IP Library Granted Patent US 11,444,379
Granted Patent B2
US 11,444,379 · App. 16/637,740 · Granted Sep 13, 2022

Waveguide antenna magnetoelectric matching transition

Inventors: Kun Zhao (Stockholm, SE); Zhinong Ying (Lund, SE)
Assignee: Sony Group Corporation
H01Q5/55H01P3/121H01Q1/243H05K1/116
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Quick Facts
Patent No.
US 11,444,379
App. No.
16/637,740
Granted
Sep 13, 2022
Kind
B2
Abstract

An antenna ( 100 ) comprises a waveguide ( 120 ) formed by a first horizontal conductive layer ( 121 ) of a multi-layer circuit board ( 110 ), a second horizontal conductive layer ( 122 ) of the multi-layer circuit board, and vertical sidewalls formed by conductive vias ( 123, 124 ) extending between the first conductive layer ( 121 ) and the second conductive layer ( 122 ). Further, the antenna ( 100 ) of comprises a parallel plate resonator ( 150 ) at one end of the waveguide ( 120 ). The parallel plate resonator ( 150 ) is formed in the multilayer circuit board ( 110 ), by a first horizontal conductive plate ( 151 ) adjacent to the first conductive layer ( 121 ) and a second horizontal conductive plate ( 152 ) adjacent to the second conductive layer ( 122 ). Further, the antenna ( 100 ) comprises at least one conductive via ( 155 ) extending from one of the first conductive plate ( 151 ) and the second conductive plate ( 152 ) towards the other of the first conductive plate ( 151 ) and the second conductive plate ( 151 ).

Claims (31)

1. An antenna, comprising:

a waveguide formed by a first horizontal conductive layer of a multi-layer circuit board, a second horizontal conductive layer of the multi-layer circuit board and vertical sidewalls formed by conductive vias extending between the first conductive layer and the second conductive layer,

a parallel plate resonator at one end of the waveguide, the parallel plate resonator being formed in the multi-layer circuit board by a first horizontal conductive plate adjacent to the first conductive layer and a second horizontal conductive plate adjacent to the second conductive layer;

a first conductive via having a first vertical height and extending from the first conductive plate towards the second conductive plate; and

a second conductive via having a second vertical height and extending from the second conductive plate towards the first conductive plate; wherein

the first vertical height and the second vertical height are less than a vertical distance between the first conductive plate and the second conductive plate, and the first conductive via and the second conductive via are formed according to an arrangement that is rotationally symmetric with respect to a central axis (CA) of the waveguide.

2. The antenna according to claim 1 , comprising:

a plurality of first conductive vias extending from the first conductive plate towards the second conductive plate, and

a plurality of second conductive vias extending from the second conductive plate towards the first conductive plate.

3. The antenna according to claim 1 , comprising:

a further parallel plate resonator, the further parallel plate resonator being formed in the multi-layer circuit board by a first further horizontal conductive plate adjacent to the first conductive plate of the parallel plate resonator and a second further horizontal conductive plate adjacent to the second conductive plate of the parallel plate resonator.

4. The antenna according to claim 3 , comprising:

at least one conductive via extending from one of the first further conductive plate and the second further conductive plate of the further parallel plate resonator towards the other of the first further conductive plate and the second further conductive plate of the further parallel plate resonator.

5. The antenna according to claim 4 , comprising:

multiple conductive vias extending from one of the first further conductive plate and the second further conductive plate of the further parallel plate resonator towards the other of the first further conductive plate and the second further conductive plate of the further parallel plate resonator.

6. The antenna according to claim 5 ,

wherein an arrangement of the conductive vias extending from the first further conductive plate and/or the second further conductive plate is symmetric with respect to a central axis (CA) of the waveguide.

7. The antenna according to claim 4 , comprising:

at least one first conductive via extending from the first further conductive plate towards the second further conductive plate of the further parallel plate resonator, and

at least one second conductive via extending from the second further conductive plate towards the first further conductive plate of the further parallel plate resonator.

8. The antenna according to claim 4 ,

wherein a vertical height of the at least one conductive via extending from the first further conductive plate and/or the second further conductive plate of the further parallel plate resonator is less than a vertical distance between the first further conductive plate and the second further conductive plate.

9. The antenna according to claim 1 ,

wherein the antenna is configured for transmission of radio signals having a wavelength of more than 1 mm and less than 3 cm.

10. The antenna according to claim 1 ,

wherein a bandwidth of the antenna is at least 8 GHz.

11. The communication device according to claim 10 , comprising:

radio front end circuitry arranged on the multi-layer circuit board.

12. A communication device, comprising:

at least one antenna according to claim 1 ; and

at least one processor configured to process communication signals transmitted via the at least one antenna.

Assignments (3)
CHANGE OF NAME Recorded Aug 9, 2022
From: SONY CORPORATION
To: SONY GROUP CORPORATION
Reel/Frame 061118/0939 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 6, 2020
From: SONY MOBILE COMMUNICATIONS INC.
To: SONY CORPORATION
Reel/Frame 053983/0712 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 7, 2020
From: ZHAO, KUN; YING, ZHINONG
To: SONY MOBILE COMMUNICATIONS INC.
Reel/Frame 053428/0039 →
Continuity (1)
Related Publication 20200212574A1 · Jul 2, 2020