Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Head Tissue Simulating Liquids Application Specific absorption rate according to standards (e.g., IEC 62209-x, IEEE 1528) Packaging Plastic container of 10 liters with nozzle Life Time Life time and stability of the liquid depend on usage, storage, and handling of tissue simulating liquid Options Tissue simulating liquids for frequencies outside the below listed ranges are available upon request (please contact [email protected]) Head Tissue Parameters according to IEEE 1528 / IEC 62209-1/ IEC 62209-2 / FCC KDB 865664 Narrow- Band Solutions (Β±5% Tolerance) Product HSL300V2 HSL450V2 HSL750V2 HSL900V2 Test Frequency (MHz) 300 450 750 835, 900 Main Ingredients Water, Sugar Water, Sugar Water, Sugar Water, Sugar Broad- Band Solutions (Β±5% Tolerance) Product HBBL1350-1850V3 HBBL1550-1950V3 HBBL1900-3800V3 HBBL3500-5800V5 Test Frequency (MHz) 1450 β 1800 1750 β 1850 1950 β 3000 3500 β 5800 Main Ingredients Water, Tween Water, Tween Water, Tween Water, Oil Broad- Band Solutions (Β±10% Tolerance) Product HBBL4-250V3 HBBL1350-1850V3 HBBL1550-1950V3 HBBL1900-3800V3 HBBL600-10000V6 Test Frequency (MHz) 4 β 250 1300 β 1850 1550 β 1950 1900 β 3800 600 β 10000 Main Ingredients Water, Tween Water, Tween Water, Tween Water, Tween Water, Oil
Dipole Impedance Measurement Equipment Location Equipment Name Model Name Date of Verification UL Verification Services Inc. 47173 Benicia Street Fremont, CA 94538, U.S.A. Dipole Antenna CLA13-1008 November 12, 2024 Number: Check List: Result: 1 Visual Inspection Pass 2 Return/Loss and Impedance Pass 3 Dipole Arms Pass Equipment List: Equipment Name: Calibration Date: R&S Vector Network Analyzer 2/13/2024 ZV-Z135 Calibration Kit 3/27/2024 Dipole Impedance Measurement 1) Photo of Dipole β’ The connector of dipole contains no abnormalities. Dipole Impedance Measurement 2) Impedance and Return/Loss β’ Return/Loss is greater than the -20 dB cutoff and Impedance is within 5 β¦ of previous value. Dipole Impedance Measurement 3) Dipole Arms β’ The center red line indicates that the arms of the dipole fall within Β±2Β° Dipole Impedance Measurement Equipment Location Equipment Name Model Name Date of Verification UL Verification Services Inc. 47173 Benicia Street Fremont, CA 94538, U.S.A. Dipole Antenna CLA13-1008 December 9, 2025 Number: Check List: Result: 1 Visual Inspection Pass 2 Return/Loss and Impedance Pass 3 Dipole Arms Pass Equipment List: Equipment Name: Calibration Date: R&S Vector Network Analyzer 2/19/2025 ZV-Z135 Calibration Kit 2/21/2025 Dipole Impedance Measurement 1) Photo of Dipole β’ The connector of dipole contains no abnormalities. Dipole Impedance Measurement 2) Impedance and Return/Loss β’ Return/Loss is greater than the -20 dB cutoff and Impedance is within 5 β¦ of previous value. Dipole Impedance Measurement 3) Dipole Arms β’ The center red line indicates that the arms of the dipole fall within Β±2Β°
Appendix: G Power Reduction Validation Model Number: A3575 Date:12/22/2025 P O W E R R E D U C T I O N V E R I F I C A T I O N This device supports power reduction for the cellular, Wi-Fi and Bluetooth transmitters. Power reduction is based on the RCVR status to determine head exposure (RCVR active indicating the earpiece is being used for audio) or body exposure (RCVR is off). There are additional power reduction mechanisms for the Wi-Fi and Bluetooth transmitters based on the operating state of the cellular and (for Bluetooth) Wi-Fi transmitters. Details of these mechanisms can be found in the Operational Description. The verification plan consists of measuring the power levels of the Bluetooth and Wi-Fi transmitters under different operating conditions to demonstrate that all three mechanisms (RCVR, cellular on/off and Wi-Fi on/off) trigger power reduction. A. Verification of power reduction levels for Wi-Fi was performed with RCVR on and off and with cellular transmitter on and off. B. Verification of power reduction levels for Bluetooth was performed with different combinations of RCVR on and off, cellular transmitter on and off and Wi-Fi transmitter on and off. For testing purposes, the device was loaded with a power table 1 for each transmitter that had different power settings for each of the operating states. The target / expected power level and measured power levels are detailed in the following tables and clearly show that mechanisms operate as expected. RLAN: Based on the utilization ratio, a power control algorithm will allow the active WLAN to increase power until the utilization ratio approaches the limit. The algorithm will then disable the power increase until the utilization ratio decreases. A predictive power control feature further ensures regulatory compliance by disabling all transmitters if there are any scenarios where aggregate maximum WLAN transmissions over the next 1-second interval could cause the utilization ratio to exceed the regulatory limit. Appendix: G Power Reduction Validation Model Number: A3575 Date:12/22/2025 Table 1 βPower Reduction and Cellular State validation for Wi-Fi Table 2 βBody Reduction and Cellular State validation for Bluetooth The power tables used for the mechanism validation may not match the production power tables detailed in the main SAR report because production power levels are not established at the time these measurements were made. Table 3 βTest Equipment used for Verification Other Name of EquipmentManufacturerType/ModelSerial No.Cal. Due Date Wideband Radio Communication TesterR&SCMX500500-07033-02407/21/2026 Power MeterR&SNRP21144.1374K02-102410-dd7/28/2027 Power SensorR&SNRP18SN1137.9009.02-104979-Gx8/14/2026 Power Reduction Cellular StateONOFFONOFF E:14.75E:18.5E:16.75E:18.5 M:14.5M:18.08M:16.6M:18.2 Head (RCVR = ON) 2.4 GHz 802.11b SISO Body (RCVR = OFF) All measured power values (M) were within the expected tolerances of the target/expected power levels (E) programmed into the power table for the Head versus Body and Cellular ON/OFF states. Mechanism of power reduction and Cellular state was verified. Power Reduction Cellular State 5GHz Wi-Fi stateONOFFONOFFONOFFONOFF P Low Mode A P High Mode A P High mode A P standalone Mode AP Low Mode BP High Mode B P High Mode BP Standalone Mode B BT Table P 1 BT Table P 0 BT Table P 9 BT Table P 8 BT Table P 3 BT Table P 2 BT Table P 11 BT Table P 10 E:10.0E:16.0E:16.0E:18.5E:11.5E:17.5E:17.5E:18.5 M:9.2M: 15.47M: 15.8M:17.9M:11.1M:16.9M: 17.0M:17.8 Bluetooth transmitter set for hopping channel in BDR mode. All measured power values (M) were within the expected tolerances of the target/expected power levels (E) programmed into the power table for the Head versus Body, Cellular ON/OFF and Wi-Fi ON/OFF states. Mechanism of power reduction and Cellular state and Wi-Fi state were verified. Expected power condition Power (dBm) Head (RCVR = ON)Body (RCVR = OFF) ONOFFONOFF
Appendix H: Antenna Cluster Analysis This device supports Cellular Antenna Clustering for transmission of Power Mode B. Collocated cellular antennas with significant overlap of RF exposure hotspots are grouped into a single cluster. Non-collocated cellular antennas are grouped in a separate cluster. Non-collocated clusters operate with independent cellular budget allocations. This operation is managed by the cellular time-averaging implementation. Cellular antennas 1/3/7/9 are assigned to the Lower Antenna Cluster (AC1). Cellular antennas 2/4/8 are assigned to the Upper Antenna Cluster (AC2). All Antenna Clustering analysis was performed using a WWAN (AC1) + WWAN (AC2) combination. Connectivity was also considered to ensure total device compliance. Cellular Antennas Connectivity Antennas AC1AC2 ANT 1/3/7/9ANT 2/4/8 ANT 3/5ANT 4/6 The following procedure was performed in order to determine compliance for Simultaneous Analysis: 1. Sum of SAR: a. Sum of SAR is performed on all unique band and antenna combinations between AC1 and AC2. b. Any combination where the sum is β€ the applicable RF exposure limit is validated and can be excluded from further evaluation. Any configuration where the sum is > the applicable RF exposure limit requires further evaluation per the following steps. 2. SPLSR: a. SPLSR is performed for combinations from Step 1 that are > the applicable RF exposure limit. b. The overall minimum separation distance between peak SAR points of each cluster is used for assessment, per each unique band combined. c. When the SPLSR calculation is β€ the applicable published SPLSR limit, no further assessment is required. Any configuration where the SPLSR calculation is > the applicable published SPLSR limit requires further evaluation per the following step. 3. Multi-Tx Combined Measurement: a. Multi-Tx combined measurement is performed for combinations from Step 2 that are > the applicable published SPLSR limit. b. The area scans for each combination from Step 2 that was > the applicable published SPLSR limit were used. The combined area scan is used to determine the point of peak SAR. c. Zoom scans are performed for the overall worst case WWAN and Connectivity configurations from the Area Scan analysis, per each unique band combination, at the location with the highest peak SAR. These zoom scans are combined to determine the overall measured 1g aggregate SAR value. d. The overall measured 1g aggregate SAR value must be compliant to the regulatory SAR limit to validate non-collocation. Conclusion: When following the procedure outlined above, if the device is within the thresholds for any of the three steps, then the device is determined to be compliant for Simultaneous Analysis. 1. Sum of SAR + SPLSR 1.1. Back Position 1.1.1. GSM 850 AC 1 + Cellular AC 2 + Connectivity Sum of SAR BandSAR (W/kg)BandSAR (W/kg)BandSAR (W/kg)BandSAR (W/kg)SAR (W/kg) GSM 850_ANT 10.882GSM 850_ANT 20.999Wi-Fi 2.4_ANT 30.487Wi-Fi 2.4_ANT 40.484GSM 850_ANT 1 + GSM 850_ANT 2 + Connectivity2.473101.930.04 GSM 850_ANT 10.882GSM 1900_ANT 20.721Wi-Fi 5.2_ANT 50.496Wi-Fi 5.2_ANT 60.000GSM 850_ANT 1 + GSM 1900_ANT 2 + Connectivity2.195101.930.03 GSM 850_ANT 10.882W-CDMA B2_ANT 20.863Wi-Fi 5.3_ANT 50.000Wi-Fi 5.3_ANT 60.451GSM 850_ANT 1 + W-CDMA B2_ANT 2 + Connectivity2.337101.930.04 GSM 850_ANT 10.882W-CDMA B4_ANT 20.769Wi-Fi 5.5_ANT 50.480Wi-Fi 5.5_ANT 60.487GSM 850_ANT 1 + W-CDMA B4_ANT 2 + Connectivity2.243101.930.03 GSM 850_ANT 10.882W-CDMA B5_ANT 20.934Wi-Fi 5.8_ANT 50.492Wi-Fi 5.8_ANT 60.490GSM 850_ANT 1 + W-CDMA B5_ANT 2 + Connectivity2.408101.930.04 GSM 850_ANT 10.882LTE B5_ANT 20.890Bluetooth_ANT 30.096Bluetooth_ANT 40.093GSM 850_ANT 1 + LTE B5_ANT 2 + Connectivity2.364101.930.04 GSM 850_ANT 10.882LTE B7_ANT 20.952GSM 850_ANT 1 + LTE B7_ANT 2 + Connectivity2.426101.930.04 GSM 850_ANT 10.882LTE B12_ANT 20.624GSM 850_ANT 1 + LTE B12_ANT 2 + Connectivity2.098101.930.03 GSM 850_ANT 10.882LTE B13_ANT 20.739GSM 850_ANT 1 + LTE B13_ANT 2 + Connectivity2.213101.930.03 GSM 850_ANT 10.882LTE B14_ANT 20.929GSM 850_ANT 1 + LTE B14_ANT 2 + Connectivity2.403101.930.04 GSM 850_ANT 10.882LTE B25_ANT 20.983GSM 850_ANT 1 + LTE B25_ANT 2 + Connectivity2.457101.930.04 GSM 850_ANT 10.882LTE B26_ANT 20.989GSM 850_ANT 1 + LTE B26_ANT 2 + Connectivity2.463101.930.04 GSM 850_ANT 10.882LTE B30_ANT 20.972GSM 850_ANT 1 + LTE B30_ANT 2 + Connectivity2.446101.930.04 GSM 850_ANT 10.882LTE B41_ANT 20.852GSM 850_ANT 1 + LTE B41_ANT 2 + Connectivity2.326101.930.03 GSM 850_ANT 10.882LTE B53_ANT 20.956GSM 850_ANT 1 + LTE B53_ANT 2 + Connectivity2.430101.930.04 GSM 850_ANT 10.882LTE B66_ANT 20.985GSM 850_ANT 1 + LTE B66_ANT 2 + Connectivity2.459101.930.04 GSM 850_ANT 10.882LTE B71_ANT 20.565GSM 850_ANT 1 + LTE B71_ANT 2 + Connectivity2.039101.930.03 GSM 850_ANT 10.882FR1 n5_ANT 20.866GSM 850_ANT 1 + FR1 n5_ANT 2 + Connectivity2.340101.930.04 GSM 850_ANT 10.882FR1 n7_ANT 20.968GSM 850_ANT 1 + FR1 n7_ANT 2 + Connectivity2.442101.930.04 GSM 850_ANT 10.882FR1 n12_ANT 20.555GSM 850_ANT 1 + FR1 n12_ANT 2 + Connectivity2.029101.930.03 GSM 850_ANT 10.882FR1 n14_ANT 20.852GSM 850_ANT 1 + FR1 n14_ANT 2 + Connectivity2.326101.930.03 GSM 850_ANT 10.882FR1 n25_ANT 20.801GSM 850_ANT 1 + FR1 n25_ANT 2 + Connectivity2.275101.930.03 GSM 850_ANT 10.882FR1 n26_ANT 20.821GSM 850_ANT 1 + FR1 n26_ANT 2 + Connectivity2.295101.930.03 GSM 850_ANT 10.882FR1 n30_ANT 20.944GSM 850_ANT 1 + FR1 n30_ANT 2 + Connectivity2.418101.930.04 GSM 850_ANT 10.882FR1 n41_ANT 20.532GSM 850_ANT 1 + FR1 n41_ANT 2 + Connectivity2.006101.930.03 GSM 850_ANT 10.882FR1 n53_ANT 20.858GSM 850_ANT 1 + FR1 n53_ANT 2 + Connectivity2.332101.930.03 GSM 850_ANT 10.882FR1 n66_ANT 20.731GSM 850_ANT 1 + FR1 n66_ANT 2 + Connectivity2.205101.930.03 GSM 850_ANT 10.882FR1 n70_ANT 20.903GSM 850_ANT 1 + FR1 n70_ANT 2 + Connectivity2.377101.930.04 GSM 850_ANT 10.882FR1 n71_ANT 20.483GSM 850_ANT 1 + FR1 n71_ANT 2 + Connectivity1.957101.930.03 GSM 850_ANT 10.882GSM 1900_ANT 40.685GSM 850_ANT 1 + GSM 1900_ANT 4 +β¦
Text truncated - open the document above for the full version.
Plot 1 Measurement Report for Multi-TX Evaluator Exposure Conditions Phantom Section Position Test Distance [mm] Band Group UID Rev Frequency [MHz] Channel Number Flat HSL BACK 5.00 Band n30 5G NR FR1 FDD 10929 AAD 2310.000 462000 Flat HSL BACK 5.00 GSM 850 GSM 10024 DAC 824.200 128 Flat HSL BACK 5.00 ISM 2.4 GHz Band Bluetooth 10032 CAA 2441.000 39 Flat HSL BACK 5.00 U-NII-1, U-NII- 2A WLAN 10544 AAD 5210.000 42 Flat HSL BACK 5.00 WLAN 5GHz WLAN 10544 AAD 5775.000 155 Flat HSL BACK 5.00 ISM 2.4 GHz Band / Band n30 Bluetooth / 5G NR FR1 FDD 10032 / 10929 CAA / AAD 2441.000 / 2310.000 39 / 462000 SAR Measurement Results Date Scan Name psSAR1g [W/kg] psSAR10g [W/kg] Tune-up [dB] Drift [dB] M2/M1 [%] Dist 3dB [mm] 2025-11-25, 00:16 Combined Area Scan 1.17 0.642 -0.23 N/A N/A N/A 2025-11-25, 00:16 Area Scan 0.086 0.039 -0.23 N/A N/A N/A 2025-10-30, 09:09 Area Scan 0.845 0.449 -0.16 N/A N/A N/A 2025-11-07, 19:48 Area Scan 0.272 0.066 0.04 N/A N/A N/A 2025-11-24, 22:42 Area Scan 0.100 0.049 -0.23 N/A N/A N/A 2025-11-11, 21:23 Area Scan 0.622 0.405 0.11 N/A N/A N/A 2025-12-02, 08:48 Area Scan 0.313 0.085 0.06 N/A N/A N/A Plot 2 Measurement Report for Multi-TX Evaluator Exposure Conditions Phantom Section Position Test Distance [mm] Band Group UID Rev Frequency [MHz] Channel Number Flat HSL BACK 5.00 Band n30 5G NR FR1 FDD 10929 AAD 2310.000 462000 Flat HSL BACK 5.00 GSM 850 GSM 10024 DAC 836.600 190 Flat HSL BACK 5.00 ISM 2.4 GHz Band Bluetooth 10032 CAA 2441.000 39 Flat HSL BACK 5.00 U-NII-1, U-NII- 2A WLAN 10544 AAD 5210.000 42 Flat HSL BACK 5.00 WLAN 5GHz WLAN 10544 AAD 5775.000 155 Flat HSL BACK 5.00 GSM 850 / WLAN 5GHz GSM / WLAN 10024 / 10544 DAC / AAD 836.600 / 5775.000 190 / 155 SAR Measurement Results Date Scan Name psSAR1g [W/kg] psSAR10g [W/kg] Tune-up [dB] Drift [dB] M2/M1 [%] Dist 3dB [mm] 2025-11-03, 20:48 Combined Area Scan 1.19 0.698 -0.23 N/A N/A N/A 2025-11-03, 20:48 Area Scan 0.723 0.467 0.03 N/A N/A N/A 2025-12-02, 08:48 Area Scan 0.313 0.085 0.06 N/A N/A N/A 2025-10-30, 09:09 Area Scan 0.845 0.449 -0.16 N/A N/A N/A 2025-11-25, 00:16 Area Scan 0.086 0.039 -0.23 N/A N/A N/A 2025-11-07, 19:48 Area Scan 0.272 0.066 0.04 N/A N/A N/A 2025-11-24, 22:42 Area Scan 0.100 0.049 -0.23 N/A N/A N/A Plot 3 Measurement Report for Multi-TX Evaluator Exposure Conditions Phantom Section Position Test Distance [mm] Band Group UID Rev Frequency [MHz] Channel Number Flat HSL BACK 5.00 Band n30 5G NR FR1 FDD 10929 AAD 2310.000 462000 Flat HSL BACK 5.00 GSM 850 GSM 10024 DAC 848.800 251 Flat HSL BACK 5.00 ISM 2.4 GHz Band Bluetooth 10032 CAA 2441.000 39 Flat HSL BACK 5.00 U-NII-1, U-NII- 2A WLAN 10544 AAD 5210.000 42 Flat HSL BACK 5.00 WLAN 5GHz WLAN 10544 AAD 5775.000 155 Flat HSL BACK 5.00 Band n30 / ISM 2.4 GHz Band 5G NR FR1 FDD / Bluetooth 10929 / 10032 AAD / CAA 2310.000 / 2441.000 462000 / 39 SAR Measurement Results Date Scan Name psSAR1g [W/kg] psSAR10g [W/kg] Tune-up [dB] Drift [dB] M2/M1 [%] Dist 3dB [mm] 2025-10-30, 09:09 Combined Area Scan 1.24 0.726 -0.23 N/A N/A N/A 2025-10-30, 09:09 Area Scan 0.845 0.449 -0.16 N/A N/A N/A 2025-11-24, 22:42 Area Scan 0.100 0.049 -0.23 N/A N/A N/A 2025-11-11, 21:57 Area Scan 0.746 0.480 0.09 N/A N/A N/A 2025-11-25, 00:16 Area Scan 0.086 0.039 -0.23 N/A N/A N/A 2025-11-07, 19:48 Area Scan 0.272 0.066 0.04 N/A N/A N/A 2025-12-02, 08:48 Area Scan 0.313 0.085 0.06 N/A N/A N/A Plot 4 Measurement Report for Multi-TX Evaluator Exposure Conditions Phantom Section Position Test Distance [mm] Band Group UID Rev Frequency [MHz] Channel Number Flat HSL BACK 5.00 Band n30 5G NR FR1 FDD 10937 AAD 2310.000 462000 Flat HSL BACK 5.00 GSM 850 GSM 10024 DAC 824.200 128 Flat HSL BACK 5.00 ISM 2.4 GHz Band Bluetooth 10032 CAA 2441.000 39 Flat HSL BACK 5.00 U-NII-1, U-NII- 2A WLAN 10544 AAD 5210.000 42 Flat HSL BACK 5.00 WLAN 5GHz WLAN 10544 AAD 5775.000 155 Flat HSL BACK 5.00 GSM 850 / Band n30 GSM / 5G NR FR1 FDD 10024 / 10937 DAC / AAD 824.200 / 2310.000 128 / 462000 SAR Measurement Results Date Scan Name psSAR1g [W/kg] psSAR10g [W/kg] Tune-up [dB] Drift [dB] M2/M1 [%] Dist 3dB [mm] 2025-11-11, 21:23 Combined Area Scan 1.16 0.640 -0.23 N/A N/A N/A 2025-11-11, 21:23 Area Scan 0.622 0.405 0.11 N/A N/A N/A 2025-10-30, 10:49 Area Scan 0.825 0.436 -0.16 N/A N/A N/A 2025-11-24, 22:42 Area Scan 0.100 0.049 -0.23 N/A N/A N/A 2025-11-25, 00:16 Area Scan 0.086 0.039 -0.23 N/A N/A N/A 2025-11-07, 19:48 Area Scan 0.272 0.066 0.04 N/A N/A N/A 2025-12-02, 08:48 Area Scan 0.313 0.085 0.06 N/A N/A N/A Plot 5 Measurement Report for Multi-TX Evaluator Exposure Conditions Phantom Section Position Test Distance [mm] Band Group UID Rev Frequency [MHz] Channel Number Flat HSL BACK 5.00 Band n30 5G NR FR1 FDD 10937 AAD 2310.000 462000 Flat HSL BACK 5.00 GSM 850 GSM 10024 DAC 836.600 190 Flat HSL BACK 5.00 ISM 2.4 GHz Band Bluetooth 10032 CAA 2441.000 39 Flat HSL BACK 5.00 U-NII-1, U-NII- 2A WLAN 10544 AAD 5210.000 42 Flat HSL BACK 5.00 WLAN 5GHz WLAN 10544 AAD 5775.000 155 Flat HSL BACK 5.00 ISM 2.4 GHz Band / Band n30 Bluetooth / 5G NR FR1 FDD 10032 / 10937 CAA / AAD 2441.000 / 2310.000 39 / 462000 SAR Measurement Results Date Scan Name psSAR1g [W/kg] psSAR10g [W/kg] Tune-up [dB] Drift [dB] M2/M1 [%] Dist 3dB [mm] 2025-11-24, 22:42 Combined Area Scan 1.19 0.696 -0.23 N/A N/A N/A 2025-11-24, 22:42 Area Scan 0.100 0.049 -0.23 N/A N/A N/A 2025-10-30, 10:49 Area Scan 0.825 0.436 -0.16 N/A N/A N/A 2025-11-25, 00:16 Area Scan 0.086 0.039 -0.23 N/A N/A N/A 2025-11-07, 19:48 Area Scan 0.272 0.066 0.04 N/A N/A N/A 2025-11-03, 20:48 Area Scan 0.723 0.467 0.03 N/A N/A N/A 2025-12-02, 08:48 Area Scan 0.313 0.085 0.06 N/A N/A N/A Plot 6 Measurement Report for Multi-TX Evaluator Exposure Conditions Phantom Section Position Test Distance [mm] Band Group UID Rev Frequency [MHz] Channel Number Flat HSL BACK 5.00 Band n30 5G NR FR1 FDD 10937 AAD 2310.000 462000 Flat HSL BACK 5.00 GSM 850 GSM 10024 DAC 848.800 251 Flat HSL BACK 5.00 ISM 2.4 GHz Band Bluetooth 10032 CAA 2441.000 39 Flat HSL BACK 5.00 U-NII-1, Uβ¦
Text truncated - open the document above for the full version.
Plot 1 Zoom Scan Analyses Measurement Report for Multi-TX Evaluator Exposure Conditions Phantom Section Position Test Distance [mm] Band Group UID Rev Frequency [MHz] Channel Number Flat HSL BACK 5.00 Band n30 5G NR FR1 FDD 10929 AAD 2310.000 462000 Flat HSL BACK 5.00 GSM 850 GSM 10024 DAC 848.800 251 Flat HSL BACK 5.00 ISM 2.4 GHz Band Bluetooth 10032 CAA 2441.000 39 Flat HSL BACK 5.00 WLAN 5GHz WLAN 10544 AAD 5210.000 42 Flat HSL BACK 5.00 WLAN 5GHz WLAN 10544 AAD 5775.000 155 Flat HSL BACK 5.00 ISM 2.4 GHz Band / WLAN 5GHz Bluetooth / WLAN 10032 / 10544 CAA / AAD 2441.000 / 5210.000 39 / 42 SAR Measurement Results Date Scan Name psSAR1g [W/kg] psSAR10g [W/kg] Tune-up [dB] Drift [dB] M2/M1 [%] Dist 3dB [mm] 2025-12-04, 20:57 Combined Zoom Scan 1.31 0.632 -0.32 N/A N/A N/A 2025-12-04, 20:57 Zoom Scan 0.01 0.003 -0.19 0.02 86.5 1.0 2025-12-04, 21:37 Zoom Scan 0 0 0.00 -0.51 16.9 1.2 2025-12-04, 21:09 Zoom Scan 0.047 0.024 -0.19 -0.06 94.6 11.5 2025-12-04, 23:40 Zoom Scan 0.684 0.392 -0.32 0.00 80.8 11.4 2025-12-04, 22:02 Zoom Scan 0.302 0.086 0.07 0.10 57.4 4.6 2025-12-04, 21:25 Zoom Scan 0.009 0.004 -0.05 -0.24 79.5 11.8 Plot 2 Measurement Report for Multi-TX Evaluator Exposure Conditions Phantom Section Position Test Distance [mm] Band Group UID Rev Frequency [MHz] Channel Number Flat HSL BACK 5.00 Band n30 5G NR FR1 FDD 10929 AAD 2310.000 462000 Flat HSL BACK 5.00 Band 25 LTE-FDD 10169 CAF 1882.500 26365 Flat HSL BACK 5.00 ISM 2.4 GHz Band Bluetooth 10032 CAA 2441.000 39 Flat HSL BACK 5.00 WLAN 5GHz WLAN 10544 AAD 5210.000 42 Flat HSL BACK 5.00 WLAN 5GHz WLAN 10544 AAD 5775.000 155 Flat HSL BACK 5.00 ISM 2.4 GHz Band / Band 25 Bluetooth / LTE-FDD 10032 / 10169 CAA / CAF 2441.000 / 1882.500 39 / 26365 SAR Measurement Results Date Scan Name psSAR1g [W/kg] psSAR10g [W/kg] Tune-up [dB] Drift [dB] M2/M1 [%] Dist 3dB [mm] 2025-12-04, 21:20 Combined Zoom Scan 0.699 0.356 -0.19 N/A N/A N/A 2025-12-04, 21:20 Zoom Scan 0.008 0.004 -0.18 0.02 84.3 9.3 2025-12-05, 01:01 Zoom Scan 0.027 0.017 -0.09 0.03 93.1 12.6 2025-12-04, 21:33 Zoom Scan 0.583 0.305 -0.19 -0.11 78.3 9.9 2025-12-04, 22:37 Zoom Scan 0.003 0 0.07 0.05 19.3 2.4 2025-12-04, 22:01 Zoom Scan 0.005 0 0.05 -0.09 76.8 3.2 2025-12-04, 21:51 Zoom Scan 0.057 0.027 -0.05 0.14 74.7 9.1 Plot 3 Measurement Report for Multi-TX Evaluator Exposure Conditions Phantom Section Position Test Distance [mm] Band Group UID Rev Frequency [MHz] Channel Number Flat HSL BACK 5.00 Band n30 5G NR FR1 FDD 10929 AAD 2310.000 462000 Flat HSL BACK 5.00 Band 30 LTE-FDD 10154 CAH 2310.000 27710 Flat HSL BACK 5.00 ISM 2.4 GHz Band Bluetooth 10032 CAA 2441.000 39 Flat HSL BACK 5.00 WLAN 5GHz WLAN 10544 AAD 5210.000 42 Flat HSL BACK 5.00 WLAN 5GHz WLAN 10544 AAD 5775.000 155 Flat HSL BACK 5.00 WLAN 5GHz / ISM 2.4 GHz Band WLAN / Bluetooth 10544 / 10032 AAD / CAA 5210.000 / 2441.000 42 / 39 SAR Measurement Results Date Scan Name psSAR1g [W/kg] psSAR10g [W/kg] Tune-up [dB] Drift [dB] M2/M1 [%] Dist 3dB [mm] 2025-12-04, 22:01 Combined Zoom Scan 0.676 0.347 -0.19 N/A N/A N/A 2025-12-04, 22:01 Zoom Scan 0.005 0 0.05 -0.09 76.8 3.2 2025-12-04, 21:20 Zoom Scan 0.008 0.004 -0.18 0.02 84.3 9.3 2025-12-04, 22:37 Zoom Scan 0.003 0 0.07 0.05 19.3 2.4 2025-12-05, 00:22 Zoom Scan 0.035 0.018 -0.15 0.08 93.8 7.1 2025-12-04, 21:33 Zoom Scan 0.583 0.305 -0.19 -0.11 78.3 9.9 2025-12-04, 21:51 Zoom Scan 0.057 0.027 -0.05 0.14 74.7 9.1 Plot 4 Measurement Report for Multi-TX Evaluator Exposure Conditions Phantom Section Position Test Distance [mm] Band Group UID Rev Frequency [MHz] Channel Number Flat HSL BACK 5.00 Band n30 5G NR FR1 FDD 10929 AAD 2310.000 462000 Flat HSL BACK 5.00 Band 66 LTE-FDD 10100 CAF 1745.000 132322 Flat HSL BACK 5.00 ISM 2.4 GHz Band Bluetooth 10032 CAA 2441.000 39 Flat HSL BACK 5.00 WLAN 5GHz WLAN 10544 AAD 5210.000 42 Flat HSL BACK 5.00 WLAN 5GHz WLAN 10544 AAD 5775.000 155 Flat HSL BACK 5.00 Band 66 / WLAN 5GHz LTE-FDD / WLAN 10100 / 10544 CAF / AAD 1745.000 / 5210.000 132322 / 42 SAR Measurement Results Date Scan Name psSAR1g [W/kg] psSAR10g [W/kg] Tune-up [dB] Drift [dB] M2/M1 [%] Dist 3dB [mm] 2025-12-05, 00:39 Combined Zoom Scan 0.686 0.350 -0.22 N/A N/A N/A 2025-12-05, 00:39 Zoom Scan 0.019 0.011 -0.22 -0.03 93.2 18.7 2025-12-04, 22:01 Zoom Scan 0.005 0 0.05 -0.09 76.8 3.2 2025-12-04, 21:20 Zoom Scan 0.008 0.004 -0.18 0.02 84.3 9.3 2025-12-04, 22:37 Zoom Scan 0.003 0 0.07 0.05 19.3 2.4 2025-12-04, 21:33 Zoom Scan 0.583 0.305 -0.19 -0.11 78.3 9.9 2025-12-04, 21:51 Zoom Scan 0.057 0.027 -0.05 0.14 74.7 9.1 Plot 5 Measurement Report for Multi-TX Evaluator Exposure Conditions Phantom Section Position Test Distance [mm] Band Group UID Rev Frequency [MHz] Channel Number Flat HSL BACK 5.00 Band n30 5G NR FR1 FDD 10929 AAD 2310.000 462000 Flat HSL BACK 5.00 Band 53 LTE-TDD 10470 AAG 2489.200 60197 Flat HSL BACK 5.00 ISM 2.4 GHz Band Bluetooth 10032 CAA 2441.000 39 Flat HSL BACK 5.00 WLAN 5GHz WLAN 10544 AAD 5210.000 42 Flat HSL BACK 5.00 WLAN 5GHz WLAN 10544 AAD 5775.000 155 Flat HSL BACK 5.00 WLAN 5GHz / ISM 2.4 GHz Band WLAN / Bluetooth 10544 / 10032 AAD / CAA 5775.000 / 2441.000 155 / 39 SAR Measurement Results Date Scan Name psSAR1g [W/kg] psSAR10g [W/kg] Tune-up [dB] Drift [dB] M2/M1 [%] Dist 3dB [mm] 2025-12-04, 23:15 Combined Zoom Scan 1.07 0.435 -0.19 N/A N/A N/A 2025-12-04, 23:15 Zoom Scan 0.308 0.086 0.07 0.03 58.6 4.6 2025-12-04, 22:20 Zoom Scan 0.014 0.005 -0.18 0.08 82.2 6.8 2025-12-05, 02:02 Zoom Scan 0.677 0.271 -0.06 -0.48 78.9 7.0 2025-12-04, 22:46 Zoom Scan 0.006 0.003 -0.05 -0.17 64.1 9.0 2025-12-05, 01:17 Zoom Scan 0.059 0.031 -0.19 -0.16 93.9 14.9 2025-12-04, 22:46 Zoom Scan 0 0 0.00 0.16 68.3 0.8 Plot 6 Measurement Report for Multi-TX Evaluator Exposure Conditions Phantom Section Position Test Distance [mm] Band Group UID Rev Frequency [MHz] Channel Number Flat HSL BACK 5.00 Band n30 5G NR FR1 FDD 10929 AAD 2310.000 462000 Flat HSL BACK 5.00 Band n7 5G NR FR1 FDD 10935 AAD 2535.000 507000 Flat HSL BACK 5.00 ISM 2.4 GHz Band Bluetooth 10032 CAAβ¦
Text truncated - open the document above for the full version.
WLAN TAS EVALUATION REPORT For SMARTPHONE FCC ID: BCG-E9145A Model Name: A3575 Report Number: 15941282-S7V1 Issue Date: 2025/12/19 Prepared for APPLE INC. ONE APPLE PARK WAY CUPERTINO, CA, 95014-2084 Prepared by UL VERIFICATION SERVICES INC. 47173 BENICIA STREET FREMONT, CA 94538, U.S.A. TEL: (510) 319-4000 FAX: (510) 661-0888 Report No.: 15941282-S7V1 Issue Date: 2025/12/19 Page 2 of 7 UL Verification Services Inc. Doc. No.: 1.0 This report shall not be reproduced without the written approval of UL Verification Services Inc. Revision History Rev. Date Revisions Revised By V1 2025/12/19 Initial Issue -- Report No.: 15941282-S7V1 Issue Date: 2025/12/19 Page 3 of 7 UL Verification Services Inc. Doc. No.: 1.0 This report shall not be reproduced without the written approval of UL Verification Services Inc. Table of Contents 1. Wi-Fi Time-Averaged SAR (TAS) Verification .............................................................................................. 4 1.1. Introduction ................................................................................................................................................ 4 1.2. Test Setup ................................................................................................................................................. 4 1.3. WLAN TAS Verification Test Results ........................................................................................................ 5 1.3.1. WLAN TAS Summary of Test Results .................................................................................................. 5 1.3.2. Scenario 1: Band, Antenna & P Limit Switching Test Cases ................................................................... 5 Appendices .................................................................................................................................................................. 7 Report No.: 15941282-S7V1 Issue Date: 2025/12/19 Page 4 of 7 UL Verification Services Inc. Doc. No.: 1.0 This report shall not be reproduced without the written approval of UL Verification Services Inc. 1. Wi-Fi Time-Averaged SAR (TAS) Verification 1.1. Introduction The DUT supports time-averaged SAR (TAS) technology for the WLAN transmitters. This algorithm only applies to WLAN; Bluetooth is not controlled by a TAS algorithm. Consistent with FCC guidance on compliance with time averaging exposure limits, the TAS implementation manages the transmitter power level and ensures that the DUT does not exceed the average power levels documented in UL FCC SAR report 15941282-S1. To validate the proper functioning of the time-average algorithm of this device, the following test scenarios were performed. These scenarios define the operation of the algorithm in all operational states: 1. Band, Antenna, and P Limit Switching: Switching between different bands, antennas and device operating states on a given cluster Predefined transmit profiles for each test scenario were created in test automation software to control the operation of the DUT while synchronized operation data was recorded from internal firmware and external power monitors. The DUT WLAN chipset applies a 1.5 dB uncertainty budget to all power control functions. Test scenarios were agreed upon with the FCC via KDB inquiry. 1.2. Test Setup The DUT does not support SDB. For Non-SDB measurements, switching occurs between antennas at 120 seconds during the observation window. The following P Limits for Body exposure and P Maxes were used to validate the TAS Algorithm. 2.4 GHz Parameters used during testing Table 1: Power Limits and Maximums for 2.4 GHz 5 GHz Parameters used during testing Table 2: Power Limits and Maximums for 5.8 GHz P Lim it P Max P Lim it P Max Cell Off (dBm)22222222 Cell Off (mW)158158158158 Cell On (dBm)192218.7522 Cell On (mW)7915875158 802.11b ANT 4ANT 3 Power Cellular StatusMode P Lim it P Max P Lim it P Max Cell Off (dBm)132118.2521 Cell Off (mW)2012667126 Cell On (dBm)9.52114.2521 Cell On (mW)912627126 802.11a ModeCellular Status Power ANT 5ANT 6 Report No.: 15941282-S7V1 Issue Date: 2025/12/19 Page 5 of 7 UL Verification Services Inc. Doc. No.: 1.0 This report shall not be reproduced without the written approval of UL Verification Services Inc. 1.3. WLAN TAS Verification Test Results The TAS implementation uses the total WLAN utilization ratio over a nominal 60 second time window to manage the transmitter power level and ensure that the DUT does not exceed the average power levels documented in UL FCC SAR report 15941282-S1. 1.3.1. WLAN TAS Summary of Test Results Summary of test results is illustrated below. Please refer to the proceeding sections for detailed test results for each Scenario. 1.3.2. Scenario 1: Band, Antenna & P Limit Switching Test Cases The evaluation in Figure 1 shows switching between antennas on the 2.4 GHz band on Cell Off (P2) and 5 GHz band Cell On (P1) at Time = 120 seconds. Both antennas are on the same cluster. In Figure 1, the instantaneous powers measured on power meters P1 and P2 do not exceed the P Max . Figure 2 demonstrates the compliance of the normalized powers against the normalized P Limit . P1 and P2 refβ¦
Text truncated - open the document above for the full version.
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15E | 5.18 GHz - 5.24 GHz | 194.00 mW |
| 2 | 15E | 5.26 GHz - 5.32 GHz | 196.00 mW |
| 3 | 15E | 5.50 GHz - 5.72 GHz | 200.00 mW |
| 4 | 15E | 5.75 GHz - 5.83 GHz | 247.00 mW |
Smartphone
Equipment Class
6VL - 15E 6 GHZ Very Low Power DeviceMagnetic Charging Cable
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHzMagnetic Charger
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHzMagnetic Charger
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHzSmartphone
Equipment Class
PCE - PCS Licensed Transmitter held to ear