IP Library Granted Patent US 11,264,712
Granted Patent B2
US 11,264,712 · App. 16/448,302 · Granted Mar 1, 2022

Radar sensor with radome having trenches for reducing coupling between transmit and receive antennas

Inventor: Majid Ahmadloo (Lowell, MA)
Assignee: VEONEER US, INC.
H01Q1/525H01Q1/3233H01Q1/38H01Q1/42H01Q21/065
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Quick Facts
Patent No.
US 11,264,712
App. No.
16/448,302
Granted
Mar 1, 2022
Kind
B2
Abstract

A radar sensor module includes a substrate, at least one transmit antenna formed on a surface of the substrate, and at least one receive antenna formed on the surface of the substrate. A radome is disposed over the surface of the substrate and the at least one transmit antenna and the at least one receive antenna, such that a gap is located between the surface of the substrate and an underside of the radome in which a portion of radiation emitted from the at least one transmit antenna can propagate. At least one trench is formed in the underside of the radome and is electromagnetically coupled to the gap, the at least one trench being sized, shaped and positioned with respect to the gap such that the portion of radiation emitted from the at least one transmit antenna is substantially prevented from propagating toward the receiving antenna.

Claims (24)

1. A radar sensor module, comprising:

a substrate;

at least one transmit patch antenna array formed on a surface of the substrate, the transmit patch antenna array comprising a plurality of transmit antenna patches disposed along a transmit array axis;

at least one receive patch antenna array formed on the surface of the substrate, the receive patch antenna array comprising a plurality of receive antenna patches disposed along a receive array axis;

a radome over the surface of the substrate and the at least one transmit patch antenna array and the at least one receive patch antenna array, such that a gap is disposed between the surface of the substrate and an underside of the radome in which a portion of radiation emitted from the at least one transmit patch antenna array can propagate; and

a trench formed in the underside of the radome to penetrate the underside of the radome and extend into the radome and being electromagnetically coupled to the gap, the trench extending along a trench axis between the transmit array axis and the receive array axis and extending uninterrupted between the plurality of transmit antenna patches and the plurality of receive antenna patches, the trench being sized, shaped and positioned with respect to the gap such that the portion of radiation emitted from the at least one transmit patch antenna array is substantially prevented from propagating toward the at least one receive patch antenna array.

2. The radar sensor module of claim 1 , wherein the substrate is a printed circuit board (PCB).

3. The radar sensor module of claim 1 , wherein the trench is sized, shaped and positioned to act as a waveguide stub electromagnetically coupled to the gap, such that the trench is configured as an electromagnetic stop.

4. The radar sensor module of claim 1 , wherein the trench is sized, shaped and positioned to act as a waveguide stub electromagnetically coupled to the gap, such that the trench is configured as an electromagnetic stop at an operating frequency of the radar sensor module.

5. The radar sensor module of claim 4 , wherein the operating frequency of the radar sensor module is in the range of 76 GHz to 77 GHz.

6. The radar sensor module of claim 5 , wherein the trench has a width of approximately 1 mm and a depth of approximately 1.8 mm.

7. The radar sensor module of claim 5 , wherein the gap has a height of approximately 1 mm.

8. The radar sensor module of claim 5 , wherein the radome has a thickness of approximately 2.5 mm.

9. The radar sensor module of claim 4 , wherein the operating frequency of the radar sensor module is in the range of 76 GHz to 78 GHz.

10. The radar sensor module of claim 9 , wherein the trench has a width of approximately 1 mm and a depth of approximately 1.8 mm.

11. The radar sensor module of claim 9 , wherein the gap has a height of approximately 1 mm.

12. The radar sensor module of claim 9 , wherein the radome has a thickness of approximately 2.5 mm.

13. The radar sensor module of claim 1 , wherein the trench is positioned vertically over the surface of the substrate and laterally between the at least one transmit patch antenna array and the at least one receive patch antenna array.

14. The radar sensor module of claim 1 , further comprising a second transmit patch antenna array formed on the surface of the substrate immediately adjacent to the at least one transmit patch antenna array.

15. The radar sensor module of claim 14 , further comprising a second receive patch antenna array formed on the surface of the substrate adjacent to the at least one receive patch antenna array.

16. The radar sensor module of claim 15 , wherein:

the first and second transmit patch antenna arrays form a group of transmit patch antenna arrays and the first and second receive patch antenna arrays form a group of receive patch antenna arrays; and

the trench is positioned vertically over the surface of the substrate and laterally between the group of transmit antennas and the group of receive antennas.

17. The radar sensor module of claim 1 , wherein the radar sensor module is an automotive radar sensor module.

Assignments (4)
CHANGE OF NAME Recorded Apr 25, 2024
From: VEONEER US, LLC
To: MAGNA ELECTRONICS, LLC
Reel/Frame 067234/0861 →
AFFIDAVIT / CHANGE OF ADDRESS Recorded Feb 3, 2023
From: VEONEER US, LLC
To: VEONEER US, LLC
Reel/Frame 065049/0150 →
CHANGE OF NAME Recorded Aug 3, 2022
From: VEONEER US, INC.
To: VEONEER US, LLC
Reel/Frame 061069/0535 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2019
From: AHMADLOO, MAJID
To: VEONEER US, INC.
Reel/Frame 049656/0957 →