IP Library › Granted Patent US 12,117,555
Granted Patent B2
US 12,117,555 · App. 17/643,609 · Granted Oct 15, 2024

Vehicular exterior door handle assembly with radar module and enhanced thermal management

Inventors: Traian Miu (Oakville, CA); Gabriele W. Sabatini (Keswick, CA); Kurt M. Schatz (Uxbridge, CA); Eric Peterson (West Olive, MI); Gregory A. Huizen (Hudsonville, MI); James J. Ferri (Maple, CA)
Assignee: Magna Mirrors of America, Inc.
G01S7/027E05B85/10G01S13/931G01S2013/9315G01S2013/93274
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Quick Facts
Patent No.
US 12,117,555
App. No.
17/643,609
Granted
Oct 15, 2024
Kind
B2
Abstract

A radar sensor assembly includes a sensor printed circuit board (PCB) having a first side and a second side opposite the first side. A radar transceiver is disposed at the first side of the sensor PCB and includes a plurality of antennas configured for transmitting and receiving radio frequency (RF) radiation. A heat sink is disposed adjacent to the radar transceiver and is configured to dissipate heat from the radar transceiver. The radar transceiver is sandwiched between the heat sink and the sensor PCB. The heat sink is configured to allow the RF radiation to pass therethrough without guiding the RF radiation.

Claims (24)

1. A vehicular radar sensor assembly comprising:

a sensor printed circuit board (PCB) having a first side and a second side opposite the first side and separated from the first side by a thickness of the sensor PCB;

a radar transceiver disposed at the first side of the sensor PCB and comprising a plurality of antennas configured for transmitting and receiving radio frequency (RF) radiation;

a heat sink in thermal conductivity with the radar transceiver and configured to dissipate heat from the radar transceiver, wherein the radar transceiver is disposed between the heat sink and the sensor PCB;

wherein, when the vehicular radar sensor assembly is operated, RF radiation transmitted by the radar transceiver passes through the heat sink; and

wherein the heat sink is configured to allow the transmitted RF radiation to pass through the heat sink without functioning as a waveguide for the RF radiation.

2. The vehicular radar sensor assembly of claim 1 , wherein the heat sink comprises a plurality of apertures, and wherein antennas of the plurality of antennas are juxtaposed with respective apertures of the plurality of apertures.

3. The vehicular radar sensor assembly of claim 2 , wherein antennas of the plurality of antennas comprise a shape, and wherein respective apertures of the plurality of apertures comprise corresponding shapes.

4. The vehicular radar sensor assembly of claim 2 , wherein the heat sink comprises a ramp comprising a slope toward at least one aperture of the plurality of apertures.

5. The vehicular radar sensor assembly of claim 1 , comprising a second heat sink disposed at the second side of the sensor PCB and configured to dissipate heat from the radar transceiver.

6. The vehicular radar sensor assembly of claim 5 , comprising a post extending through an aperture in the sensor PCB and providing thermal conductivity between the radar transceiver and the second heat sink.

7. The vehicular radar sensor assembly of claim 5 , wherein the sensor PCB and the radar transceiver are disposed between the heat sink and the second heat sink.

8. The vehicular radar sensor assembly of claim 1 , wherein the vehicular radar sensor assembly is disposed at a handle portion of a vehicular door handle assembly.

9. The vehicular radar sensor assembly of claim 1 , wherein, with the vehicular radar sensor assembly mounted at a vehicle, the vehicular radar sensor assembly, when operated, senses at least one object exterior the vehicle.

10. A method of dissipating heat from a radar transceiver of a vehicular radar sensor assembly, the method comprising:

providing a vehicular radar sensor assembly at a vehicle, the vehicular radar sensor assembly comprising a sensor printed circuit board (PCB) having a first side and a second side opposite the first side and separated from the first side by a thickness of the sensor PCB;

disposing a radar transceiver of the vehicular radar sensor assembly at the first side of the sensor PCB, the radar transceiver comprising a plurality of antennas for transmitting and receiving radio frequency (RF) radiation;

providing a heat sink in thermal conductivity with the radar transceiver, wherein the radar transceiver is disposed between the heat sink and the sensor PCB;

operating the vehicular radar sensor assembly to transmit and/or receive RF radiation at the plurality of antennas of the radar transceiver;

wherein, while the vehicular radar sensor assembly is operated, RF radiation transmitted by the radar transceiver passes through the heat sink, and wherein the heat sink is configured to allow the transmitted RF radiation to pass through the heat sink without functioning as a waveguide for the RF radiation;

while the vehicular radar sensor assembly is operated, conducting heat from the radar transceiver to the heat sink; and

dissipating the heat, by the heat sink, away from the radar transceiver.

11. The method of claim 10 , wherein the heat sink comprises a plurality of apertures, and wherein antennas of the plurality of antennas are juxtaposed with respective apertures of the plurality of apertures, and wherein the transmitted RF radiation passes through the heat sink at the plurality of apertures.

12. The method of claim 10 , wherein the vehicular radar sensor assembly is disposed at a handle portion of a vehicular door handle assembly that is configured for mounting at the vehicle.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2024
From: MIU, TRAIAN; SABATINI, GABRIELE WAYNE; SCHATZ, KURT MATTHEW
To: MAGNA CLOSURES INC.
Reel/Frame 068160/0373 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2024
From: MAGNA CLOSURES INC.
To: MAGNA MIRRORS OF AMERICA, INC.
Reel/Frame 068160/0380 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2024
From: PETERSON, ERIC; HUIZEN, GREGORY A.; FERRI, JAMES J.
To: MAGNA MIRRORS OF AMERICA, INC.
Reel/Frame 068160/0385 →
Continuity (3)
Provisional Application 63202091 · May 27, 2021
Provisional Application 63124393 · Dec 11, 2020
Related Publication 20220187416A1 · Jun 16, 2022