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XMF-MID103510.1 inch Tablet

Lightcomm Technology Co., Ltd.
10.1 inch Tablet - FCC ID XMF-MID1035 - Lightcomm Technology Co., Ltd.
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Jan 17, 2020
Application Purpose
Original Equipment
Date of Application
Jan 16, 2020
Equipment Note
10.1 inch Tablet
Frequency Range
2402.00000000 - 2480.00000000
Company
Lightcomm Technology Co., Ltd.
Country
Hong Kong

Documents & Files

Select a file to view

Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

Model: 100003562 10.1” Tablet PRODUCT GUIDE Date_Revision December 18, 2019_V1 We’d love to hear from you. Scan with your Walmart app and let us know what you think.   2 Thank you for purchasing the onn. Android 10 tablet with Google Play. Featuring a fast and responsive Octa core processor, this tablet is perfect for accomplishing everyday tasks, streaming music and movies, taking photos, checking emails, and engaging with social media. The tablet oers 32GB of internal storage, Bluetooth connectivity, Micro SD slot for up to 128GB of additional storage, on-the-go productivity services, and a utility app. The following information will help you get the most out of your tablet. What You Should Know to Ensure Best Performance: Charge the battery completely before rst use. While updates download in the background, tablet performance can be aected until completed. Close unused applications. Open apps that run in the background can aect overall performance. Battery life will vary based on open apps, internet usage, and display settings. User should use a tablet screen protector and case to protect the tablet. 3 10.1’’ Table AC adaptor USB Type-C cable 46*36*23mm Model: 100003562 10” Tablet PRODUCT GUIDE Date _Revision December 16, 2019_V1 We’d love to hear from you. Scan with your Walmart app and let us know what you think.   4 1. Camera (Front) 2. Microphones Pogo Pin 3. Speakers 4. Volume Contr ol 6. 7. Micro SD Card Slot 8.Power and Data Sync Port 9. Earphone 10. Camera(Rear) 10 5 6 7 8 9 10 11 12 13 14 15 16 XMF-MID1035 All APP The SAR limit adopted by USA and Canada is 1.6 watts/kilogram (W/kg) averaged over one gram of tissue. The highest SAR value reported to the Federal Communications Commission (FCC) and the Industry Canada (IC) for this device type when it is properly worn on the body is 0.770W/kg. The device complies with the RF specifications when the device is used near your distance of 0 mm from your body. Ensure that the device accessories such as a device case and a device holster are not composed of metal components. Keep your device 0 mm away from your body to meet the requirement earlier mentioned. This device was tested for typical body-worn operations. To comply with RF exposure requirements, a minimum separation distance of 0 mm must be maintained between the user’s body and the handset, including the antenna. Third-party belt-clips, holsters, and similar accessories used by this device should not contain any metallic components. Body-worn accessories that do not meet these requirements may not comply with RF exposure requirements and should be avoided. Use only the supplied or an approved antenna. 17 18 1-888-516-2630 19 5014649

Cover Letter(s)

Lightcomm Technology Co., Ltd. UNIT 1306 13/F ARION COMMERCIAL CENTRE, 2-12 QUEEN'S ROAD WEST, SHEUNG WAN HK Agent Authorization Date:Jan 13, 2020 Company: Lightcomm Technology Co., Ltd. Address:UNIT 1306 13/F ARION COMMERCIAL CENTRE, 2-12 QUEEN'S ROAD WEST, SHEUNG WAN HK Product Description: 10.1"Tablet FCC ID: XMF-MID1035 Tested Model Number: 100003562 We authorize Eurofins Product Service GmbH, Storkower Strasse 38c, D-15526 Reichenwalde, Germany, to act on our behalf on all matters concerning the certification of above mentioned equipment. We declare that Eurofins Product Service GmbH is allowed to forward all information related to the approval and certification of equipment to the regulatory agencies as required and to discuss any issues concerning the approval application. Any and all acts carried out by Eurofins Product Service GmbH on our behalf shall have the same effect as acts of our own. We, Lightcomm Technology Co., Ltd., the undersigned, hereby authorize Shenzhen Toby Technology Co., Ltd. (Ivan Su, Supervisor of EMC Dep.), Shenzhen Microwave Certification Services Co., Ltd. (Gilbert Lui, Marketing Manager) and Ka.Ma.S UG (Karin Schmidt, CEO) on our behalf, to apply to the Federal Communications Commission on our equipment. We, the undersigned, hereby authorize Shenzhen Toby Technology Co., Ltd. (Ivan Su, Supervisor of EMC Dep.) to act on our behalf in matters relating to the application for a FCC equipment authorization for mentioned FCC ID Number including the signing of Form 731, necessary forms and documents in connection with this application. Any and all acts carried out by Shenzhen Toby Technology Co., Ltd. (Ivan Su, Supervisor of EMC Dep.) on our behalf shall have the same effect as acts of our own. This authorization expires on 31th December, 2019. Yours Sincerely, Lightcomm Technology Co., Ltd. <Signature of Jack Sun > ------------------------------ UNIT 1306 13/F ARION COMMERCIAL CENTRE, 2-12 QUEEN'S ROAD WEST, SHEUNG WAN HK Phone: 0085221913611 Email: [email protected]

Cover Letter(s)

Lightcomm Technology Co., Ltd. Declaration Letter of Model Difference Date:Jan 13, 2020 FCC ID: XMF-MID1035 Tested Model Number: 100003562 Adding Model Number(s): 100003562, MID1035 All Adding Model Number(s) is/are same electrically identical as Tested Model Number. Yours Sincerely, Lightcomm Technology Co., Ltd. <Signature of Jack Sun > --------------------------------- Jack Sun UNIT 1306 13/F ARION COMMERCIAL CENTRE, 2-12 QUEEN'S ROAD WEST, SHEUNG WAN HK Phone: 0085221913611 Email: [email protected]

Cover Letter(s)

Lightcomm Technology Co., Ltd. CONFIDENTIALITY REQUEST for Certification under the FCC Rules Date: Jan 13, 2020 Federal Communication Commission Equipment Authorization Division, Application Processing Branch 7435 Oakland Mills Road Columbia, MD 21046 TO WHOM IT MAY CONCERN Pursuant to Paragraphs §0.457 and 0.459 of the Commission’s Rules (47 C.F.R.) and Section §552(b)(4) of the Freedom of Information Act, we request confidentiality for the following product: FCC ID: XMF-MID1035 Tested Model Number: 100003562 For the product stated above, we request that the following information be held confidential: Exhibits Long-Term Confidentiality Short-Term Confidentiality Short-Term Confidentiality Days Block Diagram Schematic Diagram/ Circuit Diagram Circuit Description/ Operational Description Software Security Requirements Parts List Tune Up Information User’s Manual External Photos Internal Photos Test Setup Photos The long-term confidentiality exhibits contain our trade secrets and proprietary information that could be of benefit to our competitors. The short-term confidentiality on the basis of ensuring that business sensitive information remains confidential until the actual marketing of our new device. Please do not hesitate to contact me if you have any queries. Yours Sincerely, Lightcomm Technology Co., Ltd. <Signature of Jack Sun > ----------------------------------- Jack Sun UNIT 1306 13/F ARION COMMERCIAL CENTRE, 2-12 QUEEN'S ROAD WEST, SHEUNG WAN HK Phone: 0085221913611 Email: [email protected]

External Photos

Page: 3 of 11 FCC ID: XMF-MID1035 TB-RF-074-1.0 Appendix III EUT External Photographs Photo 1 Appearance of EUT Photo 2 Appearance of EUT Page: 4 of 11 FCC ID: XMF-MID1035 TB-RF-074-1.0 Photo 3 Appearance of EUT Photo 4 Appearance of EUT Page: 5 of 11 FCC ID: XMF-MID1035 TB-RF-074-1.0 Photo 5 Appearance of EUT Photo 6 Appearance of EUT

ID Label/Location Info

Page: 1 of 11 FCC ID: XMF-MID1035 TB-RF-074-1.0 Appendix IFCC ID Label Size for the label: 30mm X 30mm FCCID: XMF-MID1035 Model: 100003562 This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: 1. This device may not cause harmful interference. 2. This device must accept any interference received, including interference that may cause undesired operation. Page: 2 of 11 FCC ID: XMF-MID1035 TB-RF-074-1.0 Appendix II ID Label Location ID LOCATION

Internal Photos

Page: 6 of 11 FCC ID: XMF-MID1035 TB-RF-074-1.0 Appendix IV EUT Internal Photographs Photo 8 Internal of EUT Photo 9 Internal of PCB Page: 7 of 11 FCC ID: XMF-MID1035 TB-RF-074-1.0 Photo 10 Internal of PCB Photo 11 Appearance of Antenna 2.4G/5GWIFI BT ANT. Page: 8 of 11 FCC ID: XMF-MID1035 TB-RF-074-1.0 Photo 12 Appearance of Battery Photo 13 Internal of PCB

RF Exposure Info

Ref : ACR.154.4.15.SATU.A SHENZHEN SEM TEST TECHNOLOGY CO., LTD. 1/F, BUILDING A, HONGWEI INDUSTRIAL PARK, LIUXIAN 2ND ROAD BAO'AN DISTRICT SHENZHEN (518101), CHINA MVG COMOSAR DOSIMETRIC E-FIELD PROBE SERIAL NO.: SN 09/13 EP168 Calibrated at MVG US 2105 Barrett Park Dr. - Kennesaw, GA 30144 05/22/2019 Summary: This document presents the method and results from an accredited COMOSAR Dosimetric E-Field Probe calibration performed in MVG USA using the CALISAR / CALIBAIR test bench, for use with a COMOSAR system only. All calibration results are traceable to national metrology institutions. COMOSAR E-Field Probe Calibration Report COMOSAR E-FIELD PROBE CALIBRATION REPORT Ref: ACR.154.4.15.SATU.A Page: 2/9 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 DateSignature Prepared by : Jérôme LUC Product Manager 5/22/2019 Checked by : Jérôme LUC Product Manager 5/22/2019 Approved by : Kim RUTKOWSKI Quality Manager 5/22/2019 Customer Name Distribution : Shenzhen SEM.Test Technology Co., Ltd. Issue Date Modifications A 5/22/2019 Initial release COMOSAR E-FIELD PROBE CALIBRATION REPORT Ref: ACR.154.4.15.SATU.A Page: 3/9 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 Linearity ________________________________________________________________ 4 3.2 Sensitivity _______________________________________________________________ 5 3.3 Lower Detection Limit _____________________________________________________ 5 3.4 Isotropy _________________________________________________________________ 5 3.5 Boundary Effect __________________________________________________________ 5 4 Measurement Uncertainty .......................................................................................... 5 5 Calibration Measurement Results .............................................................................. 6 5.1 Sensitivity in air __________________________________________________________ 6 5.2 Linearity ________________________________________________________________ 7 5.3 Sensitivity in liquid ________________________________________________________ 7 5.4 Isotropy _________________________________________________________________ 8 6 List of Equipment ...................................................................................................... 9 COMOSAR E-FIELD PROBE CALIBRATION REPORT Ref: ACR.154.4.15.SATU.A Page: 4/9 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. 1DEVICE UNDER TEST Device Under Test Device Type COMOSAR DOSIMETRIC E FIELD PROBE Manufacturer MVG Model SSE5 Serial Number SN 09/13 EP168 Product Condition (new / used) Used Frequency Range of Probe 0.7 GHz-3GHz Resistance of Three Dipoles at Connector Dipole 1: R1=0.224 M: Dipole 2: R2=0.234 M: Dipole 3: R3=0.229 M: A yearly calibration interval is recommended. 2PRODUCT DESCRIPTION 2.1GENERAL INFORMATION MVG¶V&2026$5(ILHOG3UREHVDUHEXLOWLQDFFRUGDQFHWRWKH,(((OET 65 Bulletin C and CEI/IEC 62209 standards. Figure 1±MVG COMOSAR Dosimetric E field Dipole Probe Length 330 mm Length of Individual Dipoles 4.5 mm Maximum external diameter 8 mm Probe Tip External Diameter 5 mm Distance between dipoles / probe extremity 2.7 mm 3MEASUREMENT METHOD The IEEE 1528, OET 65 Bulletin C, CENELEC EN50361 and CEI/IEC 62209 standards provide recommended practices for the probe calibrations, including the performance characteristics of interest and methods by which to assess their affect. All calibrations / measurements performed meet the fore mentioned standards. 3.1LINEARITY The evaluation of the linearity was done in free space using the waveguide, performing a power sweep to cover the SAR range 0.01W/kg to 100W/kg. COMOSAR E-FIELD PROBE CALIBRATION REPORT Ref: ACR.154.4.15.SATU.A Page: 5/9 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. 3.2SENSITIVITY 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. 3.3LOWER DETECTION LIMIT The lower detection limit was assessed using the same measurement set up as used for the linearity measurement. The required lower detection limit is 10 mW/kg. 3.4ISOTROPY The axial isotropy was evaluated by exposing the probe to a reference wave from a standard dipole with the dipole mounted under the flat phantom in the test configuration suggested for system validations and checks. The probe was rotated along its main axis from 0 - 360 degrees in 15 degree steps. The hemispherical isotropy is determined by inserting the probe in a thin plastic box filled with tissue-equivalent liquid, with the plastic box illuminated with the fields f…

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RF Exposure Info

Model: 100003562 Report No.: WTX20X01001268W Page 1 of 51 SAR Report FCC SAR Measurement and Test Report For Lightcomm Technology Co., Ltd. UNIT 1306 13/F ARION COMMERCIAL CENTRE,2-12 QUEEN’S ROAD WEST,SHEUNG WAN HK FCC ID: XMF-MID1035 Test Standards: FCC Part 2.1093, ANSI / IEEE C95.1 :2005+A1:2010 ANSI / IEEE C95.3 :2002(R2008) Product Description: 10.1"Tablet Tested Model: 100003562 Report No.: WTX20X01001268W Sample Received Date: 2020-01-06 Tested Date: 2020-01-06 to 2020-01-10 Issued Date: 2020-01-10 Tested By: Ruler Liu / Engineer Reviewed By: Lion Cai / RF Manager Approved & Authorized By: Silin Chen / Manager Prepared By: Shenzhen SEM Test Technology Co., Ltd. 1/F, Building A, Hongwei Industrial Park, Liuxian 2nd Road, Bao'an District, Shenzhen, P.R.C.(518101) Tel.: +86-755-33663308 Fax.: +86-755-33663309 Website: www.semtest.com.cn Note: This test report is limited to the above client company and the product model only. It may not be duplicated without prior permitted by Shenzhen SEM. Test Technology Co., Ltd. Model: 100003562 Report No.: WTX20X01001268W Page 2 of 51 SAR Report TABLE OF CONTENTS 1. General Information ................................................................................................................................................... 3 1.1 Product Description for Equipment Under Test (EUT) ......................................................................................... 3 1.2 Test Standards .................................................................................................................................................... 5 1.3 Test Methodology ................................................................................................................................................ 5 1.4 Test Facility ......................................................................................................................................................... 5 2. Summary of Test Results .......................................................................................................................................... 6 3. Specific Absorption Rate (SAR) ................................................................................................................................ 7 3.1 Introduction .......................................................................................................................................................... 7 3.2 SAR Definition ..................................................................................................................................................... 7 4. SAR Measurement System ........................................................................................................................................ 8 4.1 The Measurement System .................................................................................................................................. 8 4.2 Probe ................................................................................................................................................................... 8 4.3 Probe Calibration Process ................................................................................................................................. 10 4.4 Phantom ............................................................................................................................................................ 11 4.5 Device Holder .................................................................................................................................................... 11 4.6 Test Equipment List ........................................................................................................................................... 12 5. Tissue Simulating Liquids ....................................................................................................................................... 13 5.1 Composition of Tissue Simulating Liquid ........................................................................................................... 13 5.2 Tissue Dielectric Parameters for Head and Body Phantoms ............................................................................. 14 5.3 Tissue Calibration Result ................................................................................................................................... 15 6. SAR Measurement Evaluation ................................................................................................................................ 16 6.1 Purpose of System Performance Check ............................................................................................................ 16 6.2 System Setup .................................................................................................................................................... 16 6.3 Validation Results .............................................................................................................................................. 17 7. EUT Testing Position ............................................................................................................................................... 18 7.1 EUT Antenna Position ....................................................................................................................................... 18 7.2 EUT Testing Position ......................................................................................................................................... 19 8. SAR Measurement Procedures ............................................................................................................................... 20 8.1 Measurement Procedures ................................................................................................................................. 20 8.2 Spatial Peak SAR Evaluation ...........................................................…

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Test Report

FCC Radio Test Report FCC ID: XMF-MID1035 Original Grant Report No. : TB-FCC171377 Applicant : Lightcomm Technology Co., Ltd. Equipment Under Test (EUT) EUT Name : 10.1"Tablet Model No. : 100003562 Series Model No. : MID1035 Brand Name : onn Receipt Date : 2020-01-02 Test Date : 2020-01-03 to 2020-01-14 Issue Date : 2020-01-14 Standards : FCC Part 15, Subpart C 15.247 Test Method : ANSI C63.10: 2013 Conclusions : PASS In the configuration tested, the EUT complied with the standards specified above, The EUT technically complies with the FCC requirements Test/Witness Engineer : Jack Deng Engineer Supervisor : Ivan Su Engineer Manager : Ray Lai This report details the results of the testing carried out on one sample. The results contained in this test report do not relate to other samples of the same product. The manufacturer should ensure that all products in series production are in conformity with the product sample detailed in the report. Contents CONTENTS ............................................................................................................................................. 2 1.GENERAL INFORMATION ABOUT EUT.............................................................................. 5 1.1 Client Information ................................................................................................................. 5 1.2 General Description of EUT (Equipment Under Test) ................................................... 5 1.3 Block Diagram Showing the Configuration of System Tested ...................................... 6 1.4 Description of Support Units .............................................................................................. 7 1.5 Description of Test Mode .................................................................................................... 7 1.6 Description of Test Software Setting ................................................................................ 8 1.7 Measurement Uncertainty .................................................................................................. 9 1.8 Test Facility ......................................................................................................................... 10 2.TEST SUMMARY ..................................................................................................................... 11 3.TEST SOFTWARE ................................................................................................................... 11 4.TEST EQUIPMENT .................................................................................................................. 12 5.CONDUCTED EMISSION TEST ........................................................................................... 13 5.1 Test Standard and Limit .................................................................................................... 13 5.2 Test Setup ........................................................................................................................... 13 5.3 Test Procedure ................................................................................................................... 14 5.4 Deviation From Test Standard ......................................................................................... 14 5.5 EUT Operating Mode ........................................................................................................ 14 5.6 Test Data ............................................................................................................................. 14 6.RADIATED EMISSION TEST ................................................................................................ 15 6.1 Test Standard and Limit .................................................................................................... 15 6.2 Test Setup ........................................................................................................................... 16 6.3 Test Procedure ................................................................................................................... 17 6.4 Deviation From Test Standard ......................................................................................... 17 6.4 EUT Operating Condition ................................................................................................. 17 6.5 Test Data ............................................................................................................................. 17 7.RESTRICTED BANDS REQUIREMENT ............................................................................. 18 7.1 Test Standard and Limit .................................................................................................... 18 7.2 Test Setup ........................................................................................................................... 18 7.3 Test Procedure ................................................................................................................... 19 7.4 Deviation From Test Standard ......................................................................................... 19 7.5 EUT Operating Condition ................................................................................................. 19 7.6 Test Data ............................................................................................................................. 19 8.NUMBER OF HOPPING CHANNEL .................................................................................... 20 8.1 Test Standard and Limit .................................................................................................... 20 8.2 Test Setup ........................................................................................................................... 20 8.3 Test Procedure ................................................................................................................... 20 8.4 Deviation From Test Standard ........…

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Test Report

Attachment E-- Average Time of Occupancy Test Data Temperature: 25 Relative Humidity: 55% Test Voltage: DC 3.8V Test Mode: Hopping Mode (GFSK) Test Mode Channel (MHz) Pulse Time (ms) Total of Dwell (ms) Period Time (s) Limit (ms) Result 1DH1 2441 0.378 120.96 31.60 400 PASS 1DH3 2441 1.635 261.60 31.60 400 PASS 1DH5 2441 2.883 307.52 31.60 400 PASS 1DH1 Total of Dwell= Pulse Time*(1600/2)*31.6/79 1DH3 Total of Dwell= Pulse Time*(1600/4)*31.6/79 1DH5 Total of Dwell= Pulse Time*(1600/6)*31.6/79 GFSK Hopping Mode 1DH1 2441 MHz GFSK Hopping Mode 1DH3 2441 MHz GFSK Hopping Mode 1DH5 2441 MHz Temperature: 25 Relative Humidity: 55% Test Voltage: DC 3.8V Test Mode: Hopping Mode ( /4-DQPSK ) Test Mode Channel (MHz) Pulse Time (ms) Total of Dwell (ms) Period Time (s) Limit (ms) Result 2DH1 2441 0.378 120.96 31.60 400 PASS 2DH3 2441 1.144 183.04 31.60 400 PASS 2DH5 2441 2.886 307.84 31.60 400 PASS 2DH1 Total of Dwell= Pulse Time*(1600/2)*31.6/79 2DH3 Total of Dwell= Pulse Time*(1600/4)*31.6/79 2DH5 Total of Dwell= Pulse Time*(1600/6)*31.6/79 /4-DQPSK Hopping Mode 2DH1 2441 MHz /4-DQPSK Hopping Mode 2DH3 2441 MHz /4-DQPSK Hopping Mode 2DH5 2441 MHz Temperature: 25 Relative Humidity: 55% Test Voltage: DC 3.8V Test Mode: Hopping Mode (8-DPSK) Test Mode Channel (MHz) Pulse Time (ms) Total of Dwell (ms) Period Time (s) Limit (ms) Result 3DH1 2441 0.387 123.84 31.60 400 PASS 3DH3 2441 1.636 261.76 31.60 400 PASS 3DH5 2441 2.875 306.66 31.60 400 PASS 1DH1 Total of Dwell= Pulse Time*(1600/2)*31.6/79 1DH3 Total of Dwell= Pulse Time*(1600/4)*31.6/79 1DH5 Total of Dwell= Pulse Time*(1600/6)*31.6/79 8-DPSK Hopping Mode 3DH1 2441 MHz 8-DPSK Hopping Mode 3DH3 2441 MHz 8-DPSK Hopping Mode 3DH5 2441 MHz Attachment F-- Channel Separation and Bandwidth Test Data Temperature: 25 Relative Humidity: 55% Test Voltage: DC 3.8V Test Mode: TX Mode (GFSK) Channel frequency (MHz) 99% OBW (kHz) 20dB Bandwidth (kHz) 20dB Bandwidth *2/3 (kHz) 2402 855.32 818.1 2441 852.79 816.8 2480 853.50 819.3 GFSK TX Mode 2402 MHz GFSK TX Mode 2441 MHz GFSK TX Mode 2480 MHz Temperature: 25 Relative Humidity: 55% Test Voltage: DC 3.8V Test Mode: TX Mode (/4-DQPSK) Channel frequency (MHz) 99% OBW (kHz) 20dB Bandwidth (kHz) 20dB Bandwidth *2/3 (kHz) 2402 1051.3 1106 737.3 2441 1049.8 1110 740.0 2480 1048.7 1107 738.0 /4-DQPSK TX Mode 2402 MHz /4-DQPSK TX Mode 2441 MHz /4-DQPSK TX Mode 2480 MHz Temperature: 25 Relative Humidity: 55% Test Voltage: DC 3.8V Test Mode: TX Mode (8-DPSK) Channel frequency (MHz) 99% OBW (kHz) 20dB Bandwidth (kHz) 20dB Bandwidth *2/3 (kHz) 2402 1158.9 1193 795.33 2441 1128.9 1193 795.33 2480 1129.7 1198 798.66 8-DPSK TX Mode 2402 MHz 8-DPSK TX Mode 2441 MHz 8-DPSK TX Mode 2480 MHz Temperature: 25 Relative Humidity: 55% Test Voltage: DC 3.8V Test Mode: Hopping Mode (GFSK) Channel frequency (MHz) Separation Read Value (kHz) Separation Limit (kHz) 2402 990 818.1 2441 990 816.8 2480 920 819.3 GFSK Hopping Mode 2402 MHz GFSK Hopping Mode 2441 MHz GFSK Hopping Mode 2480 MHz Temperature: 25 Relative Humidity: 55% Test Voltage: DC 3.8V Test Mode: Hopping Mode (/4-DQPSK) Channel frequency (MHz) Separation Read Value (kHz) Separation Limit (kHz) 2402 870 737.3 2441 990 740.0 2480 1340 738.0 /4-DQPSK Hopping Mode 2402 MHz /4-DQPSK Hopping Mode 2441 MHz /4-DQPSK Hopping Mode 2480 MHz Temperature: 25 Relative Humidity: 55% Test Voltage: DC 3.8V Test Mode: Hopping Mode (8-DPSK) Channel frequency (MHz) Separation Read Value (kHz) Separation Limit (kHz) 2402 850 795.33 2441 890 795.33 2480 980 798.66 8-DPSK Hopping Mode 2402 MHz 8-DPSK Hopping Mode 2441 MHz 8-DPSK Hopping Mode 2480 MHz Attachment G-- Peak Output Power Test Data Temperature: 25 Relative Humidity: 55% Test Voltage: DC 3.8V Test Mode: TX Mode (GFSK) Channel frequency (MHz) Test Result (dBm) Limit (dBm) 2402 3.915 30 2441 3.752 2480 3.795 GFSK TX Mode 2402 MHz GFSK TX Mode 2441 MHz GFSK TX Mode 2480 MHz Temperature: 25 Relative Humidity: 55% Test Voltage: DC 3.8V Test Mode: TX Mode (/4-DQPSK) Channel frequency (MHz) Test R…

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Contact Information

Applicant

Jack Sun(Certification Manager)
[email protected]0085221913611Fax: 0085221913612

Test Firm

Shenzhen Toby Technology Co., Ltd.Ray Lai
[email protected]---

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz2.50 mW
Confidentiality
Long Term
Grant Notes
Output Power listed is peak conducted.

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