FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. Magna Electronics, LLC/
  3. WU877V13CRN

WU877V13CRNCRN Radar Sensor

Magna Electronics, LLC
CRN Radar Sensor - FCC ID WU877V13CRN - Magna Electronics, LLC
Click to zoom

Application Details

Equipment Class
VRD - Part 95 Vehicular Radar Systems
Date of Grant
Aug 24, 2020
Application Purpose
Original Equipment
Date of Application
Aug 23, 2020
Equipment Note
CRN Radar Sensor
Frequency Range
76000.00000000 - 77000.00000000
Company
Magna Electronics, LLC
Country
United States

Documents & Files

Select a file to view

Cover Letter(s)

↗
↗

External Photos

↗

ID Label/Location Info

↗

RF Exposure Info

↗

Test Report

↗
↗

Test Setup Photos

↗
↗

Document Text

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

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 Long/Short-term Confidentiality Request PHOENIX TESTLAB GmbH Date: 13 August 2020 Product Certification Königswinkel 10 D 32825 Blomberg FCC ID: WU877V13CRN To Whom It May Concerns, Pursuant to sections 0.457(d) and 0.459 of CFR 47 and to avoid premature release of sensitive information prior to marketing or release of the product to the public, we hereby request long-term confidential treatment of information accompanying this application as outlined below: ☒ Schematics ☒ Parts List ☒ Block Diagram ☒ Tune-Up Info ☒ Operational Description In addition we hereby request the following exhibits contained in this application to be temporarily (short-term confidentiality) withheld from the public disclosure ☐ for an initial period of days ☐ until: ☒ not applicable ☒ External Photos ☒ Test Setup Photos ☒ Internal Photos ☒ Users Manual The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these matters might be harmful to the applicant and provide unjustified benefits to its competitors. The applicant understands that pursuant to rule 0.457(d), disclosure of this application and all accompanying documentation will not be made before the date of the GRANT for this application. If you have any questions, please feel free to contact me. Yours sincerely, Signatory Jeff Coote Director, Engineering – North America

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 Nonroutine Long-term Confidentiality Request Date: 31.07.2020 PHOENIX TESTLAB GmbH Product Certification Königswinkel 10 D 32825 Blomberg FCC ID: WU877V13CRN To whom it may concern: Pursuant to Sections 0.457(d) and 0.459 of the Commission’s Rule and KDB726920, we hereby request nonroutine long-term confidential treatment of information accompanying this application as outlined below: ☒ Internal Photos of a consumer device where the circuit board is enclosed in epoxy or in a material that would destroy the circuit board if removed, or the device is sealed and disassembly would destroy the product. ☒ Internal Photos of a non-consumer device where the device is not accessible to the general public (for example a device mounted on the top of a large tower or in a fenced enclosure that is only serviceable by the licensee or designated technicians). ☒ Installation Manual is very technical and is not provided to the consumer because the consumer cannot service the device. ☒ Integration Manual is not made available to the public as this module is solely integrated by our company in our own final products and will not be sold to any other integrators. The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these matters might be harmful to the applicant and provide unjustified benefits to its competitors. If you have any questions, please feel free to contact me. Yours Sincerely, Signatory Jeff Coote Director, Engineering – North America

External Photos

Annex C External photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 20.07.2020Order Number: 20-111003page 1 of 16 Variant 1, 3D view 1 Annex C External photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 20.07.2020Order Number: 20-111003page 2 of 16 Variant 1, 3D view 2 Annex C External photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 20.07.2020Order Number: 20-111003page 3 of 16 Variant 1, type plate view Annex C External photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 20.07.2020Order Number: 20-111003page 4 of 16 Variant 1, connector view Annex C External photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 20.07.2020Order Number: 20-111003page 5 of 16 Variant 2, 3D view 1 Annex C External photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 20.07.2020Order Number: 20-111003page 6 of 16 Variant 2, 3D view 2 Annex C External photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 20.07.2020Order Number: 20-111003page 7 of 16 Variant 2, type plate view Annex C External photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 20.07.2020Order Number: 20-111003page 8 of 16 Variant 2, connector view Annex C External photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 20.07.2020Order Number: 20-111003page 9 of 16 Variant 3, 3D view 1 Annex C External photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 20.07.2020Order Number: 20-111003page 10 of 16 Variant 3, 3D view 2 Annex C External photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 20.07.2020Order Number: 20-111003page 11 of 16 Variant 3, type plate view Annex C External photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 20.07.2020Order Number: 20-111003page 12 of 16 Variant 3, connector view Annex C External photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 20.07.2020Order Number: 20-111003page 13 of 16 Variant 4, 3D view 1 Annex C External photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 20.07.2020Order Number: 20-111003page 14 of 16 Variant 4, 3D view 2 Annex C External photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 20.07.2020Order Number: 20-111003page 15 of 16 Variant 4, type plate view Annex C External photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 20.07.2020Order Number: 20-111003page 16 of 16 Variant 4, connector view

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 Product Name: 77V13CRN

RF Exposure Info

Calculation: RF-Exposure Type identification:77V13CRN In accordance to theCFR Part 47, §1.1310 S: Limit for power density according to - CFR Part 47, §1.1310:10 W/m 2 P:0.112 W (20.5 dBm, rms value, refer clause 5.4 of test report F201003E1) G: 0 dBi = 1 (Power is measured as radiated power) D: Duty cycle: 100 % = 1 R: Distance in what the limit of S has to be reached: 0.2 m (refer also to the manufacturers installation / user manual) 222 22.0 )2.0(4 11112.0 4m W m W S R DGP S= ×× ×× =Þ ×× ×× = pp The value of the power density is below the limit of CFR Part 47, §1.1310 for the “General population / Uncontrolled Exposure” Base of the above calculations is the highest peak power measured under extreme operating conditions of the EUT.

Test Report

Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 1 of 31 1 Maximum effective radiated isotropically peak power and occupied bandwidth 1.1 Supply voltage 12 V DC , temperature 20 °C 201003_6.png: Maximum effective radiated isotropically peak power and occupied bandwidth (variant 1): 201003_6b.png: Maximum effective radiated isotropically peak power and occupied bandwidth (variant 2): Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 2 of 31 201003_6c.png: Maximum effective radiated isotropically peak power and occupied bandwidth (variant 3): 201003_6d.png: Maximum effective radiated isotropically peak power and occupied bandwidth (variant 4): Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 3 of 31 1.2 Supply voltage 8 V DC , temperature 20 °C 201003_44.png: Maximum effective radiated isotropically peak power and occupied bandwidth (variant 1): 201003_44b.png: Maximum effective radiated isotropically peak power and occupied bandwidth (variant 2): Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 4 of 31 201003_44c.png: Maximum effective radiated isotropically peak power and occupied bandwidth (variant 3): 201003_44d.png: Maximum effective radiated isotropically peak power and occupied bandwidth (variant 4): Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 5 of 31 1.3 Supply voltage 16 V DC , temperature 20 °C 201003_46.png Maximum effective radiated isotropically peak power and occupied bandwidth (variant 1): 201003_46b.png: Maximum effective radiated isotropically peak power and occupied bandwidth (variant 2): Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 6 of 31 201003_46c.png Maximum effective radiated isotropically peak power and occupied bandwidth (variant 3): 201003_46d.png: Maximum effective radiated isotropically peak power and occupied bandwidth (variant 4): Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 7 of 31 1.4 Supply voltage 12 V DC , temperature 85 °C 201003_48.png: Maximum effective radiated isotropically peak power and occupied bandwidth (variant 1): 1.5 Supply voltage 12 V DC , temperature -40 °C 201003_58.png: Maximum effective radiated isotropically peak power and occupied bandwidth (variant 1): Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 8 of 31 2 Maximum average effective radiated isotropically power: 2.1 Supply voltage 12 V DC , temperature 20 °C 201003_5.png: Maximum average effective radiated isotropically power (variant 1): 201003_5b.png: Maximum average effective radiated isotropically power (variant 2): Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 9 of 31 201003_5c.png: Maximum average effective radiated isotropically power (variant 3): 201003_5d.png: Maximum average effective radiated isotropically power (variant 4): Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 10 of 31 2.2 Supply voltage 8 V DC , temperature 20 °C 201003_43.png: Maximum average effective radiated isotropically power (variant 1): 201003_43b.png: Maximum average effective radiated isotropically power (variant 2): Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 11 of 31 201003_43c.png: Maximum average effective radiated isotropically power (variant 3): 201003_43d.png: Maximum average effective radiated isotropically power (variant 4): Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 12 of 31 2.3 Supply voltage 16 V DC , temperature 20 °C 201003_45.png: Maximum average effective radiated isotropically power (variant 1): 201003_45b.png: Maximum average effective radiated isotropically power (variant 2): Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 13 of 31 201003_45c.png: Maximum average effective radiated isotropically power (variant 3): 201003_45d.png: Maximum average effective radiated isotropically power (variant 4): Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 14 of 31 2.4 Supply voltage 12 V DC , temperature 85 °C 201003_49.png: Maximum average effective radiated isotropically power (variant 1): 2.5 Supply voltage 12 V DC , temperature -40 °C 201003_59.png: Maximum average effective radiated isotropically power (variant 1): Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 15 of 31 3 Radiated spurious emissions: 201003_20M-30M: Radiated spurious emissions from 20 MHz to 30 MHz (variant 1): 201003_20M-30M_V4: Radiated spurious emissions from 20 MHz to 30 MHz (variant 4): 0 20 40 60 80 100 20 21 22 23 24 25 26 27 28 29 30 Level in dBμV/m Frequency in MHz 0 20 40 60 80 100 20 21 22 23 24 25 26 27 28 29 30 Level in dBμV/m Frequency in MHz Annex A Measurement results Test engineer: Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 16 of 31 201003_30M-1G: Radiated spurious emissions from 30 MHz to 1 GHz (variant 1): 201003_30M-1G_V4: Radiated spurious emissions from 30 MHz to 1 GHz (variant 4): 0 20 40 60 80 30M5060 80100M2003004…

Text truncated - open the document above for the full version.

Test Report

Königswinkel 10 32825 Blomberg, Germany Phone: +49 (0) 52 35 / 95 00-0 Fax:+49 (0) 52 35 / 95 00-10 [email protected] www.phoenix-testlab.de Test Report Report Number: F201003E1 Equipment under Test (EUT): 77V13CRN Applicant: Veoneer US, Inc. Manufacturer: Veoneer US, Inc. Test engineer: Thomas KÜHNReport Number:F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 2 of 34 References [1] ANSI C63.10-2013, American National Standard of Procedures for Compliance Testing of Unlicensed Wireless Devices [2] ANSI C63.26-2015, American National Standard for Compliance Testing of Transmitters Used in Licesed Radio Services [3] FCC CFR 47 Part 95 M,The 76-81 GHz Band Radar Service [4] RSS-251 Issue 2 July 2018,Vehicular Radar and Airport Fixed or Mobile Radar in the 76-81 GHz Frequency Band [5] RSS-Gen Issue 5 March 2019 Amendment 1,General Requirements for Compliance of Radio Apparatus [6] FCC CFR 47 Part 2,Frequency allocations and radio treaty matters; general rules and regulations TEST RESULT The requirements of the tests performed as shown in the overview (clause 4) were fulfilled by the equipment under test. The complete test results are presented in the following. This test report is only valid in its original form. Any reproduction of its contents in extracts without written permission of the accredited test laboratory PHOENIX TESTLAB GmbH is prohibited. The test results herein refer only to the tested sample. PHOENIX TESTLAB GmbH is not responsible for any generalisations or conclusions drawn from these test results concerning further samples. Any modification of the tested samples is prohibited and leads to the invalidity of this test report. Each page necessarily contains the PHOENIX TESTLAB Logo and the TEST REPORT NUMBER. Tested and written by: Thomas KÜHN29.07.2020 NameSignatureDate Reviewed and approved by: Bernd STEINER29.07.2020 Name Signature Date Test engineer: Thomas KÜHNReport Number:F201003E1 Date of issue: 29.07.2020Order Number:20-111003page 3 of 34 Contents:Page 1Identification .................................................................................................................................................. 4 1.1Applicant ................................................................................................................................................ 4 1.2Manufacturer ......................................................................................................................................... 4 1.3Test laboratory ...................................................................................................................................... 4 1.4EUT (Equipment Under Test)................................................................................................................ 5 1.5Technical data of equipment ................................................................................................................. 5 1.6Dates ..................................................................................................................................................... 6 2Operational states ......................................................................................................................................... 6 3Additional information .................................................................................................................................... 6 4Overview ........................................................................................................................................................ 7 5Test results .................................................................................................................................................... 8 5.1Minimum sweep time for RMS measurements ..................................................................................... 8 5.1.1Method of measurement (minimum sweep time for RMS measurements) ................................... 8 5.1.2Test results (minimum sweep time for RMS measurements) ........................................................ 9 5.2Peak correction factor for FMCW radar .............................................................................................. 10 5.2.1Method of measurement (peak correction factor for FMCW radar) ............................................. 10 5.2.2Test results (peak correction factor for FMCW radar) ................................................................. 11 5.399 % bandwidth ................................................................................................................................... 13 5.3.1Method of measurement (99 % bandwidth) ................................................................................. 13 5.3.2Test results (99 % bandwidth) ..................................................................................................... 14 5.4Power measurements ......................................................................................................................... 15 5.4.1Method of measurement (power measurements) ........................................................................ 15 5.4.2Test results (power measurements) ............................................................................................ 16 5.5Occupied bandwidth ............................................................................................................................ 17 5.5.1Method of measurement (occupied bandwidth) ........................................................................... 17 5.5.2Test results (occupied bandwidth) ............................................................................................... 18 5.6Radiated emissions ............................................................................................................................. 19 5.6.1Method of measurement (radiated emissions) ....................................................…

Text truncated - open the document above for the full version.

Test Setup Photos

Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 1 of 13 Test setup semi anechoic chamber (variant 1) Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 2 of 13 Test setup semi anechoic chamber (variant 1) Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 3 of 13 Test setup semi anechoic chamber (variant 1) Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 4 of 13 Test setup semi anechoic chamber (variant 4) Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 5 of 13 Test setup semi anechoic chamber (variant 4) Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 6 of 13 Test setup semi anechoic chamber (variant 4) Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 7 of 13 Test setup fully anechoic chamber Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 8 of 13 Test setup fully anechoic chamber Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 9 of 13 Test setup fully anechoic chamber Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 10 of 13 Test setup fully anechoic chamber Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 11 of 13 Test setup above 40 GHz Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 12 of 13 Test setup temperature chamber (with isolation) Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 13 of 13 Test setup temperature chamber (isolation removed)

Test Setup Photos

Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 1 of 13 Test setup semi anechoic chamber (variant 1) Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 2 of 13 Test setup semi anechoic chamber (variant 1) Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 3 of 13 Test setup semi anechoic chamber (variant 1) Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 4 of 13 Test setup semi anechoic chamber (variant 4) Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 5 of 13 Test setup semi anechoic chamber (variant 4) Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 6 of 13 Test setup semi anechoic chamber (variant 4) Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 7 of 13 Test setup fully anechoic chamber Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 8 of 13 Test setup fully anechoic chamber Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 9 of 13 Test setup fully anechoic chamber Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 10 of 13 Test setup fully anechoic chamber Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 11 of 13 Test setup above 40 GHz Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 12 of 13 Test setup temperature chamber (with isolation) Annex B Test setup photographs Examiner:Thomas KÜHNReport Number: F201003E1 Date of issue: 29.07.2020Order Number: 20-111003page 13 of 13 Test setup temperature chamber (isolation removed)

Contact Information

Applicant

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

Test Firm

PHOENIX TESTLAB GmbHHolger Bentje
[email protected]49-5235-9500-24Fax: 49-5235-9500-28

Technical Specifications

#Rule PartsFrequency RangePower OutputEmission
195M76.00 GHz - 77.00 GHz112.00 mWF0N
Confidentiality
Long Term
Grant Notes
Output power listed is average EIRP. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons. Users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance.

Other Applications from Magna Electronics, LLC

24 GHz NB automotive radar - FCC ID WU8NB24G20V0 - Magna Electronics, LLC
WU8NB24G20V0

24 GHz NB automotive radar

May 18, 2021

Equipment Class

DXX - Part 15 Low Power Communication Device Transmitter
77 GHz CRN Radar Sensor - FCC ID WU877V125CRN - Magna Electronics, LLC
WU877V125CRN

77 GHz CRN Radar Sensor

Apr 28, 2021

Equipment Class

VRD - Part 95 Vehicular Radar Systems
24 GHz SRS Radar Sensor - FCC ID WU8NB24G175V3 - Magna Electronics, LLC
WU8NB24G175V3

24 GHz SRS Radar Sensor

May 28, 2020

Equipment Class

DXX - Part 15 Low Power Communication Device Transmitter
Vehicle Radar - FCC ID WU877MMRV1 - Magna Electronics, LLC
WU877MMRV1

Vehicle Radar

May 25, 2015

Equipment Class

FDS - Part 15 Field Disturbance Sensor
Vehicle Radar - FCC ID WU877MMR - Magna Electronics, LLC
WU877MMR

Vehicle Radar

Nov 20, 2014

Equipment Class

FDS - Part 15 Field Disturbance Sensor