Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 USA Date: January 5, 2026 Ref: Attestation Statements Part 2.903, part 2.911(d)(5) FCC ID: IPH-A5206 FRN: 0005088588 Garmin International, Inc., (“the applicant”) certifies that the equipment for which authorization is sought is not “covered” equipment prohibited fr om receiving an equipment authorization pursuant to section 2.903 of the FCC rules. Garmin International, Inc., (“the applicant”) certifies that, as of the date of the filing of the application, the applicant is not identified on the Covered List (as a specifically named entity or any of its subsidiaries or affiliates) as a n entit y producing “covered” equipment. Garmin International, Inc., (“the applicant”) certifies that, the device does not have cybersecurity and/or anti-virus software produced or provided by Kaspersky Lab, Inc. or any of its successors and assignees, identified on the Covered List installed on the device, nor will it be installed by the applicant after certification. Sincerely, Ben Karsak Manager Compliance Engineering Garmin International, Inc.
Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 USA Date: January 5, 2026 Ref: Attestation Statements Part 2.911(d)(7) Filing FCC ID: IPH-A5206 Garmin International, Inc., Garmin certifies that, as of the date of the filing of the application, Garmin International, Inc. (FRN: 0005088588) is our designated U.S. agent for service of process for the above referenced FCC ID. Garmin International, Inc., accepts to maintain an agent for no less than one year after the grantee has terminated all marketing and importation or the conclusion of any Commission- related proceeding involving the equipment. Garmin International, Inc. accepts, as of the date of the filing of the application, the obligation of the designated U.S. agent for service of process for the above referenced FCC ID. Designated U.S. Agent Information: Name: Garmin International, Inc. Address: 1200 East 151 st Street, Olathe, Kansas, 66062 Contact Person: Ben Karsak Tel.: 913-397-8200 Email: [email protected] Sincerely, Garmin International, Inc. Ben Karsak
REQUEST FOR CONFIDENTIALITY Date: 5 January 2026 Applicant: Garmin International Subject: Confidentiality Request for FCC ID: IPH-A5206 IC: 1792A-A5206 Pursuant to FCC 47 CFR 0.457(d) and 0.459, and IC RSP-100 Section 12.4, we request that a part of the FCC and ISED application be held confidential. Type Of Confidentiality Requested Exhibit ☐ Short Term ☒ Permanent ☐ Not Provided Block Diagrams ☐ Short Term ☒ Permanent ☐ Not Provided Schematics ☐ Short Term ☒ Permanent ☐ Not Provided Operational Description/ Theory of Operation ☐ Short Term ☐ Permanent ☒ Not Provided Parts List & Placement/BOM ☐ Short Term ☒ Permanent ☐ Not Provided Tune-Up Procedure ☒ Short Term ☐ Permanent ☐ Not Provided Test Setup Photos ☒ Short Term ☐ Permanent ☐ Not Provided User’s Manual(s) ☒ Short Term ☐ Permanent ☐ Not Provided External Photos ☒ Short Term ☐ Permanent ☐ Not Provided Internal Photos Garmin International has spent a substantial effort in developing this product and it is one of the first of its kind in the industry. Having the subject information easily available to "competition" would negate the advantage we have achieved by developing this product. Not protecting the details of the design will result in financial hardship. Permanent Confidentiality: Garmin requests the exhibits listed above as permanently confidential be permanently withheld from public review due to materials that contain trade secrets and proprietary information not customarily released to the public. Short-Term Confidentiality (if applicable): The applicant requests the exhibits selected above as short term confidential be withheld from public view for a period of 180 days from the date of the Grant of Equipment Authorization and prior to marketing. This is to avoid premature release of sensitive information prior to marketing or release of the product to the public. Sincerely, Pamela Sequeira Compliance Engineer
Innovation, Science and Economic Development Canada Certification and Engineering Bureau 3701 Carling Avenue PO Box 11490, Station H Ottawa, Ontario, Canada K2H 8S2 January 5, 2026 Federal Communications Commission Authorization and Evaluati on Division 7435 Oakland Mi lls Road Columbia, MD 21046 To Whom It May Concern: Pursuant to 47 CFR 2.911, Garmin International, Inc. (Garmin) has authorized the following Garmin International Associates to act on Garmin's behalf for the sole and express purpose of processing applications to the Federal Communication Commission (FCC) and Innovation, Science and Economic Development Canada (ISED) for equipment authorization or certification. Mr. Niklas Haydon, Compliance Engineering Team Lead Mr. Mitchell Phillipi, Compliance Engineering Team Lead Mr. William Pertner, Compliance Engineering Team Lead Mr. Jay Everett, Compliance Engineering Team Lead Mr. Richard Kockelkoren, Compliance Engineer Mr. Mike Moranha, Compliance Engineer Ms. Pam Sequeira, Compliance Engineer Mr. Jeffrey Hailey, Compliance Engineer Mr. Dan Irish, Compliance Engineer Ms. Sara Jones, Design Certification Engineer Mr. Jacky Yeung, Compliance Engineer Mr. Hayden Pernia, Compliance Engineer Mr. Jeremiah Darden, Compliance Engineer Mr. Henry Lin, Compliance Engineer Ms. Claire Fryman, Compliance Engineer Mr. Rick Jankovics, Compliance Engineer Mr. Brodie Halbfoster, Compliance Engineer Mr. Jonathan Shafer, Design Certification Engineer As such, the Garmin Associates listed above are authorized to: 1) sign Form 731, 2) sign letters of application, 3) request confidentiality, and 4) exchange data and information with the FCC, IC and/or authorized TCBs on behalf of Garmin. In addition, these individuals shall be considered "authorized individuals" to act on Garmin's behalf where an "authorized individual's" attestation is necessary or preferred. This authorization remains in effect until notified to the contrary by Garmin. Sincerely, Ben Karsak Manager Compliance Engineering Garmin International, Inc.
Applicant: Garmin International FCC ID: IPH-A5206 E-Label Description IC: 1792A-A5206 Page 1 of 2 Label and E-Label Information E-Label Information: A. The following specific instructions are provided in the Quick Start Manual that ships with the device. a. Label viewing directions are found in the user manual (outlined here for reference) and available online at www.garmin.com. b. Getting the Owner's Manual: The owner's manual includes instructions for using device features and accessing regulatory information. Go to: www.garmin.com/manuals/AA5206 B. The following instructions are provided in the user manual on how to access the e-label: Applicant: Garmin International FCC ID: IPH-A5206 E-Label Description IC: 1792A-A5206 Page 2 of 2 C. The above information is programmed by Garmin in such a manner that third-parties cannot modify it. “No special accessories or supplemental plug-ins (e.g., installation of a SIM/USIM card) are required to access the information. Access to the information is provided without special codes, accessories, or permissions beyond the normal security protection to unlock the screen, sign-in page, or overall product access.” Electronically displayed information is clearly legible without the aid of magnification. D. The above M/N, FCC ID, and IC numbers can be found printed on the product packaging.
Next Generation Test Laboratory Inc. (RF Safety Laboratory, LLC) 5520 Research Park Drive, Suite 140, Catonsville, Maryland 21228 USA ISED Lab Code: 32002; FCC Designation Number: US3274; Lab Registration No.: 184307 ANAB 17025 Certificate Number: AT-3274; CAB Identifier: US0239 ☎+1 202 240 9240; [email protected] FCC ID: IPH-A5206 IC: 1792A-A5206 SAR-001: SAR Test Report RevA Test Report S/N: 2025.046.01 Page 1 of 17 SAR EVALUATION REPORT FCC ID: IPH-A5206 IC: 1792A-A5206 HVIN/PMN/Model(s): AA5206 FVIN: 6.03 Device Type: Portable Digital Transceiver Report Issue Date: December 22, 2025 Garmin International, Inc. 1200 E. 151 st Street, Olathe, KS 66062, United States Certification The measurement evaluations presented in this report are based on the maximum performance of the tested device(s), which has been shown to be capable of compliance for localized specific absorption rate (SAR) for uncontrolled environment / general population exposure federal limits in 47CFR § 1.1310 and Health Canada Safety Code 6 and has been tested in accordance with the measurement procedures specified within this report. This document must be reproduced in its entirety without any alterations unless with written permission from RF Safety Laboratory, LLC. Steve Liu President Next Generation Test Laboratory Inc. (RF Safety Laboratory, LLC) 5520 Research Park Drive, Suite 140, Catonsville, Maryland 21228 USA ISED Lab Code: 32002; FCC Designation Number: US3274; Lab Registration No.: 184307 ANAB 17025 Certificate Number: AT-3274; CAB Identifier: US0239 ☎+1 202 240 9240; [email protected] FCC ID: IPH-A5206 IC: 1792A-A5206 SAR-001: SAR Test Report RevA Test Report S/N: 2025.046.01 Page 2 of 17 Table of Contents 1. DUT Specifics ................................................................................................................................................. 3 2. DUT Conducted Powers ................................................................................................................................ 5 3. DUT SAR Test Results .................................................................................................................................... 7 4. DUT SAR Measurement Variability Requirement .......................................................................................... 9 5. General Introduction..................................................................................................................................... 9 6. Background on Radiofrequency (RF) Exposure Limits ................................................................................... 9 7. RF Safety Laboratory SAR Measurement System ........................................................................................ 10 8. Technology Specific Test Setup Requirements ............................................................................................ 13 9. Equipment List ............................................................................................................................................ 16 10. Conclusion................................................................................................................................................... 17 Appendix A: SAR Test Plots Appendix B: Tissue Stimulating Liquids, System Checks and System Validation Appendix C: System Check Plots Appendix D: Calibration Certificates Appendix E : Simultaneous Transmission Analysis Appendix F : Test Setup Photos Next Generation Test Laboratory Inc. (RF Safety Laboratory, LLC) 5520 Research Park Drive, Suite 140, Catonsville, Maryland 21228 USA ISED Lab Code: 32002; FCC Designation Number: US3274; Lab Registration No.: 184307 ANAB 17025 Certificate Number: AT-3274; CAB Identifier: US0239 ☎+1 202 240 9240; [email protected] FCC ID: IPH-A5206 IC: 1792A-A5206 SAR-001: SAR Test Report RevA Test Report S/N: 2025.046.01 Page 3 of 17 1. DUT Specifics 1.1. Device under Test The device under test is a portable digital transceiver, incorporating the technologies listed in Table 1-1 below. The manufacturer has confirmed that the device is within operational tolerances expected for production units and has the same physical, mechanical, and thermal characteristics expected for production units. The serial number of the device used for each test is indicated alongside the results. Table 1-1 Supported Technologies 1.2. Maximum Time-Averaged Power From Manufacturer The manufacturer has confirmed that this device follows the below target output power specifications and tolerances. SAR values were scaled to the maximum allowed power (including tolerance) to determine compliance per KDB Publication 447498 D04v01. Table 1-2 2.4 GHz WIFI Target RF Output Power Band/ModeFrequency (MHz) 2.4 GHz WIFI2412 - 2472 MHz 2.4 GHz Bluetooth2402 - 2480 MHz 2.4 GHz ANT/ANT+2402 - 2480 MHz NFC13.56 MHz 2.4 GHz WIFI Maximum Power [dBm] Mode802.11b802.11g 802.11n Channel Freq. [MHz] 2.4 GHz Antenna2.4 GHz Antenna2.4 GHz Antenna All16.51514 112462 16.512.512 122467 12.5109.5 132472 117.57.5 Tolerance: +/-2 dB Power Level Channel Bandwidth [MHz] Max 22 (802.11b)/ 20 (802.11g/n) Next Generation Test Laboratory Inc. (RF Safety Laboratory, LLC) 5520 Research Park Drive, Suite 140, Catonsville, Maryland 21228 USA ISED Lab Code: 32002; FCC Designation Number: US3274; Lab Registration No.: 184307 ANAB 17025 Certificate Number: AT-3274; CAB Identifier: US0239 ☎+1 202 240 9240; [email protected] FCC ID: IPH-A5206 IC: 1792A-A5206 SAR-001: SAR Test Report RevA Test Report S/N: 2025.046.01 Page 4 of 17 Table 1-3 2.4 GHz Bluetooth Target RF Output Power Table 1-4 ANT/ANT+ Target RF Output Power 1.3. Test Guidance Applied • IEEE 1528-2013 (FCC) • IEC/IEEE 62209-1528:2020 (ISED) • RSS-102 Issue 6 (ISED) • RSS-102.SAR.MEAS (ISED) • Health Canada Safety Code 6 (ISED) • FCC KDB Publication 248227 D01v02r02 (SAR Considerations for 802.11 Devices) (FCC/ISED) • FCC KDB Publication 447498 D04v01 (General SAR Gui…
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FCC ID: IPH-A5206 IC: 1792A-A5206 SAR-001: SAR Test Report RevA Test Report S/N: 2025.046.01 Page E1 of E1 Appendix E: Simultaneous Transmission Analysis E.1. Introduction According to FCC KDB Publication 447498 D04v01, transmitters are considered to be operating simultaneously when there is overlapping transmission, with the exception of transmissions during network hand-offs with maximum hand-off duration less than 30 seconds. Table E-1 - Supported Simultaneous Transmission Scenarios E.2. Procedures This device contains transmitters that may operate simultaneously. Therefore, simultaneous transmission analysis is required. Per FCC KDB Publication 447498 D04v01 and IEEE 1528-2013 Section 6.3.4.1.2, simultaneous transmission SAR test exclusion may be applied when the sum of the 10g SAR for all the simultaneous transmitting antennas in a specific physical test configuration is ≤4.0 W/kg. The different test positions in an exposure condition may be considered collectively to determine SAR test exclusion according to the sum of 10g SAR. E.3. Simultaneous Transmission Analysis Table E-2 – Simultaneous Transmission Sum SAR The above analysis of the simultaneous transmission scenarios is sufficient to show that simultaneous transmission cases will not exceed the SAR limit. Therefore, no measured volumetric simultaneous SAR summation is required per FCC KDB Publication 447498 D04v01 and IEEE 1528- 2013 Section 6.3.4.1. #ScenarioExtremity 12.4 GHz WIFI + NFCYes 22.4 GHz Bluetooth + NFCYes 32.4 GHz ANT/ANT+ + NFCYes Exposure Condition Max 2.4 GHz WIFI SAR (W/kg) Max 2.4 GHz Bluetooth SAR (W/kg) Max 2.4 GHz ANT/ANT+ SAR (W/kg) Max NFC SAR (W/kg) Max 2.4 GHz WIFI + NFC SAR (W/kg) Max 2.4 GHz Bluetooth + NFC SAR (W/kg) Max 2.4 GHz ANT/ANT+ + NFC SAR (W/kg) Extremity0.7410.2080.0000.0000.7410.2080.000
RF Safety Laboratory, LLC 5520 Research Park Drive, Suite 140 Catonsville, Maryland 21228 USA +1 202 240 9240 [email protected] Object: Date Issued: CLA13 – SN: 1041 07/30/2025 Page 1 of 3 IN-HOUSE SAR VERIFICATION SOURCE CALIBRATION EXTENSION Object CLA13 – SN: 1041 Description SAR Validation Source at 13 MHz Procedure (s) Procedure for SAR Verification Source Calibration Extension In-house Check Date 07/30/2025 Equipment List CBT: Components calibrated before testing. Prior to testing, the measurement paths containing a cable, attenuator, coupler or filter were connected to a calibrated source (i.e. a signal generator, power sensor, or VNA) to determine the losses of the measurement path. The power meter offset was then adjusted to compensate for the measurement system losses. This level offset is stored within the power meter before measurements are made. This calibration verification procedure applies to the system verification and output power measurements. The calibrated reading is then taken directly from the power meter after compensation of the losses for all final power measurements. Measurement Uncertainty = ±27% (k=2) Name Function Signature Tested By: Yue Li Engineer Approved By: Phuong Nguyen Technical Manager ManufacturerModelDescriptionSerial Number Calibration Date Calibration Due CBT Rohde & SchwarzZNL20Vector Network Analyzer1012029/12/249/12/25 Rohde & SchwarzZN-Z135VNA Calibration Kit5000-30919283910/31/2410/31/26 Control Company4040Ambient Thermometer2305816578/28/238/28/25 Control Company4040Ambient Thermometer2305816628/28/238/28/25 Control Company4352Long Stem Liquid Thermometer2306622239/28/239/28/25 Control Company4352Long Stem Liquid Thermometer2306622129/28/239/28/25 Micro-CoaxUFB205A-0-0240-30x30SMA M-F RF test Cable (DC - 18 GHz)-✓ Maury-Micro360D10dB RF Fixed Attenuator (DC - 18 GHz) + Short Circuit Termination779912/28/2412/28/25 Huber+SuhnerSF126High Performance RF Cable570292/126✓ Mini-CircuitsVLF-8400+Coaxial Low Pass Filter (DC - 8.4 GHz)-✓ SPEAGDAE4ipData Acquisition Electrionics with Integ. Power18399/4/249/4/25 SPEAGDAK-12DAK-12 Dielectric Probe119410/14/2410/14/25 SPEAGEX3DV4SAR Measurement Probe78369/12/249/12/25 AnritsuMA24118AMicrowave USB Power Sensor (10MHz - 18 GHz)21234311/13/251/13/26 Rohde & SchwarzSMCV100BR&S SMCV100B Vector Signal Generator (VSG)10388212/21/2312/19/25 Mini-CircuitsCBL-6FT-SMNM+Precision Test Cable SMA/N (DC - 18 GHz)3318✓ RF Safety Laboratory, LLC 5520 Research Park Drive, Suite 140 Catonsville, Maryland 21228 USA +1 202 240 9240 [email protected] Object: Date Issued: CLA13 – SN: 1041 07/30/2025 Page 2 of 3 Per FCC KDB Publication 865664 D01, dipole can have longer calibration intervals of up to three years when it is demonstrated that the SAR target, impedance and return loss of the dipole have remained stable according to the following requirements: 1. Measured SAR does not deviate from the calibrated SAR value by more than 10%. 2. Return loss does not deviate by more than 20% from the previous measurement (i.e. value in dB x 0.2) and meet the required minimum return-loss. 3. Real and imaginary part of the impedance do not deviate by more than 5 Ω from the previous measurement. The following dipole was checked to pass the above 3 requirements to have an extended calibration interval: Dipole SN Freq (MHz) In-house Check Date Cal Date Head SAR target (1g) @ 30dBm ( W/kg) Measured Head SAR (1g) @ 17d Bm (W/kg) 1g SAR Dev ( %) Head SAR target (10g) @ 30d Bm (W/kg) Measured Head SAR (10g) @ 17d Bm (W/kg) 10g SAR Dev(%) Cert Head Impedance (Ohm) - Re al Previous Head Impedance ( Ohm) - Real Measured Head Impedance ( Ohm) - Real Head Impedance Deviation ( Ohm) - Real Cert Head Impedance (Ohm) - I maginary Previous Head Impedance ( Ohm) - Imaginary Measured Head Impedance ( Ohm) - Imaginary Head Impedance Deviation ( Ohm) - Imaginary Cert Head Return L oss (dB) Previous Head Return L oss (dB) Measured Head Return L oss (dB) Return Loss Dev (%) PASS/FAILNote 10411311/13/202410/11/202400.000.00%00.000.00%54.554.553.0-1.5-0.9-0.9-3.5-2.6-27.1-27.1-27.02.10%PASSIn-house check after Calibration 1041137/30/202510/11/20240.4570.13-0.62%0.2960.08-5.30%54.553.054.61.6-0.9-3.5-1.02.5-27.1-27.0-27.01.10%PASS- RF Safety Laboratory, LLC 5520 Research Park Drive, Suite 140 Catonsville, Maryland 21228 USA +1 202 240 9240 [email protected] Object: Date Issued: CLA13 – SN: 1041 07/30/2025 Page 3 of 3 Impedance and Return-Loss Measurement Plot for Head TSL RF Safety Laboratory, LLC 5520 Research Park Drive, Suite 140 Catonsville, Maryland 21228 USA +1 202 240 9240 [email protected] Object: Date Issued: D2450V2 – SN: 1112 07/29/2025 Page 1 of 3 IN-HOUSE SAR VERIFICATION SOURCE CALIBRATION EXTENSION Object D2450V2 – SN: 1112 Description SAR Validation Dipole at 2450 MHz Procedure (s) Procedure for SAR Verification Source Calibration Extension In-house Check Date 07/29/2025 Equipment List CBT: Components calibrated before testing. Prior to testing, the measurement paths containing a cable, attenuator, coupler or filter were connected to a calibrated source (i.e. a signal generator, power sensor, or VNA) to determine the losses of the measurement path. The power meter offset was then adjusted to compensate for the measurement system losses. This level offset is stored within the power meter before measurements are made. This calibration verification procedure applies to the system verification and output power measurements. The calibrated reading is then taken directly from the power meter after compensation of the losses for all final power measurements. Measurement Uncertainty = ±27% (k=2) Name Function Signature Tested By: Yue Li Engineer Approved By: Phuong Nguyen Technical Manager ManufacturerModelDescriptionSerial Number Calibration Date Calibration Due CBT Rohde & SchwarzZNL20Vector Network Analyzer1012029/12/20249/12/2025 Rohde & SchwarzZN-Z135Calibration Kit5000-30919283910/31/2410/31/26 Control Company4040Ambient Thermometer2…
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FCC ID: IPH-A5206 IC: 1792A-A5206 SAR-001: SAR Test Report RevA Test Report S/N: 2025.046.01 Page C1 of C2 Appendix C: System Check Plots RF SAFETY LABORATORY System Verification Verification Conditions Verification Source Power [dBm] Phantom Section Test Distance [mm] Signal, UID Frequency [MHz] ConvF (x, y, z) CLA-13 - SN1041 24.5 Flat 0 CW, 0 13.000 14.3, 16.56,15.27 Test Setup Test Date Ambient Temp [°C] TSL Temp [°C] Measurement SW Phantom TSL Type Cond. [S/m] Perm. Probe, Cal. Date DAE, Cal. Date 2025-11-24 22.8 22.2 16.4.0.5005 ELI V8.0 - 2216 Head Simulating Liquid 0.708 51.4 EX3DV4 - SN7872, 2025-08-08 DAE4ip Sn1843, 2025-07-30 Scans Setup Area Scan Zoom Scan Grid Extents [mm] 40.0 x 90.0 30.0 x 30.0 x 31.2 Grid Steps [mm] 10.0 x 15.0 6.0 x 6.0 x 1.5 Sensor Surface [mm] 3.0 1.4 Grading Ratio N/A 1.5 Measurement Results SAR [W/kg] or APD [W/m²] Deviation [%] psSAR1g 0.124 -3.73 psSAR10g 0.076 -8.90 Peak SAR (Extrapolated) 0.257 -3.18 psAPD (4.0 cm², sq) N/A N/A FCC ID: IPH-A5206 IC: 1792A-A5206 SAR-001: SAR Test Report RevA Test Report S/N: 2025.046.01 Page C2 of C2 RF SAFETY LABORATORY System Verification Verification Conditions Verification Source Power [dBm] Phantom Section Test Distance [mm] Signal, UID Frequency [MHz] ConvF (x, y, z) D2450V2 - SN1112 17.0 Flat 10 CW, 0 2450.000 6.72, 7.08,6.68 Test Setup Test Date Ambient Temp [°C] TSL Temp [°C] Measurement SW Phantom TSL Type Cond. [S/m] Perm. Probe, Cal. Date DAE, Cal. Date 2025-11-24 21.9 21.5 16.4.0.5005 Twin-SAM V8.0 - 2159 Head Simulating Liquid 1.86 42.1 EX3DV4 - SN7859, 2025-05-05 DAE4ip Sn1905, 2025-04-25 Scans Setup Area Scan Zoom Scan Grid Extents [mm] 40.0 x 80.0 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 Grading Ratio N/A 1.5 Measurement Results SAR [W/kg] or APD [W/m²] Deviation [%] psSAR1g 2.44 -3.79 psSAR10g 1.16 -2.34 Peak SAR (Extrapolated) 4.72 -9.62 psAPD (4.0 cm², sq) N/A N/A
FCC ID: IPH-A5206 IC: 1792A-A5206 SAR-001: SAR Test Report RevA Test Report S/N: 2025.046.01 Page B1 of B4 Appendix B: Tissue Stimulating Liquids, System Checks and System Validation B.1. SAR System Check Prior to SAR assessment, the system is verified to ±10% of the SAR measurement on the reference dipole at the time of calibration by the calibration facility. SAR System Validation was performed and complies with requirements per IEC/IEEE 62209-1528. Table 1 System Check Results (SAR) B.2. Dielectric Parameters of the TSL Table 2 SAR Tissue Dielectric Parameters The above measured tissue parameters were used in the DASY software. The DASY software was used to perform interpolation to determine the dielectric parameters at the SAR test device frequencies (per KDB Publication 865664 D01v01r04 and IEEE 1528-2013 6.6.1.2). The tissue parameters listed in the SAR test plots may slightly differ from the table above due to significant digit rounding in the software. The SAR values were compensated for deviations between the measured and required tissue dielectric properties, as described in IEEE 1528-2013. The SAR values were applied to only scale up the measured SAR values, and not downward, per KDB Publication 865664 D01v04r04. System Frequency (MHz) Tissue Type Date Amb. Temp. (°C) Tissue Temp (°C) Input Power (dBm) Verification Source SN Probe SN DAE SN Measured 1g SAR (W/Kg) 1W Target 1g SAR (W/Kg) 1W Normalized 1g SAR (W/Kg) 1g SAR Deviation Measure d 10g SAR (W/Kg) 1W Target 10g SAR (W/Kg) 1W Normalized 10g SAR (W/Kg) 10g SAR Deviation Gamma13Head11/24/202522.822.224.51041787218430.1240.4570.440-3.73%0.0760.2960.270-8.90% Beta2450Head11/24/202521.921.5171112785919052.44050.60048.684-3.79%1.16023.70023.145-2.34% Date Tissue Type Liquid Temp (°C)Frequency (MHz) Conductivity Measured (σ) Conductivity Target (σ) Deviation Permittivity measured (εr) Permittivity Target (εr) Deviation 11/24/2025Head22.2100.710.75-5.60%50.855.0-7.68% 11/24/2025Head22.2150.710.75-5.56%51.955.0-5.64% 11/24/2025Head21.524001.821.763.41%42.239.37.38% 11/24/2025Head21.524501.861.803.06%42.139.27.43% 11/24/2025Head21.525001.901.852.43%42.039.17.39% FCC ID: IPH-A5206 IC: 1792A-A5206 SAR-001: SAR Test Report RevA Test Report S/N: 2025.046.01 Page B2 of B4 B.3. FCC System Validation Per FCC KDB Publication 865664 D02 Section 2.3 a) states “SAR system validation status and system verification results should be documented in a separate section of the SAR report, or as an attachment, to confirm measurement accuracy.” The SAR systems used for evaluating this device were validated against its performance specifications prior to the SAR measurements. Reference dipoles were used with the required tissue-equivalent media for system validation, according to the procedures outlined in FCC KDB Publication 865664 D01 and IEEE 1528-2013. Since SAR probe calibrations are frequency dependent, each probe calibration point was validated at a frequency within the valid frequency range of the probe calibration point. Per FCC KDB 865664 D02, “the validation status should be documented according to the validation date(s), measurement frequencies, SAR probes, calibrated signal type(s) and tissue dielectric parameters.” A tabulated summary of the system validation status is provided accordingly: Table 3 System Validation NOTE: The probes have been calibrated for both CW and modulated signals. Modulations in the table above represent test configurations for which the measurement system has been validated per FCC KDB Publication 865664 D01 for scenarios when CW probe calibrations are used with other signal types. SAR systems were additionally validated for modulated signals with a periodic duty cycle or with a high PAR (peak to average ratio) >5 dB, such as OFDM according to FCC KDB Publication 865664 D01 v01r04. Freq (MHz) Tissue Type Sensitivity Probe Linearity Probe Isotropy Mod Type Duty Factor PAR Gamma1311/14/20257872184313Head0.69552PASSPASSPASSN/AN/AN/A Beta245005/21/2025785919052450Head1.7237.8PASSPASSPASSOFDMN/APASS Cond. (σ)Perm (εr) CW ValidationMod Validation System Frequency (MHz) DateProbeDAE Probe CalF FCC ID: IPH-A5206 IC: 1792A-A5206 SAR-001: SAR Test Report RevA Test Report S/N: 2025.046.01 Page B3 of B4 B.4. Sample TSL Compositions TSL recipes are proprietary to SPEAG. Since the composition is approximate to the actual liquids utilized, the manufacturer data sheets are provided below. Figure 1 - Head TSL Calibration Certificate Example (4 – 250 MHz) FCC ID: IPH-A5206 IC: 1792A-A5206 SAR-001: SAR Test Report RevA Test Report S/N: 2025.046.01 Page B4 of B4 Figure 2 - Head TSL Calibration Certificate Example (600 – 10000 MHz)
FCC ID: IPH-A5206 IC: 1792A-A5206 SAR-001: SAR Test Report RevA Test Report S/N: 2025.046.01 Page A1 of A4 Appendix A: SAR Test Plots RF SAFETY LABORATORY DUT: AA5206; SN: 79830 Test Conditions Exposure Condition Position, Test Distance [mm] Band Signal, UID Ant. Channel Number Frequency [MHz] ConvF (x,y,z) Extremity Flat, BACK, 0.00 2.4 GHz WIFI IEEE 802.11b WiFi 2.4 GHz (DSSS, 1 Mbps, 99pc duty cycle), 10415 2.4 GHz Antenna Ch. 11 2462.000 6.72, 7.08,6.68 Test Setup Test Date Ambient Temp [°C] TSL Temp [°C] Measurement SW Phantom Type Cond. [S/m] TSL Perm. Probe, Cal. Date DAE, Cal. Date 2025-11-24 21.9 21.5 16.4.0.5005 Twin-SAM V8.0 - 2159 Head Simulating Liquid 1.87 42.1 EX3DV4 - SN7859, 2025-05-05 DAE4ip Sn1905, 2025-04-25 Scans Setup Area Scan Zoom Scan Grid Extents [mm] 80.0 x 80.0 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 Grading Ratio N/A 1.5 MAIA Y Y Measurement Results psSAR10g [W/Kg] 0.469 Power Drift [dB] -0.06 Peak SAR (Extrapolated) [W/kg] 1.55 M2/M1 [%] 87.4 Dist 3dB Peak [mm] 12.8 FCC ID: IPH-A5206 IC: 1792A-A5206 SAR-001: SAR Test Report RevA Test Report S/N: 2025.046.01 Page A2 of A4 RF SAFETY LABORATORY DUT: AA5206; SN: 79830 Test Conditions Exposure Condition Position, Test Distance [mm] Band Signal, UID Ant. Channel Number Frequency [MHz] ConvF (x,y,z) Extremity Flat, BACK, 0.00 2.4 GHz Bluetooth Bluetooth (GFSK,DH5), 10032 2.4 GHz Antenna Ch. 39 2441.000 6.72, 7.08,6.68 Test Setup Test Date Ambient Temp [°C] TSL Temp [°C] Measurement SW Phantom Type Cond. [S/m] TSL Perm. Probe, Cal. Date DAE, Cal. Date 2025-11-24 21.9 21.5 16.4.0.5005 Twin-SAM V8.0 - 2159 Head Simulating Liquid 1.85 42.1 EX3DV4 - SN7859, 2025-05-05 DAE4ip Sn1905, 2025-04-25 Scans Setup Area Scan Zoom Scan Grid Extents [mm] 80.0 x 80.0 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 Grading Ratio N/A 1.5 MAIA Y Y Measurement Results psSAR10g [W/Kg] 0.142 Power Drift [dB] -0.18 Peak SAR (Extrapolated) [W/kg] …
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1200 East 151st Street · Olathe, 66062 · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.47 GHz | 53.00 mW |
| 2 | 15C | 2.40 GHz - 2.48 GHz | 2.59 mW |
| 3 | 15C | 2.40 GHz - 2.48 GHz | 2.64 mW |
Portable Digital Transceiver
Equipment Class
NII - Unlicensed National Information Infrastructure TXPortable Digital Transceiver
Equipment Class
NII - Unlicensed National Information Infrastructure TXMobile Digital Transceiver
Equipment Class
DTS - Digital Transmission SystemMarine Stereo
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterMarine Stereo
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter