Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Repairify, Inc. Rev 1/26/2023 Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 USA Date: 05-07-2024 Ref: Attestation Statements Part 2.911(d)(7) Filing Grantee Code: 2A8NI Repairify, Inc. certifies that, as of the date of the filing of the application, we designate ourselves as the U.S. agent for service of process. Designated U.S. Agent Information: FRN: 0032861734 Name: Repairify, Inc. Address: 5700 Tennyson Parkway, Suite 600, Plano, Texas, United States 75024 Contact Person: Jonathan Chatagnier Email: [email protected] Sincerely, Name: Jonathan Chatagnier E-mail: [email protected]
Repairify, Inc. Federal Communications Commission 7435 Oakland Mills Road Columbia MD 21046 Date: May 22, 2024 Subject: Certifications concerning “covered” equipment pursuant to Part 2.911(d)(5)(i) and (ii) To whom it may concern, Repairify, Inc. certifies that the equipment FCC ID: 2A8NIAAI14G for which authorization is sought is not “covered” equipment prohibited from receiving an equipment authorization pursuant to section 2.903 of the FCC rules. Repairify, Inc. 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 an entity producing “covered” equipment. Sincerely, ________________________ Name: Jonathan Chatagnier E-mail: [email protected]
Repairify, Inc. Date: May 23, 2024 Power of Attorney To whom it may concern, Please be notified that I, Yuri Radzik, hereby authorize Jonathan Chatagnier as Repairify’s full representative on FCC certification matters, to sign relevant documents on behalf of the legal representative and assume corresponding legal responsibilities. This authorization is valid from the date of issuance until the legal representative declares in writing of cancellation. Should you have any questions or comments regarding this matter, please have my best attention. Sincerely yours, ____ Contact Person: Yuri Radzik E-mail: [email protected]
Repairify, Inc. Date: May 22, 2024 Power of Attorney To whom it may concern, Please be notified that I, Jonathan Chatagnier, have designated Jim Tsai in Sporton International Inc. as the person being responsible for this project and to sign the form 731 and other documentation. Any and all acts carried out by Jim Tsai in Sporton International Inc., on the matters of relating to all processes required in the FCC approval and any communication needed with the national authority, shall have the same legal authority as acts on our own behalf. We further certifies that neither the applicant nor any party to this application, as defined in 47 CFR Ch. 1.2002 (b), is subject to a denial to Federal benefits, that include FCC benefits, pursuant to section 5301 of the Anti-Drug Abuse Act of 1998, 21 U.S.C 862. This authorization is limited to the product of as following: FCC ID: 2A8NIAAI14G If you have any acknowledgement and response, please send it to Sporton International Inc. directly. Should you have any questions or comments regarding this matter, please have my best attention. Sincerely yours, ____ Contact Person: Jonathan Chatagnier E-mail: [email protected]
Rev. 1/1/03 Repairify, Inc. Date: May 22, 2024 Federal Communications Commission Authorization and Evaluation Division Confidentiality Request regarding application for certification of FCC ID: 2A8NIAAI14G Pursuant to Sections 0.457 and 0.459 of the Commission’s Rules, we hereby request confidential treatment of information accompanying this application as outlined below: Schematics Block Diagram Parts List Operation Description Tune up Procedure The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these materials may be harmful to the applicant and provide unjustified benefits to its competitors. The applicant understands that pursuant to Section 0.457 of the Rules, disclosure of this application and all accompanying documentation will not be made before the date of the Grant for this application. Sincerely, ________________________ Name: Jonathan Chatagnier E-mail: [email protected]
1/1 Repairify, Inc. Date: May 22, 2024 Federal Communications Commission Authorization and Evaluation Division RE : Certification Application FCC ID : 2A8NIAAI14G To Whom It May Concern, Pursuant to sections 0.457 and 0.459 of CFR 47, Public Notice DA 04-1705 of the Commission’s policy and to avoid premature release of sensitive information prior to marketing or release of the product to the public, the applicant requests the following documents contained in this certification application be temporarily withheld from public disclosure for an initial period of 180 days: l External Photos l Internal Photos l Test set-up photos l Users Manual The application contains technical information, which Repairify, Inc. deems to be trade secrets and proprietary. If made public, the information might be used to the disadvantage of the applicant in the market place. The Applicant understands that pursuant to Rule 0.457, disclosure of this Application and all accompanying documentation will not be made before the date of the Grant for this application Sincerely, ____ Contact Person: Jonathan Chatagnier E-mail: [email protected]
Repairify, Inc. May 24, 2024 Declaration This device with FCC ID: 2A8NIAAI14G integrates a WWAN module: Model FCC ID Date of Grant WWAN module SC668S-NA XMR2022SC668SNA 04/27/2023 No hardware design changes are made on the module, and the software has not been changed to increase the RF output power of the module. Pursuant to KDB 996369 D02, the original modular report as follow table are submitted to represent the compliance of Part 22/24/27/15C/15E conducted testing items of this device. only Conducted Power, ERP/EIRP and RSE test items are tested in this report, all the other test results are leveraged from module RF report. Modular test report number FG311713A FG311713B FG311713C FG311713D 311713A Sincerely, Contact Person: Yuri Radzik E-mail: [email protected]
4G ® astech.com FCCID:2A8NIAAI14G Designed by Repairify™ in Texas. Assembled in China. -4G
Sporton International Inc. (Kunshan) Page : 1 of 38 TEL : +86-512-57900158 Issued Date : May 31, 2024 FCC ID : 2A8NIAAI14G Form version : 200414 FCC SAR Test Report Report No. : FA422003 FCC SAR TEST REPORT APPLICANT : Repairify, Inc. EQUIPMENT : Diagnostic Tool BRAND NAME : asTech® MODEL NAME : AIO-5700-4G FCC ID : 2A8NIAAI14G STANDARD : FCC 47 CFR PART 2 (2.1093) We, Sporton International Inc. (Kunshan), would like to declare that the tested sample has been evaluated in accordance with the test procedures given in 47 CFR Part 2.1093 and FCC KDB 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 of Sporton International Inc. (Kunshan), the test report shall not be reproduced except in full. Approved by: Si Zhang Sporton International Inc. (Kunshan) No. 1098, Pengxi North Road, Kunshan Economic Development Zone Jiangsu Province 215300 People’s Republic of China Sporton International Inc. (Kunshan) Page : 2 of 38 TEL : +86-512-57900158 Issued Date : May 31, 2024 FCC ID : 2A8NIAAI14G Form version : 200414 FCC SAR Test Report Report No. : FA422003 Table of Contents 1. Statement of Compliance ............................................................................................................................................. 4 2. Administration Data ...................................................................................................................................................... 5 3. Guidance Applied .......................................................................................................................................................... 5 4. Equipment Under Test (EUT) Information ................................................................................................................... 6 4.1 General Information ............................................................................................................................................... 6 4.2 General LTE SAR Test and Reporting Considerations ........................................................................................... 7 5. RF Exposure Limits......................................................................................................................................................11 5.1 Uncontrolled Environment ..................................................................................................................................... 11 5.2 Controlled Environment ......................................................................................................................................... 11 6. Specific Absorption Rate (SAR) ..................................................................................................................................12 6.1 Introduction ...........................................................................................................................................................12 6.2 SAR Definition .......................................................................................................................................................12 7. System Description and Setup ...................................................................................................................................13 7.1 E-Field Probe ........................................................................................................................................................14 7.2 Data Acquisition Electronics (DAE) .......................................................................................................................14 7.3 Phantom ................................................................................................................................................................15 7.4 Device Holder........................................................................................................................................................16 8. Measurement Procedures ...........................................................................................................................................17 8.1 Spatial Peak SAR Evaluation ................................................................................................................................17 8.2 Power Reference Measurement............................................................................................................................18 8.3 Area Scan .............................................................................................................................................................18 8.4 Zoom Scan ............................................................................................................................................................19 8.5 Volume Scan Procedures ......................................................................................................................................19 8.6 Power Drift Monitoring ...........................................................................................................................................19 9. Test Equipment List .....................................................................................................................................................20 10. System Verification ....................................................................................................................................................21 10.1 Tissue Simulating Liquids ....................................................................................................................................21 10.2 Tissue Verification ...............................................................................................................................................22 10.3 System Performance Check Results .................................…
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Test Laboratory: Sporton International Inc. SAR/HAC Testing Lab Date: 2024/3/13 System Check_Head_750MHz DUT: D750V3 - SN:1087 Communication System: UID 0, CW (0); Frequency: 750 MHz;Duty Cycle: 1:1 Medium: HSL_750 Medium parameters used: f = 750 MHz; σ = 0.872 S/m; ε r = 41.162; ρ = 1000 3 kg/m Ambient Temperature:23.3 °C; Liquid Temperature:22.6 °C DASY5 Configuration: - Probe: ES3DV3 - SN3279; ConvF(6.56, 6.56, 6.56); Calibrated: 2023/8/18 - Sensor-Surface: 3mm (Mechanical Surface Detection) - Electronics: DAE4 Sn690; Calibrated: 2023/6/20 - Phantom: ELI4 Phantom; Type: ELI4; Serial: TP-1201 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7501) Pin=50mW/Area Scan (61x61x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 0.511 W/kg Pin=50mW/Zoom Scan (5x5x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 24.80 V/m; Power Drift = -0.01 dB Peak SAR (extrapolated) = 0.574 W/kg SAR(1 g) = 0.409 W/kg; SAR(10 g) = 0.276 W/kg Maximum value of SAR (measured) = 0.525 W/kg 0 dB = 0.525 W/kg = -2.80 dBW/kg Test Laboratory: Sporton International Inc. SAR/HAC Testing Lab Date: 2024/3/14 System Check_Head_835MHz DUT: D835V2 - SN:4d091 Communication System: UID 0, CW (0); Frequency: 835 MHz;Duty Cycle: 1:1 Medium: HSL_835 Medium parameters used: f = 835 MHz; σ = 0.911 S/m; ε r = 42.679; ρ = 1000 3 kg/m Ambient Temperature:23.4 °C; Liquid Temperature:22.7 °C DASY5 Configuration: - Probe: ES3DV3 - SN3279; ConvF(6.36, 6.36, 6.36); Calibrated: 2023/8/18 - Sensor-Surface: 3mm (Mechanical Surface Detection) - Electronics: DAE4 Sn690; Calibrated: 2023/6/20 - Phantom: ELI4 Phantom; Type: ELI4; Serial: TP-1201 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7501) Pin=50mW/Area Scan (61x61x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 0.528 W/kg Pin=50mW/Zoom Scan (5x5x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 23.97 V/m; Power Drift = 0.02 dB Peak SAR (extrapolated) = 0.654 W/kg SAR(1 g) = 0.460 W/kg; SAR(10 g) = 0.306 W/kg Maximum value of SAR (measured) = 0.535 W/kg 0 dB = 0.535 W/kg = -2.72 dBW/kg Test Laboratory: Sporton International Inc. SAR/HAC Testing Lab Date: 2024/4/4 System Check_Head_1750MHz DUT: D1750V2 - SN:1090 Communication System: UID 0, CW (0); Frequency: 1750 MHz;Duty Cycle: 1:1 Medium: HSL_1750 Medium parameters used: f = 1750 MHz; σ = 1.389 S/m; ε r = 38.48; ρ = 1000 3 kg/m Ambient Temperature:23.3 °C; Liquid Temperature:22.6 °C DASY5 Configuration: - Probe: ES3DV3 - SN3279; ConvF(5.64, 5.64, 5.64); Calibrated: 2023/8/18 - Sensor-Surface: 3mm (Mechanical Surface Detection) - Electronics: DAE4 Sn690; Calibrated: 2023/6/20 - Phantom: ELI4 Phantom; Type: ELI4; Serial: TP-1201 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7501) Pin=50mW/Area Scan (61x61x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 2.41 W/kg Pin=50mW/Zoom Scan (5x5x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 29.95 V/m; Power Drift = 0.09 dB Peak SAR (extrapolated) = 3.12 W/kg SAR(1 g) = 1.92 W/kg; SAR(10 g) = 0.995 W/kg Maximum value of SAR (measured) = 2.35 W/kg 0 dB = 2.35 W/kg = 3.71 dBW/kg Test Laboratory: Sporton International Inc. SAR/HAC Testing Lab Date: 2024/4/5 System Check_Head_1900MHz DUT: D1900V2 - SN:5d118 Communication System: UID 0, CW (0); Frequency: 1900 MHz;Duty Cycle: 1:1 Medium: HSL_1900 Medium parameters used: f = 1900 MHz; σ = 1.391 S/m; ε = 40.634; ρ = 1000 r 3 kg/m Ambient Temperature:23.2 °C; Liquid Temperature:22.6 °C DASY5 Configuration: - Probe: ES3DV3 - SN3279; ConvF(5.38, 5.38, 5.38); Calibrated: 2023/8/18 - Sensor-Surface: 3mm (Mechanical Surface Detection) - Electronics: DAE4 Sn690; Calibrated: 2023/6/20 - Phantom: ELI4 Phantom; Type: ELI4; Serial: TP-1201 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7501) Pin=50mW/Area Scan (61x61x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 2.44 W/kg Pin=50mW/Zoom Scan (5x5x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 38.80 V/m; Power Drift = 0.10 dB Peak SAR (extrapolated) = 3.38 W/kg SAR(1 g) = 1.92 W/kg; SAR(10 g) = 1 W/kg Maximum value of SAR (measured) = 2.43 W/kg 0 dB = 2.43 W/kg = 3.86 dBW/kg Test Laboratory: Sporton International Inc. SAR/HAC Testing Lab Date: 2024/3/17 System Check_Head_2450MHz DUT: D2450V2 - SN:1040 Communication System: UID 0, CW (0); Frequency: 2450 MHz;Duty Cycle: 1:1 Medium: HSL_2450 Medium parameters used: f = 2450 MHz; σ = 1.78 S/m; ε r = 40.612; ρ = 1000 3 kg/m Ambient Temperature:23.4 °C; Liquid Temperature:22.8 °C DASY5 Configuration: - Probe: EX3DV4 - SN3857; ConvF(7.44, 6.79, 7.48); Calibrated: 2024/1/22 - Sensor-Surface: 1.4mm (Mechanical Surface Detection) - Electronics: DAE4 Sn1650; Calibrated: 2023/9/13 - Phantom: ELI4 Phantom; Type: ELI4; Serial: TP-1201 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7501) Pin=50mW/Area Scan (71x71x1): Interpolated grid: dx=1.200 mm, dy=1.200 mm Maximum value of SAR (interpolated) = 4.37 W/kg Pin=50mW/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 48.57 V/m; Power Drift = 0.05 dB Peak SAR (extrapolated) = 5.13 W/kg SAR(1 g) = 2.71 W/kg; SAR(10 g) = 1.32 W/kg Maximum value of SAR (measured) = 4.33 W/kg 0 dB = 4.33 W/kg = 6.36 dBW/kg Test Laboratory: Sporton International Inc. SAR/HAC Testing Lab Date: 2024/4/6 System Check_Head_2600MHz DUT: D2600V2 - SN:1112 Communication System: UID 0, CW (0); Frequency: 2600 MHz;Duty Cycle: 1:1 Medium: HSL_2600 Medium parameters used: f = 2600 MHz; σ = 1.956 S/m; ε r = 40.043; ρ = 1000 3 kg/m Ambient Temperature:23.3 °C; Liquid Temperature:22.7 °C DASY5 Configuration: - Probe: ES3DV3 - SN3279; ConvF(4.71, 4.71, 4.71); Calibrated: 2023/8/18 - Sensor-Surface: 3mm (Mechanical Surface Detection) - Electronics: DAE4 Sn690; Calibrated: 2023/6/20 - P…
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Test Laboratory: Sporton International Inc. SAR/HAC Testing Lab Date: 2024/3/13 01_LTE Band 71_20M_QPSK_1RB_0Offset_Edge 1_0mm_Ch133322 Communication System: UID 0, LTE-FDD (0); Frequency: 683 MHz;Duty Cycle: 1:1 Medium: HSL_750 Medium parameters used: f = 683 MHz; σ = 0.874 S/m; ε = 42.588; ρ = 1000 r 3 kg/m Ambient Temperature:23.3 °C; Liquid Temperature:22.6 °C DASY5 Configuration: - Probe: ES3DV3 - SN3279; ConvF(6.56, 6.56, 6.56); Calibrated: 2023/8/18 - Sensor-Surface: 3mm (Mechanical Surface Detection) - Electronics: DAE4 Sn690; Calibrated: 2023/6/20 - Phantom: ELI4 Phantom; Type: ELI4; Serial: TP-1201 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7501) Area Scan (51x131x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 0.276 W/kg Zoom Scan (5x5x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 4.456 V/m; Power Drift = 0.15 dB Peak SAR (extrapolated) = 0.499 W/kg SAR(1 g) = 0.250 W/kg; SAR(10 g) = 0.146 W/kg Maximum value of SAR (measured) = 0.314 W/kg 0 dB = 0.314 W/kg = -5.03 dBW/kg Test Laboratory: Sporton International Inc. SAR/HAC Testing Lab Date: 2024/3/13 02_LTE Band 12_10M_QPSK_1RB_0Offset_Edge 1_0mm_Ch23095 Communication System: UID 0, LTE-FDD (0); Frequency: 707.5 MHz;Duty Cycle: 1:1 Medium: HSL_750 Medium parameters used: f = 707.5 MHz; σ = 0.832 S/m; ε = 41.722; ρ = 1000 r 3 kg/m Ambient Temperature:23.3 °C; Liquid Temperature:22.6 °C DASY5 Configuration: - Probe: ES3DV3 - SN3279; ConvF(6.56, 6.56, 6.56); Calibrated: 2023/8/18 - Sensor-Surface: 3mm (Mechanical Surface Detection) - Electronics: DAE4 Sn690; Calibrated: 2023/6/20 - Phantom: ELI4 Phantom; Type: ELI4; Serial: TP-1201 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7501) Area Scan (51x131x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 0.274 W/kg Zoom Scan (5x5x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 3.153 V/m; Power Drift = -0.03 dB Peak SAR (extrapolated) = 0.467 W/kg SAR(1 g) = 0.231 W/kg; SAR(10 g) = 0.133 W/kg Maximum value of SAR (measured) = 0.295 W/kg 0 dB = 0.295 W/kg = -5.30 dBW/kg Test Laboratory: Sporton International Inc. SAR/HAC Testing Lab Date: 2024/3/13 03_LTE Band 13_10M_QPSK_1RB_0Offset_Edge 1_0mm_Ch23230 Communication System: UID 0, LTE-FDD (0); Frequency: 782 MHz;Duty Cycle: 1:1 Medium: HSL_750 Medium parameters used: f = 782 MHz; σ = 0.9 S/m; ε = 40.769; ρ = 1000 r 3 kg/m Ambient Temperature:23.3 °C; Liquid Temperature:22.6 °C DASY5 Configuration: - Probe: ES3DV3 - SN3279; ConvF(6.56, 6.56, 6.56); Calibrated: 2023/8/18 - Sensor-Surface: 3mm (Mechanical Surface Detection) - Electronics: DAE4 Sn690; Calibrated: 2023/6/20 - Phantom: ELI4 Phantom; Type: ELI4; Serial: TP-1201 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7501) Area Scan (51x201x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 0.304 W/kg Zoom Scan (6x7x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 2.735 V/m; Power Drift = -0.06 dB Peak SAR (extrapolated) = 0.467 W/kg SAR(1 g) = 0.251 W/kg; SAR(10 g) = 0.159 W/kg Maximum value of SAR (measured) = 0.302 W/kg 0 dB = 0.302 W/kg = -5.20 dBW/kg Test Laboratory: Sporton International Inc. SAR/HAC Testing Lab Date: 2024/3/13 04_LTE Band 14_10M_QPSK_1RB_0Offset_Edge 1_0mm_Ch23330 Communication System: UID 0, LTE-FDD (0); Frequency: 793 MHz;Duty Cycle: 1:1 Medium: HSL_750 Medium parameters used: f = 793 MHz; σ = 0.909 S/m; ε = 40.624; ρ = 1000 r 3 kg/m Ambient Temperature:23.3 °C; Liquid Temperature:22.6 °C DASY5 Configuration: - Probe: ES3DV3 - SN3279; ConvF(6.56, 6.56, 6.56); Calibrated: 2023/8/18 - Sensor-Surface: 3mm (Mechanical Surface Detection) - Electronics: DAE4 Sn690; Calibrated: 2023/6/20 - Phantom: ELI4 Phantom; Type: ELI4; Serial: TP-1201 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7501) Area Scan (51x201x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 0.249 W/kg Zoom Scan (5x5x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 2.638 V/m; Power Drift = 0.07 dB Peak SAR (extrapolated) = 0.338 W/kg SAR(1 g) = 0.206 W/kg; SAR(10 g) = 0.129 W/kg Maximum value of SAR (measured) = 0.245 W/kg 0 dB = 0.245 W/kg = -6.11 dBW/kg Test Laboratory: Sporton International Inc. SAR/HAC Testing Lab Date: 2024/3/14 05_LTE Band 26_15M_QPSK_1RB_0Offset_Edge 1_0mm_Ch26865 Communication System: UID 0, LTE-FDD (0); Frequency: 831.5 MHz;Duty Cycle: 1:1 Medium: HSL_835 Medium parameters used: f = 831.5 MHz; σ = 0.907 S/m; ε = 42.713; ρ = 1000 r 3 kg/m Ambient Temperature:23.4 °C; Liquid Temperature:22.7 °C DASY5 Configuration: - Probe: ES3DV3 - SN3279; ConvF(6.36, 6.36, 6.36); Calibrated: 2023/8/18 - Sensor-Surface: 3mm (Mechanical Surface Detection) - Electronics: DAE4 Sn690; Calibrated: 2023/6/20 - Phantom: ELI4 Phantom; Type: ELI4; Serial: TP-1201 - Measurement SW: DASY52, Version 52.10 (4); SEMCAD X Version 14.6.14 (7501) Area Scan (51x201x1): Interpolated grid: dx=1.500 mm, dy=1.500 mm Maximum value of SAR (interpolated) = 0.408 W/kg Zoom Scan (5x5x7)/Cube 0: Measurement grid: dx=8mm, dy=8mm, dz=5mm Reference Value = 3.114 V/m; Power Drift = 0.02 dB Peak SAR (extrapolated) = 0.679 W/kg SAR(1 g) = 0.329 W/kg; SAR(10 g) = 0.186 W/kg Maximum value of SAR (measured) = 0.406 W/kg 0 dB = 0.406 W/kg = -3.91 dBW/kg Test Laboratory: Sporton International Inc. SAR/HAC Testing Lab Date: 2024/4/4 06_LTE Band 66_20M_QPSK_1RB_0Offset_Edge 1_0mm_Ch132322 Communication System: UID 0, LTE-FDD (0); Frequency: 1745 MHz;Duty Cycle: 1:1 Medium: HSL_1750 Medium parameters used: f = 1745 MHz; σ = 1.387 S/m; ε = 38.476; ρ = 1000 r 3 kg/m Ambient Temperature:23.4 °C; Liquid Temperature:22.6 °C DASY5 Configuration: - Probe: ES3DV3 - SN3279; ConvF(5.64, 5.64, 5.64); Calibrated: 2023/8/18 - Sensor-Surface: 3mm (Mechanical Surface Detection) - Electronics: DAE4 Sn690; Calibrated: 2023/6…
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D750V3, Serial No. 1087 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. D750V3 – serial no. 1087 750 Head Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 2022.2.24 -29.078 52.625 -2.4779 2023.2.23 -25.021 -13.95 49.974 2.651 -5.5764 3.0985 2024.2.23 -27.142 -6.66 53.849 -1.224 -1.9335 -0.5444 <Justification of the extended calibration> 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. Dipole Verification Data> D750V3, serial no. 1087 750MHz – Head-2023.2.23 750MHz – Head-2024.2.23 D835V2, Serial No. 4d091 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. D835V2 – serial no. 4d091 835 Head Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 2022.8.19 -20.204 46.745 -8.9142 2023.8.18 -20.743 -2.6 48.115 -1.37 -9.0042 0.09 <Justification of the extended calibration> 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. Dipole Verification Data> D835V2, serial no. 4d091 835MHz – Head-2023.8.18 D1750V2, Serial No. 1090 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. D1750V2 – serial no. 1090 1750 Head Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 2022.2.24 -37.115 49.899 -1.3891 2023.2.23 -35.184 -5.2 49.092 0.807 -2.9814 1.5923 2024.2.23 -36.717 -1.07 50.143 -0.244 -1.4581 0.069 <Justification of the extended calibration> 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. Dipole Verification Data> D1750V2, serial no. 1090 1750MHz – Head - 2023-2-23 1750MHz – Head - 2024-2-23 D1900V2, Serial No. 5d118 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. D1900V2 – serial no. 5d118 1900 Head Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 2022.3.30 -23.393 52.598 6.4525 2023.3.29 -25.861 10.55 50.443 2.155 4.8447 1.6078 2024.3.29 -23.315 -0.33 52.154 0.444 4.5235 1.929 <Justification of the extended calibration> 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. Dipole Verification Data> D1900V2, serial no. 5d118 1900MHz – Head - 2023-3-29 1900MHz – Head - 2024-3-29
D5GHzV2, Serial No. 1113 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. D5GHzV2 – serial no. 1113 5250 Head Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 2022/9/23 -23.942 49.021 -6.2252 2023/9/22 -26.63 11.23 46.533 2.488 -4.0285 -2.1967 D5GHzV2 – serial no. 1113 5600 Head Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 2022/9/23 -25.273 55.212 -2.3941 2023/9/22 -23.746 -6.04 57.759 -2.547 1.4943 -3.8884 D5GHzV2 – serial no. 1113 5750 Head Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 2022/9/23 -27.750 54.124 -1.0959 2023/9/22 -31.350 12.97 50.097 4.027 -3.1053 2.0094 <Justification of the extended calibration> 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. Dipole Verification Data> D5GHzV2, serial no. 1113 5250MHz&5600MHz&5750MHz – Head – 2023.9.22
BW [MHz]ModulationRB SizeRB Offset Power Low Ch. / Freq. Power Middle Ch. / Freq. Power High Ch. / Freq. BW [MHz]ModulationRB SizeRB Offset Power Low Ch. / Freq. Power Middle Ch. / Freq. Power High Ch. / Freq. BW [MHz]ModulationRB SizeRB Offset Power Low Ch. / Freq. Power Middle Ch. / Freq. Power High Ch. / Freq. 187001890019100200502017520300204502052520600 18601880190017201732.51745829836.5844 20QPSK1020.1920.2120.0420QPSK1022.8122.8622.6210QPSK1022.9423.0122.98 20QPSK14920.1020.0919.9520QPSK14922.8322.6622.6010QPSK12522.7822.8122.97 20QPSK19920.1520.1619.9220QPSK19922.7222.8422.5410QPSK14922.9522.8822.86 20QPSK50019.1719.2019.1420QPSK50021.4121.6321.5710QPSK25021.9922.0621.99 20QPSK502419.0219.1419.0020QPSK502421.5321.5621.4610QPSK251222.0121.9922.04 20QPSK505019.0819.0519.1820QPSK505021.4721.4221.6210QPSK252521.9022.0121.98 20QPSK…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 4 | 15E | 5.75 GHz - 5.83 GHz | 37.90 mW |