 MHz; cond = 0.780 S/m; perm = 52.6; density = 1000 kg/m3 Phantom Section: Flat; Space: 0 mm Test Date: 01/15/2026; Ambient Temp: 21.1Β°C; Tissue Temp: 20.7Β°C Probe: EX3DV4 - SN7527; ConvF:(15.54,13.79,16.87); Calibrated: 2025-10-14 Sensor-Surface: 1.4mm (VMS + 6p) Electronics: DAE4 Sn1415; Calibrated: 2025-03-11 Phantom: ELI V8.0; Serial: 2077 Measurement SW: DASY Module SAR V16.4.0.5005 13.0 MHz System Verification at 30.0 dBm (1000 mW) Area Scan (40.0 x 90.0): Measurement grid: dx=10.0 mm, dy=15.0 mm Zoom Scan (30.0 x 30.0 x 31.2): Measurement grid: dx=6.0 mm, dy=6.0 mm, dz=1.5 mm; Graded Ratio: 1.5 Peak SAR (extrapolated) = 1.11 W/kg SAR(1 g) = 0.54 W/kg; SAR(10 g) = 0.33 W/kg Deviation (1 g) = 6.56%; Deviation (10 g) = 5.38% B2 ELEMENT DUT: Dipole 750.000 MHz; Type: D750V3 - SN1054 Communication System: UID: 0, CW; Frequency: 750.000 MHz Medium: Head Simulating Liquid; Medium parameters used: f = 750.000 MHz; cond = 0.872 S/m; perm = 40.0; density = 1000 kg/m3 Phantom Section: Flat; Space: 15 mm Test Date: 12/15/2025; Ambient Temp: 20.5Β°C; Tissue Temp: 21.6Β°C Probe: EX3DV4 - SN7660; ConvF:(10.32,9.82,10.66); Calibrated: 2025-05-09 Sensor-Surface: 1.4mm (VMS + 6p) Electronics: DAE4 Sn1678; Calibrated: 2025-05-09 Phantom: Twin-SAM V8.0; Serial: 2056 Measurement SW: DASY Module SAR V16.4.0.5005 750.0 MHz System Verification at 23.0 dBm (200 mW) Area Scan (40.0 x 90.0): Measurement grid: dx=10.0 mm, dy=15.0 mm Zoom Scan (30.0 x 30.0 x 31.2): Measurement grid: dx=6.0 mm, dy=6.0 mm, dz=1.5 mm; Graded Ratio: 1.5 Peak SAR (extrapolated) = 2.52 W/kg SAR(1 g) = 1.67 W/kg; SAR(10 g) = 1.11 W/kg Deviation (1 g) = -3.80%; Deviation (10 g) = -1.07% B3 ELEMENT DUT: Dipole 835.000 MHz; Type: D835V2 - SN4d132 Communication System: UID: 0, CW; Frequency: 835.000 MHz Medium: Head Simulating Liquid; Medium parameters used: f = 835.000 MHz; cond = 0.897 S/m; perm = 39.8; density = 1000 kg/m3 Phantom Section: Flat; Space: 15 mm Test Date: 12/15/2025; Ambient Temp: 20.5Β°C; Tissue Temp: 21.6Β°C Probe: EX3DV4 - SN7660; ConvF:(9.77,9.3,10.09); Calibrated: 2025-05-09 Sensor-Surface: 1.4mm (VMS + 6p) Electronics: DAE4 Sn1678; Calibrated: 2025-05-09 Phantom: Twin-SAM V8.0; Serial: 2056 Measurement SW: DASY Module SAR V16.4.0.5005 835.0 MHz System Verification at 23.0 dBm (200 mW) Area Scan (40.0 x 90.0): Measurement grid: dx=10.0 mm, dy=15.0 mm Zoom Scan (30.0 x 30.0 x 31.2): Measurement grid: dx=6.0 mm, dy=6.0 mm, dz=1.5 mm; Graded Ratio: 1.5 Peak SAR (extrapolated) = 3.14 W/kg SAR(1 g) = 2.07 W/kg; SAR(10 g) = 1.37 W/kg Deviation (1 g) = 5.18%; Deviation (10 g) = 7.03% B4 ELEMENT DUT: Dipole 835.000 MHz; Type: D835V2 - SN4d119 Communication System: UID: 0, CW; Frequency: 835.000 MHz Medium: Head Simulating Liquid; Medium parameters used: f = 835.000 MHz; cond = 0.898 S/m; perm = 42.3; density = 1000 kg/m3 Phantom Section: Flat; Space: 15 mm Test Date: 01/05/2026; Ambient Temp: 23.0Β°C; Tissue Temp: 22.6Β°C Probe: EX3DV4 - SN7637; ConvF:(9.54,9.79,10.07); Calibrated: 2025-06-12 Sensor-Surface: 1.4mm (VMS + 6p) Electronics: DAE4 Sn1652; Calibrated: 2025-06-04 Phantom: Twin-SAM V5.0; Serial: 1797 Measurement SW: DASY Module SAR V16.4.0.5005 835.0 MHz System Verification at 23.0 dBm (200 mW) Area Scan (40.0 x 90.0): Measurement grid: dx=10.0 mm, dy=15.0 mm Zoom Scan (30.0 x 30.0 x 31.2): Measurement grid: dx=6.0 mm, dy=6.0 mm, dz=1.5 mm; Graded Ratio: 1.5 Peak SAR (extrapolated) = 2.92 W/kg SAR(1 g) = 1.94 W/kg; SAR(10 g) = 1.27 W/kg Deviation (1 g) = 2.43%; Deviation (10 g) = 3.59% B5 ELEMENT DUT: Dipole 835.000 MHz; Type: D835V2 - SN4d180 Communication System: UID: 0, CW; Frequency: 835.000 MHz Medium: Head Simulating Liquid; Medium parameters used: f = 835.000 MHz; cond = 0.907 S/m; perm = 42.8; density = 1000 kg/m3 Phantom Section: Flat; Space: 15 mm Test Date: 01/07/2026; Ambient Temp: 21.8Β°C; Tissue Temp: 22.8Β°C Probe: EX3DV4 - SN7637; ConvF:(9.54,9.79,10.07); Calibrated: 2025-06-12 Sensor-Surface: 1.4mm (VMS + 6p) Electronics: DAE4 Sn1652; Calibrated: 2025-06-04 Phantom: Twin-SAM V5.0; Serial: 1797 Measurement SW: DASY Module SAR V16.4.0.5005 835.0 MHz System Verification at 23.0 dBm (200 mW) Area Scan (40.0 x 90.0): Measurement grid: dx=10.0 mm, dy=15.0 mm Zoom Scan (30.0 x 30.0 x 31.2): Measurement grid: dx=6.0 mm, dy=6.0 mm, dz=1.5 mm; Graded Ratio: 1.5 Peak SAR (extrapolated) = 2.88 W/kg SAR(1 g) = 1.96 W/kg; SAR(10 g) = 1.30 W/kg Deviation (1 g) = 3.05%; Deviation (10 g) = 5.35% B6 ELEMENT DUT: Dipole 835.000 MHz; Type: D835V2 - SN4d133 Communication System: UID: 0, CW; Frequency: 835.000 MHz Medium: Head Simulating Liquid; Medium parameters used: f = 835.000 MHz; cond = 0.920 S/m; perm = 41.5; density = 1000 kg/m3 Phantom Section: Flat; Space: 15 mm Test Date: 01/19/2026; Ambient Temp: 20.5Β°C; Tissue Temp: 21.4Β°C Probe: EX3DV4 - SN7718; ConvF:(9.17,9.15,9.46); Calibrated: 2025-04-08 Sensor-Surface: 1.4mm (VMS + 6p) Electronics: DAE4 Sn1407; Calibrated: 2025-04-07 Phantom: Twin-SAM V8.0; Serial: 2060 Measurement SW: DASY Module SAR V16.4.0.5005 835.0 MHz System Verification at 23.0 dBm (200 mW) Area Scan (40.0 x 90.0): Measurement grid: dx=10.0 mm, dy=15.0 mm Zoom Scan (30.0 x 30.0 x 31.2): Measurement grid: dx=6.0 mm, dy=6.0 mm, dz=1.5 mm; Graded Ratio: 1.5 Peak SAR (extrapolated) = 2.97 W/kg SAR(1 g) = 2.06 W/kg; SAR(10 g) = 1.38 W/kg Deviation (1 g) = 3.62%; Deviation (10 g) = 6.32% B7 ELEMENT DUT: Dipole 835.000 MHz; Type: D835V2 - SN4d180 Communication System: UID: 0, CW; Frequency: 835.000 MHz Medium: Head Simulating Liquid; Medium parameters used: f = 835.000 MHz; cond = 0.902 S/m; perm = 41.9; density = 1000 kg/m3 Phantom Section: Flat; Space: 15 mm Test Date: 01/19/2026; Ambient Temp: 21.2Β°C; Tissue Temp: 22.6Β°C Probe: EX3DV4 - SN7637; ConvF:(9.54,9.79,10.07); Calibraβ¦
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A P P E N D I X C : P R O B E A N D D I P O L E C A L I B R A T I O N C E R T I F I C A T E S SRS 02/05/25 Object: Date Issued: Page 1 of 3 D835V2 β SN: 4d132 01/17/2025 Certification of Calibration Object D835V2 β SN: 4d132 Calibration procedure(s) Procedure for Calibration Extension for SAR Dipoles. Extension Calibration date: 01/17/2025 Description: SAR Validation Dipole at 835 MHz. Calibration Equipment used: Measurement Uncertainty = Β±23% (k=2) Name Function Signature Calibrated By: Tho Tong Test Engineer Approved By: Greg Snyder Executive VP of Operations, Regulatory Manufacturer Model Description Cal Date Cal Interval Ca l Due Serial Number Agilent N5182A MXG Vector Signal Generator 3/ 7/2024Annual 3/7/2025MY47420603 Amplifier Research 15S1G6 Amplifier CBTN/A CBT343971 Anritsu MA24106A USB Power Sensor 3/14/2024Annual 3/14/20251349513 Control Company 4040Digital Thermometer3/27/2023Biennial 3/27/2025230208311 Control Company 4052Long Stem Thermometer 2/27/2024Annual 2/ 27/2025 240171059 MCL BW-N6W5+ 6dB Attenuator CBTN/A C BT1139 Mini-Circuits BW-N20W5+ DC to 18 GHz Precision Fixed 20 dB Attenuator CBTN/A CBTN/A Mini-Circuits NLP-1200+ Low Pass Fi l te r DC to 1000 MHz CBTN/A CBTN/A Narda 4772-3 Attenuator (3dB) CBTN/A CBT9406 Huber + Suhner74Z-0-0-21Torque Wrench 10/17/2023Biennial 10/17/202516476 Mini-CircuitsZHDC-16-63-S+Coupler CBTN/A CBTN/A Rohde & Schwarz ZNLE6Vector Network Analyzer 3/8/2024Annual 3/8/20251204153 SPEAG DAK-3.5 Dielectric Assessment Kit 10/15/2024Annual 10/15/20251091 Keysight Technologies85033EStandard Mechanical Calibration Kit (DC to 9GHz, 3.5mm)2/12/2024Annual2/12/2025MY53401181 SPEAGEX3DV 4SAR Probe6/17/2024Annual6/17/20257409 SPEAG DAE4 Dasy Data Acquisition Electronics 6/11/2024Annual6/11/20251334 ELEMENT MATERIALS TECHNOLOGY (formerly PCTEST) 7185 Oakland Mills Road, Columbia, MD 21046 USA Tel. +1.410.290.6652 / Fax +1.410.290.6654 http://www.element.com Object: Date Issued: Page 2 of 3 D835V2 β SN: 4d132 01/17/2025 DIPOLE CALIBRATION EXTENSION Per KDB 865664 D01, calibration intervals of up to three years may be considered for reference dipoles when it is demonstrated that the SAR target, impedance and return loss of a dipole have remained stable according to the following requirements: 1. The measured SAR does not deviate more than 10% from the target on the calibration certificate. 2. The return-loss does not deviate more than 20% from the previous measurement and meets the required 20dB minimum return-loss requirement. 3. The measurement of real or imaginary parts of impedance does not deviate more than 5Ξ© from the previous measurement. The following dipole was checked to pass the above 3 requirements to have 2-year calibration period from the calibration date: Calibration Date Extension Date Certificate Electrical Delay (ns) Certificate SAR Target Head (1g) W/kg @ 23.0 dBm Measured Head SAR (1g) W/kg @ 23.0 dBm Deviation 1g (%) Certificate SAR Target Head (10g) W/kg @ 23.0 dBm Measured Head SAR (10g) W/kg @ 23.0 dBm Deviation 10g (%) Certificate Impedance Head (Ohm) Real Measured Impedance Head (Ohm) Real Difference (Ohm) Real Certificate Impedance Head (Ohm) Imaginary Measured Impedance Head (Ohm) Imaginary Difference (Ohm) Imaginary Certificate Return Loss Head (dB) Measured Return Loss Head (dB) Deviation (%)PASS/FAIL 1/18/20241/17/20251.3871.972.1006.71%1.281.3505.47%51.150.70.4-2.3-1.31.0-32.0-36.9-15.20%PASS Object: Date Issued: Page 3 of 3 D835V2 β SN: 4d132 01/17/2025 Impedance & Return-Loss Measurement Plot for Head TSL SRS 03/13/25 Object: Date Issued: Page 1 of 3 D835V2 β SN: 4d133 03/10/2025 Certification of Calibration Object D835V2 β SN: 4d133 Calibration procedure(s) Procedure for Calibration Extension for SAR Dipoles. Extension Calibration date: 03/10/2025 Description: SAR Validation Dipole at 835 MHz. Calibration Equipment used: Measurement Uncertainty = Β±23% (k=2) Name Function Signature Calibrated By: Tho Tong Test Engineer Approved By: Greg Snyder Executive VP of Operations, Regulatory Manufacturer Model Description Cal Date Cal Interval Ca l Due Serial Number Agilent N5182A MXG Vector Signal Generator 3/15/2024Annual 3/15/2025MY47420651 Amplifier Research 15S1G6 Amplifier CBTN/A CBT343971 Anritsu MA24106A USB Power Sensor 3/14/2024Annual 3/14/20251349513 Control Company 4040Digital Thermometer3/27/2023Biennial 3/27/2025230208311 Control Company 4052Long Stem Thermometer 2/27/2024Biennial 2/27/2026240171059 MCL BW-N6W5+ 6dB Attenuator CBTN/A CBT1139 MiniCircuits SLP-2400+ Low Pass Filter CBTN/A CBTR8979500903 Mini-Circuits BW-N20W5+ DC to 18 GHz Precision Fixed 20 dB Attenuator CBTN/A CBTN/A Narda 4772-3 Attenuator (3dB) CBTN/A CBT9406 Huber + Suhner74Z-0-0-21Torque Wrench 10/17/2023Biennial 10/17/202516476 Mini-CircuitsZHDC-16-63-S+Coupler CBTN/A CBTN/A Rohde & Schwarz ZNB40Vector Network Analyzer 2/20/2025Annual 2/20/2026101412 SPEAG DAK-3.5 Dielectric Assessment Kit 10/15/2024Annual 10/15/20251091 Keysight Technologies85033EStandard Mechanical Calibration Kit (DC to 9GHz, 3.5mm)2/1/2024Triennial2/1/2027MY53401181 SPEAGEX3DV 4SAR Probe5/10/2024Annual5/10/20253914 SPEAG DAE4 Dasy Data Acquisition Electronics 5/8/2024Annual5/8/2025728 ELEMENT MATERIALS TECHNOLOGY (formerly PCTEST) 7185 Oakland Mills Road, Columbia, MD 21046 USA Tel. +1.410.290.6652 / Fax +1.410.290.6654 http://www.element.com Object: Date Issued: Page 2 of 3 D835V2 β SN: 4d133 03/10/2025 DIPOLE CALIBRATION EXTENSION Per KDB 865664 D01, calibration intervals of up to three years may be considered for reference dipoles when it is demonstrated that the SAR target, impedance and return loss of a dipole have remained stable according to the following requirements: 1. The measured SAR does not deviate more than 10% from the target on the calibration certificate. 2. The return-loss does not deviate more than 20% from the previous measurement and meets the required 20dB minimum return-loss requirement. 3. The measurement of real or imaginary parts of impedance does nβ¦
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FCC ID: A3LSMA576JPN RF EXPOSURE PART 1 TEST REPORT Approved by: Technical Manager DUT Type: Portable Handset APPENDIX E: Page 1 of 17 A P P E N D I X E : M U L T I-T X A N D A N T E N N A S A R C O N S I D E R A T I O N S E.1 Introduction The following procedures adopted from FCC KDB Publication 447498 D04v01 are applicable to devices with built- in unlicensed transmitters such as 802.11 and Bluetooth devices which may simultaneously transmit with the licensed transmitter. E.2 Simultaneous Transmission Procedures This device contains transmitters that may operate simultaneously. Therefore, simultaneous transmission analysis is required. Per FCC KDB Publication 447498 D04v01 and IEEE 1528-2013 Section 6.3.4.1.2, simultaneous transmission SAR test exclusion may be applied when the sum of the 1g SAR for all the simultaneous transmitting antennas in a specific a physical test configuration is β€1.6 W/kg. The different test positions in an exposure condition may be considered collectively to determine SAR test exclusion according to the sum of 1g or 10g SAR. Per FCC KDB Publication 941225 D06v02r01, the devices edges with antennas more than 2.5 cm from edge are not required to be evaluated for SAR (β-β). For top edge, AG0 testing was excluded and for bottom edge AG1 testing was excluded, therefore, no spatial analysis required for those edges. For left and right edges, not every band was tested, therefore, not every combination between AG0 and AG1 was evaluated. Per FCC KDB Publication 648474 D04 Handset SAR, Phablet SAR tests were not required if wireless router 1g SAR (scaled to the maximum output power, including tolerance) < 1.2 W/kg. Therefore no further analysis beyond the tables included in this section was required to determine that possible simultaneous transmission scenarios would not exceed the SAR limit. This device is enabled with Samsung S.LSI TAS (Time Average SAR) algorithms, specifically F-TAS for cellular bands and DC-TAS for unlicensed bands (WLAN/BT over Cellular). The device is configured with pre-defined antenna groups where AG0 represents the Cellular antennas, and AG1 represents the worst-case SAR from Cellular/WLAN/BT. Per the R-Matrix defining the relationship between antenna groups, the analysis demonstrates that the 1g SAR for both AG0 and AG1 independently remains β€ 1.6 W/kg. Although AG0 and AG1 are decoupled, the sum of AG0 + AG1 was evaluated to further demonstrate this decoupling. While FCC compliance is determined by the 1.6 W/kg limit (TER β€ 1.0), this report conservatively applies SPLSR analysis for scenarios where the summed SAR exceeds the design target of 1.0 W/kg (ER > 0.625). Analysis demonstrates: 1. The mutually exclusive operation of AG1 and AG0 via SAR summation (SAR β€ 1.0 W/kg, TER β€ 0.625) or SPLSR evaluation. 2. The compliance between AG1 and NFC, and between AG0 and NFC. When operating in the same antenna group, Samsung S.LSI TAS algorithm in WWAN directly adds the time- averaged RF exposure from 4G and time-averaged RF exposure from 5G NR. S.LSI algorithm controls the total RF exposure from both 4G and 5G NR to not exceed FCC limit. Therefore, simultaneous transmission compliance between 4G+5G operations within an antenna group is demonstrated in the Part 2 Report during algorithm validation. FCC ID: A3LSMA576JPN RF EXPOSURE PART 1 TEST REPORT Approved by: Technical Manager DUT Type: Portable Handset APPENDIX E: Page 2 of 17 E.3 Antenna Groups The Samsung S.LSI TAS operates based on pre-defined antenna groups (AG). Tx antennas in the device (Sub6, WLAN, and Bluetooth) are grouped based on the spatial variation of RF exposure distributions, where the RF exposure of one AG is mutually exclusive from that of other AGs. This is accomplished by demonstrating the conditions below for all exposure scenarios: 1. Each antenna combination between the two AGs (Sub6/WLAN/Bluetooth) sums to less than the manufacturerβs design target. 2. If the sum for antenna combination is greater than SAR design target, then that combination meets SPLSR criteria (Section 4.3.2(c) in FCC KDB 447498 D04). This device supports two sub6 AG: AG0 and AG1, with AG0 having 2 antennas (A, B) and AG1 having 4 antennas (E, F, G, H), and NFC external radio antennas. Demonstrating that AG0 is fully uncorrelated to AG1 through the following criteria: A. For each antenna, obtain the highest reported SAR for each of the supported technologies and bands (including Sub6, WLAN, and Bluetooth) along with the peak SAR locations. Using these values, demonstrate for a given position in an exposure condition that every antenna from one antenna group (AG) (Sub6/WLAN/BT) meets SPLSR criteria with every antenna in another AG (Sub6/WLAN/BT) for all frequency bands. This criterion must be demonstrated for all antenna pair combinations according to simultaneous transmission scenarios. The following formula is used to calculate the SPLSR between antenna pair for each exposure configuration: νΊν·ν³νΊνΉ= (νΊν¨νΉ ν +νΊν¨νΉ ν ) ν.ν β (ν ν βν ν ) ν + ( ν ν βν ) ν +(ν ν βν ν ) ν Where i and j are bands/modes that can transmit simultaneously across AG0 and AG1, with x/y/z coordinates. FCC ID: A3LSMA576JPN RF EXPOSURE PART 1 TEST REPORT Approved by: Technical Manager DUT Type: Portable Handset APPENDIX E: Page 3 of 17 E.4 Exposure Ratios Exposure ratio (ER) for different transmitters is calculated as following: νΈν νν΄ν ,ν = νν΄ν ν νν΄ν ννννν‘ Where: - SAR n is the SAR value for the n-th transmitter/test frequency - SAR limit is the basic restriction limit that is applicable to the n-th transmitter/test frequency Compliance with the SAR based RF exposure limits is achieved if TER SAR β€ 1. When TER SAR > 1, SPLSR is additionally evaluated per below equation: νννΏνν = (νΈν ν +νΈν ν ) 1.5 ν Where: - ER j and ER k are exposure ratio of transmitter j and k - R is the distance between transmitter j and k When SPLSR is β€ 0.02 for 1g exposure conditions or SPLSR is β€ 0.013 for 10g exposure conditions simultaneous SAR evaluation is not reβ¦
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FCC ID: A3LSMA576JPN RF Exposure Part 1 Test Report Approved by: Technical Manager DUT Type: Portable Handset APPENDIX I: Page 1 of 3 A P P E N D I X I : I E E E 8 0 2 . 1 1 R U S A R E X C L U S I O N I.1 IEEE 802.11ax RU SAR Exclusion To make the most efficient use of the additional available subcarriers (data tones), IEEE 802.11ax can utilize Orthogonal Frequency-Division Multiple Access (OFDMA) which divides the existing 802.11 channels into smaller subchannels called Resource Units (RUs). Possible RU sizes are: 26T, 52T, 106T, 242T, 484T, 996T. Per FCC Guidance, 802.11ax was considered a higher order 802.11 mode when compared to a/b/g/n/ac to apply KDB Publication 248227 D01v02r02 for OFDM mode selection. Therefore, SAR tests were not required for 802.11ax based on the maximum allowed output powers of OFDM modes and the reported SAR values. Per FCC Guidance, maximum conducted powers were performed for each RU size to demonstrate that the output powers would not be higher than the other OFDM 802.11 modes. Please refer to 1M2510280091-15, 17, 19, 21 for IEEE 802.11ax RU powers. I.2 IEEE 802.11ax RU Target Powers I.2.1 2.4 GHz WLAN 802.11ax RU WLAN Output Power The below table is applicable in the following conditions: β’ Pmax The below table is applicable in the following conditions: β’ RSI = 0 (Body-Worn, Hotspot or Phablet) The below table is applicable in the following conditions: β’ RSI = 1 (Head) ch. 11: 15.5 ch. 11: 15.5 ch. 11: 15.5 ch. 11: 15.5 ch. 11: 13.5 ch. 11: 13.5 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 11: 14.5 ch. 11: 14.5 ch. 11: 14.5 ch. 11: 14.5 ch. 11: 12.5 ch. 11: 12.5 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 12 106T 16 15 2.45 GHz 52T 13 12 Band Nominal Maximum 26T 10 9 242T 16 15 SISO in MIMO Ant J (in dBm) IEEE 802.11ax RU (in dBm) 106T 16 15 242T 18 17 SISO in MIMO Ant H (in dBm) 242T 18 17 SISO Ant H (in dBm) 26T 8 7 26T 10 9 52T 13 52T 11 10 106T 14 13 ch. 11: 15.5 ch. 11: 15.5 ch. 11: 15.5 ch. 11: 15.5 ch. 11: 13.5 ch. 11: 13.5 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 11: 14.5 ch. 11: 14.5 ch. 11: 14.5 ch. 11: 14.5 ch. 11: 12.5 ch. 11: 12.5 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 8 11 14 15 16 9 15 52T 106T 242T 26T 52T 26T 52T 106T 242T 26T 12 15 16 7 10 13 Band 2.45 GHz Maximum Nominal 9 12 IEEE 802.11ax RU (in dBm) SISO Ant H (in dBm) SISO in MIMO Ant H (in dBm) SISO in MIMO Ant J (in dBm) 14 106T 242T 10 13 16 17 10 13 16 17 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 12: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 13: -9.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 12: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 ch. 13: -10.0 2.45 GHz Maximum Nominal 13 12 12 12 14 14 7 10 9 12 14 14 9 15 15 10 13 15 15 8 11 13 106T 242T Band IEEE 802.11ax RU (in dBm) SISO Ant H (in dBm) SISO in MIMO Ant H (in dBm) SISO in MIMO Ant J (in dBm) 26T 52T 106T 242T 26T 52T 106T 242T 26T 52T 10 13 FCC ID: A3LSMA576JPN RF Exposure Part 1 Test Report Approved by: Technical Manager DUT Type: Portable Handset APPENDIX I: Page 2 of 3 I.2.2 5 GHz WLAN 802.11ax RU WLAN Output Power The below table is applicable in the following conditions: β’ Pmax β’ RSI = 0 (Body-Worn, Hotspot or Phablet) The below table is applicable in the following conditions: β’ RSI = 1 (Head) ch. 36: 15.5 ch. 36: 14.0 ch. 36: 15.5 ch. 64: 15.5 ch. 64: 14.0 ch. 64: 15.5 ch. 36: 14.5 ch. 36: 13.0 ch. 36: 14.5 ch. 64: 14.5 ch. 64: 13.0 ch. 64: 14.5 ch. 38: 12.5 ch. 38: 12.5 ch. 38: 12.5 ch. 38: 11.0 ch. 38: 11.0 ch. 38: 11.0 ch. 38: 12.5 ch. 38: 12.5 ch. 38: 12.5 ch. 62: 13.5 ch. 62: 13.5 ch. 62: 13.5 ch. 62: 12.0 ch. 62: 12.0 ch. 62: 12.0 ch. 62: 13.5 ch. 62: 13.5 ch. 62: 13.5 ch. 102: 15.0 ch. 102: 15.0 ch. 102: 15.0 ch. 102: 13.0 ch. 102: 13.0 ch. 102: 13.0 ch. 102: 15.0 ch. 102: 15.0 ch. 102: 15.0 ch. 38: 11.5 ch. 38: 11.5 ch. 38: 11.5 ch. 38: 10.0 ch. 38: 10.0 ch. 38: 10.0 ch. 38: 11.5 ch. 38: 11.5 ch. 38: 11.5 ch. 62: 12.5 ch. 62: 12.5 ch. 62: 12.5 ch. 62: 11.0 ch. 62: 11.0 ch. 62: 11.0 ch. 62: 12.5 ch. 62: 12.5 ch. 62: 12.5 ch. 102: 14.0 ch. 102: 14.0 ch. 102: 14.0 ch. 102: 12.0 ch. 102: 12.0 ch. 102: 12.0 ch. 102: 14.0 ch. 102: 14.0 ch. 102: 14.0 UNII-1 UNII-2A UNII-3 UNII-4 UNII-1 UNII-2A UNII-3 UNII-4 5 GHz WIFI (20MHz BW) 5 GHz WIFI (40MHz BW) 5 GHz WIFI (80MHz BW) 10.5 10.5 10.5 10.5 10.5 10.0 12.5 12.5 12.5 10.0 12.5 12.5 12.5 12.5 12.5 12.5 12.5 12.5 12.5 12.5 12.5 12.5 8.0 10.5 10.5 8.0 10.5 10.5 10.5 12.5 UNII-2C 10.0 12.5 12.5 12.5 12.5 10.5 10.5 1β¦
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19 Chapin Rd., Building D Β· Pine Brook, New Jersey, 07058 Β· United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 22H | 824.2 MHz - 848.8 MHz | 899.00 mW | 250KGXW | 2.5ppm |
| 2 | 22H | 824.2 MHz - 848.8 MHz | 140.00 mW | 245KG7W | 2.5ppm |
| 3 | 25,22H | 826.4 MHz - 846.6 MHz | 132.00 mW | 4M17F9W | 2.5ppm |
| 4 | 24E | 1.85 GHz - 1.91 GHz | 833.00 mW | 245KGXW | 2.5ppm |
| 5 | 24E | 1.85 GHz - 1.91 GHz | 338.00 mW | 244KG7W | 2.5ppm |
| 6 | 25,27 | 699 MHz - 716 MHz | 121.00 mW | 4M56G7D | 2.5ppm |
| 7 | 25,27 | 699 MHz - 716 MHz | 102.00 mW | 4M54W7D | 2.5ppm |
| 8 | 25,27 | 699 MHz - 716 MHz | 119.00 mW | 9M12G7D | 2.5ppm |
| 9 | 25,27 | 699 MHz - 716 MHz | 97.00 mW | 9M09W7D | 2.5ppm |
| 1 | 25,22H | 824 MHz - 849 MHz | 121.00 mW | 13M7G7D | 2.5ppm |
| 11 | 25,22H | 824 MHz - 849 MHz | 93.00 mW | 13M6W7D | 2.5ppm |
| 12 | 25,22H | 824 MHz - 849 MHz | 141.00 mW | 14M2G7D | 2.5ppm |
| 13 | 25,22H | 824 MHz - 849 MHz | 110.00 mW | 14M2W7D | 2.5ppm |
| 14 | 25,22H | 824 MHz - 849 MHz | 134.00 mW | 19M1G7D | 2.5ppm |
| 15 | 25,22H | 824 MHz - 849 MHz | 100.00 mW | 19M1W7D | 2.5ppm |
| 16 | 27 | 1.71 GHz - 1.78 GHz | 287.00 mW | 2M72G7D | 2.5ppm |
| 17 | 27 | 1.71 GHz - 1.78 GHz | 253.00 mW | 2M73W7D | 2.5ppm |
| 18 | 27 | 1.71 GHz - 1.78 GHz | 277.00 mW | 18M0G7D | 2.5ppm |
| 19 | 27 | 1.71 GHz - 1.78 GHz | 233.00 mW | 18M0W7D | 2.5ppm |
| 2 | 25,24E | 1.85 GHz - 1.91 GHz | 285.00 mW | 13M6G7D | 2.5ppm |
| 21 | 25,24E | 1.85 GHz - 1.91 GHz | 251.00 mW | 4M58W7D | 2.5ppm |
| 22 | 25,24E | 1.85 GHz - 1.91 GHz | 284.00 mW | 18M1G7D | 2.5ppm |
| 23 | 25,24E | 1.85 GHz - 1.91 GHz | 233.00 mW | 18M1W7D | 2.5ppm |
| 24 | 27 | 2.50 GHz - 2.69 GHz | 216.00 mW | 4M54G7D | 2.5ppm |
| 25 | 27 | 2.50 GHz - 2.69 GHz | 181.00 mW | 4M53W7D | 2.5ppm |
| 26 | 27 | 2.50 GHz - 2.69 GHz | 212.00 mW | 18M0G7D | 2.5ppm |
| 27 | 27 | 2.50 GHz - 2.69 GHz | 178.00 mW | 18M0W7D | 2.5ppm |
| 28 | 27 | 2.50 GHz - 2.69 GHz | 256.00 mW | 27M9G7D | 2.5ppm |
| 29 | 27 | 2.50 GHz - 2.69 GHz | 194.00 mW | 47M8W7D | 2.5ppm |
| 3 | 27 | 2.50 GHz - 2.69 GHz | 241.00 mW | 98M0G7D | 2.5ppm |
| 31 | 27 | 2.50 GHz - 2.69 GHz | 182.00 mW | 97M8W7D | 2.5ppm |
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