Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Appendix A. Measured Test Result Test Result are shown below. Report No. : SFBFLF-WTW-P26010650A Reference No.: BFLF-WTW-P26050314 Report No. : SFBFLF-WTW-P26010650A Reference No.: BFLF-WTW-P26050314 Appendix C. Calibration Certificate for Probe and Dipole The SPEAG calibration certificates are shown as follows. Report No. : SFBFLF-WTW-P26010650A Reference No.: BFLF-WTW-P26050314 Report No. : SFBFLF-WTW-P26010650A Reference No.: BFLF-WTW-P26050314 Report No. : SFBFLF-WTW-P26010650A Reference No.: BFLF-WTW-P26050314 Report No. : SFBFLF-WTW-P26010650A Reference No.: BFLF-WTW-P26050314 Report No. : SFBFLF-WTW-P26010650A Reference No.: BFLF-WTW-P26050314 Report No. : SFBFLF-WTW-P26010650A Reference No.: BFLF-WTW-P26050314 Report No. : SFBFLF-WTW-P26010650A Reference No.: BFLF-WTW-P26050314 Report No. : SFBFLF-WTW-P26010650A Reference No.: BFLF-WTW-P26050314 Report No. : SFBFLF-WTW-P26010650A Reference No.: BFLF-WTW-P26050314 Report No. : SFBFLF-WTW-P26010650A Reference No.: BFLF-WTW-P26050314 Report No. : SFBFLF-WTW-P26010650A Reference No.: BFLF-WTW-P26050314 Report No. : SFBFLF-WTW-P26010650A Reference No.: BFLF-WTW-P26050314
Report No.: 25C0744R-RFUSV06S-A Page: 1 of 15 Test Report No: 25C0744R-RFUSV06S-A TEST REPORT FCC Rules & Regulations Product Name Chromebook/Notebook PC Brand Name ASUS Model No. CM3206DM4A, CL3206DM4A FCC ID MSQ-CM3206DM4A Applicant ́s Name / Address ASUSTeK COMPUTER INC. 1F, No. 15, Lide Rd, Beitou, Taipei 112, Taiwan Manufacturer’s Name ASUSTeK COMPUTER INC. Test Method Requested, Standard FCC CFR Title 47 Part 15 Subpart C Section 15.209 Verdict Summary IN COMPLIANCE Documented By Ida Tung Approved By Steven Tsai Date of Receipt 2025/12/22 Date of Issue 2026/05/22 Report Version V1.0 Report No.: 25C0744R-RFUSV06S-A Page: 2 of 15 INDEX page Competences and Guarantees ................................................................................................................................ 3 General Conditions .................................................................................................................................................. 3 Revision History ....................................................................................................................................................... 4 1. General Information .................................................................................................................................. 6 1.1. EUT Description ....................................................................................................................................... 6 1.2. EUT Information ....................................................................................................................................... 7 1.3. Testing Location Information .................................................................................................................... 7 1.4. Measurement Uncertainty ........................................................................................................................ 8 1.5. List of Test Equipment .............................................................................................................................. 9 2. Test Configuration of EUT ...................................................................................................................... 10 2.1. Test Condition ......................................................................................................................................... 10 2.2. Test Frequency Mode ............................................................................................................................. 10 2.3. Measurement Configuration ................................................................................................................... 10 2.4. Tested System Details ............................................................................................................................ 11 2.5. Configuration of tested System .............................................................................................................. 11 2.6. EUT Operating Procedures .................................................................................................................... 11 3. AC Power Line Conducted Emission ..................................................................................................... 12 3.1. Test Setup ............................................................................................................................................... 12 3.2. Test Limit ................................................................................................................................................ 12 3.3. Test Procedure ....................................................................................................................................... 12 3.4. Test Result of AC Power Line Conducted Emission ............................................................................... 12 4. Radiated Emission .................................................................................................................................. 13 4.1. Test Setup ............................................................................................................................................... 13 4.2. Test Limit ................................................................................................................................................ 14 4.3. Test Procedure ....................................................................................................................................... 14 4.4. Test Result of Radiated Emission ........................................................................................................... 15 Appendix A. Test Result of AC Power Line Conducted Emission Appendix B. Test Result of Radiated Emission Appendix C. Test Setup Photograph Report No.: 25C0744R-RFUSV06S-A Page: 3 of 15 Competences and Guarantees DEKRA is a testing laboratory competent to carry out the tests described in this report. In order to assure the traceability to other national and international laboratories, DEKRA has a calibration and maintenance program for its measurement equipment. DEKRA guarantees the reliability of the data presented in this report, which is the result of the measurements and the tests performed to the item under test on the date and under the conditions stated in the report and it is based on the knowledge and technical facilities available at DEKRA at the time of performance of the test. DEKRA is liable to the client for the maintenance of the confidentiality of all information related to the item under test and the results of the test. The results presented in this Test Report apply only to the particular item under test established in this document. IMPORTANT: No parts of this report may be reproduced or quoted out of context, in any form or by any means, except in full, without the previous written permission of DEKRA. General Conditions 1. The test results relate on…
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Report No.: 25C0744R-RFUSV06S-A Page: 1 of 6 Appendix A. Test Result of AC Power Line Conducted Emission WPT_TX_Line WPT_TX_Neutral Report No.: 25C0744R-RFUSV06S-A Page: 2 of 6 Appendix B. Test Result of Radiated Emission ANT: (M/N: INNOWAVE, P/N: F001N7414N91000) TX_0.136MHz_H TX_0.136MHz_V Report No.: 25C0744R-RFUSV06S-A Page: 3 of 6 ANT: (M/N: INPAQ, P/N: WPC-W-P-TX-FF-002) TX_0.136MHz_H TX_0.136MHz_V Report No.: 25C0744R-RFUSV06S-A Page: 4 of 6 TX_0.136MHz_below 30MHz_H_QP TX_0.136MHz_below 30MHz_V_QP TX_0.136MHz_above 30MHz_H_QP TX_0.136MHz_above 30MHz_V_QP
Doc.No.:3.8.05 Rev02 1 ANTENNA INFORMATION OEM ASUS ODM Huaqin Platform model name CM3206 Intel platform (ex: Yes, No or NA) No Platform type (ex: regular NB, convertible PC, AIO...etc) Tablet SAR minimum separation (mm) FCC (1g) 145mm ISED (1g) 145mm ISED (10g) Antenna manufacturer Company name Speed Address No.SX-01-02 Shangxia Section,Hi-tech District of East- river,Huizhou,Guangdong Province P.R,China Test location Company name Speed Address No.99,Weixin,Road,SIP,Suzhou,Jiangsu Province,China Test Personnel Name(Full name) Guixin Wang E-mail [email protected] Tel/Mobile T: 18550102970 Testing date 2025/12/04 Antenna Part number Main F-4G-XZ-0415-000-00 Aux F-4G-XZ-0416-000-00 Antenna type (ex: PIFA, Dipole...etc) PIFA Antenna Peak gain w/ cable loss (dBi)* 2.4GHz 2400-2483.5 MHz 5.2GHz 5150-5250MHz 5.3GHz 5250-5350MHz 5.6GHz 5470-5725MHz 5.8GHz 5725-5850MHz 5.9GHz 5850-5895MHz 6.2GHz 5925-6425MHz 6.5GHz 6425-6525MHz 6.7GHz 6525-6875MHz 7.0 GHz 6875-7125MHz Main 2.19 1.91 2.40 2.67 1.46 1.08 -0.22 0.94 0.04 1.33 Aux 0.76 -0.81 -1.92 -1.62 -0.13 -0.57 -0.73 1.41 1.42 0.42 Cable Assembly Part Number and Information Cable PN Cable length(mm) Cable diameter(mm) Impedance(ohm) Cable loss Connector type Main SY113L/50-048 or compatible. 64 1.13 50 0.22 dB @2.4G 0.34 dB @5G 0.51dB @6G I-PEX 20565-001R- 13 Aux SY113L/50-050 or compatible. 303 1.13 50 0.91 dB @2.4G 1.40 dB @5G 1.62dB @6G I-PEX 20565-001R- 13 * 3D Antenna Peak Gain required being test in system basis. Doc.No.:3.8.05 Rev02 2 Table of Contents Cover page.......................................................................................................................................................... 1 1. MTK Reference Gain and Type...................................................................................................................... 3 2. Document Revision History.................................................................................................................................... 3 3. Test & System Description 3.1 Measurement Method and System....................................................................................................................... 4 3.2 Test setup............................................................................................................................................................. 4 3.3 Equipment list....................................................................................................................................................... 5 4. Radiation characteristics of antenna loaded in Host Platform............................................................................ 6 Annex A. Photographs A.1 Setup Photo........................................................................................................................................................ 16 A.2 Test sample............................................................................................................................................... 17 Annex B. Antenna Location B.1 Antenna Host Platform Location Information.......................................................................................................19 B.2 Antenna dimensional information for SAR evaluation......................................................................................... 20 Doc.No.:3.8.05 Rev02 3 1. MTK Reference Gain and Type Antenna Peak gain w/ cable loss (dBi) Band/Frequency 2.4GHz 2400-2483.5 MHz 5.2GHz 5150-5250MHz 5.3GHz 5250-5350MHz 5.6GHz 5470-5725MHz 5.8GHz 5725-5850MHz 5.9GHz 5850-5895MHz 6.2GHz 5925-6425MHz 6.5GHz 6425-6525MHz 6.7GHz 6525-6875MHz 7.0 GHz 6875-7125MHz PIFA 3.18 4.92 4.92 4.92 4.92 4.92 4.76 4.29 4.61 4.09 Dipole 2.42 3.87 3.87 3.87 3.87 3.87 3.93 3.61 3.61 3.14 3D Peak Antenna gain should be equal or greater than -2 dBi If a host integrator plans to use a lower gain antenna of the same type, additional CBP(FCC)/EDT(EU) testing need to be performed while the module is installed in the host. 2. Document Revision History Revision # Revision Details Issued Date Rev. 00 First Issue Doc.No.:3.8.05 Rev02 4 3. Test & System Description 3.1 Measurement Method and System ETS-Lindgren AMS-8500 system is 3D fully anechoic chamber, it is applied to the “Conical Cut test method”, the detail description is described as below. The Conical Cut method requires the ability of the Measurement Antenna to be physically rotated in the theta plane (overhead) of the EUT for implementations using a single Measurement Antenna, Eleven conical cuts are required to capture data at every 15 degrees from the EUT, with the top (0 degrees) and bottom (180 degrees) cuts not being measured. Typically, the EUT will remain affixed to a turntable during the entire measurement process. The Measurement Antenna will be positioned at a starting theta angle. The EUT will then be rotated around the full 360 degrees of phi rotation. The Measurement Antenna will then be positioned at the next theta angle, and the process repeated. θ-Axis Φ-Axis Passive Step size 15º~165º step: 15º 0º~345º step: 15º N / M (Points) 12 24 3.2 Test setup Typical Setup for ETS-Lindgren AMS-8500: 3.3 Equipment list Doc.No.:3.8.05 Rev02 5 4. Radiation characteristics of antenna loaded in Host Platform Main Antenna ID#DeviceType/ModelSerial#ManufactuterCal. DateEstimated Next Cal. Date 1Anechoic ChamberAMS8500-ETS-Lindgren2023-07-132024-07-13 2Turn TableETS-ETS-LindgrenN/AN/A 3Switch & Positioning system2090-ETS-LindgrenN/AN/A 4Horn Antenna3164-0899210ETS-LindgrenN/AN/A 5Network AnalyzerE5071CMY46103999Agilient2023-07-132024-07-13 6Commercial test softwareEMQuestVersion 1.14 Build 10265 SN:1156ETS-Lindgren2023-07-132024-07-13 7Test OperatorJames HuPulse N/A: Not Applicable Doc.No.:3.8.05 Rev02 6 Max Antenna 3D Radiation Pattern 2400 – 2483.5 MHz Frequency (MHz) Peak Gain w/ Cable Loss (dBi) 2400-2483.5 2.19 Max Antenna 3D Radiation Pattern 5150-5250 MHz Frequency (MHz) Peak Gain w/ Cable Loss (dBi) 5150-5250…
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Doc.No.:3.8.05 Rev02 1 ANTENNA INFORMATION OEM ASUS ODM Huaqin Platform model name CM3206 Intel platform (ex: Yes, No or NA) No Platform type (ex: regular NB, convertible PC, AIO...etc) Tablet SAR minimum separation (mm) FCC (1g) 145mm ISED (1g) 145mm ISED (10g) Antenna manufacturer Company name INNOWAVE Address Building H, Jintu Zhizao Garden, No. 55 Shengchuang Road, Yushan Town, Kunshan City, Jiangsu Province Test location Company name INNOWAVE Address Building H, Jintu Zhizao Garden, No. 55 Shengchuang Road, Yushan Town, Kunshan City, Jiangsu Province Test Personnel Name(Full name) Sunhaijun E-mail [email protected] Tel/Mobile 18796863204 Testing date 2025.12.04 Antenna Part number Main F001N7411191000 Aux F001N7411591000 Antenna type (ex: PIFA, Dipole...etc) PIFA Antenna Peak gain w/ cable loss (dBi)* 2.4GHz 2400-2483.5 MHz 5.2GHz 5150-5250MHz 5.3GHz 5250-5350MHz 5.6GHz 5470-5725MHz 5.8GHz 5725-5850MHz 5.9GHz 5850-5895MHz 6.2GHz 5925-6425MHz 6.5GHz 6425-6525MHz 6.7GHz 6525-6875MHz 7.0 GHz 6875-7125MHz Main 2.94 2.03 2.43 2.78 3.38 1.94 2.18 2.35 2.27 1.45 Aux 1.87 2.73 2.35 2.82 3.15 3.21 2.76 3.42 2.06 1.09 Cable Assembly Part Number and Information Cable PN Cable length(mm) Cable diameter(mm) Impedance(ohm) Cable loss Connector type Main S001N7402911000 64 1.13 50 0.19 dB @2.4G 0.32 dB @5G 0.46dB @6G I-PEX -04 Aux S001N7402922000 303 1.13 50 0.80 dB @2.4G 1.31 dB @5G 1.56dB @6G I-PEX -04 * 3D Antenna Peak Gain required being test in system basis. Doc.No.:3.8.05 Rev02 2 Table of Contents Cover page.......................................................................................................................................................... 1 1. MTK Reference Gain and Type...................................................................................................................... 3 2. Document Revision History.................................................................................................................................... 3 3. Test & System Description 3.1 Measurement Method and System....................................................................................................................... 4 3.2 Test setup............................................................................................................................................................. 4 3.3 Equipment list....................................................................................................................................................... 5 4. Radiation characteristics of antenna loaded in Host Platform............................................................................ 6 Annex A. Photographs A.1 Setup Photo........................................................................................................................................................ 16 A.2 Test sample............................................................................................................................................... 17 Annex B. Antenna Location B.1 Antenna Host Platform Location Information.......................................................................................................19 B.2 Antenna dimensional information for SAR evaluation......................................................................................... 20 Doc.No.:3.8.05 Rev02 3 1. MTK Reference Gain and Type Antenna Peak gain w/ cable loss (dBi) Band/Frequency 2.4GHz 2400-2483.5 MHz 5.2GHz 5150-5250MHz 5.3GHz 5250-5350MHz 5.6GHz 5470-5725MHz 5.8GHz 5725-5850MHz 5.9GHz 5850-5895MHz 6.2GHz 5925-6425MHz 6.5GHz 6425-6525MHz 6.7GHz 6525-6875MHz 7.0 GHz 6875-7125MHz PIFA 3.18 4.92 4.92 4.92 4.92 4.92 4.76 4.29 4.61 4.09 Dipole 2.42 3.87 3.87 3.87 3.87 3.87 3.93 3.61 3.61 3.14 3D Peak Antenna gain should be equal or greater than -2 dBi If a host integrator plans to use a lower gain antenna of the same type, additional CBP(FCC)/EDT(EU) testing need to be performed while the module is installed in the host. 2. Document Revision History 3. Test & System Description 3.1 Measurement Method and System This test report is prepared for host antenna testing under a Full Anechoic Chamber. 3.2 Test setup Revision # Revision Details Issued Date Rev. 00 First Issue Doc.No.:3.8.05 Rev02 4 3.3 Equipment list 4. Radiation characteristics of antenna loaded in Host Platform Example Doc.No.:3.8.05 Rev02 5 Main Antenna Max Antenna 3D Radiation Pattern 2400 – 2483.5 MHz Frequency (MHz) Peak Gain w/ Cable Loss (dBi) 2400-2483.5 2.94 Max Antenna 3D Radiation Pattern 5150-5250 MHz Frequency (MHz) Peak Gain w/ Cable Loss (dBi) 5150-5250 2.03 Doc.No.:3.8.05 Rev02 6 Max Antenna 3D Radiation Pattern 5250-5350 MHz Frequency (MHz) Peak Gain w/ Cable Loss (dBi) 5250-5350 2.43 Max Antenna 3D Radiation Pattern 5470-5725 MHz Frequency (MHz) Peak Gain w/ Cable Loss (dBi) 5470-5725 2.78 Doc.No.:3.8.05 Rev02 7 Max Antenna 3D Radiation Pattern 5725-5850 MHz Frequency (MHz) Peak Gain w/ Cable Loss (dBi) 5725-5850 3.38 Max Antenna 3D Radiation Pattern 5850-5895 MHz Frequency (MHz) Peak Gain w/ Cable Loss (dBi) 5850-5895 1.94 Doc.No.:3.8.05 Rev02 8 Max Antenna 3D Radiation Pattern 5925-6425 MHz Frequency (MHz) Peak Gain w/ Cable Loss (dBi) 5925-6425 2.18 Max Antenna 3D Radiation Pattern 6425-6525 MHz Frequency (MHz) Peak Gain w/ Cable Loss (dBi) 6425-6525 2.35 Doc.No.:3.8.05 Rev02 9 Max Antenna 3D Radiation Pattern 6525-6875 MHz Frequency (MHz) Peak Gain w/ Cable Loss (dBi) 6525-6875 2.27 Max Antenna 3D Radiation Pattern 6875-7125 MHz Frequency (MHz) Peak Gain w/ Cable Loss (dBi) 6875-7125 1.45 Doc.No.:3.8.05 Rev02 10 Auxiliary Antenna Max Antenna 3D Radiation Pattern 2400 – 2483.5 MHz Frequency (MHz) Peak Gain w/ Cable Loss (dBi) 2400-2483.5 1.87 Max Antenna 3D Radiation Pattern 5150-5250 MHz Frequency (MHz) Peak Gain w/ Cable Loss (dBi) 5150-5250 2.73 Doc.No.:3.8.05 Rev02 11 Max Antenna 3D Radiation Pattern 5250-5350 MHz Frequency (MHz) Peak Gain w/ Cable Loss (dBi) 5250-5350 2.35 Max Antenna 3…
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Report No.: 25C0752R-SAUSV01S-A Page: 1 of 63 Test report No.: 25C0752R-SAUSV01S-A SAR Test Report Product Name Chromebook/Notebook PC Trademark ASUS Model and /or type reference CM3206DM4A, CL3206DM4A Applicant ́s name / address ASUSTeK COMPUTER INC. 1F, No. 15, Lide Rd, Beitou, Taipei 112, Taiwan Manufacturer ́s name ASUSTeK COMPUTER INC. FCC ID MSQ-CM3206DM4A Applicable Standard IEEE 1528-2013 KDB 447498 D01 v06 KDB 865664 D01 v01r04 Test Result Max. SAR Measurement (1g) 2.4 GHz: 1.166 W/kg 5 GHz: 1.098 W/kg 6 GHz: 1.019 W/kg Max. psPD Measurement (4cm 2 ) 6 GHz: 5.255 W/m 2 Verdict Summary IN COMPLIANCE Documented By (Senior Project Specialist / Genie Chang) Tested By (Senior Engineer / Luke Cheng) Approved By (Assistant Manager / San Lin) Date of Receipt 2025/12/22 Date of Issue 2026/05/06 Report Version V1.0 Report No.: 25C0752R-SAUSV01S-A Page: 2 of 63 INDEX Page 1. General Information ........................................................................................................ 5 1.1 EUT Description ................................................................................................. 5 1.2 Antenna List ....................................................................................................... 6 1.3 SAR Test Exclusion Calculation ......................................................................... 7 1.4 Test Environment .............................................................................................. 11 1.5 Measurement procedures................................................................................. 12 2. SAR Measurement System ........................................................................................... 13 2.1 DASY System Description ................................................................................ 13 2.2 Area Scans ....................................................................................................... 15 2.3 DASY E-Field Probe ......................................................................................... 16 2.4 DATA Acquisition Electronics (DAE) and Measurement Server ........................ 17 2.5 Robot ................................................................................................................ 18 2.6 Device Holder ................................................................................................... 18 2.7 Phantom ........................................................................................................... 19 3. Tissue Simulating Liquid .............................................................................................. 20 3.1 The composition of the tissue simulating liquid ................................................ 20 3.2 Tissue Calibration Result .................................................................................. 20 3.3 Tissue Dielectric Parameters for Phantoms ..................................................... 22 4. Measurement Procedure ............................................................................................... 23 4.1 SAR System Check .......................................................................................... 23 4.2 SAR Measurement Procedure .......................................................................... 26 4.3 Absorbed Power Density (APD) ....................................................................... 27 5. RF Exposure Limits ....................................................................................................... 28 6. Test Equipment List ...................................................................................................... 29 7. Measurement Uncertainty ............................................................................................. 32 8. Conducted Power Measurement (Including tolerance allowed for production unit) ................................................................................................................................ 37 9. Test Results ................................................................................................................... 53 9.1 Test Results Summary ..................................................................................... 53 9.2 Simultaneous Transmission .............................................................................. 59 10. SAR measurement variability ....................................................................................... 62 Appendix A. System Check Data Appendix B. Highest measurement Data Appendix C. Test Setup Photographs Appendix D. Probe Calibration Data Appendix E. Dipole & Source Calibration Appendix F. Product Photos-Please refer to the file: 25C0752R-Product Photos Report No.: 25C0752R-SAUSV01S-A Page: 3 of 63 Competences and Guarantees DEKRA is a testing laboratory competent to carry out the tests described in this report. In order to assure the traceability to other national and international laboratories, DEKRA has a calibration and maintenance program for its measurement equipment. DEKRA guarantees the reliability of the data presented in this report, which is the result of the measurements and the tests performed to the item under test on the date and under the conditions stated in the report and it is based on the knowledge and technical facilities available at DEKRA at the time of performance of the test. DEKRA is liable to the client for the maintenance of the confidentiality of all information related to the item under test and the results of the test. The results presented in this Test Report apply only to the particular item under test established in this document. IMPORTANT: No parts of this report may be reproduced or quoted out of context, in any form or by any means, except in full, without the previous written permission of DEKRA. General conditions 1. The test results relate only to the samples tested. 2. The test results shown in the test report are traceable…
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Appendix E. Dipole & Source Calibration
Appendix D. Probe Calibration
Report No.: 25C0744R-SAUSV01S-A Page: 1 of 8 Appendix B. Highest Measurement Data Report No.: 25C0744R-SAUSV01S-A Page: 2 of 8 Test Laboratory: DEKRA Date: 2026/03/24 18_WLAN2.4GHz_802.11b-1M_CH11_Bottom surface_0mm_ANT Main_INNOWAVE DUT: Tablet; Type: CM3206DM4A Communication System: UID 0, WLAN 2.4G; Frequency: 2462 MHz Communication System PAR: 0 dB Medium parameters used: f = 2462 MHz; σ = 1.83 S/m; ε r = 40.48; ρ = 1000 kg/m 3 Phantom section: Flat Section Measurement Standard: DASY5 (IEEE/IEC/ANSI C63.19-2011) DASY Configuration: Probe: EX3DV4 - SN3698; ConvF(6.64, 6.51, 6.41) @ 2462 MHz; Calibrated: 2025/11/27 Sensor-Surface: 1.4mm (Mechanical Surface Detection) Electronics: DAE4 Sn1207; Calibrated: 2025/11/13 Phantom: ELI 5.0; Type: QDOVA002AA; Serial: 1199 Measurement SW: DASY52, Version 52.10 (4); Configuration/Flat/Area Scan (8x9x1): Measurement grid: dx=12mm, dy=12mm Maximum value of SAR (measured) = 1.32 W/kg Configuration/Flat/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 28.80 V/m; Power Drift = -0.01 dB Peak SAR (extrapolated) = 1.96 W/kg SAR(1 g) = 0.983 W/kg; SAR(10 g) = 0.452 W/kg Smallest distance from peaks to all points 3 dB below = 9.5 mm Ratio of SAR at M2 to SAR at M1 = 49.6% Maximum value of SAR (measured) = 1.61 W/kg Report No.: 25C0744R-SAUSV01S-A Page: 3 of 8 Test Laboratory: DEKRA Date: 2026/03/24 1_Bluetooth_BT-1M_CH39_Bottom surface_0mm_ANT Aux_INNOWAVE DUT: Tablet; Type: CM3206DM4A Communication System: UID 0, BT 1M&3M&BLE; Frequency: 2441 MHz Communication System PAR: 0 dB Medium parameters used: f = 2441 MHz; σ = 1.81 S/m; ε r = 40.56; ρ = 1000 kg/m 3 Phantom section: Flat Section Measurement Standard: DASY5 (IEEE/IEC/ANSI C63.19-2011) DASY Configuration: Probe: EX3DV4 - SN3698; ConvF(6.64, 6.51, 6.41) @ 2441 MHz; Calibrated: 2025/11/27 Sensor-Surface: 1.4mm (Mechanical Surface Detection) Electronics: DAE4 Sn1207; Calibrated: 2025/11/13 Phantom: ELI 5.0; Type: QDOVA002AA; Serial: 1199 Measurement SW: DASY52, Version 52.10 (4); Configuration/Flat/Area Scan (9x11x1): Measurement grid: dx=12mm, dy=12mm Maximum value of SAR (measured) = 0.347 W/kg Configuration/Flat/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Reference Value = 16.78 V/m; Power Drift = -0.03 dB Peak SAR (extrapolated) = 0.613 W/kg SAR(1 g) = 0.253 W/kg; SAR(10 g) = 0.127 W/kg Smallest distance from peaks to all points 3 dB below = 7.6 mm Ratio of SAR at M2 to SAR at M1 = 57.5% Maximum value of SAR (measured) = 0.459 W/kg Report No.: 25C0744R-SAUSV01S-A Page: 4 of 8 Test Laboratory: DEKRA Date: 2026/03/25 4_WLAN5GHz_802.11ac80-VHT0_CH58_Bottom surface_0mm_ANT Aux_INNOWAVE DUT: Tablet; Type: CM3206DM4A Communication System: UID 0, WLAN 5G; Frequency: 5290 MHz Communication System PAR: 0 dB Medium parameters used: f = 5290 MHz; σ = 4.78 S/m; ε r = 36.16; ρ = 1000 kg/m 3 Phantom section: Flat Section Measurement Standard: DASY5 (IEEE/IEC/ANSI C63.19-2011) DASY Configuration: Probe: EX3DV4 - SN3698; ConvF(5.11, 5, 4.93) @ 5290 MHz; Calibrated: 2025/11/27 Sensor-Surface: 1.4mm (Mechanical Surface Detection) Electronics: DAE4 Sn1207; Calibrated: 2025/11/13 Phantom: ELI 5.0; Type: QDOVA002AA; Serial: 1199 Measurement SW: DASY52, Version 52.10 (4); Configuration/Flat/Area Scan (10x8x1): Measurement grid: dx=10mm, dy=10mm Maximum value of SAR (measured) = 2.30 W/kg Configuration/Flat/Zoom Scan (7x7x7)/Cube 0: Measurement grid: dx=4mm, dy=4mm, dz=1.4mm Reference Value = 22.04 V/m; Power Drift = -0.07 dB Peak SAR (extrapolated) = 4.70 W/kg SAR(1 g) = 0.904 W/kg; SAR(10 g) = 0.251 W/kg Smallest distance from peaks to all points 3 dB below = 4.3 mm Ratio of SAR at M2 to SAR at M1 = 64.8% Maximum value of SAR (measured) = 2.47 W/kg Report No.: 25C0744R-SAUSV01S-A Page: 5 of 8 Test Laboratory: DEKRA Date: 2026/03/26 10_WLAN5GHz_802.11ac80-VHT0_CH106_Bottom surface_0mm_ANT Aux_INNOWAVE DUT: Tablet; Type: CM3206DM4A Communication System: UID 0, WLAN 5G; Frequency: 5530 MHz Communication System PAR: 0 dB Medium parameters used: f = 5530 MHz; σ = 5.11 S/m; ε r = 35.49; ρ = 1000 kg/m 3 Phantom section: Flat Section Measurement Standard: DASY5 (IEEE/IEC/ANSI C63.19-2011) DASY Conf…
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48720 Kato Road, · Fremont, 94538 · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 0.1 MHz - 0.148 MHz | - |

Wireless Gaming Controller
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterWIRELESS DONGLE
Equipment Class
DTS - Digital Transmission System
USB Wireless Dongle
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
MODULE-WIRELESS CHRG
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHzProArt PZ14 Keyboard
Equipment Class
DTS - Digital Transmission System