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WU8NB24G175V324 GHz SRS Radar Sensor

Magna Electronics, LLC
24 GHz SRS Radar Sensor - FCC ID WU8NB24G175V3 - Magna Electronics, LLC
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Application Details

Equipment Class
DXX - Part 15 Low Power Communication Device Transmitter
Date of Grant
May 28, 2020
Application Purpose
Original Equipment
Date of Application
May 28, 2020
Equipment Note
24 GHz SRS Radar Sensor
Frequency Range
24057.90000000 - 24233.80000000
Company
Magna Electronics, LLC
Country
United States

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

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

User Manual for Product Model: NB24G175V3 PUBLIC 24 GHz NB Radar Sensor User Manual Product Model: NB24G175V3 Veoneer US, Inc. 26360 American Drive Southfield, Michigan 48034 USA Phone: +1 248 223 0600 Fax: +1 248 223 8833 User Manual for Product Model: NB24G175V3 Page 2 of 7 Table of Contents 1 ABBREVIATIONS 3 1.1 LIST OF TERMINOLOGY AND ACRONYMS 3 2 PRODUCT OVERVIEW 3 2.1 PRODUCT DESCRIPTION 3 2.2 PRODUCT APPLICATION EXAMPLES 3 3 TYPICAL INSTALLATION 4 4 HARDWARE DESCRIPTION 5 5 SENSOR GENERIC SPECIFICATIONS 6 6 SENSOR FEATURES 6 7 CONFORMANCE STATEMENTS 7 7.1 USA 7 7.2 CANADA 7 7.3 EUROPE 7 8 REVISION HISTORY 7 Table of Figures FIGURE 1: TYPICAL INSTALLATION POSITIONS ........................................................................................................................................... 4 FIGURE 2: GENERIC SENSOR ................................................................................................................................................................. 5 FIGURE 3: SENSOR EXPLODED VIEW ....................................................................................................................................................... 5 User Manual for Product Model: NB24G175V3 Page 3 of 7 1 Abbreviations 1.1 List of Terminology and Acronyms BSD Blind Spot Detection CAN Controller Area Network DSP Digital Signal Processor EMC ElectroMagnetic Compliance (regulatory standards) FM Frequency Modulation GHZ Giga-Hertz (10^ 9 ) HP Host Processor LCA Lane Change Assist MMIC Monolithic Microwave Integrated Circuit MCU MicroController Unit NB Narrow Band PCB Printed Circuit Board RADAR RAdio Detection And Ranging RCTA Rear Cross Traffic Alert RF Radio Frequency (or Microwave) 2 Product Overview 2.1 Product Description The products described here are part of a family of radars offered by Veoneer. They are intended for automotive use, operating in the 24.050 - 24.250GHz band. The radars are integrated into a vehicle to enhance vehicle safety systems. They can be integrated as a standalone sensor or sensors, or as part of more complex system that also may include cameras, lidar, and other type of sensors to provide features like Automatic Cruise Control, Automatic Emergency Break, Free Space Detections and other Autonomous Driving functions. 2.2 Product Application Examples The product can be used, but is not limited to the following applications: • Autonomous drive systems • Automatic braking systems • Collision prevention systems • Cross Traffic Monitor system • Blind Spot Detection system • Lane Change Alert systems User Manual for Product Model: NB24G175V3 Page 4 of 7 3 Typical Installation The radar is typically installed in the positions of the vehicle depicted in Figure 1 often mounted behind a bumper or emblem. Figure 1: Typical Installation Positions User Manual for Product Model: NB24G175V3 Page 5 of 7 4 Hardware Description The NB RADAR is a fully integrated 24GHz radar sensor with both RF and DSP modules on the same PCB. The design supports a combination of pulsed Doppler and chirped FM waveforms that can detect moving or stationary vehicles in a high clutter environment. The sensor’s DSP side controls all signal processing, diagnostics and communications and contains the sensor’s two processors. The RF module generates, transmits, receives and demodulates radar signals using two Veoneer MMICs. Software algorithms calculate target parameters such as range, speed and angle, and make feature decisions that are sent out to the vehicle over the CAN bus. The components are assembled into a plastic housing that is laser welded together. The sensor has no serviceable parts and can’t be opened without permanent damage. Figure 2: Generic Sensor Figure 3: Sensor Exploded View User Manual for Product Model: NB24G175V3 Page 6 of 7 5 Sensor Generic Specifications Sensor Specifications & Functions Value Unit Operating Conditions Frequency Band 24.05 – 24.25 GHz Power Dissipation <5 W Vehicle Network Interface CAN2.0B Operating Temperature -40C to +85 C Input Operating Voltage 8 – 16 V RF Output Power 13.5 dBm peak Operating Life 15 years Waveform Parameters Cycle Time 80 ms Bandwidth <200 MHz Physical Parameters Size 95x63x16.3 mm Weight <150 g Vehicle Physical Interface 6 pin Yazaki connector Performance Parameters Detection Range for RCTA 2 – 60 m Detection Range for BSD .5 – 14 m Detection Range for LCA 4 – 80 m Field of View for RCTA +/-65 degrees 6 Sensor Features The BSD algorithm detects and reports “Objects of Interest" on either side of the vehicle, within a specified “blind spot” zone. The feature generates a signal which is used to drive a visual display placed in the outside view mirror to alert the driver to the presence of objects of interest within the defined SBZA zone. The LCA algorithm detects and reports to the driver that a highway licensable vehicle is rapidly approaching the host vehicle in one of the adjacent lanes. The feature generates a signal which is used to drive a visual display placed in the outside view mirror and/or request a chime or vibrating seat cushion, to alert the driver to the approach of objects of interest within the defined LCA zone. The RCTA algorithm detects and reports “Objects of Interest” behind the host vehicle, within a specified RCTA coverage zone. The feature generates a signal which is used to drive a visual display to alert the driver of the presence of objects of interest that may cause a collision with the host vehicle within the defined RCTA zone. User Manual for Product Model: NB24G175V3 Page 7 of 7 7 Conformance Statements 7.1 USA 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, and (2) this device must accept any interference received, including interference that may cause undesired operation. CAUTION TO USERS Changes or modifications not expressly approved by the party responsible for complian…

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Cover Letter(s)

Veoneer US, Inc. 26360 American Drive Southfield, Michigan 48034 USA Phone: +1-248-223-0600 Fax: +1-248-223-8833 www.veoneer.com CONFIDENTIALITY REQUEST for Certification Service in USA Federal Communication Commission Equipment Authorization Division, Application Processing Branch 7435 Oakland Mills Road Columbia, MD 21048 April 28, 2020 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 requests confidentiality for the following products: FCC ID: WU8NB24G175V3 Model name: NB24G175V3 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 External Photos 30 Internal Photos 30 Block Diagram Schematics Test Setup Photos 30 User’s Manual 30 Parts List Tune Up Operational Descriptions 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. If you have any questions, please feel free to contact me at the address shown below. Sincerely, Contact name: Jeff Coote Phone: +1 248 223 0600 Company: Veoneer US, Inc. Email: [email protected] Address: 26360 American Drive, Southfield, MI 48034, USA

External Photos

Product Model Photos: NB24G175V3_EXTERNAL 24 GHz SRS Radar Sensor External Photos Product Model: NB24G175V3 Product Model Photos: NB24G175V3_EXTERNAL Page 2 of 7 Product Model Photos: NB24G175V3_EXTERNAL Page 3 of 7 Product Model Photos: NB24G175V3_EXTERNAL Page 4 of 7 Product Model Photos: NB24G175V3_EXTERNAL Page 5 of 7 Product Model Photos: NB24G175V3_EXTERNAL Page 6 of 7 Product Model Photos: NB24G175V3_EXTERNAL Page 7 of 7

ID Label/Location Info

Veoneer US, Inc. 26360 American Drive Southfield, Michigan 48034 USA Phone: +1-248-223-0600 Fax: +1-248-223-8833 www.veoneer.com Compliance Label Information Model Number: NB24G175V3

Test Report

Page 1 of 25 The test results relate only to the individual items which have been tested. This report shall not be reproduced in parts without the written approval of the testing laboratory © Copyright: All rights reserved by CETECOM Annex 1: Measurement diagrams to T E S T R E P O R T No.: 19-1-0207401T03a-C1 24 GHz SRS Radar Sensor NB24G175V3 FCC ID: WU8NB24G175V3 ISED Certification Number: 8436B-NB24G175V3 According to: 47 CFR Part 15.249 RSS-210 Issue 10 for Veoneer US, Inc. Laboratory Accreditation accredited according to DIN EN ISO/IEC 17025:2018 CETECOM GmbH Laboratory Radio Communications & Electromagnetic Compatibility Im Teelbruch 116 • 45219 Essen • Germany Registered in Essen, Germany, Reg. No.: HRB Essen 8984 Tel.: + 49 (0) 20 54 / 95 19-0 • Fax: + 49 (0) 20 54 / 95 19-150 E-mail: [email protected] • Internet: www.cetecom.com Annex 1 to Test Report 19-1-0207401T03a-C1, Page 2 of 25 CETECOM_TR19_1_0207401T03a-C1_A1 Table of contents 1. FIELD STRENGTH OF EMISSIONS (WANTED SIGNAL) ...................................................................... 3 1.1. T nom /V nom , Op. 1 ............................................................................................................................................ 3 1.2. T nom /V nom , Op. 2 ............................................................................................................................................ 3 2. OCCUPIED BANDWIDTH ............................................................................................................................. 4 2.1. T nom /V nom , Op. 1, 99% bandwidth ................................................................................................................. 4 2.2. T nom /V nom , Op. 2, 99% bandwidth ................................................................................................................. 4 3. FIELD STRENGTH OF EMISSIONS (RADIATED SPURIOUS) .............................................................. 5 3.1. 9 kHz – 30 MHz, laying, Op.1 ...................................................................................................................... 5 3.2. 9 kHz – 30 MHz, standing, Op.1 .................................................................................................................. 5 3.3. 30 MHz – 1 GHz, laying, Op.1 ..................................................................................................................... 6 3.4. 30 MHz – 1 GHz, standing, Op.1 ................................................................................................................. 6 3.5. 960 MHz – 2.8 GHz, Op.1, ANT HOR + VER, peak detector, SWT: auto.................................................. 7 3.6. 960 MHz – 2.8 GHz, Op.1, ANT HOR, peak and RMS detector, SWT > 80s @ 1 GHz ............................. 7 3.7. 960 MHz – 2.8 GHz, Op.1, ANT VER, peak and RMS detector, SWT > 80s @ 1 GHz ............................. 8 3.8. 2.8 GHz – 12.4 GHz, Op.1, ANT HOR + VER, peak detector, SWT: auto ................................................. 8 3.9. 2.8 GHz – 12.4 GHz, Op.1, ANT HOR, peak and RMS detector, SWT > 80s @ 1 GHz ............................ 9 3.10. 2.8 GHz – 12.4 GHz, Op.1, ANT VER, peak and RMS detector, SWT > 80s @ 1 GHz ........................... 9 3.11. 12.4 GHz – 18 GHz, Op.1, ANT HOR + VER, peak detector, SWT: auto .............................................. 10 3.12. 12.4 GHz – 18 GHz, Op.1, ANT HOR+VER, peak and RMS detector, SWT > 80s @ 1 GHz ............... 10 3.13. 18 GHz – 40 GHz, Op.1, ANT HOR + VER, peak detector, SWT: auto ................................................. 11 3.14. 18 GHz – 40 GHz, Op.1, ANT HOR+VER, peak and RMS detector, SWT > 80s @ 1 GHz .................. 11 3.15. Band edge investigation from the diagram 3.14, ANT VER, Op.1, peak and RMS detector, SWT > 80s @ 1 GHz ............................................................................................................................................................ 12 3.16. Band edge investigation from the diagram 3.14, ANT HOR, Op.1, peak and RMS detector, SWT > 80s @ 1 GHz ............................................................................................................................................................ 12 3.17. 40 GHz – 55 GHz, Op. 1, ANT HOR + VER, peak detector, SWT: auto ................................................ 13 3.18. 40 GHz – 55 GHz, Op.1, ANT HOR+VER, peak and RMS detector, SWT > 80s @ 1 GHz .................. 13 3.19. 55 GHz – 75 GHz, ANT HOR + VER, SigID USB + LSB, Op. 1, peak detector, SWT: auto................. 14 3.20. 55 GHz – 75 GHz, ANT HOR + VER, SigID LSB, Op. 1, peak detector, SWT: auto ............................ 14 3.21. 55 GHz – 75 GHz, ANT HOR + VER, SigID USB, Op. 1, peak detector, SWT: auto ............................ 15 3.22. 55 GHz – 75 GHz, ANT HOR + VER, SigID USB + LSB, Op. 1, RMS detector, SWT > 80s @ 1 GHz 15 3.23. 55 GHz – 75 GHz, ANT HOR + VER, SigID LSB, Op. 1, RMS detector, SWT > 80s @ 1 GHz ........... 16 3.24. 55 GHz – 75 GHz, ANT HOR + VER, SigID USB, Op. 1, RMS detector, SWT > 80s @ 1 GHz .......... 16 3.25. 55 GHz – 75 GHz, ANT HOR + VER, SigID USB + LSB, Op. 1, peak detector, SWT > 80s @ 1 GHz 17 3.26. 55 GHz – 75 GHz, ANT HOR + VER, SigID LSB, Op. 1, peak detector, SWT > 80s @ 1 GHz ............ 17 3.27. 55 GHz – 75 GHz, ANT HOR + VER, SigID USB, Op. 1, peak detector, SWT > 80s @ 1 GHz ........... 18 3.28. 75 GHz – 90 GHz, ANT HOR + VER, SigID USB + LSB, Op. 1, peak detector, SWT: auto................. 18 3.29. 75 GHz – 90 GHz, ANT HOR + VER, SigID USB+LSB, Op. 1, RMS detector, SWT > 80s @ 1 GHz . 19 3.30. 75 GHz – 90 GHz, ANT HOR + VER, SigID USB+LSB, Op. 1, peak detector, SWT > 80s @ 1 GHz .. 19 3.31. 90 GHz – 96 GHz, ANT HOR + VER, SigID USB + LSB, Op. 1, peak detector, SWT: auto................. 20 3.32. 90 GHz – 96 GHz, ANT HOR + VER, SigID LSB, Op. 1, peak detector, SWT: auto ............................ 20 3.33. 90 GHz…

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Test Report

Page 1 of 28 The test results relate only to the individual items which have been tested. This report shall not be reproduced in parts without the written approval of the testing laboratory © Copyright: All rights reserved by CETECOM T E S T R E P O R T No.: 19-1-0207401T03a-C1 24 GHz SRS Radar Sensor NB24G175V3 FCC ID: WU8NB24G175V3 ISED Certification Number: 8436B-NB24G175V3 According to: 47 CFR Part 15.249 RSS-210 Issue 10 for Veoneer US, Inc. Laboratory Accreditation accredited according to DIN EN ISO/IEC 17025:2018 CETECOM GmbH Laboratory Radio Communications & Electromagnetic Compatibility Im Teelbruch 116 • 45219 Essen • Germany Registered in Essen, Germany, Reg. No.: HRB Essen 8984 Tel.: + 49 (0) 20 54 / 95 19-0 • Fax: + 49 (0) 20 54 / 95 19-150 E-mail: [email protected] • Internet: www.cetecom.com Test Report 19-1-0207401T03a-C1, Page 2 of 28 CETECOM_TR19_1_0207401T03a-C1 Table of contents 1. SUMMARY OF TEST RESULTS................................................................................................................... 3 1.1. Tests measurement overview according of US CFR Title 47, Subpart 15.249 ............................................. 3 and RSS-210 Issue 10 .......................................................................................................................................... 3 1.2. Attestation:.................................................................................................................................................... 4 2. ADMINISTRATIVE DATA ............................................................................................................................ 5 2.1. Identification of the testing laboratory .......................................................................................................... 5 2.2. Test location ................................................................................................................................................. 5 2.3. Organizational items ..................................................................................................................................... 5 2.4. Applicant’s details ........................................................................................................................................ 5 2.5. Manufacturer’s details .................................................................................................................................. 5 3. EQUIPMENT UNDER TEST (EUT) .............................................................................................................. 6 3.1. TECHNICAL DATA OF MAIN EUT DECLARED BY APPLICANT* .................................................... 6 3.2. EUT: Type, S/N etc. and short descriptions used in this test report* ........................................................... 6 3.3. Auxiliary Equipment (AE): Type, S/N etc. and short descriptions ............................................................... 6 3.4. EUT set-ups .................................................................................................................................................. 6 3.5. EUT operating modes ................................................................................................................................... 6 4. DESCRIPTION OF TEST SYSTEM SET-UP’S ........................................................................................... 8 4.1. Test system set-up for radiated magnetic field measurements below 30 MHz ............................................. 8 4.2. Test system set-up for radiated electric field measurement 30 MHz to 960MHz ......................................... 9 4.3. Test system set-up for radiated electric field measurement above 960MHz .............................................. 10 5. MEASUREMENTS ........................................................................................................................................ 11 5.1. Field strength of emissions (wanted signal) ................................................................................................ 11 5.2. Occupied bandwidth ................................................................................................................................... 12 5.3. Radiated field strength emissions, below 30 MHz ..................................................................................... 13 5.4. Radiated field strength emissions, 30 MHz – 960 MHz ............................................................................. 15 5.5. Radiated field strength emissions, 960 MHz – 40 GHz .............................................................................. 17 5.6. Radiated field strength emissions, above 40 GHz ...................................................................................... 19 5.7. Antenna requirements ................................................................................................................................. 21 5.8. Measurement uncertainties ......................................................................................................................... 22 6. ABBREVIATIONS USED IN THIS REPORT ............................................................................................ 23 7. ACCREDITATION DETAILS OF CETECOM’S LABORATORIES AND TEST SITES .................... 23 8. INSTRUMENTS AND ANCILLARY ........................................................................................................... 24 8.1. Used equipment ......................................................................................................................................... 24 9. VERSIONS OF TEST REPORTS (CHANGE HISTORY) ........................................................................ 28 Table of annex Separate document annex 1: Measurement diagrams Separate document annex 2: External photographs of EUT Separate document annex 3: Test set-up photographs The listed at…

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Test Setup Photos

Page 1 of 8 The test results relate only to the individual items which have been tested. This report shall not be reproduced in parts without the written approval of the testing laboratory © Copyright: All rights reserved by CETECOM Annex 3: Test setup photographs to T E S T R E P O R T No.: 19-1-0207401T03a-C1 24 GHz SRS Radar Sensor NB24G175V3 FCC ID: WU8NB24G175V3 ISED Certification Number: 8436B-NB24G175V3 According to: 47 CFR Part 15.249 RSS-210 Issue 10 for Veoneer US, Inc. Laboratory Accreditation accredited according to DIN EN ISO/IEC 17025:2018 CETECOM GmbH Laboratory Radio Communications & Electromagnetic Compatibility Im Teelbruch 116 • 45219 Essen • Germany Registered in Essen, Germany, Reg. No.: HRB Essen 8984 Tel.: + 49 (0) 20 54 / 95 19-0 • Fax: + 49 (0) 20 54 / 95 19-150 E-mail: [email protected] • Internet: www.cetecom.com Annex 3 to Test Report 19-1-0207401T03a-C1, Page 2 of 8 CETECOM_TR19_1_0207401T03a-C1_A3 Table of contents 1. FIELD STRENGTH OF EMISSIONS (WANTED SIGNAL) ...................................................................... 3 2. OCCUPIED BANDWIDTH ............................................................................................................................. 4 3. FIELD STRENGTH OF EMISSIONS (RADIATED SPURIOUS) - 9 KHZ TO 30 MHZ ......................... 5 4. FIELD STRENGTH OF EMISSIONS (RADIATED SPURIOUS) - 30 MHZ TO 960 MHZ .................... 6 5. FIELD STRENGTH OF EMISSIONS (RADIATED SPURIOUS) – 960 MHZ TO 12.4 GHZ ................. 6 6. FIELD STRENGTH OF EMISSIONS (RADIATED SPURIOUS) – 12.4 GHZ TO 18 GHZ .................... 7 7. RADIATED FIELD STRENGTH EMISSIONS (RADIATED SPURIOUS) - 18 GHZ TO 40 GHZ ........ 7 8. RADIATED FIELD STRENGTH EMISSIONS (RADIATED SPURIOUS) - 40 GHZ TO 55 GHZ ........ 8 9. RADIATED FIELD STRENGTH EMISSIONS (RADIATED SPURIOUS) - 55 GHZ TO 110 GHZ ...... 8 Annex 3 to Test Report 19-1-0207401T03a-C1, Page 3 of 8 CETECOM_TR19_1_0207401T03a-C1_A3 1. Field strength of emissions (wanted signal) Photograph 1: Overall view. Photograph 2: Close view. Annex 3 to Test Report 19-1-0207401T03a-C1, Page 4 of 8 CETECOM_TR19_1_0207401T03a-C1_A3 2. Occupied bandwidth Please see photographs 1 and 2. Annex 3 to Test Report 19-1-0207401T03a-C1, Page 5 of 8 CETECOM_TR19_1_0207401T03a-C1_A3 3. Field strength of emissions (radiated spurious) - 9 kHz to 30 MHz Photograph 3: Overall View Photograph 4: Close View Annex 3 to Test Report 19-1-0207401T03a-C1, Page 6 of 8 CETECOM_TR19_1_0207401T03a-C1_A3 4. Field strength of emissions (radiated spurious) - 30 MHz to 960 MHz Photograph 5: Overall View 5. Field strength of emissions (radiated spurious) – 960 MHz to 12.4 GHz Photograph 6: Overall View Annex 3 to Test Report 19-1-0207401T03a-C1, Page 7 of 8 CETECOM_TR19_1_0207401T03a-C1_A3 6. Field strength of emissions (radiated spurious) – 12.4 GHz to 18 GHz Photograph 7: Overall View 7. Radiated field strength emissions (radiated spurious) - 18 GHz to 40 GHz Please see photographs 1 and 2. Annex 3 to Test Report 19-1-0207401T03a-C1, Page 8 of 8 CETECOM_TR19_1_0207401T03a-C1_A3 8. Radiated field strength emissions (radiated spurious) - 40 GHz to 55 GHz Photograph 8: Overall View 9. Radiated field strength emissions (radiated spurious) - 55 GHz to 110 GHz End Of Annex 3

Contact Information

Applicant

Kim Mooney(Director, Radar Platforms)
[email protected]+1-978-674-6558Fax: +1-248-223-8833

Test Firm

cetecom advanced GmbHGerald Schmidt
[email protected]+49 681 598 0Fax: +49 681 598 8775

Technical Specifications

#Rule PartsFrequency RangePower Output
115C24.06 GHz - 24.23 GHz-
Confidentiality
Long Term

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