Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Digitally signed by Ryan Boyd Date: 2024.04.16 14:52:10 -07'00'
MT-6208A : P/N: 11170603113 :11 1.0 RMM (0.12 ~0.18 ),60~70 () :mm mm RoHS : : : : ( )mm 50mm*15mm ! " : Model: MT-6208A DC Input: 15V3A Mobile Terminal System Made in TAIWAN RoHS FCC ID: V93MT6200AW T31454 RoHS #$%&' *+ -/ 50 mm 15 mm R XXX XXXXXX- NCC ID: XXXXXXXX MT-6210A : P/N: 11170602113 :11 1.0 RMM (0.12 ~0.18 ),60~70 () :mm mm RoHS : : : : ( )mm 50mm*15mm ! " : Model: MT-6210A DC Input: 15V3A Mobile Terminal System Made in TAIWAN RoHS FCC ID: V93MT6200AW T31454 RoHS #$%&' *+ -/ 50 mm R XXX XXXXXX- NCC ID: XXXXXXXX 15 mm Bottom Side LABEL
SP ORTON INTERNATIONAL INC. T EL : 886-3-327-3456 FAX : 886-3-328-4978 D2450V2, serial no. 736 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> D2450V2 – serial no. 736 2450M HZ Da te of Measurement Re turn-Loss (dB) De lta (%) Re al Impedance (ohm) De lta (ohm) I maginary Impedance (ohm) De lta (ohm) 08.17.2021 (C al. Report) -24.29755.295 3.6377 08.16.2022 (ex tended) -28.76118.37 51.401 -3.8943.556 -0.0817 08.15.2023 (ex tended) -28.48317.23 51.239 -4.0563.496 -0.1417 T he 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> - D2450 V2, serial no. 736 (Data of Measurement : 08.16.2022) 2450 MHz - Head SPORTON INTERNATIONAL INC. TEL : 886-3-327-3456 FAX : 886-3-328-4978 <Dipole Verification Data> - D2450V2, serial no. 736 (Data of Measurement : 08.15.2023) D2450V2 MHz - Head SPORTON INTERNATIONAL INC. TEL : 886-3-327-3456 FAX : 886-3-328-4978 D2450V2, serial no. 929 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> D2450V2 – serial no. 929 2450MHZ Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 11.21.2022 (Cal. Report) -25.5 52.9 4.7 11.20.2023 (extended) -25.9 1.57 52.3 -0.6 4.8 0.1 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> - D2450 V2, serial no. 929 (Data of Measurement : 11.20.2023) 2450MHz - Head SPORT ON INTERNATIONA L I NC. TE L : 886-3-327-3456 FA X : 886 -3-328-497 8 CLA13, serial no. 1022 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> CLA13 – serial no. 1022 13MHZ Date of Measurement Return-Loss (dB) Delta (%) Real Impedance (ohm) Delta (ohm) Imaginary Impedance (ohm) Delta (ohm) 09.01.2022 (Cal. Report) -25.51848.364 4.9544 08.3 1.2023 (extended) -24.882 -2.4950.308 1.944 5.7239 0.7695 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> - CLA13, serial no. 1022 (Data of Measurement : 08.31.2023) 13 MHz - Head
Communication System: IEEE 802.11b W iFi 2.4 GHz; Frequency: 2412.000 MHz Medium: HSL_2450_240529 Medium parameters used: f= 2412.000 MHz; σ= 1.79 S/m; ε r = 38.6 Ambient Temperature: 23.2°C; Liquid Temperature: 22.2°C DASY8 Configuration: - Probe: EX3DV4 - SN3931; ConvF(7.83, 7.83, 7.83); Calibrated: 2023-10-24 - Sensor-Surface: 1.4 mm - Electronics: DAE4 Sn376; Calibrated: 2023-09-14 - Phantom: ELI V8.0 (20deg probe tilt); Serial: 2155; Section: Flat - Measurement Software: 16.2.4.2524 - UID: WLAN, 10415-AAA Area Scan (60.0 mm x 260.0 mm): Measurement Grid: 10.0 mm x 10.0 mm SAR (1g) = 0.967 W/kg; SAR (10g) = 0.370 W/kg; Zoom Scan (30.0 mm x 30.0 mm x 30.0 mm): Measurement Grid: 5.0 mm x 5.0 mm x 1.5 mm Power Drift = -0.11 dB SAR (1g) = 0.955 W/kg; SAR (8g) = 0.413 W/kg; SAR (10g) = 0.364 W/kg Smallest distance from peaks to all points 3 dB below = 7.0 mm Ratio of SAR at M2 to SAR at M1 = 74.3 % Date: 2024-05-29 #01_WLAN2.4GHz_802.11b 1Mbps_Edge 2_0mm_Ch1 Communication System: IEEE 802.11ac WiFi; Frequency: 5210.000 MHz Medium: HSL_5G_240530 Medium parameters used: f= 5210.000 MHz; σ= 4.63 S/m; ε r = 36.6 Ambient Temperature: 23.4°C; Liquid Temperature: 22.4°C DASY8 Configuration: - Probe: EX3DV4 - SN3931; ConvF(5.17, 5.17, 5.17); Calibrated: 2023-10-24 - Sensor-Surface: 1.4 mm - Electronics: DAE4 Sn376; Calibrated: 2023-09-14 - Phantom: ELI V8.0 (20deg probe tilt); Serial: 2155; Section: Flat - Measurement Software: 16.2.4.2524 - UID: WLAN, 10544-AAD Area Scan (60.0 mm x 260.0 mm): Measurement Grid: 10.0 mm x 10.0 mm SAR (1g) = 1.13 W/kg; SAR (10g) = 0.363 W/kg; Zoom Scan (22.0 mm x 22.0 mm x 22.0 mm): Measurement Grid: 4.0 mm x 4.0 mm x 1.4 mm Power Drift = -0.01 dB SAR (1g) = 1.17 W/kg; SAR (8g) = 0.437 W/kg; SAR (10g) = 0.379 W/kg Smallest distance from peaks to all points 3 dB below = 7.6 mm Ratio of SAR at M2 to SAR at M1 = 66.2 % Date: 2024-05-30 #02_WLAN5GHz_802.11ac-VHT80 MCS0_Edge 2_0mm_Ch42 Communication System: IEEE 802.11ac W iFi; Frequency: 5610.000 MHz Medium: HSL_5G_240530 Medium parameters used: f= 5610.000 MHz; σ= 5.05 S/m; ε r = 36.0 Ambient Temperature: 23.4°C; Liquid Temperature: 22.4°C DASY8 Configuration: - Probe: EX3DV4 - SN3931; ConvF(4.48, 4.48, 4.48); Calibrated: 2023-10-24 - Sensor-Surface: 1.4 mm - Electronics: DAE4 Sn376; Calibrated: 2023-09-14 - Phantom: ELI V8.0 (20deg probe tilt); Serial: 2155; Section: Flat - Measurement Software: 16.2.4.2524 - UID: WLAN, 10544-AAD Area Scan (60.0 mm x 260.0 mm): Measurement Grid: 10.0 mm x 10.0 mm SAR (1g) = 0.862 W/kg; SAR (10g) = 0.282 W/kg; Zoom Scan (22.0 mm x 22.0 mm x 22.0 mm): Measurement Grid: 4.0 mm x 4.0 mm x 1.4 mm Power Drift = -0.03 dB SAR (1g) = 0.875 W/kg; SAR (8g) = 0.326 W/kg; SAR (10g) = 0.285 W/kg Smallest distance from peaks to all points 3 dB below = 7.3 mm Ratio of SAR at M2 to SAR at M1 = 62.5 % Date: 2024-05-30 #03_WLAN5GHz_802.11ac-VHT80 MCS0_Edge 2_0mm_Ch122 Communication System: IEEE 802.1 1n; Frequency: 5755.000 MHz Medium: HSL_5G_240530 Medium parameters used: f= 5755.000 MHz; σ= 5.21 S/m; ε r = 35.8 Ambient Temperature: 23.4°C; Liquid Temperature: 22.4°C DASY8 Configuration: - Probe: EX3DV4 - SN3931; ConvF(4.8, 4.8, 4.8); Calibrated: 2023-10-24 - Sensor-Surface: 1.4 mm - Electronics: DAE4 Sn376; Calibrated: 2023-09-14 - Phantom: ELI V8.0 (20deg probe tilt); Serial: 2155; Section: Flat - Measurement Software: 16.2.4.2524 - UID: WLAN, 10599-AAD Area Scan (60.0 mm x 260.0 mm): Measurement Grid: 10.0 mm x 10.0 mm SAR (1g) = 1.03 W/kg; SAR (10g) = 0.325 W/kg; Zoom Scan (22.0 mm x 22.0 mm x 22.0 mm): Measurement Grid: 4.0 mm x 4.0 mm x 1.4 mm Power Drift = -0.17 dB SAR (1g) = 1.04 W/kg; SAR (8g) = 0.377 W/kg; SAR (10g) = 0.326 W/kg Smallest distance from peaks to all points 3 dB below = 7.2 mm Ratio of SAR at M2 to SAR at M1 = 60.7 % Date: 2024-05-30 #04_WLAN5GHz_802.11n-HT40 MCS0_Edge 2_0mm_Ch151 Communication System: IEEE 802.15.1 Bluetooth; Frequency: 2480.000 MHz Medium: HSL_2450_240520 Medium parameters used: f= 2480.000 MHz; σ= 1.80 S/m; ε r = 38.7 Ambient Temperature: 23.5°C; Liquid Temperature: 22.5°C DASY6 Configuration: - Probe: EX3DV4 - SN7625; ConvF(7.67, 7.67, 7.67); Calibrated: 2023-12-14 - Sensor-Surface: 1.4 mm - Electronics: DAE4 Sn1694; Calibrated: 2023-11-17 - Phantom: ELI V8.0 (20deg probe tilt); Serial: 2192; Section: Flat - Measurement Software: 16.2.4.2524 - UID: Bluetooth, 10032-CAA Area Scan (100.0 mm x 80.0 mm): Measurement Grid: 10.0 mm x 10.0 mm SAR (1g) = 0.015 W/kg; SAR (10g) = 0.007 W/kg; Zoom Scan (30.0 mm x 30.0 mm x 30.0 mm): Measurement Grid: 5.0 mm x 5.0 mm x 1.5 mm Power Drift = 0.08 dB SAR (1g) = 0.014 W/kg; SAR (8g) = 0.007 W/kg; SAR (10g) = 0.006 W/kg Smallest distance from peaks to all points 3 dB below = 8.1 mm Ratio of SAR at M2 to SAR at M1 = 78.4 % Date: 2024-05-20 #05_Bluetooth_1Mbps_Bottom Face_0mm_Ch78 Communication System: SAR Validation ; Frequency: 13.56 MHz Medium: HSL_13_240521 Medium parameters used: f= 13.56 MHz; σ= 0.728 S/m; ε r = 54.7 Ambient Temperature: 23.2°C; Liquid Temperature: 22.2°C DASY8 Configuration: - Probe: EX3DV4 - SN3931; ConvF(18.48, 18.48, 18.48); Calibrated: 2023-10-24 - Sensor-Surface: 1.4 mm - Electronics: DAE4 Sn376; Calibrated: 2023-09-14 - Phantom: ELI V8.0 (20deg probe tilt); Serial: 2155; Section: Flat - Measurement Software: 16.2.4.2524 - UID: CW, 10010-CAB Area Scan (180.0 mm x 270.0 mm): Measurement Grid: 15.0 mm x 15.0 mm SAR (1g) = 0.003 W/kg; SAR (10g) = 0.002 W/kg; Zoom Scan (30.0 mm x 30.0 mm x 30.0 mm): Measurement Grid: 5.9 mm x 5.9 mm x 1.5 mm Power Drift = -0.09 dB SAR (1g) = 0.002 W/kg; SAR (8g) = 0 W/kg; SAR (10g) = 0 W/kg Smallest distance from peaks to all points 3 dB below = 7.1 mm Ratio of SAR at M2 to SAR at M1 = 47.8 % Date: 2024-05-21 #06_NFC_ASK_Bottom Face_0mm 0 dB = 1.91 W/kg = 2.81 dBW/kg Test Laboratory: Sporton International Inc. SAR/HAC Testing Lab Date: 2024/5/29 #07_WLAN2.4GHz_802.11b 1Mbps_Edge 2_0mm_Ch1 Communication System: UID 10415 - AAA, IEEE 802.11b WiFi 2.4 GHz; Frequency: 241…
Text truncated - open the document above for the full version.
Date: 2024-05-21 System Check_Head_13MHz DUT: CLA-13 - SN1022 Communication System: CW; Frequency: 13.000 MHz Medium: HSL_13_240521 Medium parameters used: f= 13.000 MHz; σ= 0.728 S/m; ε r = 54.7 Ambient Temperature: 23.2°C; Liquid Temperature: 22.2°C DASY6 Configuration: - Probe: EX3DV4 - SN3931; ConvF(18.48, 18.48, 18.48); Calibrated: 2023-10-24 - Sensor-Surface: 1.4 mm - Electronics: DAE4 Sn376; Calibrated: 2023-09-14 - Phantom: ELI V8.0 (20deg probe tilt); Serial: 2155; Section: Flat - Measurement Software: 16.2.4.2524 - UID: CW, 0 Pin=30.0dBm/Area Scan (40.0 mm x 90.0 mm): Measurement Grid: 10.0 mm x 15.0 mm SAR (1g) = 0.505 W/kg; SAR (10g) = 0.409 W/kg; Pin=30.0dBm/Zoom Scan (30.0 mm x 30.0 mm x 30.0 mm): Measurement Grid: 6.0 mm x 6.0 mm x 1.5 mm Power Drift = -0.00 dB SAR (1g) = 0.505 W/kg; SAR (8g) = 0.315 W/kg; SAR (10g) = 0.316 W/kg Smallest distance from peaks to all points 3 dB below = 17.4 mm Ratio of SAR at M2 to SAR at M1 = 77.5 % Date: 2024-05-20 System Check_Head_2450MHz DUT: D2450V2 - SN736 Communication System: CW; Frequency: 2450.000 MHz Medium: HSL_2450_240520 Medium parameters used: f= 2450.000 MHz; σ= 1.76 S/m; ε r = 38.8 Ambient Temperature: 23.5°C; Liquid Temperature: 22.5°C DASY6 Configuration: - Probe: EX3DV4 - SN7625; ConvF(7.67, 7.67, 7.67); Calibrated: 2023-12-14 - Sensor-Surface: 1.4 mm - Electronics: DAE4 Sn1694; Calibrated: 2023-11-17 - Phantom: ELI V8.0 (20deg probe tilt); Serial: 2192; Section: Flat - Measurement Software: 16.2.4.2524 - UID: CW, 0 Pin=24.0dBm/Area Scan (40.0 mm x 80.0 mm): Measurement Grid: 10.0 mm x 10.0 mm SAR (1g) = 14.0 W/kg; SAR (10g) = 6.47 W/kg; Pin=24.0dBm/Zoom Scan (30.0 mm x 30.0 mm x 30.0 mm): Measurement Grid: 5.0 mm x 5.0 mm x 1.5 mm Power Drift = -0.07 dB SAR (1g) = 13.7 W/kg; SAR (8g) = 7.16 W/kg; SAR (10g) = 6.50 W/kg Smallest distance from peaks to all points 3 dB below = 9.0 mm Ratio of SAR at M2 to SAR at M1 = 80.8 % Date: 2024-05-29 System Check_Head_2450MHz DUT: D2450V2 - SN929 Communication System: CW; Frequency: 2450.000 MHz Medium: HSL_2450_240529 Medium parameters used: f= 2450.000 MHz; σ= 1.83 S/m; ε r = 38.4 Ambient Temperature: 23.2°C; Liquid Temperature: 22.2°C DASY6 Configuration: - Probe: EX3DV4 - SN3931; ConvF(7.83, 7.83, 7.83); Calibrated: 2023-10-24 - Sensor-Surface: 1.4 mm - Electronics: DAE4 Sn376; Calibrated: 2023-09-14 - Phantom: ELI V8.0 (20deg probe tilt); Serial: 2155; Section: Flat - Measurement Software: 16.2.4.2524 - UID: CW, 0 Pin=17.0dBm/Area Scan (40.0 mm x 80.0 mm): Measurement Grid: 10.0 mm x 10.0 mm SAR (1g) = 2.39 W/kg; SAR (10g) = 1.11 Pin=17.0dBm/Zoom Scan (30.0 mm x 30.0 mm x 30.0 mm): Measurement Grid: 5.0 mm x 5.0 mm x 1.5 mm Power Drift = 0.02 dB SAR (1g) = 2.41 W/kg; SAR (8g) = 1.24 W/kg; SAR (10g) = 1.12 W/kg Smallest distance from peaks to all points 3 dB below = 9.0 mm Ratio of SAR at M2 to SAR at M1 = 76.8 % W/kg; Test Laboratory: Sporton International Inc. SAR/HAC Testing Lab Date: 2024/5/29 System Check_Head_2450MHz DUT: D2450V2-929 Communication System: UID 0, CW; Frequency: 2450 MHz Medium: HSL_2450_240529 Medium parameters used : f = 2450 MHz; σ = 1.776 S/m; ε r = 39.405; ρ = 3 1000 kg/m Ambient Temperature:23.6 °C; Liquid Temperature:22.6 °C DASY5 Configuration: - Probe: EX3DV4 - SN7590; ConvF(7.74, 7.6, 7.6) @ 2450 MHz; Calibrated: 2024/3/19 - Sensor-Surface: 1.4mm (Mechanical Surface Detection) - Electronics: DAE4 Sn1776; Calibrated: 2024/2/13 - Phantom: ELI V4.0; Type: QD OVA 001 Bx; Serial: 1164 - 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) = 4.11 W/kg Pin=50mW/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 50.49 V/m; Power Drift = -0.06 dB Peak SAR (extrapolated) = 4.93 W/kg SAR(1 g) = 2.49 W/kg; SAR(10 g) = 1.18 W/kg Smallest distance from peaks to all points 3 dB below = 9 mm Ratio of SAR at M2 to SAR at M1 = 51.2%. Maximum value of SAR (measured) = 4.08 W/kg 0 dB = 4.08 W/kg = 6.11 dBW/kg Date: 2024-05-30 System Check_Head_5250MHz DUT: D5GHzV2 - SN1006 Communication System: CW; Frequency: 5250.000 MHz Medium: HSL_5G_240530 Medium parameters used: f= 5250.000 MHz; σ= 4.67 S/m; ε r = 36.5 Ambient Temperature: 23.4°C; Liquid Temperature: 22.4°C DASY6 Configuration: - Probe: EX3DV4 - SN3931; ConvF(5.17, 5.17, 5.17); Calibrated: 2023-10-24 - Sensor-Surface: 1.4 mm - Electronics: DAE4 Sn376; Calibrated: 2023-09-14 - Phantom: ELI V8.0 (20deg probe tilt); Serial: 2155; Section: Flat - Measurement Software: 16.2.4.2524 - UID: CW, 0 Pin=17.0dBm/Area Scan (40.0 mm x 80.0 mm): Measurement Grid: 10.0 mm x 10.0 mm SAR (1g) = 3.55 W/kg; SAR (10g) = 1.04 W/kg; Pin=17.0dBm/Zoom Scan (22.0 mm x 22.0 mm x 22.0 mm): Measurement Grid: 4.0 mm x 4.0 mm x 1.4 mm Power Drift = 0.03 dB SAR (1g) = 3.83 W/kg; SAR (8g) = 1.28 W/kg; SAR (10g) = 1.09 W/kg Smallest distance from peaks to all points 3 dB below = 7.6 mm Ratio of SAR at M2 to SAR at M1 = 65.1 % Test Laboratory: Sporton International Inc. SAR/HAC Testing Lab Date: 2024/5/30 System Check_Head_5250MHz DUT: D5GHzV2-1006 Communication System: UID 0, CW ; Frequency: 5250 MHz Medium: HSL_5G_240530 Medium parameters used: f = 5250 MHz; σ = 4.656 S/m; ε r = 35.861; ρ = 1000 kg/m 3 Ambient Temperature:23.6 °C; Liquid Temperature:22.6 °C DASY5 Configuration: - Probe: EX3DV4 - SN7590; ConvF(5.82, 5.53, 5.73) @ 5250 MHz; Calibrated: 2024/3/19 - Sensor-Surface: 1.4mm (Mechanical Surface Detection) - Electronics: DAE4 Sn1776; Calibrated: 2024/2/13 - Phantom: ELI V4.0; Type: QD OVA 001 Bx; Serial: 1164 - Measurement SW: DASY52, Version 52.10 (4);SEMCAD X Version 14.6.14 (7501) Pin=50mW/Area Scan (71x71x1): Interpolated grid: dx=1.000 mm, dy=1.000 mm Maximum value of SAR (interpolated) = 8.85 W/kg Pin=50mW/Zoom Scan (9x9x7)/Cube 0: Measurement grid: dx=4mm, dy=4mm, dz=1.4mm Reference Value = 43.03 V/m; Power Drift = 0.04 dB Peak SAR (extrapolated) = 17.4 W/kg SAR(1 g) = …
Text truncated - open the document above for the full version.
TEL : 886-3-327-3456 Page 1 of 31 FAX : 886-3-328-4978 Issued Date : Jun. 17, 2024 Template version: 240125 FCC SAR TEST REPORT Report No. : FA3D2937 FCC SAR TEST REPORT FCC ID : V93MT6200AW Equipment : Mobile Terminal System Brand Name : Model Name : MT-62xxxx, MT-62xxxx-G2 (where x can be 0-9, A-Z, blank or symbol) Applicant : POSIFLEX TECHNOLOGY, INC. 4F-8F, No.23, Datong St., Tucheng Dist., New Taipei City 236044, Taiwan (R.O.C.) Manufacturer : POSIFLEX TECHNOLOGY, INC. 4F-8F, No.23, Datong St., Tucheng Dist., New Taipei City 236044, Taiwan (R.O.C.) Standard : FCC 47 CFR Part 2 (2.1093) The product was received on May 16, 2024 and testing was started from May 20, 2024 and completed on May 30, 2024. We, SPORTON INTERNATIONAL INC., would like to declare that the tested sample provide by manufacturer and the test data has been evaluated in accordance with the test procedures given in 47 CFR Part 2.1093 and FCC KDB and has been pass the FCC requirement. The test results in this report apply exclusively to the tested model / sample. Without written approval of SPORTON INTERNATIONAL INC. Laboratory, the test report shall not be reproduced except in full. Sporton International Inc. Wensan Laboratory No.58, Aly. 75, Ln. 564, Wenhua 3rd, Rd., Guishan Dist., Taoyuan City 333010, Taiwan Approved by: Cona Huang / Deputy Manager TEL : 886-3-327-3456 Page 2 of 31 FAX : 886-3-328-4978 Issued Date : Jun. 17, 2024 Template version: 240125 FCC SAR TEST REPORT Report No. : FA3D2937 Table of Contents 1. Statement of Compliance ............................................................................................................................................. 4 2. Guidance Applied .......................................................................................................................................................... 4 3. Equipment Under Test (EUT) Information ................................................................................................................... 5 3.1 General Information ............................................................................................................................................... 5 4. RF Exposure Limits....................................................................................................................................................... 6 4.1 Uncontrolled Environment ...................................................................................................................................... 6 4.2 Controlled Environment .......................................................................................................................................... 6 4.3 RF Exposure limit for above 6GHz ......................................................................................................................... 7 5. Specific Absorption Rate (SAR) ................................................................................................................................... 8 5.1 Introduction ............................................................................................................................................................ 8 5.2 SAR Definition ........................................................................................................................................................ 8 6. System Description and Setup .................................................................................................................................... 9 6.1 Test Site Location ................................................................................................................................................... 9 6.2 E-Field Probe ........................................................................................................................................................10 6.3 Data Acquisition Electronics (DAE) .......................................................................................................................10 6.4 Phantom ................................................................................................................................................................ 11 6.5 Device Holder........................................................................................................................................................12 7. Measurement Procedures ...........................................................................................................................................13 7.1 Spatial Peak SAR Evaluation ................................................................................................................................13 7.2 Power Reference Measurement............................................................................................................................14 7.3 Area Scan .............................................................................................................................................................14 7.4 Zoom Scan ............................................................................................................................................................15 7.5 Volume Scan Procedures ......................................................................................................................................15 7.6 Power Drift Monitoring ...........................................................................................................................................15 8. Test Equipment List .....................................................................................................................................................16 9. System Verification ......................................................................................................................................................17 9.1 Tissue Verification ..........................................................…
Text truncated - open the document above for the full version.
FCC Radio Test Report Report No. : FR3D2937AC TEL : 886-3-3273456 Page Number : 1 of 26 FAX : 886-3-3270973 Issued Date : Jun. 27, 2024 Report Template No.: HE1-C8 Ver4.4 Report Version : 01 FCC ID: V93MT6200AW FCC Radio Test Report FCC ID : V93MT6200AW Equipment : Mobile Terminal System Brand Name : Model Name : MT-62xxxx, MT-62xxxx-G2 (where x can be 0-9, A-Z, blank or symbol) Applicant : POSIFLEX TECHNOLOGY, INC. 4F-8F, No.23, Datong St., Tucheng Dist., New Taipei City 236044, Taiwan (R.O.C.) Manufacturer : POSIFLEX TECHNOLOGY, INC. 4F-8F, No.23, Datong St., Tucheng Dist., New Taipei City 236044, Taiwan (R.O.C.) Standard : 47 CFR FCC Part 15.247 The product was received on Jan. 11, 2024, and testing was started from Feb. 19, 2024 and completed on Mar. 14, 2024. We, SPORTON INTERNATIONAL INC. Hsinhua Laboratory, would like to declare that the tested sample has been evaluated in accordance with the procedures given in ANSI C63.10-2013 and shown 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. Hsinhua Laboratory, the test report shall not be reproduced except in full. ___________________________________________ Approved by: Jackson Tsai SPORTON INTERNATIONAL INC. Hsinhua Laboratory No.52, Huaya 1st Rd., Guishan Dist., Taoyuan City 333411, Taiwan (R.O.C.) FCC Radio Test Report Report No. : FR3D2937AC TEL : 886-3-3273456 Page Number : 2 of 26 FAX : 886-3-3270973 Issued Date : Jun. 27, 2024 Report Template No.: HE1-C8 Ver4.4 Report Version : 01 FCC ID: V93MT6200AW Table of Contents HISTORY OF THIS TEST REPORT .................................................................................................................. 3 SUMMARY OF TEST RESULT ......................................................................................................................... 4 1 GENERAL DESCRIPTION .................................................................................................................... 5 1.1 Information .............................................................................................................................................. 5 1.2 Testing Applied Standards ..................................................................................................................... 8 1.3 Testing Location Information .................................................................................................................. 8 1.4 Measurement Uncertainty ...................................................................................................................... 8 2 TEST CONFIGURATION OF EUT......................................................................................................... 9 2.1 Test Channel Mode ................................................................................................................................ 9 2.2 The Worst Case Measurement Configuration ...................................................................................... 10 2.3 Accessories .......................................................................................................................................... 11 2.4 Support Equipment ............................................................................................................................... 12 2.5 Test Setup Diagram ............................................................................................................................. 13 3 TRANSMITTER TEST RESULT .......................................................................................................... 14 3.1 AC Power-line Conducted Emissions .................................................................................................. 14 3.2 DTS Bandwidth..................................................................................................................................... 16 3.3 Maximum Conducted Output Power .................................................................................................... 17 3.4 Power Spectral Density ........................................................................................................................ 19 3.5 Emissions in Non-restricted Frequency Bands .................................................................................... 20 3.6 Emissions in Restricted Frequency Bands ........................................................................................... 21 4 TEST EQUIPMENT AND CALIBRATION DATA ................................................................................ 25 APPENDIX A. TEST RESULTS OF AC POWER-LINE CONDUCTED EMISSIONS APPENDIX B. TEST RESULTS OF DTS BANDWIDTH APPENDIX C. TEST RESULTS OF MAXIMUM CONDUCTED OUTPUT POWER APPENDIX D. TEST RESULTS OF POWER SPECTRAL DENSITY APPENDIX E. TEST RESULTS OF EMISSIONS IN NON-RESTRICTED FREQUENCY BANDS APPENDIX F. TEST RESULTS OF EMISSIONS IN RESTRICTED FREQUENCY BANDS APPENDIX G. TEST RESULTS OF RADIATED EMISSION CO-LOCATION APPENDIX H. TEST PHOTOS PHOTOGRAPHS OF EUT V01 FCC Radio Test Report Report No. : FR3D2937AC TEL : 886-3-3273456 Page Number : 3 of 26 FAX : 886-3-3270973 Issued Date : Jun. 27, 2024 Report Template No.: HE1-C8 Ver4.4 Report Version : 01 FCC ID: V93MT6200AW History of this test report Report No. Version Description Issued Date FR3D2937AC 01 Initial issue of report Jun. 27, 2024 FCC Radio Test Report Report No. : FR3D2937AC TEL : 886-3-3273456 Page Number : 4 of 26 FAX : 886-3-3270973 Issued Date : Jun. 27, 2024 Report Template No.: HE1-C8 Ver4.4 Report Version : 01 FCC ID: V93MT6200AW Summary of Test Result Report Clause Ref. Std. Clause Test Items Result (PASS/FAIL) Remark 1.1.2 15.203 Antenna Requirement PASS - 3.1 15.207 AC Power-line Conducted Emissions PASS - 3.2 15.247(a) DTS Bandwidth PASS - 3.3 15.247(b) Maximum Conducted Output Power PASS - 3.4 15.247(e) Power Spectral Density P…
Text truncated - open the document above for the full version.
FCC Radio Test Report Report No. : FR3D2937AL TEL : 886-3-3273456 Page Number : 1 of 26 FAX : 886-3-3270973 Issued Date : Jun. 27, 2024 Report Template No.: HE1-C10 Ver4.3 Report Version : 01 FCC ID: V93MT6200AW FCC Radio Test Report FCC ID : V93MT6200AW Equipment : Mobile Terminal System Brand Name : Model Name : MT-62xxxx, MT-62xxxx-G2 (where x can be 0-9, A-Z, blank or symbol) Applicant : POSIFLEX TECHNOLOGY, INC. 4F-8F, No.23, Datong St., Tucheng Dist., New Taipei City 236044, Taiwan (R.O.C.) Manufacturer : POSIFLEX TECHNOLOGY, INC. 4F-8F, No.23, Datong St., Tucheng Dist., New Taipei City 236044, Taiwan (R.O.C.) Standard : 47 CFR FCC Part 15.247 The product was received on Jan. 11, 2024, and testing was started from Feb. 19, 2024 and completed on Mar. 14, 2024. We, SPORTON INTERNATIONAL INC. Hsinhua Laboratory, would like to declare that the tested sample has been evaluated in accordance with the procedures given in ANSI C63.10-2013 and shown 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. Hsinhua Laboratory, the test report shall not be reproduced except in full. ___________________________________________ Approved by: Jackson Tsai __________________________________________ SDoC by: XXXXX SPORTON INTERNATIONAL INC. Hsinhua Laboratory No.52, Huaya 1st Rd., Guishan Dist., Taoyuan City 333411, Taiwan (R.O.C.) FCC Radio Test Report Report No. : FR3D2937AL TEL : 886-3-3273456 Page Number : 2 of 26 FAX : 886-3-3270973 Issued Date : Jun. 27, 2024 Report Template No.: HE1-C10 Ver4.3 Report Version : 01 FCC ID: V93MT6200AW Table of Contents HISTORY OF THIS TEST REPORT .................................................................................................................. 3 SUMMARY OF TEST RESULT ......................................................................................................................... 4 1 GENERAL DESCRIPTION ......................…
Text truncated - open the document above for the full version.
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15C | 2.41 GHz - 2.46 GHz | 70.80 mW |

SmartWave Contactless Card Reader
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Security Device
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter