IP Library Granted Patent US 10,923,824
Granted Patent B2
US 10,923,824 · App. 16/709,346 · Granted Feb 16, 2021

Capacitively coupled patch antenna

Inventors: Gyles Panther (Ottawa, CA); Rony E. Amaya (Kanata, CA); James Stuart Wight (Ottawa, CA)
Assignee: Tallysman Wireless Inc.
H01Q9/0478H01Q1/52H01Q9/0457H03F1/565H03F3/19H03F3/245H03F3/602H03H7/38H01Q1/38H01Q9/0435H03F2200/387H03F2200/391H03F2200/451
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Quick Facts
Patent No.
US 10,923,824
App. No.
16/709,346
Granted
Feb 16, 2021
Kind
B2
Abstract

Systems and methods relating to patch antennas. A patch antenna has a substrate, a resonant metal plate at one side of the substrate, and a ground plane at the other opposite side of the substrate. Two feed pins are used to couple the antenna to other circuitry. The feed pins pass through the substrate and holes in at the ground plane. The feed pins are physically disconnected from both the resonant metal plate and the ground plane. The feed pins are capacitively coupled to the resonant metal plate to provide an electronic connection between other circuitry and the patch antenna.

Claims (61)

1. A patch antenna element comprising:

a resonant metal plate;

a ground plate;

a dielectric substrate slab sandwiched between the resonant metal plate and the ground plate;

the resonant metal plate forming a resonant plane and the ground plate forming a ground plane, the resonant plane and the ground plane being parallel to each other; and

two feed pins orthogonally intersecting the resonant plane and the ground plane, each of the two feed pins being physically isolated from the ground plate and the resonant metal plate, each of the two feed pins comprising a first end protruding through a first aperture in the ground plate, each of the two feed pins further comprising a second end in proximity to a corresponding second aperture in the resonant metal plate, wherein the resonant metal plate is capacitively coupled to each of the two feed pins by a capacitive reactance between the resonant metal plate and each of the two feed pins; wherein

two lines through a center of the resonant metal plate through each of the second ends form orthogonal axes within the resonant plane; and

each of the two feed pin has a length which is less than a thickness of the dielectric substrate slab.

2. The patch antenna element of claim 1 , wherein the second end of each of the two feed pins are substantially co-planar with the resonant metal plate.

3. The patch antenna element of claim 1 , wherein the second end of each of the two feed pins protrude sufficiently above the resonant metal plate to allow for each second end to be coupled to a corresponding metal plate confined within each second aperture.

4. The patch antenna element of claim 1 , further comprising, for each of the two feed pins, a corresponding third aperture in the resonant metal plate, each of the corresponding third apertures being of a same size and shape as each of the second apertures, each of the third apertures being placed along the orthogonal axes at a same distance from the center as the second apertures such that, for each of the orthogonal axes, the center is between one second aperture and one third aperture.

5. A patch antenna element according to claim 1 , wherein said resonant metal plate is square shaped.

6. A patch antenna element according to claim 1 , wherein said resonant metal plate is octagon shaped.

7. A patch antenna element according to claim 1 , wherein each of the two feed pins has a length which is less than a thickness of the substrate slab.

8. A patch antenna element according to claim 1 , wherein each of the two feed pins is balanced by balancing voids in the resonant metal plate.

9. A patch antenna element according to claim 1 , wherein each of the two pins are offset by equal distances from a center of the patch antenna element.

10. A patch antenna element comprising:

a resonant metal plate;

a ground plate;

a dielectric substrate slab sandwiched between the resonant metal plate and the ground plate;

the resonant metal plate forming a resonant plane and the ground plate forming a ground plane, the resonant plane and the ground plane being parallel to each other; and

two feed pins orthogonally intersecting the plane, each of the two feed pins physically isolated from the ground plate and the resonant metal plate, each of the two feed pins comprising a first end protruding through a first aperture in the ground plate, each of the two feed pins further comprising a second end below a surface of the resonant plate and within the dielectric substrate slab, the second end being in proximity to an area where the resonant plate contacts the dielectric substrate slab, wherein the resonant metal plate is capacitively coupled to each of the two feed pins by a capacitive reactance between the resonant metal plate and each of the two feed pins; wherein

two lines through a center of the resonant metal plate through each of the second ends form orthogonal axes within the resonant plane; and

each of the two feed pins has a length which is less than a thickness of the dielectric substrate slab.

11. A patch antenna element according to claim 10 , wherein each of the two feed pins is placed in the dielectric substrate slab and is located beneath the resonant metal plate, the resonant metal plate across from each of the feed pins being devoid of voids.

12. A patch antenna element according to claim 10 , wherein the resonant metal plate is square shaped.

13. A patch antenna element according to claim 10 , wherein the resonant metal plate is octagon shaped.

14. A patch antenna element according to claim 10 , wherein each of the two feed pins is balanced by balancing voids in the resonant metal plate.

15. A patch antenna element according to claim 10 , wherein each of the two pins are offset by equal distances from the center of the patch antenna element.

16. A patch antenna element comprising:

a resonant metal plate;

a ground plate;

a dielectric substrate slab sandwiched between the resonant metal plate and the ground plate;

the resonant metal plate forming a resonant plane and the ground plate forming a ground plane, the resonant plane and the ground plane being parallel to each other; and

two feed pins orthogonally intersecting the resonant plane and the ground plane, each of the two feed pins being physically isolated from the ground plate and the resonant metal plate, each of the two feed pins comprising a first end protruding through a first aperture in the ground plate, each of the two feed pins further comprising a second end in proximity to a corresponding second aperture in the resonant metal plate, wherein the resonant metal plate is capacitively coupled to each of the two feed pins by a capacitive reactance between the resonant metal plate and each of the two feed pins; wherein

two lines through a center of the resonant metal plate through each of the second ends form orthogonal axes within the resonant plane; and

each of the two feed pins is balanced by balancing voids in the resonant metal plate.

17. A patch antenna element comprising:

a resonant metal plate;

a ground plate;

a dielectric substrate slab sandwiched between the resonant metal plate and the ground plate;

the resonant metal plate forming a resonant plane and the ground plate forming a ground plane, the resonant plane and the ground plane being parallel to each other; and

two feed pins orthogonally intersecting the resonant plane and the ground plane, each of the two feed pins being physically isolated from the ground plate and the resonant metal plate, each of the two feed pins comprising a first end protruding through a first aperture in the ground plate, each of the two feed pins further comprising a second end in proximity to a corresponding second aperture in the resonant metal plate, wherein the resonant metal plate is capacitively coupled to each of the two feed pins by a capacitive reactance between the resonant metal plate and each of the two feed pins; wherein

two lines through a center of the resonant metal plate through each of the second ends form orthogonal axes within the resonant plane; and

each of the two pins are offset by equal distances from the center of the patch antenna element.

18. A patch antenna element comprising:

a resonant metal plate;

a ground plate;

a dielectric substrate slab sandwiched between the resonant metal plate and the ground plate;

the resonant metal plate forming a resonant plane and the ground plate forming a ground plane, the resonant plane and the ground plane being parallel to each other; and

two feed pins orthogonally intersecting the plane, each of the two feed pins physically isolated from the ground plate and the resonant metal plate, each of the two feed pins comprising a first end protruding through a first aperture in the ground plate, each of the two feed pins further comprising a second end below a surface of the resonant plate and within the substrate slab, the second end being in proximity to an area where the resonant plate contacts the dielectric substrate, wherein the resonant metal plate is capacitively coupled to each of the two feed pins by a capacitive reactance between the resonant metal plate and each of the two feed pins; wherein

two lines through a center of the resonant metal plate through each of the second ends form orthogonal axes within the resonant plane; and

each of the two feed pins is balanced by balancing voids in the resonant metal plate.

19. A patch antenna element comprising:

a resonant metal plate;

a ground plate;

a dielectric substrate slab sandwiched between the resonant metal plate and the ground plate;

the resonant metal plate forming a resonant plane and the ground plate forming a ground plane, the resonant plane and the ground plane being parallel to each other; and

two feed pins orthogonally intersecting the plane, each of the two feed pins physically isolated from the ground plate and the resonant metal plate, each of the two feed pins comprising a first end protruding through a first aperture in the ground plate, each of the two feed pins further comprising a second end below a surface of the resonant plate and within the substrate slab, the second end being in proximity to an area where the resonant plate contacts the dielectric substrate, wherein the resonant metal plate is capacitively coupled to each of the two feed pins by a capacitive reactance between the resonant metal plate and each of the two feed pins; wherein

two lines through a center of the resonant metal plate through each of the second ends form orthogonal axes within the resonant plane; and

each of the two pins are offset by equal distances from the center of the patch antenna element.

Assignments (4)
CHANGE OF NAME Recorded Feb 23, 2024
From: TALLYSMAN WIRELESS INC.
To: CALIAN GNSS LTD.
Reel/Frame 066665/0975 →
SECURITY INTEREST Recorded Jul 21, 2023
From: TALLYSMAN WIRELESS INC.
To: ROYAL BANK OF CANADA
Reel/Frame 064341/0846 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 18, 2020
From: PANTHER, GYLES
To: TALLYSMAN WIRELESS INC.
Reel/Frame 052984/0266 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 18, 2020
From: AMAYA, RONY E.; WIGHT, JAMES STUART
To: TALLYSMAN WIRELESS INC.
Reel/Frame 052984/0379 →
Continuity (4)
Continuation 15726747 · Oct 6, 2017
Continuation In Part 14389682
Provisional Application 61620665 · Apr 5, 2012
Related Publication 20200112103A1 · Apr 9, 2020