Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Attestation Statements (June 14,2024) TO: Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046, USA RE: Attestation Statements Part 2.911(d)(7) request for (GC: 2ADYY) (TECNO MOBILE LIMITED), the undersigned, hereby authorize Lucky Cowboy Global Services, LLC to act as our designated U.S. agent for service of process, (TECNO MOBILE LIMITED) 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. Lucky Cowboy Global Services, LLC accepts the responsibility to act as designated U.S. agent for service of process. Applicant Information: Company name: TECNO MOBILE LIMITED Contact Name: Yiting Luo Address: FLAT N 16/F BLOCK B UNIVERSAL INDUSTRIAL CENTRE 19-25 SHAN MEI STREET FOTAN NT HONGKONG FRN: 0024206328 Telephone No: 86-755-61803856 Email: [email protected] Signature [Yiting Luo] U.S. Agent Information: Company Name: Lucky Cowboy Global Services, LLC Address: 2213 S. Braeswood Blvd. #12E Houston, TX 77030 USA FRN: 0033510934 Contact Name: Louie Liu Telephone No: +1 (713) 992-3369 Email: [email protected] Signature [Louie Liu]
(TECNO MOBILE LIMITED) (June 06, 2024) Eurofins Electrical and Electronic Testing NA, Inc. 914 West Patapsco Avenue Baltimore, MD 21230 RE: Attestation Statements Part 2.911(d)(5)(i) request for (FCC ID:2ADYY‐AE10#) [TECNO MOBILE LIMITED ] (“the applicant”) certifies that the equipment for which authorization is sought is not “covered” equipment prohibited from receiving an equipment authorization pursuant to section 2.903 of the FCC rules. Sincerely, Yiting Luo / Manger (TECNO MOBILE LIMITED) (June 06, 2024) Eurofins Electrical and Electronic Testing NA, Inc. 914 West Patapsco Avenue Baltimore, MD 21230 RE: Attestation Statements Part 2.911(d)(5)(ii) request for (FCC ID:2ADYY‐AE10#) [TECNO MOBILE LIMITED ] (“the applicant”) certifies that, as of the date of the filing of the application, the applicant is not identified on the Covered List as an entity producing “covered” equipment. Sincerely, Yiting Luo / Manger
TECNO MOBILE LIMITED Agent Authorization Letter (June 06, 2024) Eurofins MET Labs 914 West Patapsco Avenue Baltimore, MD 21230 RE: LETTER OF AGENT AUTHORIZATION To Whom It May Concern: We, the undersigned, hereby authorize (WORLD STANDARDIZATION CERTIFICATION & TESTING GROUP (SHENZHEN) CO., LTD.) to act on our behalf in all matters relating to application for equipment authorization, including the signing of all documents relating to these matters. We also hereby certify that no party to the application authorized hereunder is subject to the denial of benefits, including FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C.853(a). This agreement expires one year from the current date. Sincerely, Client’s name / title : Yiting Luo / Manger Company Name: TECNO MOBILE LIMITED Contact information / address: [email protected]/ FLAT N 16/F BLOCK B UNIVERSAL INDUSTRIAL CENTRE 19-25 SHAN MEI STREET FOTAN NT HONGKONG.
TECNO MOBILE LIMITED Long Term Confidentiality Request Letter (June 06, 2024) Eurofins MET Labs 914 West Patapsco Avenue Baltimore, MD 21230 RE: CONFIDENTIALITY REQUEST FOR EUT NAME: Mobile Phone Model No : AE10 FCC ID: 2ADYY-AE10 To Whom It May Concern: This letter serves as an official request for confidentiality under sections 0.457 and 0.459 of CFR 47. We have requested that the - Block Diagram - Schematics - Operational Description - BOM - Tune up procedure - NII_Software_Security_Info required to be submitted with this application be permanently withheld from public review. The above-mentioned documents belong to internal documents, is our proprietary information, that could never get into the possession of our competition. Please contact me if there is any information you may need. Sincerely, Client’s name / title : Yiting Luo / Manger Company Name: TECNO MOBILE LIMITED Contact information / address: [email protected]/ FLAT N 16/F BLOCK B UNIVERSAL INDUSTRIAL CENTRE 19-25 SHAN MEI STREET FOTAN NT HONGKONG.
TECNO MOBILE LIMITED Short Term Confidentiality Request Letter (June 06,2024) Eurofins Electrical and Electronic Testing NA, Inc. 914 West Patapsco Avenue Baltimore, MD 21230 RE: Short Term Confidentiality Request For(Mobile Phone / AE10# 2ADYY-AE10 #) To Whom It May Concern: In accordance with sections 0.457 and 0.459 of CFR 47, < TECNO MOBILE LIMITED >. requests short-term Confidentiality of following sections of this application for a period of 180 days after grant is issued. Set up Photos Internal photos External photos User’s manual These documents contain detailed system and equipment descriptions and related information about the product, which < TECNO MOBILE LIMITED > considers to be proprietary, confidential, and a custom design and otherwise, would not release to the general public. Since this design is a basis from which future technological products will evolve, < TECNO MOBILE LIMITED. > feels that this information would be of benefit to its competitors, and that the disclosure of the information in these documents would give our competitors an unfair advantage in the market. Please contact me if there is any information you may need. Sincerely, Yiting Luo / Manger Signature:
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Annex C: Calibration Reports Tested Model : AE10 Report Number: WSCT-A2LA-R&E240300009A-SAR Page: 1/10 Ref : ACR.170.9.24.BES.A WORLD STANDARDIZATION CERTIFICATION & TESTING GROUP CO .,LTD BLOCK A, BAO SHI SCIENCE PARK,BAO SHI ROAD, BAO'AN DISTRICT, SHENZHEN 518108, P.R. CHINA MVG COMOSAR DOSIMETRIC E-FIELD PROBE SERIAL NO.: 3523-EPGO-428 Calibrated at MVG Z.I. de la pointe du diable Technopôle Brest Iroise – 295 avenue Alexis de Rochon 29280 PLOUZANE - FRANCE Calibration date: 06/18/2024 Accreditations #2-6789 Scope available on www.cofrac.fr The use of the Cofrac brand and the accreditation references is prohibited from any reproduction. Summary: This document presents the method and results from an accredited COMOSAR Dosimetric E-Field Probe calibration performed at MVG, using the CALIPROBE test bench, for use with a MVG COMOSAR system only. The test results covered by accreditation are traceable to the International System of Units (SI). COMOSAR E-Field Probe Calibration Report COMOSAR E-FIELD PROBE CALIBRATION REPORT Ref: ACR.170.9.24.BES.A Page: 2/10 Template_ACR.DDD.N.YY.MVGB.ISSUE_COMOSAR Probe vM This document shall not be reproduced, except in full or in part, without the written approval of MVG. The information contained herein is to be used only for the purpose for which it is submitted and is not to be released in whole or part without written approval of MVG. Name Function Date Signature Prepared by : Jérôme Le Gall Measurement Responsible 6/18/2024 Checked & approved by: Jérôme Luc Technical Manager 6/19/2024 Authorized by: Géraldine TOUTAIN Quality Manager 6/20/2024 Customer Name Distribution : World Standardization Certification & Testing Group Co .,Ltd Issue Name Date Modifications A Jérôme Le Gall 6/18/2024 Initial release COMOSAR E-FIELD PROBE CALIBRATION REPORT Ref: ACR.170.9.24.BES.A Page: 3/10 Template_ACR.DDD.N.YY.MVGB.ISSUE_COMOSAR Probe vM This document shall not be reproduced, except in full or in part, without the written approval of MVG. The information contained herein is to be used only for the purpose for which it is submitted and is not to be released in whole or part without written approval of MVG. TABLE OF CONTENTS 1 Device Under Test ..................................................................................................... 4 2 Product Description ................................................................................................... 4 2.1 General Information _______________________________________________________ 4 3 Measurement Method ................................................................................................ 4 3.1 Sensitivity _______________________________________________________________ 4 3.2 Linearity ________________________________________________________________ 5 3.3 Isotropy _________________________________________________________________ 5 3.4 Boundary Effect __________________________________________________________ 5 3.5 Probe Modulation Response _________________________________________________ 6 4 Measurement Uncertainty .......................................................................................... 6 5 Calibration Results ..................................................................................................... 6 5.1 Calibration in air __________________________________________________________ 6 5.2 Calibration in liquid _______________________________________________________ 7 6 Verification Results ................................................................................................... 8 7 List of Equipment ...................................................................................................... 9 COMOSAR E-FIELD PROBE CALIBRATION REPORT Ref: ACR.170.9.24.BES.A Page: 4/10 Template_ACR.DDD.N.YY.MVGB.ISSUE_COMOSAR Probe vM This document shall not be reproduced, except in full or in part, without the written approval of MVG. The information contained herein is to be used only for the purpose for which it is submitted and is not to be released in whole or part without written approval of MVG. 1 DEVICE UNDER TEST Device Under Test Device Type COMOSAR DOSIMETRIC E FIELD PROBE Manufacturer MVG Model SSE2 Serial Number 3523-EPGO-428 Product Condition (new / used) Used Frequency Range of Probe 0.15 GHz-7.5GHz Resistance of Three Dipoles at Connector Dipole 1: R1=0.205 M Dipole 2: R2=0.207 M Dipole 3: R3=0.216 M 2 PRODUCT DESCRIPTION 2.1 GENERAL INFORMATION MVG’s COMOSAR E field Probes are built in accordance to the IEC/IEEE 62209-1528 and FCC KDB865664 D01 standards. Figure 1 – MVG COMOSAR Dosimetric E field Probe Probe Length 330 mm Length of Individual Dipoles 2 mm Maximum external diameter 8 mm Probe Tip External Diameter 2.5 mm Distance between dipoles / probe extremity 1 mm 3 MEASUREMENT METHOD The IEC/IEEE 62209-1528 and FCC KDB865664 D01 standards provide recommended practices for the probe calibrations, including the performance characteristics of interest and methods by which to assess their effect. All calibrations / measurements performed meet the fore-mentioned standards. 3.1 SENSITIVITY The sensitivity factors of the three dipoles were determined using a two step calibration method (air and tissue simulating liquid) using waveguides as outlined in the standards for frequency range 600- 7500MHz and using the calorimeter cell method (transfer method) as outlined in the standards for frequency 150-450 MHz. COMOSAR E-FIELD PROBE CALIBRATION REPORT Ref: ACR.170.9.24.BES.A Page: 5/10 Template_ACR.DDD.N.YY.MVGB.ISSUE_COMOSAR Probe vM This document shall not be reproduced, except in full or in part, without the written approval of MVG. The information contained herein is to be used only for the purpose for which it is submitted and is not to be released in whole or part without written approval of MVG. 3.2 LINEARITY The evaluation of the linearity was done in free space using the waveguide, performing a power sweep to cover the SAR range 0.01W/k…
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ReportNo.:WSCT-A2LA-R&E240300009A-SAR SAR Evaluation Report Page 2 of 174 iayixia Table of contents 1 General information .......................................................................................................................................... 5 1.1 Notes ........................................................................................................................................................... 5 1.2 Application details ..................................................................................................................................... 5 1.3 Statement of Compliance .......................................................................................................................... 6 1.4 EUT Information ....................................................................................................................................... 11 2 Testing laboratory ........................................................................................................................................... 15 3 ACCREDITATIONS .......................................................................................................................................... 15 4 Test Environment ............................................................................................................................................ 15 5 Applicant and Manufacturer .......................................................................................................................... 15 6 Test standard/s: ................................................................................................................................................ 16 6.1 RF exposure limits ................................................................................................................................... 17 6.2 SAR Definition .......................................................................................................................................... 17 7 SAR Measurement System .............................................................................................................................. 18 7.1 The Measurement System ...................................................................................................................... 18 7.2 The DASY8 Measurement System ......................................................................................................... 19 7.3 Robot ......................................................................................................................................................... 20 7.4 Probe ......................................................................................................................................................... 20 7.5 Measurement procedure ......................................................................................................................... 21 7.6 Description of interpolation/extrapolation scheme .............................................................................. 22 7.7 Phantom .................................................................................................................................................... 23 7.8 Device Holder ........................................................................................................................................... 24 7.9 Video Positioning System ....................................................................................................................... 25 7.10 Tissue simulating liquids: dielectric properties ................................................................................... 26 7.11 Tissue simulating liquids: parameters .................................................................................................. 27 8 System Check .................................................................................................................................................. 29 8.1 System check procedure ........................................................................................................................ 29 8.2 System checkresults ............................................................................................................................... 30 8.3 Power Density Test System Verification ............................................................................................... 31 ReportNo.:WSCT-A2LA-R&E240300009A-SAR SAR Evaluation Report Page 3 of 174 9 SAR Test Test Configuration ......................................................................................................................... 32 9.1 GSM Test Configurations ........................................................................................................................ 32 9.2 UMTS Test Configuration ........................................................................................................................ 32 9.3 LTE Test Configuration ........................................................................................................................... 34 9.4 Wi-Fi Test Configuration ....................................................................................................................... 36 9.5 WiFi 2.4G SAR Test Procedures ............................................................................................................. 37 9.6 RF Exposure Limits for Frequencies Above 6 GHz .............................................................................. 38 9.7 Miscellaneous Testing Considerations ................................................................................................. 38 10 Detailed Test Results .............................................................................................................................. 39 10.1 Conducted Power measurements .............................................................................…
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Report No.: WSCT-A2LA-R&E240300009A-NFC Page 2 of 26 TABLE OF CONTENTS 1. Test Certification ..................................................................................... 3 2. Test Result Summary .............................................................................. 4 3. EUT Description ....................................................................................... 5 4. Genera Information .................................................................................. 6 4.1. TEST ENVIRONMENT AND MODE .............................................................................................................. 6 4.2. DESCRIPTION OF SUPPORT UNITS .......................................................................................................... 6 5. Facilities and Accreditations .................................................................. 7 5.1. FACILITIES ............................................................................................................................................ 7 5.2. ACCREDITATIONS ............................................................................................................................ 7 5.3. MEASUREMENT UNCERTAINTY ............................................................................................................... 8 6. MEASUREMENT INSTRUMENTS ............................................................ 9 7. GENERAL TEST CONFIGURATIONS .................................................... 10 7.2. TEST SETUPS ...................................................................................................................................... 10 8. TEST ITEMS ........................................................................................... 12 8.1. ANTENNA REQUIREMENTS ................................................................................................................... 12 8.2. EMISSION BANDWIDTH ......................................................................................................................... 13 8.3. FIELD STRENGTH OF FUNDAMENTAL EMISSIONS AND RADIATED EMISSIONS .......................................... 16 8.4. FREQUENCY TOLERANCE ..................................................................................................................... 22 8.5. CONDUCTED EMISSION ........................................................................................................................ 23 4 Test Setup Photographs ....................................................................... 26 Report No.: WSCT-A2LA-R&E240300009A-NFC Page 4 of 26 2. Test Result Summary Requirement CFR 47 Section Result Antenna requirement §15.203 PASS Emission Bandwidth §15.215 PASS Field Strength of Fundamental Emissions §15.225(a) PASS Radiated Emissions §15.225(d) / 15.209 PASS Frequency Stability §15.225(e) PASS Conducted Emission §15.207 PASS Note: The EUT has a permanently and irreplaceable attached antenna, which complies with the requirement FCC 15.203 Note: 1. PASS: Test item meets the requirement. 2. Fail: Test item does not meet the requirement. 3. N/A: Test case does not apply to the test object. 4. The test result judgment is decided by the limit of test standard. Report No.: WSCT-A2LA-R&E240300009A-NFC Page 5 of 26 3. EUT Description Product Name: Mobile Phone Model : AE10 Trade Mark: TECNO Software version: AE10-H833A-U-OP-240421V2267 Hardware version: V2.0 Operation Frequency: NFC: 13.553-13.567MHz(TX/RX) Antenna Type Coil Antenna Modulation Technology: ASK(NFC) Operating Voltage: Adapter: U700TSA Input: 100-240V~50/60Hz 2.0A Output: 5.0V 3.0A 15.0W or 5.0-10.0V 7.0A MAX or 11.0V6.4A MAX or 4.0-20.0V3.5A 70.0W MAX Rechargeable Li-ion Polymer Battery Model1: BL-29GT Rated Voltage: 3.86V Rated Capacity: 2973mAh/11.48Wh Typical Capacity: 3043mAh/11.75Wh Limited Charge Voltage: 4.53V Rechargeable Li-ion Polymer Battery Model2: BL-25MT Rated Voltage: 3.86V Rated Capacity: 2637mAh/10.18Wh Typical Capacity: 2707mAh/10.45Wh Limited Charge Voltage: 4.53V Remark: N/A. Note: 1. N/A stands for no applicable. 2. Antenna gain provided by the customer. Report No.: WSCT-A2LA-R&E240300009A-NFC Page 6 of 26 4. Genera Information 4.1. Test environment and mode Operating Environment: Temperature: 25.0 C Humidity: 56 % RH Atmospheric Pressure: 1010 mbar Test Mode: Engineering mode: Keep the EUT in continuous transmitting by select channel and modulations(The value of duty cycle is 98.46%) with Fully-charged battery. The sample was placed (0.1m below 1GHz, 1.5m above 1GHz) above the ground plane of 3m chamber. Measurements in both horizontal and vertical polarities were performed. During the test, each emission was maximized by: having the EUT continuously working, investigated all operating modes, rotated about all 3 axis (X, Y & Z) and considered typical configuration to obtain worst position, manipulating interconnecting cables, rotating the turntable, varying antenna height from 1m to 4m in both horizontal and vertical polarizations. The emissions worst-case are shown in Test Results of the following pages. 4.2. Description of Support Units The EUT has been tested as an independent unit together with other necessary accessories or support units. The following support units or accessories were used to form a representative test configuration during the tests. Equipment Model No. Serial No. FCC ID Trade Name / / / / / Note: 1. All the equipment/cables were placed in the worst-case configuration to maximize the emission during the test. 2. Grounding was established in accordance with the manufacturer’s requirements and conditions for the intended use. 3. For conducted measurements (Output Power, 6dB Emission Bandwidth, Power Spectral Density, Spurious Emissions), the antenna of EUT is connected to the test equipment via temporary antenna connector, the antenna connector is soldered on the antenna port of EUT, and the temporary antenna connector is listed in the Test …
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Page 1 Annex A: System Check Tested Model : AE10 Report Number: WSCT-A2LA-R&E240300009A-SAR I. RESULTS TYPE BAND PARAMETERS Validation CW835 Measurement 1: Validation Plane with Dipole device position on Middle Channel in CW mode Validation CW835 Measurement 2: Validation Plane with Dipole device position on Middle Channel in CW mode Validation CW1800 Measurement 3: Validation Plane with Dipole device position on Middle Channel in CW mode Validation CW1800 Measurement 4: Validation Plane with Dipole device position on Middle Channel in CW mode Validation CW1900 Measurement 5: Validation Plane with Dipole device position on Middle Channel in CW mode Validation CW1900 Measurement 6: Validation Plane with Dipole device position on Middle Channel in CW mode Validation CW2450 Measurement 7: Validation Plane with Dipole device position on Middle Channel in CW mode Validation CW2450 Measurement 8: Validation Plane with Dipole device position on Middle Channel in CW mode Validation CW260 Measurement 9: Validation Plane with Dipole device position on Middle Channel in CW mode Validation CW2600 Measurement 10: Validation Plane with Dipole device position on Middle Channel in CW mode Page 2 BODY Type: Validation measurement (Complete) Date of measurement: 11/5/2024 Measurement duration: 11 minutes 54 seconds A. Experimental conditions. Area Scan dx=8mm dy=8mm ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Complete Phantom Validation plane Device Position Dipole Band CW835 Channels Middle Signal CW (Crest factor: 1.0) B. SAR Measurement Results Middle Band SAR (Channel -1): Frequency (MHz) 835.000000 Relative permittivity (real part) 53.927799 Relative permittivity (imaginary part) 21.281300 Conductivity (S/m) 0.987216 Variation (%) 0.120000 MEASUREMENT 1 Page 3 SURFACE SAR VOLUME SAR Maximum location: X=-1.00, Y=0.00 SAR Peak: 1.44 W/kg SAR 10g (W/Kg) 0.644746 SAR 1g (W/Kg) 1.014583 Page 4 Z (mm) 0.00 4.00 9.00 14.00 19.00 24.00 29.00 SAR (W/Kg) 1.1418 0.9674 0.6426 0.4358 0.2947 0.1989 0.1326 3D screen shot Hot spot position Page 5 HEAD Type: Validation measurement (Complete) Date of measurement: 11/5/2024 Measurement duration: 11 minutes 54 seconds A. Experimental conditions. Area Scan dx=8mm dy=8mm ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Complete Phantom Validation plane Device Position Dipole Band CW835 Channels Middle Signal CW (Crest factor: 1.0) B. SAR Measurement Results Middle Band SAR (Channel -1): Frequency (MHz) 835.000000 Relative permittivity (real part) 40.502102 Relative permittivity (imaginary part) 19.566299 Conductivity (S/m) 0.907659 Variation (%) 0.380000 MEASUREMENT 2 Page 6 SURFACE SAR VOLUME SAR Maximum location: X=-3.00, Y=-5.00 SAR Peak: 1.37 W/kg SAR 10g (W/Kg) 0.615004 SAR 1g (W/Kg) 0.970049 Page 7 Z (mm) 0.00 4.00 9.00 14.00 19.00 24.00 29.00 SAR (W/Kg) 1.5179 1.0923 0.7286 0.5008 0.3478 0.2446 0.1730 3D screen shot Hot spot position Page 8 BODY Type: Validation measurement (Complete) Date of measurement: 17/5/2024 Measurement duration: 11 minutes 22 seconds A. Experimental conditions. Area Scan dx=8mm dy=8mm ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Complete Phantom Validation plane Device Position Dipole Band CW1800 Channels Middle Signal CW (Crest factor: 1.0) B. SAR Measurement Results Middle Band SAR (Channel -1): Frequency (MHz) 1800.000000 Relative permittivity (real part) 53.112099 Relative permittivity (imaginary part) 15.286700 Conductivity (S/m) 1.528670 Variation (%) -0.410000 MEASUREMENT 3 Page 9 SURFACE SAR VOLUME SAR Maximum location: X=-0.00, Y=-0.00 SAR Peak: 7.72 W/kg SAR 10g (W/Kg) 2.171888 SAR 1g (W/Kg) 4.156173 Page 10 Z (mm) 0.00 4.00 9.00 14.00 19.00 24.00 29.00 SAR (W/Kg) 7.7941 4.9087 2.6873 1.5154 0.8724 0.5075 0.2958 3D screen shot Hot spot position Page 11 HEAD Type: Validation measurement (Complete) Date of measurement: 17/5/2024 Measurement duration: 14 minutes 4 seconds A. Experimental conditions. Area Scan dx=8mm dy=8mm ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Complete Phantom Validation plane Device Position Dipole Band CW1800 Channels Middle Signal CW (Crest factor: 1.0) B. SAR Measurement Results Middle Band SAR (Channel -1): Frequency (MHz) 1800.000000 Relative permittivity (real part) 39.812099 Relative permittivity (imaginary part) 14.387682 Conductivity (S/m) 1.441670 Variation (%) -1.090000 MEASUREMENT 4 Page 12 SURFACE SAR VOLUME SAR Maximum location: X=7.00, Y=0.00 SAR Peak: 5.77 W/kg SAR 10g (W/Kg) 2.060294 SAR 1g (W/Kg) 3.998394 Page 13 Z (mm) 0.00 4.00 9.00 14.00 19.00 24.00 29.00 SAR (W/Kg) 7.6530 4.8292 2.6475 1.4988 0.8584 0.4963 0.2899 3D screen shot Hot spot position Page 14 BODY Type: Validation measurement (Complete) Date of measurement: 23/5/2024 Measurement duration: 14 minutes 21 seconds A. Experimental conditions. Area Scan dx=8mm dy=8mm ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Complete Phantom Validation plane Device Position Dipole Band CW1900 Channels Middle Signal CW (Crest factor: 1.0) B. SAR Measurement Results Middle Band SAR (Channel -1): Frequency (MHz) 1900.000000 Relative permittivity (real part) 53.365299 Relative permittivity (imaginary part) 14.757600 Conductivity (S/m) 1.557747 Variation (%) -0.450000 MEASUREMENT 5 Page 15 SURFACE SAR VOLUME SAR Maximum location: X=1.00, Y=-1.00 SAR Peak: 7.40 W/kg SAR 10g (W/Kg) 2.093533 SAR 1g (W/Kg) 3.932904 Page 16 Z (mm) 0.00 4.00 9.00 14.00 19.00 24.00 29.00 SAR (W/Kg) 5.7034 3.7183 2.1347 1.2560 0.7338 0.4260 0.2429 3D screen shot Hot spot position Page 17 HEAD Type: Validation measurement (Complete) Date of measurement: 23/5/2024 Measurement duration: 13 minutes 47 seconds A. Experimental conditions. Area Scan dx=8mm dy=8mm ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Complete Phantom Validation plane Device Position Dipole Band CW1900 Channels Middle Signal CW (Crest factor: 1.0) B. SAR Measurement Results Middle Band SAR (Channel -1): Frequency (MHz) 1900.000000 Relative permittivity (real part) 39.976398 Relative permittivity (imaginary part) 13.386300 Conductivity (S/m) 1.412998 Variation (%) -…
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Page 1 Annex B: Measurement Results Tested Model : AE10 Report Number: WSCT-A2LA-R&E240300009A-SAR Page 2 Type: Phone measurement (Complete) Date of measurement:11/5/2024 Measurement duration: 13 minutes 50 seconds A. Experimentalconditions. Area Scan dx=15mm dy=15mm ZoomScan 7x7x7,dx=5mm dy=5mmdz=5mm,Complete Phantom Righthead Device Position Cheek Band GSM850 Channels Middle Signal TDMA (Crest factor: 8.0) B. SAR MeasurementResults Middle Band SAR (Channel 190): Frequency (MHz) 836.600000 Relative permittivity (real part) 44.445801 Relative permittivity (imaginary part) 18.410500 C…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 13.56 MHz - 13.56 MHz | - |
Mobile Phone
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterTablet
Equipment Class
DTS - Digital Transmission SystemMobile Phone
Equipment Class
PCE - PCS Licensed Transmitter held to earMobile Phone
Equipment Class
DTS - Digital Transmission SystemTablet
Equipment Class
NII - Unlicensed National Information Infrastructure TX