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Plot No. 1 UL Korea, Ltd. Suwon Laboratory SAR#4 Date/Time: 2026-04-06 GSM 850: GSM: Data, GSMK, 2 slot(s), CHEEK Room Ambient Temperature: 23.0°C, Liquid Temperature: 22.0°C Exposure Conditions Band GSM 850 TSL Permittivity 41.8 Frequency [MHz] / Channel Number 824.200 / 128 TSL Conductivity [S/m] 0.928 Group / UID GSM / 10024- Phantom Section / TSL LeftHead / Head Simulating Liquid Conversion Factor 8.89 Test Distance [mm] 0.00 DASY Configuration Probe | Calibration Date EX3DV4 - SN7545 | 2025-09-23 Phantom Twin-SAM V8.0 (30deg probe tilt) DAE | Calibration Date DAE4 Sn1343 | 2025-07-09 TSL Type HBBL-600-10000 Software Version 17.0.2.6775 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 250.0 x 150.0 30.0 x 30.0 x 31.2 Grid Steps [mm] 12.0 x 12.0 6.0 x 6.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Measurement Results Area Scan Zoom Scan psSAR1g [W/Kg] 0.694 0.788 psSAR10g [W/Kg] 0.406 0.541 Power Drift [dB] 0.17 Dist 3dB Peak [mm] 19.1 M2/M1 [%] 85.8 Plot No. 2 UL Korea, Ltd. Suwon Laboratory SAR#6 Date/Time: 2026-03-18 GSM 850: GSM: Data, GSMK, 1 slot(s), BACK Room Ambient Temperature: 23.0°C, Liquid Temperature: 22.0°C Exposure Conditions Band GSM 850 TSL Permittivity 41.5 Frequency [MHz] / Channel Number 836.600 / 190 TSL Conductivity [S/m] 0.929 Group / UID GSM / 10023- Phantom Section / TSL Flat / Head Simulating Liquid Conversion Factor 9.74 Test Distance [mm] 5.00 DASY Configuration Probe | Calibration Date EX3DV4 - SN3871 | 2025-08-22 Phantom Twin-SAM V8.0 (30deg probe tilt) DAE | Calibration Date DAE4ip Sn1668 | 2025-09-17 TSL Type HBBL-600-10000 Software Version 17.0.2.6775 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 210.0 x 180.0 30.0 x 30.0 x 31.2 Grid Steps [mm] 15.0 x 15.0 6.0 x 6.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Measurement Results Area Scan Zoom Scan psSAR1g [W/Kg] 0.503 0.532 psSAR10g [W/Kg] 0.314 0.297 Power Drift [dB] -0.08 Dist 3dB Peak [mm] 10.2 M2/M1 [%] 77.7 Plot No. 3 UL Korea, Ltd. Suwon Laboratory SAR#3 Date: 2026-04-14 GSM 1900 Frequency: 1880 MHz; Communication System Channel Number: 661; Duty Cycle: 1:1.99986 Room Ambient Temperature: 23.0C; Liquid Temperature: 22.0C Medium parameters used: f = 1880 MHz; σ = 1.37 S/m; ε r = 38.446; ρ = 1000 kg/m 3 DASY5 Configuration: - Area Scan Setting: Find Secondary Maximum Within: 2.0 dB and with a peak SAR value greater than 0.012W/kg - Electronics: DAE4 Sn1447; Calibrated: 2026-03-13 - Probe: EX3DV4 - SN3871; ConvF(8.05, 7.58, 7.89) @ 1880 MHz; Calibrated: 2025-08-22 - Sensor-Surface: 1.4mm (Mechanical Surface Detection) - Phantom: Twin-SAM V5.0 (Right); Phantom section: Flat Section ; Type: QD 000 P40 CD - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7501) Head Flat 4-7mm/GPRS 4 slots ch.661/Area Scan (9x12x1): Measurement grid: dx=15mm, dy=15mm Maximum value of SAR (measured) = 0.617 W/kg Head Flat 4-7mm/GPRS 4 slots ch.661/Zoom Scan (6x6x7)/Cube 0: Measurement grid: dx=6mm, dy=6mm, dz=5mm Reference Value = 19.95 V/m; Power Drift = 0.13 dB Peak SAR (extrapolated) = 0.785 W/kg SAR(1 g) = 0.385 W/kg; SAR(10 g) = 0.179 W/kg Smallest distance from peaks to all points 3 dB below = 7.2 mm Ratio of SAR at M2 to SAR at M1 = 51.1% Maximum value of SAR (measured) = 0.588 W/kg 0 dB = 0.588 W/kg = -2.31 dBW/kg Plot No. 4 UL Korea, Ltd. Suwon Laboratory SAR#3 Date: 2026-03-30 GSM 1900 Frequency: 1909.8 MHz; Communication System Channel Number: 810; Duty Cycle: 1:1.99986 Room Ambient Temperature: 23.0C; Liquid Temperature: 22.0C Medium parameters used: f = 1910 MHz; σ = 1.424 S/m; ε r = 40.273; ρ = 1000 kg/m 3 DASY5 Configuration: - Area Scan Setting: Find Secondary Maximum Within: 2.0 dB and with a peak SAR value greater than 0.012W/kg - Electronics: DAE4 Sn912; Calibrated: 2025-11-20 - Probe: EX3DV4 - SN7330; ConvF(7.99, 7.59, 7.38) @ 1909.8 MHz; Calibrated: 2026-01-22 - Sensor-Surface: 1.4mm (Mechanical Surface Detection) - Phantom: Twin-SAM V5.0 (Right); Phantom section: Flat Section ; Type: QD 000 P40 CD - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7501) Rear/5mm GPRS 4 slots ch.810/Area Scan (13x10x1): Measurement grid: dx=15mm, dy=15mm Maximum value of SAR (measured) = 1.02 W/kg Rear/5mm GPRS 4 slots ch.810/Zoom Scan (9x9x7)/Cube 0: Measurement grid: dx=4mm, dy=4mm, dz=5mm Reference Value = 25.91 V/m; Power Drift = -0.08 dB Peak SAR (extrapolated) = 1.27 W/kg SAR(1 g) = 0.643 W/kg; SAR(10 g) = 0.300 W/kg Smallest distance from peaks to all points 3 dB below = 7.2 mm Ratio of SAR at M2 to SAR at M1 = 52.8% Maximum value of SAR (measured) = 1.05 W/kg 0 dB = 1.05 W/kg = 0.21 dBW/kg Plot No. 5 UL Korea, Ltd. Suwon Laboratory SAR#4 Date/Time: 2026-04-09 Band 2: UMTS-FDD: Rel. 99, RMC, QPSK, 5.0 MHz, BACK Room Ambient Temperature: 23.0°C, Liquid Temperature: 22.0°C Exposure Conditions Band Band 2 TSL Permittivity 39.6 Frequency [MHz] / Channel Number 1852.400 / 9262 TSL Conductivity [S/m] 1.36 Group / UID UMTS-FDD / 10011- Phantom Section / TSL Flat / Head Simulating Liquid Conversion Factor 7.1 Test Distance [mm] 4.00/15.00 DASY Configuration Probe | Calibration Date EX3DV4 - SN7545 | 2025-09-23 Phantom Twin-SAM V8.0 (30deg probe tilt) DAE | Calibration Date DAE4 Sn1343 | 2025-07-09 TSL Type HBBL-600-10000 Software Version 17.0.2.6775 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 80.0 x 140.0 30.0 x 30.0 x 33.4 Grid Steps [mm] 15.0 x 15.0 5.0 x 5.0 x 1.4 Sensor Surface [mm] 3.0 1.4 Measurement Results Area Scan Zoom Scan psSAR1g [W/Kg] 0.687 0.868 psSAR10g [W/Kg] 0.361 0.385 Power Drift [dB] -0.09 Dist 3dB Peak [mm] 6.0 M2/M1 [%] 75.6 Plot No. 6 UL Korea, Ltd. Suwon Laboratory SAR#3 Date: 2026-03-31 WCDMA Band 2 Frequency: 1880 MHz; Communication System Channel Number: 9400; Duty Cycle: 1:1 Room Ambient Temperature: 23.0C; Liquid Temperature: 22.0C Medium parameters used: f = 1880 MHz; σ = 1.404 S/m; ε r = 40.293; ρ = 1000 kg/m 3 DASY5 Configuration: - Area Scan Setting: Find Secondary Maximum Within: 2.0 dB and with a peak SAR value greater than 0.012W/kg - Electronic…
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Plot No. 1 UL Korea, Ltd. Suwon Laboratory SAR#4 Date/Time: 2026-03-17 GSM 850: GSM: Data, GSMK, 4 slot(s), BACK Room Ambient Temperature: 23.0°C, Liquid Temperature: 22.0°C Exposure Conditions Band GSM 850 TSL Permittivity 41.6 Frequency [MHz] / Channel Number 836.600 / 190 TSL Conductivity [S/m] 0.942 Group / UID GSM / 10028- Phantom Section / TSL Flat / Head Simulating Liquid Conversion Factor 8.89 Test Distance [mm] 5.00 DASY Configuration Probe | Calibration Date EX3DV4 - SN7545 | 2025-09-23 Phantom Twin-SAM V8.0 (30deg probe tilt) DAE | Calibration Date DAE4 Sn1343 | 2025-07-09 TSL Type HBBL-600-10000 Software Version 17.0.2.6775 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 120.0 x 180.0 30.0 x 30.0 x 31.2 Grid Steps [mm] 15.0 x 15.0 6.0 x 6.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Measurement Results Area Scan Zoom Scan psSAR1g [W/Kg] 0.560 0.591 psSAR10g [W/Kg] 0.363 0.341 Power Drift [dB] 0.02 Dist 3dB Peak [mm] 11.1 M2/M1 [%] 80.0 Plot No. 2 UL Korea, Ltd. Suwon Laboratory SAR#2 Date: 2026-03-30 GSM 850 Frequency: 836.6 MHz; Communication System Channel Number: 190; Duty Cycle: 1:2.60016 Room Ambient Temperature: 23.0C; Liquid Temperature: 22.0C Medium parameters used (interpolated): f = 836.6 MHz; σ = 0.947 S/m; ε r = 42.056; ρ = 1000 kg/m 3 DASY5 Configuration: - Area Scan Setting: Find Secondary Maximum Within: 2.0 dB and with a peak SAR value greater than 0.012W/kg - Electronics: DAE4 Sn1591; Calibrated: 2026-02-13 - Probe: EX3DV4 - SN7652; ConvF(9.63, 9.49, 9.81) @ 836.6 MHz; Calibrated: 2025-04-22 - Sensor-Surface: 1.4mm (Mechanical Surface Detection) - Phantom: Twin-SAM V5.0 (Middle); Phantom section: Left Section ; Type: QD 000 P40 CD - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7501) LHS/Touch GPRS 3 Slot ch.190/Area Scan (9x11x1): Measurement grid: dx=15mm, dy=15mm Maximum value of SAR (measured) = 0.417 W/kg LHS/Touch GPRS 3 Slot ch.190/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=6mm, dy=6mm, dz=5mm Reference Value = 22.18 V/m; Power Drift = -0.04 dB Peak SAR (extrapolated) = 0.557 W/kg SAR(1 g) = 0.301 W/kg; SAR(10 g) = 0.186 W/kg Smallest distance from peaks to all points 3 dB below = 14.1 mm Ratio of SAR at M2 to SAR at M1 = 53.6% Maximum value of SAR (measured) = 0.460 W/kg 0 dB = 0.460 W/kg = -3.37 dBW/kg Plot No. 3 UL Korea, Ltd. Suwon Laboratory SAR#3 Date: 2026-03-30 GSM1900 Frequency: 1880 MHz; Communication System Channel Number: 661; Duty Cycle: 1:4.00037 Room Ambient Temperature: 23.0C; Liquid Temperature: 22.0C Medium parameters used: f = 1880 MHz; σ = 1.404 S/m; ε r = 40.293; ρ = 1000 kg/m 3 DASY5 Configuration: - Area Scan Setting: Find Secondary Maximum Within: 2.0 dB and with a peak SAR value greater than 0.012W/kg - Electronics: DAE4 Sn912; Calibrated: 2025-11-20 - Probe: EX3DV4 - SN7330; ConvF(7.99, 7.59, 7.38) @ 1880 MHz; Calibrated: 2026-01-22 - Sensor-Surface: 1.4mm (Mechanical Surface Detection) - Phantom: Twin-SAM V5.0 (Right); Phantom section: Right Section ; Type: QD 000 P40 CD - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7501) RHS/Touch GPRS 2 slots ch.661/Area Scan (9x12x1): Measurement grid: dx=15mm, dy=15mm Maximum value of SAR (measured) = 0.198 W/kg RHS/Touch GPRS 2 slots ch.661/Zoom Scan (6x6x7)/Cube 0: Measurement grid: dx=6mm, dy=6mm, dz=5mm Reference Value = 11.76 V/m; Power Drift = 0.03 dB Peak SAR (extrapolated) = 0.224 W/kg SAR(1 g) = 0.153 W/kg; SAR(10 g) = 0.095 W/kg Smallest distance from peaks to all points 3 dB below = 14.7 mm Ratio of SAR at M2 to SAR at M1 = 68.8% Maximum value of SAR (measured) = 0.204 W/kg 0 dB = 0.204 W/kg = -6.90 dBW/kg Plot No. 4 UL Korea, Ltd. Suwon Laboratory SAR#3 Date: 2026-03-30 GSM1900 Frequency: 1880 MHz; Communication System Channel Number: 661; Duty Cycle: 1:1.99986 Room Ambient Temperature: 23.0C; Liquid Temperature: 22.0C Medium parameters used: f = 1880 MHz; σ = 1.404 S/m; ε r = 40.293; ρ = 1000 kg/m 3 DASY5 Configuration: - Area Scan Setting: Find Secondary Maximum Within: 2.0 dB and with a peak SAR value greater than 0.012W/kg - Electronics: DAE4 Sn912; Calibrated: 2025-11-20 - Probe: EX3DV4 - SN7330; ConvF(7.99, 7.59, 7.38) @ 1880 MHz; Calibrated: 2026-01-22 - Sensor-Surface: 1.4mm (Mechanical Surface Detection) - Phantom: Twin-SAM V5.0 (Right); Phantom section: Flat Section ; Type: QD 000 P40 CD - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7501) Rear/ GPRS 4 slots ch.661/Area Scan (9x12x1): Measurement grid: dx=15mm, dy=15mm Maximum value of SAR (measured) = 0.741 W/kg Rear/ GPRS 4 slots ch.661/Zoom Scan (6x6x7)/Cube 0: Measurement grid: dx=6mm, dy=6mm, dz=5mm Reference Value = 22.22 V/m; Power Drift = -0.08 dB Peak SAR (extrapolated) = 1.24 W/kg SAR(1 g) = 0.604 W/kg; SAR(10 g) = 0.284 W/kg Smallest distance from peaks to all points 3 dB below = 6.1 mm Ratio of SAR at M2 to SAR at M1 = 49.2% Maximum value of SAR (measured) = 0.915 W/kg 0 dB = 0.915 W/kg = -0.39 dBW/kg Plot No. 5 UL Korea, Ltd. Suwon Laboratory SAR#6 Date/Time: 2026-03-09 Band 2: UMTS-FDD: Rel. 99, RMC, QPSK, 5.0 MHz, TILT Room Ambient Temperature: 23.0°C, Liquid Temperature: 22.0°C Exposure Conditions Band Band 2 TSL Permittivity 41.5 Frequency [MHz] / Channel Number 1880.000 / 9400 TSL Conductivity [S/m] 1.37 Group / UID UMTS-FDD / 10011- Phantom Section / TSL LeftHead / Head Simulating Liquid Conversion Factor 8.05 Test Distance [mm] 0.00 DASY Configuration Probe | Calibration Date EX3DV4 - SN3871 | 2025-08-22 Phantom Twin-SAM V8.0 (30deg probe tilt) DAE | Calibration Date DAE4ip Sn1668 | 2025-09-17 TSL Type HBBL-600-10000 Software Version 17.0.2.6775 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 120.0 x 180.0 33.0 x 33.0 x 31.2 Grid Steps [mm] 15.0 x 15.0 5.5 x 5.5 x 1.5 Sensor Surface [mm] 3.0 1.4 Measurement Results Area Scan Zoom Scan psSAR1g [W/Kg] 0.751 0.918 psSAR10g [W/Kg] 0.400 0.463 Power Drift [dB] 0.03 Dist 3dB Peak [mm] 6.7 M2/M1 [%] 86.9 Plot No. 6 UL Korea, Ltd. Suwon Laboratory SAR#4 Date/Time: 2026-03-20 Band 2…
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Plot No. 1 UL Korea, Ltd. Suwon Laboratory SAR#4 Date/Time: 2026-05-21 Band 12: LTE-FDD: 10.0 MHz, QPSK, 1 RB (Mid), BACK Room Ambient Temperature: 23.0°C, Liquid Temperature: 22.0°C Exposure Conditions Band Band 12 TSL Permittivity 43.0 Frequency [MHz] / Channel Number 707.500 / 23095 TSL Conductivity [S/m] 0.945 Group / UID LTE-FDD / 10175- Phantom Section / TSL Flat / Head Simulating Liquid Conversion Factor 9.16 Test Distance [mm] 4.00 DASY Configuration Probe | Calibration Date EX3DV4 - SN7313 | 2025-10-29 Phantom ELI V8.0 (20deg probe tilt) DAE | Calibration Date DAE4 Sn1468 | 2026-02-03 TSL Type HBBL-600-10000 Software Version 17.0.2.6775 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 210.0 x 180.0 42.0 x 42.0 x 31.2 Grid Steps [mm] 15.0 x 15.0 6.0 x 6.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Measurement Results Area Scan Zoom Scan psSAR1g [W/Kg] 0.927 1.02 psSAR10g [W/Kg] 0.619 0.598 Power Drift [dB] -0.11 Dist 3dB Peak [mm] 12.1 M2/M1 [%] 81.3 Plot No. 2 UL Korea, Ltd. Suwon Laboratory SAR#4 Date/Time: 2026-05-21 Band 66: LTE-FDD: 20.0 MHz, QPSK, 1 RB (Low), BACK Room Ambient Temperature: 23.0°C, Liquid Temperature: 22.0°C Exposure Conditions Band Band 66 TSL Permittivity 40.7 Frequency [MHz] / Channel Number 1745.000 / 132322 TSL Conductivity [S/m] 1.39 Group / UID LTE-FDD / 10169- Phantom Section / TSL Flat / Head Simulating Liquid Conversion Factor 7.46 Test Distance [mm] 4.00 DASY Configuration Probe | Calibration Date EX3DV4 - SN7313 | 2025-10-29 Phantom ELI V8.0 (20deg probe tilt) DAE | Calibration Date DAE4 Sn1468 | 2026-02-03 TSL Type HBBL-600-10000 Software Version 17.0.2.6775 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 210.0 x 180.0 30.0 x 36.0 x 31.2 Grid Steps [mm] 15.0 x 15.0 6.0 x 6.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Measurement Results Area Scan Zoom Scan psSAR1g [W/Kg] 0.551 0.621 psSAR10g [W/Kg] 0.263 0.276 Power Drift [dB] -0.13 Dist 3dB Peak [mm] 6.5 M2/M1 [%] 78.6 Plot No. 3 UL Korea, Ltd. Suwon Laboratory SAR#4 Date/Time: 2026-05-21 Band 41: LTE-TDD: 20.0 MHz, 64QAM, UL/DL CFG: 0, SSC: 7, 50% RB (Low), BACK Room Ambient Temperature: 23.0°C, Liquid Temperature: 22.0°C Exposure Conditions Band Band 41 TSL Permittivity 39.5 Frequency [MHz] / Channel Number 2636.500 / 41055 TSL Conductivity [S/m] 1.94 Group / UID LTE-TDD / 10496- Phantom Section / TSL Flat / Head Simulating Liquid Conversion Factor 6.91 Test Distance [mm] 4.00 DASY Configuration Probe | Calibration Date EX3DV4 - SN7313 | 2025-10-29 Phantom ELI V8.0 (20deg probe tilt) DAE | Calibration Date DAE4 Sn1468 | 2026-02-03 TSL Type HBBL-600-10000 Software Version 17.0.2.6775 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 200.0 x 160.0 30.0 x 30.0 x 31.2 Grid Steps [mm] 10.0 x 10.0 5.0 x 5.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Measurement Results Area Scan Zoom Scan psSAR1g [W/Kg] 0.457 0.473 psSAR10g [W/Kg] 0.200 0.205 Power Drift [dB] 0.02 Dist 3dB Peak [mm] 7.0 M2/M1 [%] 78.6 Plot No. 4 UL Korea, Ltd. Suwon Laboratory SAR#4 Date/Time: 2026-05-26 n41: NR FR1 TDD: DFT-s-OFDM, 100.0 MHz, QPSK, 30 kHz, 100.0% DC, 100% RB (Mid), BACK Room Ambient Temperature: 23.0°C, Liquid Temperature: 22.0°C Exposure Conditions Band n41 TSL Permittivity 39.6 Frequency [MHz] / Channel Number 2592.990 / 518598 TSL Conductivity [S/m] 1.91 Group / UID NR FR1 TDD / 10868- Phantom Section / TSL Flat / Head Simulating Liquid Conversion Factor 6.91 Test Distance [mm] 4.00 DASY Configuration Probe | Calibration Date EX3DV4 - SN7313 | 2025-10-29 Phantom ELI V8.0 (20deg probe tilt) DAE | Calibration Date DAE4 Sn1468 | 2026-02-03 TSL Type HBBL-600-10000 Software Version 17.0.2.6775 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 200.0 x 160.0 30.0 x 30.0 x 31.2 Grid Steps [mm] 10.0 x 10.0 5.0 x 5.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Measurement Results Area Scan Zoom Scan psSAR1g [W/Kg] 0.602 0.643 psSAR10g [W/Kg] 0.254 0.264 Power Drift [dB] 0.02 Dist 3dB Peak [mm] 5.4 M2/M1 [%] 77.7 Plot No. 5 UL Korea, Ltd. Suwon Laboratory SAR#4 Date/Time: 2026-05-21 2.4 GHz: WiFi (802.11g): OFDM, BPSK, 6.0 Mbps, 89.9% DC, BACK Room Ambient Temperature: 23.0°C, Liquid Temperature: 22.0°C Exposure Conditions Band 2.4 GHz TSL Permittivity 39.7 Frequency [MHz] / Channel Number 2462.000 / 11 TSL Conductivity [S/m] 1.81 Group / UID WiFi (802.11g) / 10575- Phantom Section / TSL Flat / Head Simulating Liquid Conversion Factor 6.78 Test Distance [mm] 4.00 DASY Configuration Probe | Calibration Date EX3DV4 - SN7313 | 2025-10-29 Phantom ELI V8.0 (20deg probe tilt) DAE | Calibration Date DAE4 Sn1468 | 2026-02-03 TSL Type HBBL-600-10000 Software Version 17.0.2.6775 Scan Setup Area Scan Zoom Scan Grid Extents [mm] 200.0 x 160.0 30.0 x 30.0 x 31.2 Grid Steps [mm] 10.0 x 10.0 5.0 x 5.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Measurement Results Area Scan Zoom Scan psSAR1g [W/Kg] 0.456 0.573 psSAR10g [W/Kg] 0.204 0.234 Power Drift [dB] -0.02 Dist 3dB Peak [mm] 6.0 M2/M1 [%] 77.1
Justification for Extended SAR Dipole Calibrations Instead of the typical annual calibration recommended by measurement standards, longer calibration intervals of up to three years may be considered when it is demonstrated that the SAR target, impedance and return loss of a dipole have remain stable according to the following requirements Dipole return loss & impedence requirements a ) return loss : < - 20 dB, within 20% of previous measurement b ) impedance : within 5 Ω from previous measurement Dipole Antenna Head/Body Date of Measurement Return Loss (dB) Δ % Impedance (Ω) Δ Ω D5GHzV2-SN : 1184 Head 2024.11.21 -27.053 4.03 51.827 4.43 2025.11.18 -25.962 47.393 c ) peak SAR (1g) : within 10% of that reported in the calibration data Dipole Antenna Head/Body Date of Measurement peak SAR (1g) (W/kg) Δ % D5GHzV2-SN : 1184 Head 2024.11.21 8.40 2.44 2025.11.19 8.61 Justification for Extended SAR Dipole Calibrations Instead of the typical annual calibration recommended by measurement standards, longer calibration intervals of up to three years may be considered when it is demonstrated that the SAR target, impedance and return loss of a dipole have remain stable according to the following requirements Dipole return loss & impedence requirements a ) return loss : < - 20 dB, within 20% of previous measurement b ) impedance : within 5 Ω from previous measurement Dipole Antenna Head/Body Date of Measurement Return Loss (dB) Δ % Impedance (Ω) Δ Ω D6.5GHzV2_SN : 1010 Head 2024.06.11 -23.311 15.9 50.374 0.45 2025.06.10 -27.018 49.924 c ) peak SAR (1g) : within 10% of that reported in the calibration data Dipole Antenna Head/Body Date of Measurement peak SAR (1g) (W/kg) Δ % D6.5GHzV2_SN : 1010 Head 2024.06.11 29.30 2.05 2025.09.11 29.90 Justification for Extended SAR Dipole Calibrations Instead of the typical annual calibration recommended by measurement standards, longer calibration intervals of up to three years may be considered when it is demonstrated that the SAR target, impedance and return loss of a dipole have remain stable according to the following requirements Dipole return loss & impedence requirements a ) return loss : < - 20 dB, within 20% of previous measurement b ) impedance : within 5 Ω from previous measurement Dipole Antenna Head/Body Date of Measurement Return Loss (dB) Δ % Impedance (Ω) Δ Ω D8GHzV2-SN : 1012 Head 2024.11.13 -25.708 6.58 54.363 0.83 2025.11.17 -27.400 53.530 c ) peak SAR (1g) : within 10% of that reported in the calibration data Dipole Antenna Head/Body Date of Measurement peak SAR (1g) (W/kg) Δ % D8GHzV2-SN : 1012 Head 2024.11.13 27.50 -8.73 2025.11.26 25.10
Justification for Extended SAR Dipole Calibrations Instead of the typical annual calibration recommended by measurement standards, longer calibration intervals of up to three years may be considered when it is demonstrated that the SAR target, impedance and return loss of a dipole have remain stable according to the following requirements Dipole return loss & impedence requirements a ) return loss : < - 20 dB, within 20% of previous measurement b ) impedance : within 5 Ω from previous measurement Dipole Antenna Head/Body Date of Measurement Return Loss (dB) Δ % Impedance (Ω) Δ Ω D2600V2-SN : 1178 Head 2025.04.15 -32.801 3.65 48.050 3.99 2026.04.18 -31.605 52.042 c ) peak SAR (1g) : within 10% of that reported in the calibration data Dipole Antenna Head/Body Date of Measurement peak SAR (1g) (W/kg) Δ % D2600V2-SN : 1178 Head 2025.04.15 5.60 2.14 2026.04.14 5.72 Justification for Extended SAR Dipole Calibrations Instead of the typical annual calibration recommended by measurement standards, longer calibration intervals of up to three years may be considered when it is demonstrated that the SAR target, impedance and return loss of a dipole have remain stable according to the following requirements Dipole return loss & impedence requirements a ) return loss : < - 20 dB, within 20% of previous measurement b ) impedance : within 5 Ω from previous measurement Dipole Antenna Head/Body Date of Measurement Return Loss (dB) Δ % Impedance (Ω) Δ Ω D5GHzV2-SN : 1325 Head 2025.04.16 -25.797 1.89 53.522 4.46 2026.04.18 -23.815 49.058 c ) peak SAR (1g) : within 10% of that reported in the calibration data Dipole Antenna Head/Body Date of Measurement peak SAR (1g) (W/kg) Δ % D5GHzV2-SN : 1325 Head 2025.04.16 7.78 1.93 2026.04.16 7.93
Justification for Extended SAR Dipole Calibrations Instead of the typical annual calibration recommended by measurement standards, longer calibration intervals of up to three years may be considered when it is demonstrated that the SAR target, impedance and return loss of a dipole have remain stable according to the following requirements Dipole return loss & impedence requirements a ) return loss : < - 20 dB, within 20% of previous measurement b ) impedance : within 5 Ω from previous measurement Dipole Antenna Head/Body Date of Measurement Return Loss (dB) Δ % Impedance (Ω) Δ Ω D1900V2-SN : 5d190 Head 2025.04.08 -24.564 16.95 50.949 0.47 2026.04.18 -28.727 50.480 ` c ) peak SAR (1g) : within 10% of that reported in the calibration data Dipole Antenna Head/Body Date of Measurement peak SAR (1g) (W/kg) Δ % D1900V2-SN : 5d190 Head 2025.04.08 3.92 7.65 2026.04.08 4.22 Justification for Extended SAR Dipole Calibrations Instead of the typical annual calibration recommended by measurement standards, longer calibration intervals of up to three years may be considered when it is demonstrated that the SAR target, impedance and return loss of a dipole have remain stable according to the following requirements Dipole return loss & impedence requirements a ) return loss : < - 20 dB, within 20% of previous measurement b ) impedance : within 5 Ω from previous measurement Dipole Antenna Head/Body Date of Measurement Return Loss (dB) Δ % Impedance (Ω) Δ Ω D2450V2-SN : 939 Head 2024.07.10 -27.491 13.14 52.364 0.98 2025.07.09 -31.104 51.382 ` c ) peak SAR (1g) : within 10% of that reported in the calibration data Dipole Antenna Head/Body Date of Measurement peak SAR (1g) (W/kg) Δ % D2450V2-SN : 939 Head 2024.07.10 5.24 1.34 2025.07.10 5.31
Justification for Extended SAR Dipole Calibrations Instead of the typical annual calibration recommended by measurement standards, longer calibration intervals of up to three years may be considered when it is demonstrated that the SAR target, impedance and return loss of a dipole have remain stable according to the following requirements Dipole return loss & impedence requirements a ) return loss : < - 20 dB, within 20% of previous measurement b ) impedance : within 5 Ω from previous measurement Dipole Antenna Head/Body Date of Measurement Return Loss (dB) Δ % Impedance (Ω) Δ Ω D835V2-SN : 4d174 Head 2024.09.16 -23.016 6.58 50.502 0.98 2025.09.10 -24.530 49.527 c ) peak SAR (1g) : within 10% of that reported in the calibration data Dipole Antenna Head/Body Date of Measurement peak SAR (1g) (W/kg) Δ % D835V2-SN : 4d174 Head 2024.09.16 0.948 1.27 2025.09.25 0.960 Justification for Extended SAR Dipole Calibrations Instead of the typical annual calibration recommended by measurement standards, longer calibration intervals of up to three years may be considered when it is demonstrated that the SAR target, impedance and return loss of a dipole have remain stable according to the following requirements Dipole return loss & impedence requirements a ) return loss : < - 20 dB, within 20% of previous measurement b ) impedance : within 5 Ω from previous measurement Dipole Antenna Head/Body Date of Measurement Return Loss (dB) Δ % Impedance (Ω) Δ Ω D1750V2-SN : 1180 Head 2024.10.15 -35.947 10.37 49.415 1.62 2025.10.20 -32.219 47.800 ` c ) peak SAR (1g) : within 10% of that reported in the calibration data Dipole Antenna Head/Body Date of Measurement extrapolated peak SAR (W/kg) Δ % D1750V2-SN : 1180 Head 2024.10.15 3.72 5.91 2025.10.24 3.50 Justification for Extended SAR Dipole Calibrations Instead of the typical annual calibration recommended by measurement standards, longer calibration intervals of up to three years may be considered when it is demonstrated that the SAR target, impedance and return loss of a dipole have remain stable according to the following requirements Dipole return loss & impedence requirements a ) return loss : < - 20 dB, within 20% of previous measurement b ) impedance : within 5 Ω from previous measurement Dipole Antenna Head/Body Date of Measurement Return Loss (dB) Δ % Impedance (Ω) Δ Ω D1750V2-SN : 1125 Head 2024.11.18 -34.835 9.98 49.967 1.78 2025.11.18 -31.359 48.187 ` c ) peak SAR (1g) : within 10% of that reported in the calibration data Dipole Antenna Head/Body Date of Measurement peak SAR (1g) (W/kg) Δ % D1750V2-SN : 1125 Head 2024.11.18 3.68 1.90 2025.11.19 3.61
Justification for Extended SAR Dipole Calibrations Instead of the typical annual calibration recommended by measurement standards, longer calibration intervals of up to three years may be considered when it is demonstrated that the SAR target, impedance and return loss of a dipole have remain stable according to the following requirements Dipole return loss & impedence requirements a ) return loss : < - 20 dB, within 20% of previous measurement b ) impedance : within 5 Ω from previous measurement Dipole Antenna Head/Body Date of Measurement Return Loss (dB) Δ % Impedance (Ω) Δ Ω D750V3-SN : 1205 Head 2025.04.14 -28.062 10.46 52.573 2.51 2026.04.18 -25.127 55.087 c ) peak SAR (1g) : within 10% of that reported in the calibration data Dipole Antenna Head/Body Date of Measurement peak SAR (1g) (W/kg) Δ % D750V3-SN : 1205 Head 2025.04.14 0.868 2.53 2026.04.15 0.846
Measurement Certificate / Material Test Item NameHead Tissue Simulating Liquid (HBBL600-10000V6) Product No.SL AAH U16 BC (Batch: 181106-1) Manufacturer SPEAG Measurement Method TSL dielectric parameters measured using calibrated DAK probe. Target Parameters Target parameters as defined in the IEEE 1528 and IEC 62209 compliance standards. Test Condition Ambient Condition22ºC ; 30% humidity TSL Temperature22ºC Test Date OperatorCL Additional Information TSL Density TSL Heat-capacity Results MeasuredTargetDiff.to Target [%] f [MHz]e'e''sigma eps sigma -eps-sigma 800 43.7 20.7 0.92 41.7 0.904.82.5 825 43.7 20.3 0.93 41.6 0.915.12.6 835 43.7 20.1 0.94 41.5 0.915.23.1 850 43.6 19.8 0.94 41.5 0.925.12.6 900 43.5 19.1 0.96 41.5 0.974.8-1.0 1400 42.5 15.0 1.17 40.6 1.184.7-0.8 1450 42.4 14.8 1.19 40.5 1.204.7-0.8 1600 42.1 14.3 1.27 40.3 1.284.4-1.1 1625 42.1 14.2 1.29 40.3 1.304.5-0.7 1640 42.1 14.2 1.30 40.3 1.314.6-0.5 1650 42.1 14.1 1.30 40.2 1.314.6-1.0 1700 42.0 14.0 1.33 40.2 1.344.6-0.9 1750 41.9 13.9 1.35 40.1 1.374.5-1.5 1800 41.8 13.8 1.38 40.0 1.404.5-1.4 1810 41.8 13.8 1.39 40.0 1.404.5-0.7 1825 41.8 13.8 1.40 40.0 1.404.50.0 1850 41.8 13.7 1.41 40.0 1.404.50.7 1900 41.7 13.7 1.44 40.0 1.404.32.9 1950 41.6 13.6 1.48 40.0 1.404.05.75200 36.5 15.6 4.51 36.0 4.66 1.3 -3.2 2000 41.6 13.6 1.51 40.0 1.404.07.95250 36.4 15.6 4.56 35.9 4.71 1.2 -3.0 2050 41.5 13.5 1.54 39.9 1.444.06.65300 36.3 15.7 4.62 35.9 4.76 1.1 -2.9 2100 41.5 13.5 1.57 39.8 1.494.25.45500 35.9 15.9 4.85 35.6 4.96 0.8 -2.3 2150 41.4 13.4 1.61 39.7 1.534.25.05600 35.8 15.9 4.96 35.5 5.07 0.6 -2.0 2200 41.3 13.4 1.64 39.6 1.584.23.95700 35.6 16.0 5.08 35.4 5.17 0.5 -1.7 2250 41.3 13.4 1.68 39.6 1.624.43.65800 35.4 16.1 5.20 35.3 5.27 0.3 -1.4 2300 41.2 13.4 1.71 39.5 1.674.42.66000 35.1 16.3 5.43 35.1 5.48 0.0 -0.9 2350 41.1 13.4 1.75 39.4 1.714.42.36500 34.2 16.7 6.04 34.5 6.07 -0.7 -0.5 2400 41.1 13.4 1.79 39.3 1.764.62.07000 33.4 17.1 6.66 33.9 6.65 -1.5 0.1 2450 41.0 13.4 1.83 39.2 1.804.61.77500 32.5 17.4 7.27 33.3 7.24 -2.3 0.4 2500 40.9 13.4 1.86 39.1 1.854.50.38000 31.7 17.7 7.88 32.7 7.84 -3.1 0.5 2550 40.8 13.4 1.90 39.1 1.914.4-0.58500 30.9 18.0 8.49 32.1 8.45 -4.0 0.5 2600 40.8 13.5 1.95 39.0 1.964.6-0.79000 30.0 18.2 9.10 31.5 9.08 -4.8 0.3 3500 39.2 13.9 2.71 37.9 2.913.4-6.99500 29.2 18.4 9.71 31.0 9.71 -5.6 0.0 3700 38.9 14.1 2.89 37.7 3.123.3-7.210000 28.4 18.5 10.32 30.4 10.36 -6.4 -0.4 7-Nov-18 -15.0 -10.0 -5.0 0.0 5.0 10.0 15.0 500 1500 2500 3500 4500 5500 6500 7500 8500 9500 Dev. Permittivity % Frequency MHz -15.0 -10.0 -5.0 0.0 5.0 10.0 15.0 500 1500 2500 3500 4500 5500 6500 7500 8500 9500 Dev. Conductivity % Frequency MHz TSL Dielectric Parameters1
Plot No. 1 UL Korea, Ltd. Suwon Laboratory SAR#1 Date/Time: 2026-05-15 System Performance Check Report for D2450V2 - SN960 Room Ambient Temperature: 23.0°C, Liquid Temperature: 22.0°C Exposure Conditions Frequency [MHz] 2450.000 TSL Permittivity 38.6 Group / UID CW / 0- TSL Conductivity [S/m] 1.85 Conversion Factor 6.68 Phantom Section / TSL Flat / Head Simulating Liquid DASY Configuration Probe | Calibration Date EX3DV4 - SN7645 | 2025-10-20 Phantom Twin-SAM V5.0 (30deg probe tilt) DAE | Calibration Date DAE4 Sn1447 | 2026-03-13 TSL Type DAK 3.5 23 deg.C 2026-May-15 08_10_14 Software Version 17.0.2.6775 Scans 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 Measurement Results Area Sc…
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19 Chapin Rd., Building D · Pine Brook, 07058 · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15F | 6.50 GHz - 8.00 GHz | - |
Portable Handset
Equipment Class
6VL - 15E 6 GHZ Very Low Power DeviceBT,BLE Tablet DTS,UNII a,b,g,n,ac,ax,be and digitizer
Equipment Class
DTS - Digital Transmission SystemPortable Handset
Equipment Class
6CD - 15E 6 GHz Low Power Dual ClientBT,BLE Tablet DTS,UNII a,b,g,n,ac,ax and Digitizer
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterWCDMA, LTE, 5G NR Tablet BT,BLE, DTS,UNII a b g n ac ax and Digitizer
Equipment Class
JBP - Part 15 Class B Computing Device Peripheral