Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
SPORTON INTERNATIONAL INC. TEL : 886-3-327-3456 FAX : 886-3-328-4978 D3500V2, serial no. 1014 Extended Dipole Calibrations If dipoles are verified in return loss (<-20dB, within 20% of prior calibration), and in impedance (within 5 ohm of prior calibration), the annual calibration is not necessary and the calibration interval can be extended. <Justification of the extended calibration> D3500V2 β serial no. 1014 3500MHZ Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 01.15.2025 (Cal. Report) -25.2 54 -4.1 01.14.2026 (extended) -25.713 -1.99 56.234 2.234 -4.4629 -0.3629 The return loss is < -20dB, within 20% of prior calibration; the impedance is within 5 ohm of prior calibration. Therefore the verification result should support extended calibration. SPORTON INTERNATIONAL INC. TEL : 886-3-327-3456 FAX : 886-3-328-4978 <Dipole Verification Data> - D3500 V2, serial no. 1014 (Data of Measurement : 01.14.2026) 3500MHz - Head SPORTON INTERNATIONAL INC. TEL : 886-3-327-3456 FAX : 886-3-328-4978 D3900HzV2, serial no. 1092 Extended Dipole Calibrations If dipoles are verified in return loss (<-20dB, within 20% of prior calibration), and in impedance (within 5 ohm of prior calibration), the annual calibration is not necessary and the calibration interval can be extended. <Justification of the extended calibration> D3900HzV2 β serial no. 1092 3900MHZ Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 05.15.2023 (Cal. Report) -27.655 49.234 -4.0453 05.14.2024 (extended) -25.709 7.037 49.904 0.670 -5.6816 -1.6363 05.13.2025 (extended) -27.817 0.586 50.762 1.528 -2.0149 2.0304 4100MHZ Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 05.15.2023 (Cal. Report) -22.637 56.029 5.0050 05.14.2024 (extended) -19.160 15.360 57.780 1.751 7.9912 2.9862 05.13.2025 (extended) -21.524 4.917 55.724 -0.305 7.8687 2.8637 The return loss is < -20dB, within 20% of prior calibration; the impedance is within 5 ohm of prior calibration. Therefore the verification result should support extended calibration. SPORTON INTERNATIONAL INC. TEL : 886-3-327-3456 FAX : 886-3-328-4978 <Dipole Verification Data> - D3900V2, serial no. 1092 (Data of Measurement : 05.14.2024) 3900MHz - Head SPORTON INTERNATIONAL INC. TEL : 886-3-327-3456 FAX : 886-3-328-4978 <Dipole Verification Data> - D3900 V2, serial no. 1092 (Data of Measurement : 05.13.2025) 3900 MHz - Head SPORTON INTERNATIONAL INC. TEL : 886-3-327-3456 FAX : 886-3-328-4978 D5000V2, serial no. 1006 Extended Dipole Calibrations If dipoles are verified in return loss (<-20dB, within 20% of prior calibration), and in impedance (within 5 ohm of prior calibration), the annual calibration is not necessary and the calibration interval can be extended. <Justification of the extended calibration> D5000V2 β serial no. 1006 5250MHZ Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 10.15.2024 (Cal. Report) -23.831 52.962 -5.937 10.14.2025 (extended) -19.925 16.39% 57.307 4.345 -9.5184 -3.5814 5600MHZ Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 10.15.2024 (Cal. Report) -20.994 57.190 -6.325 10.14.2025 (extended) -18.983 9.579% 55.998 -1.192 -6.4629 -0.1379 5800MHZ Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 10.15.2024 (Cal. Report) -24.405 55.486 3.209 10.14.2025 (extended) -22.094 9.469% 55.421 -0.065 6.6866 3.4776 The return loss is < -20dB, within 20% of prior calibration; the impedance is within 5 ohm of prior calibration. Therefore the verification result should support extended calibration. SPORTON INTERNATIONAL INC. TEL : 886-3-327-3456 FAX : 886-3-328-4978 <Dipole Verification Data> - D5000V2, serial no. 1006 (Data of Measurement : 10.14.2025) 5000 MHz - Head
TEL : 886-3-327-3456 Page Number : 1 of 21 FAX : 886-3-328-4978 Issue Date : Mar. 07, 2025 Report Template No.: BU5-FR15CNFC Version 2.5 Report Version : 01 FCC RADIO TEST REPORT Report No. : FR5N0809-01D FCC RADIO TEST REPORT FCC ID : A4RGPQQ7 Equipment : Phone Model Name : GPQQ7 Applicant : Google LLC 1600 Amphitheatre Parkway, Mountain View, CA, 94043 USA Standard : FCC Part 15 Subpart C Β§15.225 The product was received on Nov. 26, 2025 and testing was performed from Dec. 10, 2025 to Feb. 12, 2026. We, Sporton International Inc. EMC & Wireless Communications Laboratory, would like to declare that the tested sample has been evaluated in accordance with the test procedures and has been in compliance with the applicable technical standards. The test results in this report apply exclusively to the tested model / sample. Without written approval from Sporton International Inc. EMC & Wireless Communications Laboratory, the test report shall not be reproduced except in full. Approved by: Louis Wu Sporton International Inc. EMC & Wireless Communications Laboratory No. 52, Huaya 1st Rd., Guishan Dist., Taoyuan City 333, Taiwan (R.O.C.) TEL : 886-3-327-3456 Page Number : 2 of 21 FAX : 886-3-328-4978 Issue Date : Mar. 07, 2025 Report Template No.: BU5-FR15CNFC Version 2.5 Report Version : 01 FCC RADIO TEST REPORT Report No. : FR5N0809-01D Table of Contents History of this test report ................................................................................................................................. 3 Summary of Test Result................................................................................................................................... 4 1. General Description ..................................................................................................................................... 5 1.1 Product Feature of Equipment Under Test .......................................................................................................... 5 1.2 Modification of EUT ............................................................................................................................................. 5 1.3 Testing Location .................................................................................................................................................. 6 1.4 Applicable Standards........................................................................................................................................... 6 2. Test Configuration of Equipment Under Test ............................................................................................ 7 2.1 Descriptions of Test Mode ................................................................................................................................... 7 2.2 Connection Diagram of Test System ................................................................................................................... 8 2.3 Table for Supporting Units ................................................................................................................................... 9 2.4 EUT Operation Test Setup .................................................................................................................................. 9 3. Test Results ................................................................................................................................................ 10 3.1 AC Power Line Conducted Emissions Measurement ........................................................................................ 10 3.2 20dB and 99% OBW Spectrum Bandwidth Measurement ................................................................................. 12 3.3 Frequency Stability Measurement ..................................................................................................................... 13 3.4 Field Strength of Fundamental Emissions and Mask Measurement .................................................................. 14 3.5 Radiated Emissions Measurement .................................................................................................................... 16 3.6 Antenna Requirements ...................................................................................................................................... 19 4. List of Measuring Equipment .................................................................................................................... 20 5. Measurement Uncertainty .......................................................................................................................... 21 Appendix A. Test Results of Conducted Emission Test Appendix B. Test Results of Near Field Test Items B1. Test Result of 20dB Spectrum Bandwidth B2. Test Result of Frequency Stability Appendix C. Test Results of Radiated Test Items C1. Test Result of Field Strength of Fundamental Emissions C2. Results of Radiated Emissions (9 kHz~30MHz) C3. Results of Radiated Emissions (30MHz~1GHz) Appendix D. Setup Photographs TEL : 886-3-327-3456 Page Number : 3 of 21 FAX : 886-3-328-4978 Issue Date : Mar. 07, 2025 Report Template No.: BU5-FR15CNFC Version 2.5 Report Version : 01 FCC RADIO TEST REPORT Report No. : FR5N0809-01D History of this test report Report No. Version Description Issue Date FR5N0809-01D 01 Initial issue of report Mar. 07, 2025 TEL : 886-3-327-3456 Page Number : 4 of 21 FAX : 886-3-328-4978 Issue Date : Mar. 07, 2025 Report Template No.: BU5-FR15CNFC Version 2.5 Report Version : 01 FCC RADIO TEST REPORT Report No. : FR5N0809-01D Summary of Test Result Report Clause Ref Std. Clause Test Items Result (PASS/FAIL) Remark 3.1 15.207 AC Power Line Conducted Emissions Pass - 3.2 15.215(c) 20dB Spectrum Bandwidth Pass - 2.1049 99% OBW Spectrum Bandwidth Pass - 3.3 15.225(e) Frequency Stability Pass - 3.4 15.225(a)(b)(c) Field Strength of Fundamental Emissions Pass - 3.5 15.225(d) 15.209 Radiated Spurious Emissions Pass - 3.6 15.203β¦
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TEL : 886-3-327-3456 Page : G1 of G2 FAX : 886-3-328-4978 FCC SAR TEST REPORT Report No. :FA5N0809-01C Appendix G. Supplemental Antenna Tuner Tests Results General Note: 1. This device implements antenna tuning techniques in the several frequency band and list as below. SAR test proposal was measured according to the normally required SAR configurations with the tuner active and worst tune state (auto tune) was used for SAR testing and this design will provide the highest power at different user scenarios and would not influence to the antenna characteristics other than impedance matching. 2. Dynamic antenna tuning mechanism is available at Ant.0 for its < 3GHz LTE and NR band. The number of supported tune codes is different for each frequency band as shown in the following table. And itβs verified that tune state results in the highest SAR configuration 3. The antenna tuner state shall be controlled remotely such that the DUT position is not moved during the series of single-point SAR measurements. 4. For each air interface, exposure condition, and antenna that supports dynamic antenna tuning (DAT), the following procedure shall be followed: a. An area scan is performed with the DUT positioned for the exposure condition with auto-tuner enabled to determine the peak SAR location b. A single-point SAR measurement (i.e., time sweep) is performed at the peak SAR location of step a (that is, with auto-tuner enabled). The auto-tuner state shall be recorded, after verifying that it is stable. If fluctuations occur, the scan procedure can be restarted, or the state with the highest SAR needs to be recorded c. Without moving the probe, or introducing any other perturbation, the auto-tuner shall be disabled, and two other adjacent tune states shall be chosen by increasing and decreasing the state identification number by 1 d. A single point SAR measurement is then performed on both chosen adjacent states and compared with the value of step b. The measured SAR for auto-tuner disabled is expected to be less than or equal to the recorded SAR of step b. If the measured SAR is higher beyond documented tolerance, then the auto-tuning feature is not working as intended and is not suitable for compliance. DAT functionality shall be removed or adjusted by the manufacturer. If the measured SAR is higher than the value of step b but within tolerance, the next adjacent state(s) shall be chosen and the measure repeated until a lower SAR value can be shown; otherwise, the DAT is considered inoperative and shall be removed or adjusted by the manufacturer. e. Repeat step b with auto-tuning enabled as a test for variability within tolerance: the previous measured value in step 2.2 shall be recovered. If the measured SAR is outside the expected tolerance, then the auto-tuning feature is considered not working as intended and not suitable for compliance. DAT functionality shall be removed or adjusted by the manufacturer f. If any single-point SAR measurement result is >1.4 W/kg, then all tune states for that particular combination of air interface, exposure condition, and antenna selection shall be evaluated with single-point SAR measurements. Antenna Band Number of tune states ANT 0 LTE Band 12/17/ FR1 n12 409 LTE Band 13 / FR1 n13 409 LTE Band 14 / FR1 n14 409 LTE Band 26/5 / FR1 n26/5 409 LTE Band 71 / FR1 n71 409 TEL : 886-3-327-3456 Page : G2 of G2 FAX : 886-3-328-4978 FCC SAR TEST REPORT Report No. :FA5N0809-01C <Antenna tuner Verification result> Ant. RF exposure position Band Mode Channel Setting Test Position Measured 1g SAR (W/kg) Reported 1g SAR (W/kg) Auto-tuner enable_Initial Auto-tuner disabled Verify adjacent tuner Repeat Auto-tuner enable State Single Point SAR (W/kg) State Single Point SAR (W/kg) State Single Point SAR (W/kg) State Single Point SAR (W/kg) Ant 0 LTE Band 12 10M_QPSK_1_0 23095 ECI2 Left Cheek 0.254 0.278 405 0.321 404 0.222 406 0.266 405 0.315 Ant 0 LTE Band 12 10M_QPSK_1_0 23095 ECI6 Back 0.634 0.694 405 0.833 404 0.655 406 0.511 405 0.823 Ant 0 LTE Band 13 10M_QPSK_1_0 23230 ECI2 Left Cheek 0.225 0.251 405 0.296 404 0.244 406 0.150 405 0.291 Ant 0 LTE Band 13 10M_QPSK_1_0 23230 ECI6 Back 0.796 0.796 405 0.966 404 0.933 406 0.923 405 0.955 Ant 0 LTE Band 14 10M_QPSK_1_0 23330 ECI2 Left Cheek 0.230 0.257 405 0.302 404 0.281 406 0.251 405 0.295 Ant 0 LTE Band 14 10M_QPSK_25_0 23330 ECI6 Back 0.671 0.709 405 0.866 404 0.713 406 0.801 405 0.855 Ant 0 LTE Band 26 15M_QPSK_1_0 26865 ECI2 Left Cheek 0.344 0.385 405 0.496 404 0.423 406 0.444 405 0.487 Ant 0 LTE Band 26 15M_QPSK_36_0 26865 ECI6 Back 0.642 0.736 405 0.911 404 0.833 406 0.785 405 0.903 Ant 0 LTE Band 71 20M_QPSK_1_0 133297 ECI2 Left Cheek 0.215 0.234 405 0.282 404 0.255 406 0.266 405 0.280 Ant 0 LTE Band 71 20M_QPSK_1_0 133297 ECI6 Left Edge 0.649 0.707 405 0.878 404 0.815 406 0.789 405 0.870 Ant 0 FR1 n12 15M_BPSK_1_1 141500 ECI2 Left Cheek 0.217 0.238 405 0.286 404 0.244 406 0.261 405 0.281 Ant 0 FR1 n12 15M_BPSK_36_22 141500 ECI6 Back 0.710 0.790 405 0.899 404 0.810 406 0.752 405 0.895 Ant 0 FR1 n13 10M_BPSK_25_14 141500 ECI2 Left Cheek 0.295 0.331 405 0.401 404 0.333 406 0.305 405 0.398 Ant 0 FR1 n13 10M_BPSK_25_27 141500 ECI6 Back 0.765 0.794 405 0.922 404 0.855 406 0.811 405 0.918 Ant 0 FR1 n14 10M_BPSK_25_14 158600 ECI2 Left Cheek 0.285 0.325 405 0.433 404 0.371 406 0.388 405 0.428 Ant 0 FR1 n14 10M_BPSK_50_0 158600 ECI6 Back 0.818 0.834 405 0.988 404 0.901 406 0.855 405 0.981 Ant 0 FR1 n26 20M_BPSK_1_1 166300 ECI2 Left Cheek 0.292 0.341 405 0.413 404 0.355 406 0.402 405 0.407 Ant 0 FR1 n26 20M_BPSK_50_0 166300 ECI6 Back 0.740 0.827 405 0.979 404 0.878 406 0.821 405 0.961 Ant 0 FR1 n71 35M_BPSK_90_45 136100 ECI2 Left Cheek 0.218 0.235 405 0.303 404 0.232 406 0.222 405 0.295 Ant 0 FR1 n71 35M_BPSK_90_45 136100 ECI6 Back 0.685 0.739 405 0.910 404 0.844 406 0.799 405 0.906
Page : F1 of F48 FCC SAR TEST REPORT Report No. :FA5N0809-01C Appendix F. Sim-Tx SAR consideration F.1 Sim-Tx Configuration Exposure Condition Tx mode Capable TX Configurations WWAN Power WiFi Power BT Power Head WWAN standalone WWAN ECI 2 WiFi standalone WiFi 2.4G SISO Index 1 WiFi 2.4G MIMO/CDD WiFi 5G MIMO WiFi 6E MIMO WiFi 2.4G SISO + WiFi 5G SISO Index 2 WiFi 2.4G SISO + WiFi 5G SISO BT standalone Bluetooth SISO / MIMO Index 1 WiFi +BT WiFi 5G MIMO + Bluetooth SISO/MIMO Index 1 Index 1 WiFi 6E MIMO + Bluetooth SISO/MIMO WWAN + WiFi WWAN + WiFi 2.4G SISO ECI 3 Index 3 WWAN + WiFi 2.4G MIMO/CDD WWAN + WiFi 5G MIMO WWAN + WiFi 6E MIMO WWAN + WiFi 2.4G SISO + WiFi 5G SISO Index 4 WWAN + WiFi 2.4G SISO + WiFi 6G SISO WWAN + BT WWAN + Bluetooth SISO Index 1 WWAN + WiFi +BT WWAN + WiFi 5G MIMO + Bluetooth SISO Index 4 Index 1 WWAN + WiFi 6E MIMO + Bluetooth SISO Body WWAN standalone WWAN ECI 4 WiFi standalone WiFi 2.4G SISO Index 5 WiFi 2.4G MIMO/CDD WiFi 5G MIMO WiFi 6E MIMO WiFi 2.4G SISO + WiFi 5G SISO Index 6 WiFi 2.4G SISO + WiFi 6G SISO BT standalone Bluetooth SISO / MIMO Index 2 WiFi +BT WiFi 5G MIMO + Bluetooth SISO Index 6 Index 3 WiFi 6E MIMO + Bluetooth SISO WWAN + WiFi WWAN + WiFi 2.4G SISO ECI 5 / ECI 6 (Hotspot) Index 7 WWAN + WiFi 2.4G MIMO/CDD WWAN + WiFi 5G MIMO WWAN + WiFi 6E MIMO WWAN + WiFi 2.4G SISO + WiFi 5G SISO Index 8 WWAN + WiFi 2.4G SISO + WiFi 6G SISO WWAN + BT WWAN + Bluetooth SISO ECI 5 / ECI 6 (Hotspot) Index 3 WWAN + WiFi +BT WWAN + WiFi 5G MIMO + Bluetooth SISO ECI 5 / ECI 6 (Hotspot) Index 9 Index 4 WWAN + WiFi 6E MIMO + Bluetooth SISO General Note: 1. This device WLAN 2.4GHz / 5.2GHz / 5.8GHz and WLAN 6GHz VLP supports Hotspot operation and Bluetooth support tethering applications. 2. The worst case reported SAR from each transmit antennas were using for SAR summation. Therefore, the following summations represent the absolute worst cases for simultaneous transmission configuration. 3. The SAR summation is calculated based on the same exposure configuration and test position from each transmit antenna worst case reported SAR results. 4. Per KDB 447498 D01v06, simultaneous transmission SAR is compliant if, i) Scalar SAR summation < 1.6W/kg. ii) SPLSR = (SAR1 + SAR2)^1.5 / (min. separation distance, mm), and the peak separation distance is determined from the square root of [(x1-x2) 2 + (y1-y2) 2 + (z1-z2) 2 ], where (x1, y1, z1) and (x2, y2, z2) are the coordinates of the extrapolated peak SAR locations in the zoom scan. iii) If SPLSR β€ 0.04, simultaneously transmission SAR measurement is not necessary. iv) Simultaneously transmission SAR measurement, and the reported multi-band SAR < 1.6W/kg. Page : F2 of F48 FCC SAR TEST REPORT Report No. :FA5N0809-01C F.2 5G NR + LTE + WLAN + BT Sim-Tx analysis The TAS feature manages transmitting power effectively in real time and ensures that overall average RF exposure from WWAN operations including NTN, EN-DC, and LTE/FR1 intra-band/inter-band uplink CA are in compliance with RF Exposure requirements, the test device features a TAS function to keep average RF exposure below the given limit for all cases while allowing temporarily high power transmission for better performance For the 5GNR EN-DC, the TAS feature will control LTE + NR β€ 1. The value is computed based on the need of the anchor (LTE) and can be changed if the anchor changes its power request. Based on the SAR Budget portion allocated to the anchor, the value of NR will be computed. At steady state (where all RATs are being on for a while), the allocated power ratio factors will guarantee that the total exposure ratio never exceeds the highest exposure of either one. LTEexposure + NRexposure β€ 1.0, then, LTEexposure + NRexposure β€ max ( LTEexposure , NRexposure ) In simultaneous transmission for this device, 5G NR and LTE transmission are managed and controlled by TAS feature, while the RF exposure from WLAN, BT, Thread radios are managed using another feature, therefore, compliance of simultaneous transmission of LTE+5GNR+WiFi+BT can be justified from the compliance of LTE+ WiFi+BT and 5GNR+ WiFi+BT The device also enabled antenna group to improve antenna performance by applying separate SAR budgets to each predefined antenna group. There are three predefined antenna groups of AG0(Ant0, Ant6), AG1(Ant1,Ant5), AG2(Ant2, Ant 7), Each antenna group is spatially separated to others. Simultaneous transmission analysis is performed per antenna group. Below analysis demonstrates the spatially separation of AG0, AG1, AG2 and the compliance between AG0 and BT/WLAN/NFC, AG1 and BT/WLAN/NFC and between AG2 and BT/WLAN/NFC. Thus, the concept was to split the SAR/TER on the transmitting RATs even they are transmitting on different antennas. Such approach is considered as a worst case scenario in terms of transmitting power. Thus, to enhance the performance of the transmission power of RATs, consider the spatial properties of each antenna and the correlations between the antennas transmissions. AG0 AG1 AG2 external radio Antenna Ant 0, Ant 6 Ant 1, Ant 5 Ant 2, Ant 7 WLAN/BT/NFC The verification of separation of the antenna groups is demonstrated through the following steps, together with WIF/BT simultaneous transmission analysis results. i) The highest reported SAR at Plimit (or Pmax when Plimit > Pmax) for each antenna should be obtained out of all supported technologies and frequency bands for each power index. Demonstrate that the sum of reported SAR of one antenna from each of the antenna groups and the sum of RF exposure from all supported radios outside of TAS feature should be less than the regulatory limit as given below for each power index. ii) If the sum of SAR from step i) is over 1.6 W/kg for 1g, over 4.0 W/kg for 10g, demonstrate for a given power index that every antenna from one antenna group meets SPLSR criteria with every antenna in another antenna group for all frequency bands. SPLSR criteria must be demonstrated for all antenna pair combinations β¦
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TEL : 886-3-327-3456 Page : E1 of E3 FAX : 886-3-328-4978 FCC SAR TEST REPORT Report No. : FA5N0809-01C Appendix E. Power reduction mechanism verification 1. Power verification introduction β« This device supports the manufacturerβs proprietary power reduction mechanisms for cellular and Wi- Fi transmitters. Further details of the specific mechanisms for the power reduction mechanism can be found in the Operational Description β« Demonstration of proper functioning of the detection and triggering mechanisms to support the corresponding RF exposure conditions, the verification plan consists of measuring the power levels of the cellular and Wi-Fi transmitters at each wireless technology under different operating conditions related to the power reduction mechanisms. β« This device incorporates the WWAN algorithm feature and through under varying Tx power transmission scenarios in real-time to maintain the time-averaged Tx power compliant with FCC RF exposure requirement. In this power validation purpose is to demonstrate of proper functioning of the detection and triggering mechanisms to support the corresponding RF exposure conditions. In order to avoid real-time TX power varying may affect monitor output power related to the power reduction mechanisms, therefore WWAN real-time TX power varying was disabled and keep in static output power for power reduction mechanism validation. β« For testing purposes, the device was measured against each Index supported for the cellular and Wi- Fi technologies. The target power level and measured power levels are detailed in the following table and clearly shows that each power reduction mechanism operates as expected. 2. Power verification procedure β« The verification is through a base station simulator is used to establish a conducted RF connection and record output power under different operating conditions related to the power reduction mechanisms. β« Verification of power reduction levels for Wi-Fi is performed with cellular transmitters on and off, for cellular is performed with Wi-Fi transmitters on and off. β« Verification of RCV mechanism is via establish voice call and audio routed through the earpiece to record output power under head power states. β« Verification of Hotspot power reduction is via establish data connection and enable hotspot feature to record output power under hotspot power state. TEL : 886-3-327-3456 Page : E2 of E3 FAX : 886-3-328-4978 FCC SAR TEST REPORT Report No. : FA5N0809-01C 3. Test setup for conducted power measurement 4. Verification output Power Results Head Exposure condition Output Power for Voice Call Ear acoustic output Status: ON ON WiFi Status: OFF ON Power state WWAN ECI 2 WWAN ECI 3 Wireless technology Antenna Measured (dBm) Max. Tune-up (dBm) Measured (dBm) Max. Tune-up (dBm) GSM850 (1TX) Ant 0 31.96 33.5 31.96 33.5 Ant 1 31.58 33.1 30.76 32.3 UMTS Band 5 Ant 0 23.65 25.2 23.65 25.2 Ant 1 22.17 23.7 22.17 23.7 LTE Band 7 (FDD) Ant 2 22.24 23.8 21.06 22.6 Ant 0 23.43 25 23.43 25 LTE Band 26 (FDD) Ant 0 23.59 25.1 23.59 25.1 Ant 1 20.73 22.3 19.93 21.5 LTE Band 41 (TDD) PC3 Ant 2 23.42 25 22.96 24.5 Ant 0 23.33 24.9 23.33 24.9 NR SA n7 Ant 2 22.54 24.1 21.86 23.4 Ant 0 23.48 25 23.48 25 Head Exposure condition Output Power for Voice Call Ear acoustic output Status: ON ON WWAN Status: OFF ON Power state WIFI Index 1 WIFI Index 3 Wireless technology Antenna Measured (dBm) Max. Tune-up (dBm) Measured (dBm) Max. Tune-up (dBm) 802.11g 6Mbps CH6 (Ant4+3)Ant 4 14.43 16 9.96 11.5 (Ant4+3)Ant 3 14.46 16 9.97 11.5 802.11a 6Mbps CH52 (Ant4+3)Ant 4 13.95 15.5 9.92 11.5 (Ant4+3)Ant 3 13.92 15.5 9.96 11.5 TEL : 886-3-327-3456 Page : E3 of E3 FAX : 886-3-328-4978 FCC SAR TEST REPORT Report No. : FA5N0809-01C Hotspot exposure condition Hotspot exposure condition Output Power for data connection Wifi Hotspot Status WIFI Index 7 OFF BT Hotspot Status OFF ON Power state WWAN ECI 6 WWAN ECI 6 Wireless Antenna Measured (dBm) Max. Tune-up (dBm) Measured (dBm) Max. Tune-up (dBm) Technology GSM1900 (4TX) Ant 2 20.95 22.5 20.95 22.5 Ant 0 18.55 20.1 18.55 20.1 UMTS Band 2 Ant 2 18.11 19.7 18.11 19.7 Ant 0 12.35 13.9 12.35 13.9 LTE Band 7 (FDD) Ant 2 15.36 16.9 15.36 16.9 Ant 0 13.43 15 13.43 15 LTE Band 25 (FDD) Ant 2 17.75 19.3 17.75 19.3 Ant 0 12.56 14.1 12.56 14.1 LTE Band 41 (TDD) PC3 Ant 2 17.63 19.2 17.63 19.2 Ant 0 16.06 17.6 16.06 17.6 NR SA n25 Ant 2 18.96 20.5 18.96 20.5 Ant 0 13.77 15.3 13.77 15.3 802.11g 6Mbps CH6 (Ant4+3)Ant 4 11.95 13.5 (Ant4+3)Ant 3 11.9 13.5 WiFi 802.11a CH157 (Ant4+3)Ant 4 12.43 14 (Ant4+3)Ant 3 12.39 14
Page 1 of 53 FCC SAR TEST REPORT Report No. :FA5N0809-01C Appendix D-2. WLAN/BT Output Power <WLAN Note> 1. The SISO mode support only when the Antenna 3 and 4 is transmitting on 802.11b/g mode, other support MIMO mode. 2. The maximum output power spIndexfied for production units are determined for all applicable 802.11 transmission modes in each standalone and aggregated frequency band. Maximum output power is measured for the highest maximum output power configuration(s) in each frequency band according to the default power measurement procedures. For βNot requiredβ, SAR Test reduction was applied from KDB 248227 guidance, Sec. 2.1, b), 1) when the same maximum power is spIndexfied for multiple transmission modes in a frequency band, the largest channel bandwidth, lowest order modulation, lowest data rate and lowest order 802.11a/g/n/ac mode is used for SAR measurement, on the highest measured output power channel in the initial test configuration, additional output power measurements were not necessary. 3. Per KDB 248227 D01v02r02, SAR test reduction is determined according to 802.11 transmission mode configurations and certain exposure conditions with multiple test positions. In the 2.4 GHz band, separate SAR procedures are applied to DSSS and OFDM configurations to simplify DSSS test requirements. For OFDM, in both 2.4 and 5 GHz bands, an initial test configuration must be determined for each standalone and aggregated frequency band, according to the transmission mode configuration with the highest maximum output power spIndexfied for production units to perform SAR measurements. If the same highest maximum output power applies to different combinations of channel bandwidths, modulations and data rates, additional procedures are applied to determine which test configurations require SAR measurement. When applicable, an initial test position may be applied to reduce the number of SAR measurements required for next to the ear, UMPC mini-tablet or hotspot mode configurations with multiple test positions. 4. For 2.4 GHz 802.11b DSSS, either the initial test position procedure for multiple exposure test positions or the DSSS procedure for fixed exposure position is applied; these are mutually exclusive. For 2.4 GHz and 5 GHz OFDM configurations, the initial test configuration is applied to measure SAR using either the initial test position procedure for multiple exposure test position configurations or the initial test configuration procedures for fixed exposure test conditions. Based on the reported SAR of the measured configurations and maximum output power of the transmission mode configurations that are not included in the initial test configuration, the subsequent test configuration and initial test position procedures are applied to determine if SAR measurements are required for the remaining OFDM transmission configurations. In general, the number of test channels that require SAR measurement is minimized based on maximum output power measured for the test sample(s). 5. For OFDM transmission configurations in the 2.4 GHz and 5 GHz bands, When the same maximum power is spIndexfied for multiple transmission modes in a frequency band, the largest channel bandwidth, lowest order modulation, lowest data rate and lowest order 802.11a/g/n/ac mode is used for SAR measurement, on the highest measured output power channel for each frequency band. 6. DSSS and OFDM configurations are considered separately according to the required SAR procedures. SAR is measured in the initialβ¦
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1600 Amphitheratre Parkway Β· Mountain View, 94043 Β· United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 13.56 MHz - 13.65 MHz | - |
Phone
Equipment Class
UWB - Ultra Wideband TransmitterPhone
Equipment Class
TNB - Licensed Non-Broadcast Station TransmitterPhone
Equipment Class
6CD - 15E 6 GHz Low Power Dual ClientPhone
Equipment Class
PCE - PCS Licensed Transmitter held to earPhone
Equipment Class
UWB - Ultra Wideband Transmitter