
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
1 (Optional) Position the ScreenCast for an Optimal Streaming Experience Press the JVAW75 TXTransmitter button Plug the JVAW75 TX into a USB™ port on your computer or charger provide power. Hold the button for at least 5 seconds on the JVAW75 TX to complete pairing, release the button when the screen shows “Ready to pair”. 1. Plug the JVAW75 RX (Receiver) into an HDMI™ port on the TV/display. 2. Supply power via a USB™ power adapter or a USB™ Type-A port on your TV. 3. Select your TV's input source until you see the setup screen. Plug the JVAW75 TX (Transmitter) into an HDMI™ device. Wait a few seconds until the ashing light on the JVAW75 TX stops, and it will start mirroring automatically *. * In case the JVAW75 cannot mirror, please unplug the USB™ power and plug in again. If above method still can’t solve the problem, please see the section titled "How to pair the JVAW75 TX with the receiver" below for instructions on how to pair the TX with the RX. How to mirror 2 Press the button on the JVAW75 TX to stop or restart mirroring. Stop and restart mirroring Note: The JVAW75 TX supports mirroring for all kinds of devices with an HDMI™ output. Hold the button on the RX device for 3 seconds. Release the button when the screen shows “Release the button to pair with ScreenCast”. Turn on pairing mode RXReceiver button (Troubleshooting) How to pair the JVAW75 TX with the receiver Release the button to pair with ScreenCast Note: The button on the receiver and transmitter has 3 functions, which function performed depends on the duration the button is held down. TX│Transmitter: (1) Button press: Stop or restart mirroring (2) Press for 5 seconds: Enter pairing mode with RX receiver (3) Press for 20 seconds: Resets the TX to default Ready to pair 1 2 5V / 1A 5V / 1A RX│Receiver (1) Button press: Switch Wi-Fi® channel between 2.4G /5G (2) Press for 3 seconds: Pairing with TX transmitter (3) Press for 10 seconds: Resets the RX to default * For the best experience it is recommended that you upgrade the JVAW75 device to the latest rmware version. 1 (Optioneel) De ScreenCast voor een optimale streaming-ervaring plaatsen Druk op de knop JVAW75 TXTransmitter Steek de JVAW75 TX in een USB™-poort van uw apparaat of oplader voor stroom. Houd de knop op de JVAW75 TX ten minste 5 seconden ingedrukt om het koppelen te voltooien. Laat de knop los wanneer op het scherm “Gereed om te koppelen” verschijnt. 1. Sluit de JVAW75 RX (ontvanger) aan op een HDMI™-poort op de tv/display. 2. Lever stroom via een USB™-voedingsadapter of een USB™ Type-A-poort op uw tv. 3. Selecteer de ingangbron van uw tv totdat u het instellingenscherm ziet. Sluit de JVAW75 TX (zender) aan op een HDMI™-apparaat. Wacht een paar seconden tot het knipperende lampje op de JVAW75 TX stopt, waarna het spiegelen automatisch start*. * Als de JVAW75 niet kan spiegelen, koppelt u de USB™-voeding los en sluit u deze opnieuw aan. Als de bovengenoemde methode het probleem niet oplost, raadpleeg dan het gedeelte met de titel "Koppelen van de JVAW75 TX met de ontvanger" hieronder voor instructies betreende het koppelen van de TX met de RX. Spiegelen 2 Druk op de knop op de JVAW75 TX om spiegelen te stoppen of opnieuw te starten. Spiegelen stoppen en opnieuw starten Opmerking: De JVAW75 TX ondersteunt spiegelen voor allerlei apparaten met een HDMI™-uitgangspoort. Houd de knop op het RX-apparaat 3 seconden ingedrukt. Laat de knop los wanneer het scherm “Laat de knop los om te koppelen met ScreenCast” toont. Schakel de koppelmodus in voor de ontvanger | knop Ontvanger (Foutoplossing) Koppelen van de JVAW75 TX met de ontvanger Opmerking: De knop op de ontvanger en zender heeft 3 functies. Welke functie wordt uitgevoerd, hangt af van de duur dat de knop ingedrukt wordt gehouden. TX│zender: (1) Enkele klik: Spiegelen stoppen of opnieuw starten (2) Gedurende 5 seconden drukken: De koppelmodus met de RX-ontvanger activeren (3) Gedurende 20 seconden drukken: Reset de zender naar de standaardwaarden RX│ontvanger (1) Enkele klik: Schakel het Wi-Fi®-kanaal tussen 2,4G/5G (2) Gedurende 3 seconden drukken: Koppelen met TX-zender (3) Gedurende 10 seconden drukken: Reset de ontvanger naar de standaardwaarden *Voor de beste ervaring wordt aanbevolen om het JVAW75-apparaat te upgraden naar de nieuwste 1 2 1 (Opcional) Posicionar o ScreenCast para uma experiência ideal de transmissão Pressione o botão do JVAW75 TXBotão do transmissor Ligue o JVAW75 TX a uma porta USB™ do seu dispositivo ou ao carregador para fornecer energia. Mantenha o botão pressionado durante pelo menos 5 segundos no JVAW75 TX para concluir o emparelhamento, liberte o botão quando o ecrã mostrar “Preparado para emparelhar”. 1. Ligue o JVAW75 RX (Recetor) a uma porta HDMI™ no televisor/monitor. 2. Forneça energia através de um adaptador de corrente USB™ ou uma porta USB™ Tipo A do seu televisor. 3. Selecione a fonte de entrada do televisor até que seja exibido o ecrã de conguração. Ligue o JVAW75 TX (Transmissor) a um dispositivo HDMI™. Aguarde alguns segundos até que a luz do JVAW75 TX deixe de piscar, e o espelhamento iniciará automaticamente*. * Caso o JVAW75 não espelhe o ecrã, desligue e volte a ligar o cabo de alimentação USB™. Se o problema persistir mesmo depois de executar método indicado acima, consulte a secção “Como emparelhar o JVAW75 TX com o recetor” para obter instruções sobre como emparelhar o transmissor com o recetor. Como espelhar 2 Pressione o botão no JVAW75 TX para parar ou reiniciar o espelhamento. Parar e reiniciar o espelhamento Nota: O JVAW75 TX suporta o espelhamento de todos os tipos de dispositivos com porta de saída HDMI™. Mantenha o botão do dispositivo RX pressionado durante 3 segundos. Liberte o botão quando o ecrã mostrar a mensagem “Liberte o botão para emparelhar com ScreenCast”. Ative o modo de emparelhamento no dispositivo RXBotão do recetor (Resolução de problemas) Como emparelhar o JVAW75 TX com o recetor Nota: O botão do recetor e do transmissor disponibiliza 3 …
Text truncated - open the document above for the full version.
C566091_X23_Edl US Agent for Service of Process LETTER OF ATTESTATION TO: 。ffice of Engineering Technolog y Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 US Agent for Service of Process: Company Name: KaiJet Technology International Limited, Inc. FRN: 0033584715 Contact Name: Jessica Liu Address: 1025 Cobb International Dr. Suite 210 C ity/Province/Zip: Kennesaw, GA 30152 Telephone, + 1-888-689-4088 Email: [email protected] This letter is to confirm that the US Agent for Service of Process accepts responsibility to act as a local representative o n behalf of (Kaijet Technology International Corporation). The US Agent for Service of Process is aware of and agrees to comply with the requirements outlined in the FCC Equipment Authorization Program, Report and Order FCC 22-84, and clause § 2.911. Applicant: Company name: Kaijet Technology International Corporation Product Description: 4K Wireless Display HDMI™ Extender Grantee code: 2AD37 FCC ID: 2AD37JVAW75TX Contact Name: TAI YU-CHI Address: SF., No. 109, Zhongcheng Road, Tucheng Dist., New Taipei City, Taiwan R.O.C Telephone No: 886-2-2269-5533 Email: [email protected] The Applicant is aware of and agrees to comply with the requirements outlined in the FCC E quipment Authorization Program, Report and Order FCC 22-84, and clause§ 2.911. Applicant's Name: TAI YU-CHI US Agent for Service of Process's Name: Jessica Liu Title: Project Manager Title: Project Manager Signature Signature 乜「比』困 尸仁 1/1
C5266091_X24_Ed.2 1/1 “Attestation Statements” TO: Office of Engineering Technology Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 The Commission adopted rules that prohibit equipment authorization for “covered” telecommunications equipment and video surveillance equipment produced by entities identified on the Commission’s Covered List 1 , which is periodically updated. See the Covered List for more details. This Attestation Statement is to confirm that we follow the Section 2.911(d)(5)(i)-(ii) Applicant Company name: Kaijet Technology International Corporation Grantee code: 2AD37 FCC ID: 2AD37JVAW75TX Contact Name: TAI YU-CHI Address: 8F., No. 109, Zhongcheng Road, Tucheng Dist., New Taipei City, Taiwan R.O.C Telephone No: 886-2-2269-5533 Fax No:/ Email: [email protected] i.[Kaijet Technology International Corporation] (“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. The applicant must sign this certification. ii.[Kaijet Technology International Corporation] (“the applicant”) certifies that, as of the date of the filing of the application, the applicant [is not] (as a specifically named entity or any of its subsidiaries or affiliates) identified on the Covered List as an entity producing “covered” equipment. The applicant must sign this certification [Kaijet Technology International Corporation] (“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 . Date: 2023/05/22 Applicant’s Name: TAI YU-CHI Title: Project Manager Signature 1 The Commission’s Covered List is published by the Public Safety and Homeland Security Bureau and posted on the Commission’s website. This Covered List, which is periodically updated, identifies particular equipment, produced by particular entities, that constitutes “covered” equipment. https://www.fcc.gov/supplychain/coveredlist
C5266091_X8_Ed. l Letter of Authorization Kaijet Technology International Corporation Company: Kaijet Technology International Corporation Address: SF., No. 109, Zhongcheng Road, Tucheng Dist., New Taipei City, Taiwan R.O.C Product Name: 4K Wireless Display HDMI Extender Model Number: JVAW75 TX FCC Identifier: 2AD37JVAW7STX We authorize LGAI Technological Center S.A., Ronda de la Font del Carme, s/n, 08193 Bellaterra, Spain, to act on our behalf on all matters concerning the above named equipment. Any individual within LGAI Technological Center S.A. is authorized to act on our behalf and take action on the application. we· declare that authorize LGAI Technological Center S.A., Ronda de la Font del Carme, s/n, 08193 Bell aterra, Spain, is allowed to forward all information related to the approval project to the Federal Communication Commission and to discuss a ny issues concerning the approval application. Any and all acts carried out by LGAI Technological Center S.A. on our behalf shall have the same effect as acts o f our own. Name: TAI YU-CHI Date: May 22, 2023 Title: Project Manager Signature of applicant:丁心直工扣 1/1
C5266091_X10_Ed.2 1/1 Kaijet Technology International Corporation Office of Engineering Technology Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 Date: May 22, 2023 Subject: Request for Confidentiality FCC ID: 2AD37JVAW75TX To Whom It May Concern, Pursuant to the provisions of Sections 0.457 and 0.459 of Commission's rules (47CFR0.457, 0.459), we are requesting the Commission to withhold the following attachment(s) as confidential document from public disclosure. Exhibits Long-Term Confidentiality Short-Term Confidentiality NOTE 2 ID Label/Location No No Attestation Statement No No External Photos No Block Diagram ☒ ☐ Schematics ☒ ☐ Test Report No No Test Setup Photos No User’s Manual ☐ NOTE 1 Internal Photos ☐ NOTE 1 Parts List / Tune Up ☐ RF Exposure Info No No Operational Description ☒ ☐ Cover Letter(s) No No SDR Software / Security Info ☐ No NOTE 1: Long-Term Confidentiality may be permitted under special conditions (See II. LONG-TERM CONFIDENTIALITY, Section 3 of KDB 726920, use last in force) NOTE 2: Short-Term Confidentiality can be requested for a maximum of 180 days from the date of the grant. Above mentioned document contains detailed system and equipment description are considered as proprietary information in operation of the equipment. The public disclosure of above documents might be harmful to our company and would give competitor an unfair advantage in the market. In case of short-term Confidentiality, the applicant requests the exhibits selected above are withheld from public view for a period of ______ days from the date of the Grant of Equipment Authorization and prior to marketing. It is our understanding that all measurement test reports, FCC ID label format and correspondent during certification review process cannot be granted as confidential documents and those information will be available for public review once the grant of equipment authorization is issued. ☐ ☐ ☐ ☐ ☐ C5266091_X10_Ed.2 1/1 Sincerely, Signature: Name: TAI YU-CHI Title: Project Manager
CERPASS TECHNOLOGY CORP. Report No.: 2303143 CERPASS TECHNOLOGY CORP. Issued date : May. 18, 2023 Page No. : 1 of 4 EXTERNAL PHOTOGRAPHS OF EUT 1) EUT Photo 2) EUT Photo CERPASS TECHNOLOGY CORP. Report No.: 2303143 CERPASS TECHNOLOGY CORP. Issued date : May. 18, 2023 Page No. : 2 of 4 3) EUT Photo 4) EUT Photo CERPASS TECHNOLOGY CORP. Report No.: 2303143 CERPASS TECHNOLOGY CORP. Issued date : May. 18, 2023 Page No. : 3 of 4 5) EUT Photo 6) EUT Photo CERPASS TECHNOLOGY CORP. Report No.: 2303143 CERPASS TECHNOLOGY CORP. Issued date : May. 18, 2023 Page No. : 4 of 4 7) EUT Photo 8) EUT Photo
建檔日期:2022-06-27 修改日期:2023-04-25 客戶名稱:j5create 產品名稱:JVAW75 版 本:V1-E 需求內容:機構印刷-絲印白色 尺 寸:如圖 (尺寸1:1) 213.77 61.47 17.10 FCC ID : 2AD37JVAW75TX FCC ID : 2AD37JVAW75TX TRANSMITTERTX TX 建檔日期:2022-06-27 修改日期:2023-04-25 客戶名稱:j5create 產品名稱:JVAW75 版 本:V1-E 需求內容:機構印刷-絲印白色 尺 寸:如圖 (尺寸1:1) 213.77 61.47 17.10 FCC ID : 2AD37JVAW75RX FCC ID : 2AD37JVAW75RX RECEIVERRX RX
CERPASS TECHNOLOGY CORP. Report No.: 2303143 CERPASS TECHNOLOGY CORP. Issued date : May. 18, 2023 Page No. : 1 of 4 INTERNAL PHOTOGRAPHS OF EUT 1) EUT Photo 2) EUT Photo CERPASS TECHNOLOGY CORP. Report No.: 2303143 CERPASS TECHNOLOGY CORP. Issued date : May. 18, 2023 Page No. : 2 of 4 3) EUT Photo 4) EUT Photo WIFI 2.4G + WIFI 5G Antenna CERPASS TECHNOLOGY CORP. Report No.: 2303143 CERPASS TECHNOLOGY CORP. Issued date : May. 18, 2023 Page No. : 3 of 4 5) EUT Photo 6) EUT Photo CERPASS TECHNOLOGY CORP. Report No.: 2303143 CERPASS TECHNOLOGY CORP. Issued date : May. 18, 2023 Page No. : 4 of 4 7) EUT Photo
Waltek Testing Group (Shenzhen) Co., Ltd. Http://www.waltek.com.cn Page 1 of 43 TEST REPORT Reference No. .................... : WTD23X04089085W FCC ID ................................ : 2AD37JVAW75TX Applicant ........................... : Kaijet Technology International Corporation Address ............................. : 8F., No. 109, Zhongcheng Road, Tucheng Dist., New Taipei City, Taiwan R.O.C Manufacturer ..................... Magic Control Technology Corporation Address ............................. 10F., No. 123, Zhongcheng Road, Tucheng Dist., New Taipei City, Taiwan R.O.C Product Name ................... : 4K Wireless Display HDMI Extender Model No.. .......................... : JVAW75 TX Standards .......................... : FCC Part 2.1093, IEEE Std C95.1: 2019 IEEE Std C95.3: 2002 + Rev. 2008 Date of Receipt sample .... : 2023-05-15 Date of Test........................ : 2023-05-15 to 2023-05-26 Date of Issue ..................... : 2023-05-26 Test Report Form No. ....... : WTX_Part2_1093W Test Result ......................... : Pass Remarks: The results shown in this test report refer only to the sample(s) tested, this test report cannot be reproduced, except in full, without prior written permission of the company. The report would be invalid without specific stamp of test institute and the signatures of approver. Prepared By: Waltek Testing Group (Shenzhen) Co., Ltd. Address: 1/F., Room 101, Building 1, Hongwei Industrial Park, Liuxian 2nd Road, Block 70 Bao'an District, Shenzhen, Guangdong, China Tel.: +86-755-33663308 Fax.: +86-755-33663309 Email: [email protected] Tested by: Approved by: Jack Sun Silin Chen Reference No.: WTD23X04089085W Waltek Testing Group (Shenzhen) Co., Ltd. Http://www.waltek.com.cn Page 2 of 43 TABLE OF CONTENTS 1. General Information ................................................................................................................................................... 4 1.1 Product Description for Equipment Under Test (EUT) ......................................................................................... 4 1.2 Test Standards .................................................................................................................................................... 6 1.3 Test Methodology ................................................................................................................................................ 6 1.4 Test Facility ......................................................................................................................................................... 6 2. Summary of Test Results .......................................................................................................................................... 7 3. Specific Absorption Rate (SAR) ................................................................................................................................ 8 3.1 Introduction .......................................................................................................................................................... 8 3.2 SAR Definition ..................................................................................................................................................... 8 4. SAR Measurement System ........................................................................................................................................ 9 4.1 The Measurement System .................................................................................................................................. 9 4.2 Probe ................................................................................................................................................................... 9 4.3 Probe Calibration Process ................................................................................................................................. 11 4.4 Phantom ............................................................................................................................................................ 11 4.5 Device Holder .................................................................................................................................................... 12 4.6 Test Equipment List ........................................................................................................................................... 13 5. Tissue Simulating Liquids ....................................................................................................................................... 14 5.1 Composition of Tissue Simulating Liquid ........................................................................................................... 14 5.2 Tissue Dielectric Parameters for Head and Body Phantoms ............................................................................. 15 5.3 Tissue Calibration Result ................................................................................................................................... 16 6. SAR Measurement Evaluation ................................................................................................................................ 17 6.1 Purpose of System Performance Check ............................................................................................................ 17 6.2 System Setup .................................................................................................................................................... 17 6.3 Validation Results .............................................................................................................................................. 18 7. EUT Testing Position ............................................................................................................................................... 19 7.1 Body Position ................................................................…
Text truncated - open the document above for the full version.
Ref : ACR.94.8.20.SATU.A FREQUENCY: 2450 MHZ SERIAL NO.: SN 09/15 DIP 2G450-363 Calibrated at MVG US 2105 Barrett Park Dr. - Kennesaw, GA 30144 Calibration Date: 08/29/20 Summary: This document presents the method and results from an accredited SAR reference dipole calibration performed in MVG USA using the COMOSAR test bench. All calibration results are traceable to national metrology institutions. SAR Reference Dipole Calibration Report WALTEK TESTING GROUP CO., LTD. NO.77, HOUJIE SECTION , GUANTAI ROAD , HOUJIE TOWN, DONGGUAN GUANGDONG 518105 , CHINA MVG COMOSAR REFERENCE DIPOLE SAR REFERENCE DIPOLE CALIBRATION REPORT Ref: ACR.94.8.20.SATU.A Page: 2/11 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 LUC Product Manager 8/30/2020 Checked by : Jérôme LUC Product Manager 8/30/2020 Approved by : Kim RUTKOWSKI Quality Manager 8/30/2020 Customer Name Distribution : Waltek Testing Group Co.,Ltd Issue Date Modifications A 8/30/2020Initial release SAR REFERENCE DIPOLE CALIBRATION REPORT Ref: ACR.94.8.20.SATU.A Page: 3/11 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 Introduction ................................................................................................................ 4 2 Device Under Test ..................................................................................................... 4 3 Product Description ................................................................................................... 4 3.1 General Information _______________________________________________________ 4 4 Measurement Method ................................................................................................ 5 4.1 Return Loss Requirements __________________________________________________ 5 4.2 Mechanical Requirements ___________________________________________________ 5 5 Measurement Uncertainty .......................................................................................... 5 5.1 Return Loss ______________________________________________________________ 5 5.2 Dimension Measurement ___________________________________________________ 5 5.3 Validation Measurement ____________________________________________________ 5 6 Calibration Measurement Results .............................................................................. 6 6.1 Return Loss and Impedance In Head Liquid ____________________________________ 6 6.2 Return Loss and Impedance In Body Liquid ____________________________________ 6 6.3 Mechanical Dimensions ____________________________________________________ 6 7 Validation measurement ............................................................................................ 7 7.1 Head Liquid Measurement __________________________________________________ 7 7.2 SAR Measurement Result With Head Liquid ____________________________________ 8 7.3 Body Liquid Measurement __________________________________________________ 9 7.4 SAR Measurement Result With Body Liquid __________________________________ 10 8 List of Equipment .................................................................................................... 11 SAR REFERENCE DIPOLE CALIBRATION REPORT Ref: ACR.94.8.20.SATU.A Page: 4/11 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 INTRODUCTION This document contains a summary of the requirements set forth by the IEEE 1528, FCC KDBs and CEI/IEC 62209 standards for reference dipoles used for SAR measurement system validations and the measurements that were performed to verify that the product complies with the fore mentioned standards. 2 DEVICE UNDER TEST Device Under Test Device Type COMOSAR 2450 MHz REFERENCE DIPOLE Manufacturer MVG Model SID2450 Serial Number SN 09/15 DIP 2G450-363 Product Condition (new / used) Used A yearly calibration interval is recommended. 3 PRODUCT DESCRIPTION 3.1 GENERAL INFORMATION MVG’s COMOSAR Validation Dipoles are built in accordance to the IEEE 1528, FCC KDBs and CEI/IEC 62209 standards. The product is designed for use with the COMOSAR test bench only. Figure 1 – MVG COMOSAR Validation Dipole SAR REFERENCE DIPOLE CALIBRATION REPORT Ref: ACR.94.8.20.SATU.A Page: 5/11 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. 4 MEASUREMENT METHOD The IEEE 1528, FCC KDBs and CEI/IEC 62209 standards provide requirements for reference dipoles used for system validation measurements. The following measurements were performed to verify that the product complies with the fore mentioned standards. 4.1 RETURN LOSS REQUIREMENTS The dipole used for SAR system validation measurements and checks must have a return loss of -20 dB or better. The return loss measurement shall be performed against a liquid filled flat phantom, with the phantom constucted as outlined in the fore mentioned standards. 4.2 MECHANICAL REQUIREMENTS The IEEE Std. 1528 and CEI/IEC 62209 standards specify the mechanical components and dimensions of the validation dipoles, with the dimensions frequency and phantom shell thickness dependent. The COMOSAR test bench employs a 2 mm phantom shell thickness there…
Text truncated - open the document above for the full version.
CERPASS TECHNOLOGY CORP. Report No.: DEFI2303143 Cerpass Technology Corp. Issued date : May. 18, 2023 D-FD-508-0 V1.1 Page No. : 1 of 79 FCC RADIO TEST REPORT Applicant : Kaijet Technology International Corporation Address : 8F., No. 109, Zhongcheng Road, Tucheng Dist., New Taipei City, Taiwan R.O.C Equipment : 4K Wireless Display HDMI Extender Model No. : JVAW75 TX Trade Name : j5create FCC ID : 2AD37JVAW75TX Standard : FCC part 15 Subpart C §15.247 I HEREBY CERTIFY THAT : The sample was received on Apr. 23, 2023 and the testing was completed on May. 12, 2023 at Cerpass Technology Corp. The test result refers exclusively to the test presented test model / sample. Without written approval of Cerpass Technology Corp., the test report shall not be reproduced except in full. Approved by: Leevin Li /Supervisor CERPASS TECHNOLOGY CORP. Report No.: DEFI2303143 Cerpass Technology Corp. Issued date : May. 18, 2023 D-FD-508-0 V1.1 Page No. : 2 of 79 CONTENTS 1. Summary of Test Procedure and Test Results ....................................................................................5 1.1 Applicable Standards ............................................................................................................................ 5 2. Test Configuration of Equipment under Test .......................................................................................6 2.1 Feature of Equipment under Test .......................................................................................................... 6 2.2 Carrier Frequency of Channels ............................................................................................................. 7 2.3 Test Mode and Test Software ................................................................................................................ 8 2.5 Description of Test System .................................................................................................................. 10 2.6 General Information of Test ................................................................................................................. 11 2.7 Measurement Uncertainty ................................................................................................................... 11 3. Test Equipment and Ancillaries Used for Tests ................................................................................ 12 4. Antenna Requirements........................................................................................................................ 13 4.1 Standard Applicable............................................................................................................................. 13 4.2 Antenna Construction and Directional Gain ........................................................................................ 13 5. Test of AC Power Line Conducted Emission .................................................................................... 14 5.1 Test Limit ............................................................................................................................................. 14 5.2 Test Procedures ................................................................................................................................... 14 5.3 Typical Test Setup ............................................................................................................................... 15 5.4 Test Result and Data ........................................................................................................................... 16 6. T…
Text truncated - open the document above for the full version.
New Taipei City · China
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 128.23 mW |

Full-Size Wireless Keyboard
Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
CrossLink Wireless Dongle
Equipment Class
DTS - Digital Transmission System
Qi2 2-in-1 Magnetic Foldable Wireless Charging Station
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHz
Qi2 3-in-1 Magnetic Foldable Wireless Charging Station
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHz
Qi2 3-in-1 Magnetic Travel Wireless Charging Station
Equipment Class
DCD - Part 15 Low Power Transmitter Below 1705 kHz