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2AVVT-CU304080000iTraMS CCU

Bosch Global Software Technologies Private Limited
iTraMS CCU - FCC ID 2AVVT-CU304080000 - Bosch Global Software Technologies Private Limited
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Jan 09, 2023
Application Purpose
Original Equipment
Date of Application
Dec 26, 2022
Equipment Note
iTraMS CCU
Frequency Range
2402.00000000 - 2480.00000000
Company
Bosch Global Software Technologies Private Limited
Country
India

Documents & Files

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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

Robert Bosch Engineering and Business Solutions Private Limited | MAY 03, 2021 CCU | User Manual ▪ Product Name: Connectivity Control Unit ▪ Family Model Name: iTraMS CCU ▪ Model Name: CU-304-0800-00 This preliminary document presents the status of the agreed specifications. It will be confirmed when all the validations has been completed with positive result CCU Gen2A | Operations Manual 1 | 20 CCU User Manual Robert Bosch Engineering and Business Solutions Private Limited | MAY 03, 2021 CCU | User Manual Table of Contents 1 Introduction ................................................................................................................................................................................... 2 1.1 Objective ................................................................................................................................................................................ 2 1.2 General ................................................................................................................................................................................... 2 1.3 Disclaimer ............................................................................................................................................................................... 2 2 Copyright ....................................................................................................................................................................................... 2 3 Agreed Product Use...................................................................................................................................................................... 3 3.1 Intended Use .......................................................................................................................................................................... 3 4 Overview ....................................................................................................................................................................................... 4 5 Symbols Used ............................................................................................................................................................................... 4 6 Warranty and Service Clauses ..................................................................................................................................................... 5 7 Safety and Instructions ................................................................................................................................................................. 5 7.1 Do’s and Don’ts ...................................................................................................................................................................... 5 7.2 Precautions for Installation ..................................................................................................................................................... 5 8 Scope for Delivery ......................................................................................................................................................................... 5 9 Legal Requirements ...................................................................................................................................................................... 6 10 Device 3D Model ......................................................................................................................................................................... 7 11 Installation ................................................................................................................................................................................... 7 11.1 Installation of Cable Harness ............................................................................................................................................... 7 12 Technical Specifications ............................................................................................................................................................. 8 a. Analog inputs ............................................................................................................................................................................ 8 b. Digital inputs ............................................................................................................................................................................. 8 c. Digital Output ............................................................................................................................................................................ 8 d. Bus (CAN0 and CAN1) ............................................................................................................................................................ 8 e. Bus (RS485) ............................................................................................................................................................................. 8 f. Bus (Ethernet) ........................................................................................................................................................................... 9 g. Bus (USB2.0) ........................................................................................................................................................................... 9 h. Internal Memory ....................................................................................................................................................................... 9 i. Power Requirements ................................................................................................................................................................. 9 Annexure ........................................................................................................................…

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Cover Letter(s)

RF_160, Issue 04 Bosch Global Software Technologies Private Limited Declaration of Authorization We Name: Bosch Global Software Technologies Private Limited Address: MS/PAC, Ban601, Post Box No 3000 Hosur Road, Adugodi, Bengaluru, Karnataka 560030 City: Bengaluru Country: India Declare that: Name Representative of agent: Ms. Grace Chen Agent Company name: BTL Inc. Address: 4F,No.18, Ln. 171, Sec. 2, Jiuzong Rd., Neihu Dist.114, City: Taipei Country Taiwan is authorized to apply for Certification of the following product(s): Product description: iTraMS CCU Type designation: CU-304-0800-00 Trademark: Bosch Validity/ expiry date: From November 15, 2022 to November 14, 2023 on our behalf. Date: November 23, 2022 City: Karnataka Name: Mr. Rajeev Kumar B R Function: General Manager Signature: Notes: (1): Required for FCC application (2): For FCC it must be the Grantee Code “owner” or the authorized agent.

Cover Letter(s)

FCC, Request for non-disclosureDate: 21-Nov-2018 RF_501, Issue 8Page 1 of 1 Company Name: Bosch Global Software Technologies Private Limited Address: MS/PAC, Ban601, Post Box No 3000 Hosur Road, Adugodi, Bengaluru,Karnataka-560030, City:Karnataka Country:India To:Telefication B.V., Dept. FCC TCB Edisonstraat 12A 6902 PK ZEVENAAR The Netherlands Subject: Request for confidentiality FCC ID: 2AVVT-CU304080000 Reference number: ###### Dear FCC TCB, 1. Long-Term Confidentiality Pursuant to 47 CFR Section 0.459(a) & (b), we hereby requests non-disclosure and confidential treatment of the following materials submitted in support of FCC certification application: Bill(s) of MaterialBlock Diagrams Operational DescriptionSchematic DiagramsTune-up Procedure Above materials contain secrets, proprietary and technical information, which would customarily be guarded from competitors under 47 CFR, section 0.457(d)(2). Disclosure or publication or any portion of this company confidential material to other parties could cause substantial competitive harm and provide unjustified benefits for competitors. 2. Short-Term Confidentiality (STC) P ursuant to Public Notice DA 04-1705 of the Commission’s policy, in order to comply with the marketing regulations in 47 CFR §2.803 and the importation rules in 47 CFR §2.1204, a pplicant hereby requests Short-Term Confidential treatment of the following materials (See notes below): Internal PhotosUser’s ManualTest Set-up PhotosExternal Photos Justification: Date: 2022-11-23Name and signature of applicant: Notes: 1) A document or type of document can only have ONE type of confidentiality! 2) S hort-Term confidentiality is in principle for 45 days from date of grant; it can be extended max 3 times (total time 180 days max.)! The planned date should stated in the RF731 application form. 3) F CC must be informed when marketing begins earlier. 4) Rel ease takes place automatically thus extension must be requested in time. Telefication does not remind you of this! 5) R equest for extension or for release must be received by Telefication at least 7 days before date of actual marketing or before expiration of the STC period

Cover Letter(s)

Test Data Reuse Letter 2022/12/27 Bosch Global Software Technologies Private Limited MS/PAC, Ban601, Post Box No 3000 Hosur Road, Adugodi, Bengaluru, Karnataka, India RE: FCC Certification FCC ID: 2AVVT-CU304080000 To Whom It May Concern: We, Bosch Global Software Technologies Private Limited, hereby declare that FCC ID: 2AVVT-CU304080000 is a variant of FCC ID: 2AVVT-CU413UCMPS1. The differences as following: FCC IDDifferences 2AVVT-CU413UCMPS1BT, BLE, WLAN 2.4 GHz, WWAN 2AVVT-CU304080000BT, BLE, WLAN 2.4 GHz The difference between two versions is that the WWAN radio components are removed, and the rests remain identical. Thus, we hereby request to leverage the test data of FCC ID: 2AVVT-CU413UCMPS1 to demonstrate the compliance of FCC ID: 2AVVT-CU304080000. The test worst cases found in FCC ID: 2AVVT-CU413UCMPS1 are verified on FCC ID: 2AVVT-CU304080000 to ensure the compliance is kept. The test reports show additional evidence for output power results and radiated emissions results to demonstrate full compliance of the device. Thank you for your attention to this matter. Br, Grace Chen (authorized representative) DOC Dept. Specialist GrGrGrGrGrGrGrGrrGrGrGrrGrGrracaaaacaaacacacaaaaaaeeeeeeeeChChChChhhhhChhen(a(((((uthohhhhhhhhhriiiiiiiizeddddrepppppp

External Photos

Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 1 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 2 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 3 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 4 of 23 MA250.A.LBI.001 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 5 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 6 of 23 TG.08.0723 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 7 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 8 of 23 MA240.LBI.001 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 9 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 10 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 11 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 12 of 23 MA173. A. LBI.001 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 13 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 14 of 23

Internal Photos

Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 15 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 16 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 17 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 18 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 19 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 20 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 21 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 22 of 23 Appendix No.: EP-2103T126A-1 APPENDIX-EUT PHOTOS Project No.: 2103T126A Page 23 of 23

RF Exposure Info

Report No.: BTL-FCCP-4-2103T126A Project No.: 2103T126A Page 1 of 4 Report Version: R05 Maximum Permissible Exposure Report FCC ID: 2AVVT-CU304080000 Report No. : BTL-FCCP-4-2103T126A Equipment : iTraMS CCU Model Name : CU-304-0800-00 Brand Name : Bosch Applicant : Bosch Global Software Technologies Private Limited Address : MS/PAC, Ban 601, Post Box No 3000 Hosur Road, Adugodi, Bengaluru, Karnataka-560030, India FCC Rule Part(s) : FCC Guidelines for Human Exposure IEEE C95.1 Date of Receipt : 2021/4/6 Date of Test : 2021/4/6 ~ 2021/8/26 Issued Date : 2022/12/26 The above equipment has been tested and found in compliance with the requirement of the above standards by BTL Inc. Prepared by : Eric Lee, Engineer Approved by : Jerry Chuang, Supervisor BTL Inc. No.18, Ln. 171, Sec. 2, Jiuzong Rd., Neihu Dist., Taipei City 114, Taiwan Tel: +886-2-2657-3299 Fax: +886-2-2657-3331 Web: www.newbtl.com Service mail: [email protected] Report No.: BTL-FCCP-4-2103T126A Project No.: 2103T126A Page 2 of 4 Report Version: R05 REVISION HISTORY Report No. Version Description Issued Date Note BTL-FCCP-4-2103T126A R00 Original Report. 2022/2/8 Invalid BTL-FCCP-4-2103T126A R01 Revised applicant address. 2022/2/18 Invalid BTL-FCCP-4-2103T126A R02 Added the fourth antenna. (MA173. A. LBI.001) 2022/11/10 Invalid BTL-FCCP-4-2103T126A R03 Revised applicant information. 2022/11/22 Invalid BTL-ISEDR-4-2103T126A R04 Revised typo. 2022/12/12 Invalid BTL-ISEDR-4-2103T126A R05 Revised typo. 2022/12/26 Valid Report No.: BTL-FCCP-4-2103T126A Project No.: 2103T126A Page 3 of 4 Report Version: R05 MPE CALCULATION METHOD: Calculation Method of RF Safety Distance: where: S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Table for Filed Antenna: Group I: Antenna Manufacture Part No. Type Connector Frequency (MHz) Gain (dBi) External antenna MA250.A.LBI.001 Dipole SMA(M)ST 2400-2500 2.72 Group II: Antenna Manufacture Part No. Type Connector Frequency (MHz) Gain (dBi) Stubby antenna TG.08.0723 Dipole SMA(M)ST 2400-2500 3.29 Group III: Antenna Manufacture Part No. Type Connector Frequency (MHz) Gain (dBi) Wi-Fi 2.4GHz antenna MA240.LBI.001 Dipole SMA(M) 2400-2500 2.70 Group IV: Antenna Manufacture Part No. Type Connector Frequency (MHz) Gain (dBi) External antenna MA173. A. LBI.001 N/A SMA(M)ST 2400-2500 1.31 Note: The above Antenna information are derived from the antenna data sheet provided by manufacturer and for more detailed features description, please refer to the manufacturer's specifications, the laboratory shall not be held responsible. Output power including tune up tolerance Function Target power (dBm) Tolerance (dB) WLAN 2.4G 20 ±1 Report No.: BTL-FCCP-4-2103T126A Project No.: 2103T126A Page 4 of 4 Report Version: R05 CALCULATED RESULTS Mode Band Frequency Range (MHz) Maximum Power (dBm) Antenna Gain (dBi) Power Density (mW/cm 2 ) Limit of Power Density (mW/cm 2 ) Test Result WLAN - 2437 21 3.29 0.0535 1.0000 Complies Mode Band Frequency Range (MHz) Maximum Power (dBm) Antenna Gain (dBi) Power Density (mW/cm 2 ) Limit of Power Density (mW/cm 2 ) Test Result BT - 2441 6.82 3.29 0.0020 1.0000 Complies Mode Band Frequency Range (MHz) Maximum Power (dBm) Antenna Gain (dBi) Power Density (mW/cm 2 ) Limit of Power Density (mW/cm 2 ) Test Result BLE - 2440 2.03 3.29 0.0007 1.0000 Complies Note: 1. The calculated distance is 20 cm. COLLOCATED POWER DENSITY CACULATIONS So for simultaneous transmission (WLAN+BT): 0.0535/1+0.0020/1=0.0555<1. End of Test Report

Test Report

Report No.: BTL-FCCP-2-2103T126A Project No.: 2103T126A Page 1 of 78 Report Version: R04 FCC Radio Test Report FCC ID: 2AVVT-CU304080000 Report No. : BTL-FCCP-2-2103T126A Equipment : iTraMS CCU Model Name : CU-304-0800-00 Brand Name : Bosch Applicant : Bosch Global Software Technologies Private Limited Address : MS/PAC, Ban 601, Post Box No 3000 Hosur Road, Adugodi, Bengaluru, Karnataka-560030, India Radio Function : Bluetooth EDR FCC Rule Part(s) : FCC CFR Title 47, Part15, Subpart C (15.247) Measurement Procedure(s) : ANSI C63.10-2013 Date of Receipt : 2021/4/6 Date of Test : 2021/4/6 ~ 2022/11/7 Issued Date : 2022/12/26 The above equipment has been tested and found in compliance with the requirement of the above standards by BTL Inc. Prepared by : Eric Lee, Engineer Approved by : Jerry Chuang, Supervisor BTL Inc. No.18, Ln. 171, Sec. 2, Jiuzong Rd., Neihu Dist., Taipei City 114, Taiwan Tel: +886-2-2657-3299 Fax: +886-2-2657-3331 Web: www.newbtl.com Service mail: [email protected] Report No.: BTL-FCCP-2-2103T126A Project No.: 2103T126A Page 2 of 78 Report Version: R04 Declaration BTL represents to the client that testing is done in accordance with standard procedures as applicable and that test instruments used has been calibrated with standards traceable to international standard(s) and/or national standard(s). BTL's reports apply only to the specific samples tested under conditions. It is manufacture’s responsibility to ensure that additional production units of this model are manufactured with the identical electrical and mechanical components. BTL shall have no liability for any declarations, inferences or generalizations drawn by the client or others from BTL issued reports. This report is the confidential property of the client. As a mutual protection to the clients, the public and ourselves, the test report shall not be reproduced, except in full, without our written approval. BTL’s laboratory quality assurance procedures are in compliance with the ISO/IEC 17025 requirements, and accredited by the conformity assessment authorities listed in this test report. BTL is not responsible for the sampling stage, so the results only apply to the sample as received. The information, data and test plan are provided by manufacturer which may affect the validity of results, so it is manufacturer’s responsibility to ensure that the apparatus meets the essential requirements of applied standards and in all the possible configurations as representative of its intended use. Limitation For the use of the authority's logo is limited unless the Test Standard(s)/Scope(s)/Item(s) mentioned in this test report is (are) included in the conformity assessment authorities acceptance respective. Please note that the measurement uncertainty is provided for informational purpose only and are not use in determining the Pass/Fail results. Report No.: BTL-FCCP-2-2103T126A Project No.: 2103T126A Page 3 of 78 Report Version: R04 CONTENTS REVISION HISTORY 5 1 SUMMARY OF TEST RESULTS 6 1.1 TEST FACILITY 7 1.2 MEASUREMENT UNCERTAINTY 7 1.3 TEST ENVIRONMENT CONDITIONS 8 1.4 TABLE OF PARAMETERS OF TEST SOFTWARE SETTING 8 1.5 DUTY CYCLE 9 2 GENERAL INFORMATION 10 2.1 DESCRIPTION OF EUT 10 2.2 TEST MODES 13 2.3 BLOCK DIAGRAM SHOWING THE CONFIGURATION OF SYSTEM TESTED 14 2.4 SUPPORT UNITS 15 3 RADIATED EMISSIONS TEST 16 3.1 LIMIT 16 3.2 TEST PROCEDURE 17 3.3 DEVIATION FROM TEST STANDARD 17 3.4 TEST SETUP 17 3.5 EUT OPERATING CONDITIONS 18 3.6 TEST RESULT – BELOW 30 MHZ 19 3.7 TEST RESULT – 30 MHZ TO 1 GHZ 19 3.8 TEST RESULT – ABOVE 1 GHZ 19 4 NUMBER OF HOPPING CHANNEL 20 4.1 APPLIED PROCEDURES 20 4.2 TEST PROCEDURE 20 4.3 DEVIATION FROM STANDARD 20 4.4 TEST SETUP 20 4.5 EUT OPERATION CONDITIONS 20 4.6 TEST RESULTS 20 5 AVERAGE TIME OF OCCUPANCY 21 5.1 APPLIED PROCEDURES / LIMIT 21 5.2 TEST PROCEDURE 21 5.3 DEVIATION FROM STANDARD 21 5.4 TEST SETUP 21 5.5 EUT OPERATION CONDITIONS 21 5.6 TEST RESULTS 21 6 HOPPING CHANNEL SEPARATION MEASUREMENT 22 6.1 APPLIED PROCEDURES / LIMIT 22 6.2 TEST PROCEDURE 22 6.3 DEVIATION FROM STANDARD 22 6.4 TEST SETUP 22 6.5 TEST RESULTS 22 7 BANDWIDTH TEST 23 7.1 APPLIED PROCEDURES 23 7.2 TEST PROCEDURE 23 7.3 DEVIATION FROM STANDARD 23 7.4 TEST SETUP 23 7.5 EUT OPERATION CONDITIONS 23 Report No.: BTL-FCCP-2-2103T126A Project No.: 2103T126A Page 4 of 78 Report Version: R04 7.6 TEST RESULTS 23 8 OUTPUT POWER TEST 24 8.1 APPLIED PROCEDURES / LIMIT 24 8.2 TEST PROCEDURE 24 8.3 DEVIATION FROM STANDARD 24 8.4 TEST SETUP 24 8.5 EUT OPERATION CONDITIONS 24 8.6 TEST RESULTS 24 9 ANTENNA CONDUCTED SPURIOUS EMISSION 25 9.1 APPLIED PROCEDURES / LIMIT 25 9.2 TEST PROCEDURE 25 9.3 DEVIATION FROM STANDARD 25 9.4 TEST SETUP 25 9.5 EUT OPERATION CONDITIONS 25 9.6 TEST RESULTS 25 10 LIST OF MEASURING EQUIPMENTS 26 11 EUT TEST PHOTO 29 12 EUT PHOTOS 29 APPENDIX A RADIATED EMISSIONS - 30 MHZ TO 1 GHZ 30 APPENDIX B RADIATED EMISSIONS - ABOVE 1 GHZ 37 APPENDIX C NUMBER OF HOPPING CHANNEL 60 APPENDIX D AVERAGE TIME OF OCCUPANCY 62 APPENDIX E HOPPING CHANNEL SEPARATION MEASUREMENT 65 APPENDIX F BANDWIDTH 68 APPENDIX G OUTPUT POWER 71 APPENDIX H ANTENNA CONDUCTED SPURIOUS EMISSION 74 Report No.: BTL-FCCP-2-2103T126A Project No.: 2103T126A Page 5 of 78 Report Version: R04 REVISION HISTORY Report No. Version Description Issued Date Note BTL-FCCP-2-2103T126A R00 Original Report. 2022/2/8 Invalid BTL-FCCP-2-2103T126A R01 Revised applicant address. 2022/2/18 Invalid BTL-FCCP-2-2103T126A R02 Added the fourth antenna. (MA173. A. LBI.001) 2022/11/10 Invalid BTL-FCCP-2-2103T126A R03 Revised applicant information. 2022/11/22 Invalid BTL-FCCP-2-2103T126A R04 Revised report to address TCB’s comments. 2022/12/26 Valid Report No.: BTL-FCCP-2-2103T126A Project No.: 2103T126A Page 6 of 78 Report Version: R04 1 SUMMARY OF TEST RESULTS Test procedures according to the technical standards. Standard(s) Section Description Test Result Judgement Remark 15.207 AC Power Line Conducted Emissions ------ N/A Note(3) 15.205 15.209 15.247(d) Rad…

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Test Report

Antenna Test Report Antenna Type: PCB Layout Antenna MAX. Gain: 1.31 dBi BTL INC. No.18, Ln. 171, Sec. 2, Jiuzong Rd., Neihu Dist., Taipei City 114, Taiwan .

Test Report

SPE-14-8-084/A/JW Page 1 of 63 SPECIFICATION Part No. : MA240.LBI.001 Product Name : MA240 Genesis LTE MIMO/GNSS 3in1 Adhesive Mount Combination Antenna 1* GNSS – GPS-GLONASS 2* 4G MIMO LTE 698 to 896/1710 to 2700MHz Supports 3G Fall-back Features : IP67 Antenna 1* GPS-GLONASS: 2 meter RG-174 SMA(M) 2 * LTE: 2 meter Low loss NFC-200 SMA(M)ST Dimensions: 205.8mm x 58mm x 12.4mm RoHS Compliant SPE-14-8-084/A/JW Page 2 of 63 1. Introduction The MA.240 4G Genesis antenna is an omni-directional, fully IP67 waterproof external M2M antenna for use in telematics, transportation and remote monitoring applications worldwide. It is designed to be mounted directly on glass or plastic in the interior of vehicles. Typical applications - HD Video over LTE - First Responder and Emergency Services - Automotive Vehicle Tracking and Telematics This unique antenna delivers powerful MIMO antenna technology for worldwide 4G LTE bands at 700MHz/800MHz/1700MHz/1800MHz/2600MHz, plus GPS-GLONASS for next generation location accuracy. 4G wireless applications demand high speed data uplink and downlink. High efficiency and high gain MIMO antennas are necessary to achieve the required signal to noise ratio and throughput required to solve these challenges. Taoglas also takes care to have high isolation between the two MIMO antennas to prevent self-interference. Low loss cables are used to keep efficiency high over long cable lengths. In contrast, smaller MIMO antennas with poorer quality thinner cables will have much reduced efficiency and isolation, which would lead to a large drop in system throughput or drops, and may indeed not make a system connection at all. The GPS-Glonass antenna has been carefully designed to work equally well on both GPS and Glonass bands, leading to higher location accuracy and stability of tracking in urban environments. Finally, if your device requires USA LTE certification with an external antenna then the MA240 is the ideal solution to pass approvals. Cable length and connector types are customizable. Contact your regional Taoglas sales office for support. SPE-14-8-084/A/JW Page 3 of 63 2. Specification GPS-GLONASS Center Frequency GPS:1575.42±3 MHz GLONASS:1602±0.5 MHz Passive Antenna Gain GPS: 1.67dBi GLONASS: 0.37dBi VSWR 1.5:1 Max Impedance 50Ω Cable 2 meters RG174 standard, fully customizable Connector SMA(M), standard, fully customizable LNA Electrical Properties Center Frequency GPS:1575.42±3 MHz GLONASS:1602±0.5 MHz Impedance 50 Ohm VSWR < 1.5:1 Return Loss 10 dB Min. Gain 3.3V 30dB DC Power Input 3.3V Noise Figure @3.3V 1.7dB SPE-14-8-084/A/JW Page 4 of 63 4G/3G MIMO1 Antenna Frequency (MHz) 698~803 824~894 880~960 1710~1880 1850~1990 1920~2170 2490~2690 3410~3490 Efficiency (%) In free space 30cm 72.01 45.99 34.09 73.58 68.59 33.44 63.58 38.76 1M 70.55 56.19 39.21 66.54 52.25 45.40 59.01 33.16 2M 64.18 42.21 29.69 60.55 33.71 27.32 50.17 29.20 3M 59.38 37.78 27.57 53.47 29.71 23.89 42.78 24.46 5M 51.25 31.84 23.14 41.89 22.94 18.50 32.70 17.59 On the 2mm ABS base 30cm 65.93 36.48 26.86 60.26 38.12 30.54 56.90 32.33 1M 71.92 52.85 31.51 62.46 48.02 42.26 59.79 34.38 2M 58.76 34.28 23.40 49.55 31.05 24.95 44.87 24.37 3M 56.15 31.80 21.72 44.39 29.14 22.18 38.32 20.40 5M 46.95 25.27 18.25 34.28 21.13 16.89 29.24 14.68 On the glass base 30cm 43.02 18.05 11.86 37.76 27.71 27.15 58.38 30.74 1M 49.79 15.28 8.64 38.20 35.24 37.66 63.96 32.37 2M 38.34 17.81 10.33 31.05 22.58 22.19 46.02 23.13 3M 36.20 16.54 9.59 27.82 20.43 18.90 39.31 18.78 5M 30.66 12.52 8.06 21.48 15.35 15.02 29.99 13.94 Average Gain(dBi) In free space 30cm -1.46 -3.39 -4.75 -1.44 -1.67 -4.84 -1.98 -4.45 1M -1.52 -2.53 -4.23 -1.82 -2.84 -3.49 -2.31 -4.98 2M -1.96 -3.76 -5.35 -2.29 -4.79 -5.72 -3.01 -5.70 3M -2.30 -4.25 -5.68 -2.83 -5.34 -6.30 -3.70 -6.45 5M -2.94 -4.99 -6.43 -3.89 -6.47 -7.41 -4.87 -7.90 On the 2mm ABS base 30cm -1.86 -4.41 -5.79 -2.24 -4.27 -5.21 -2.46 -5.34 1M -1.44 -2.83 -5.26 -2.10 -3.21 -3.79 -2.25 -4.80 2M -2.36 -4.67 -6.39 -3.10 -5.16 -6.09 -3.49 -6.59 3M -2.54 -5.00 -6.72 -3.57 -5.45 -6.61 -4.18 -7.34 5M -3.34 -6.01 -7.47 -4.70 -6.84 -7.78 -5.35 -8.79 On the glass base 30cm -3.76 -7.54 -9.36 -4.28 -5.59 -5.70 -2.35 -5.32 1M -3.12 -8.39 -10.74 -4.24 -4.55 -4.27 -1.95 -4.90 2M -4.26 -7.59 -9.96 -5.13 -6.48 -6.58 -3.38 -6.57 3M -4.51 -7.92 -10.29 -5.61 -6.92 -7.25 -4.07 -7.53 5M -5.24 -9.14 -11.05 -6.73 -8.16 -8.27 -5.24 -8.77 SPE-14-8-084/A/JW Page 5 of 63 Frequency (MHz) 698~803 824~894 880~960 1710~1880 1850~1990 1920~2170 2490~2690 3410~3490 Peak Gain(dBi) In free space 30cm 3.61 1.20 -0.05 3.31 3.41 -0.63 3.01 0.43 1M 2.84 2.15 0.02 2.61 1.74 1.08 3.26 -0.68 2M 3.11 0.98 -0.65 2.46 -0.33 -1.50 1.98 -0.82 3M 2.78 0.35 -0.98 1.92 -0.89 -2.09 1.28 -1.57 5M 2.14 -0.40 -1.74 0.86 -2.01 -3.19 0.12 -3.02 On the 2mm ABS base 30cm 3.09 -0.25 -0.95 2.34 0.42 -0.30 2.97 -0.92 1M 2.30 2.38 -0.13 2.12 1.09 0.81 3.11 -0.32 2M 2.59 -0.57 -1.55 1.49 -0.47 -1.17 1.94 -2.17 3M 2.49 -0.90 -1.88 1.08 -0.77 -1.79 1.26 -2.92 5M 1.62 -1.85 -2.64 -0.11 -2.15 -2.87 0.08 -4.37 On the glass base 30cm 1.04 -3.36 -5.33 0.57 -0.37 0.31 3.15 0.82 1M 0.78 -3.92 -6.55 1.42 0.67 1.21 4.22 1.80 2M 0.54 -3.22 -5.93 0.99 -1.26 -0.57 2.12 -0.43 3M 0.27 -3.55 -6.25 -0.72 -1.76 -1.37 1.43 -0.97 5M -0.43 -4.96 -7.01 -1.89 -2.94 -2.26 0.26 -2.63 SPE-14-8-084/A/JW Page 6 of 63 4G/3G MIMO2 Antenna Frequency (MHz) 698~803 824~894 880~960 1710~1880 1850~1990 1920~2170 2490~2690 3410~3490 Efficiency (%) In free space 30cm 58.24 56.13 53.67 76.47 68.59 62.96 74.88 56.10 1M 64.65 57.39 48.73 62.52 53.06 48.63 50.84 30.29 2M 51.90 46.53 46.74 62.79 55.87 51.48 59.06 42.12 3M 47.88 45.93 43.42 55.53 49.19 45.01 50.66 35.40 5M 41.47 38.78 36.45 43.44 38.00 34.87 38.49 25.38 On the 2mm ABS base 30cm 63.50 33.06 39.97 69.58 59.05 54.39 61.78 39.33 1M 73.97 51.78 44.03 63.30 48.55 46.18 52.15 27.82 2M 56.60 29.34 34.82 57.11 48.11 44.46 48.71 29.50 3M 53.49 27.18 32.32 50.22 44.24 38.88 41.62 30.25 5M 45.23 22.87 27.09 39.51 32.73 30.11 31.7…

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Test Report

SPE-14-8-084/A/JW Page 47 of 63 Y Y Z Z SPE-14-8-084/A/JW Page 48 of 63 4.Drawing SPE-14-8-084/A/JW Page 49 of 63 5.Packaging SPE-14-8-084/A/JW Page 50 of 63 6. Application Note (LTE MIMO Antenna) The MA240 antenna measurement with difference cable length and difference environments, the performance is shown as below, 6.1 In free Space 6.1.1 Return loss(MIMO_1 in free space) 6.1.2 Return loss (MIMO_2 in free space) SPE-14-8-084/A/JW Page 51 of 63 6.1.3 Insertion loss (in free space) 6.1.4 Efficiency (MIMO_1 in free space) SPE-14-8-084/A/JW Page 52 of 63 6.1.5 Efficiency (MIMO_2 in free space) 6.1.6 Average Gain (MIMO_1 in free space) SPE-14-8-084/A/JW Page 53 of 63 6.1.7 Average Gain (MIMO_2 in free space) 6.1.8 Peak Gain (MIMO_1 in free space) SPE-14-8-084/A/JW Page 54 of 63 6.1.9 Peak Gain (MIMO_2 in free space) 6.2 On 2mm ABS Base 6.2.1 Return loss(MIMO_1 on the 2mm ABS) SPE-14-8-084/A/JW Page 55 of 63 6.2.2 Return loss (MIMO_2 on the 2mm ABS) 6.2.3 Insertion loss (on the 2mm ABS) SPE-14-8-084/A/JW Page 56 of 63 6.2.4 Efficiency (MIMO_1 on the 2mm ABS) 6.2.5 Efficiency (MIMO_2 on the 2mm ABS) 6.2.6 Average Gain (MIMO_ on the 2mm ABS) SPE-14-8-084/A/JW Page 57 of 63 6.2.7 Average Gain (MIMO_2 on the 2mm ABS) 6.2.8 Peak Gain (MIMO_1 on the 2mm ABS) SPE-14-8-084/A/JW Page 58 of 63 6.2.9 Peak Gain (MIMO_2 on the 2mm ABS) 6.3 On the glass base 6.3.1 Return loss(MIMO_1 on the glass) SPE-14-8-084/A/JW Page 59 of 63 6.3.2 Return loss (MIMO_2 on the glass) SPE-14-8-084/A/JW Page 60 of 63 6.3.3 Insertion loss (on the glass) 6.3.4 Efficiency (MIMO_1 on the glass) SPE-14-8-084/A/JW Page 61 of 63 6.3.5 Efficiency (MIMO_2 in on the glass) 6.3.6 Average Gain (MIMO_1 on the glass) SPE-14-8-084/A/JW Page 62 of 63 6.3.7 Average Gain (MIMO_2 on the glass) 6.3.8 Peak Gain (MIMO_1 on the glass) SPE-14-8-084/A/JW Page …

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Contact Information

Applicant

Nagendra Chaturvedi(Program Manager)
[email protected]+91(80)6136-1205Fax: +91(80)6136-1205

Technical Contact

BTL Inc.Scott Hsu
[email protected]+886226418198

No.18,Ln. 171, Sec. 2, Jiuzong Rd., Neihu Dist · Taiwan

Non-Technical Contact

BTL Inc.Grace Chen
[email protected]+886226418198

Test Firm

BTL Inc.Jackie Chiu
[email protected]+886-2-2641-8198Fax: +886-2-2641-8698

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz4.80 mW
Confidentiality
Long Term
Grant Notes
Power output listed is conducted. The device with its internal antenna must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. End-users and installers must be provided with operating conditions for satisfying RF exposure compliance.

Other Applications from Bosch Global Software Technologies Private Limited

CU-304-0503 - FCC ID 2AVVT-AD00A10057 - Bosch Global Software Technologies Private Limited
2AVVT-AD00A10057

CU-304-0503

Jul 23, 2020

Equipment Class

DTS - Digital Transmission System