IP Library Granted Patent US 11,038,286
Granted Patent B2
US 11,038,286 · App. 16/211,655 · Granted Jun 15, 2021

Antenna array

Inventors: Sadegh Farzaneh (Kanata, CA); Minya Gavrilovic (Kanata, CA); Des Bromley (Kanata, CA); Farid Jolani (Kanata, CA)
Assignee: GALTRONICS USA, INC.
H01Q21/26H01Q1/246H01Q1/521H01Q1/523H01Q19/185H01Q21/0025H01Q21/062H01Q21/08H01Q21/28
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Quick Facts
Patent No.
US 11,038,286
App. No.
16/211,655
Granted
Jun 15, 2021
Kind
B2
Abstract

An antenna array is provided which may include, but is not limited to, a first plurality of reflectors having a face, a first edge and a second edge, wherein the first edge of each of the first plurality of reflectors is coupled to the second edge of another of the first plurality of reflectors, a first plurality of antenna elements arranged on the face of at least one of the first plurality of reflectors, a second plurality of antenna elements arranged at a corner of at least two of the first plurality of reflectors, a second plurality of reflectors, the second plurality of reflectors mounted to an end of the first plurality of reflectors, and a third plurality of antenna elements arranged on a face of at least one of the second plurality of reflectors.

Claims (32)

1. An antenna array, comprising:

a first plurality of reflectors, each of the first plurality of reflectors having a face, a first edge and a second edge, wherein the first edge of each of the first plurality of reflectors is coupled to the second edge of another of the first plurality of reflectors;

a first plurality of antenna elements arranged on the face of at least one of the first plurality of reflectors, the first plurality of antenna elements configured to radiate within a first frequency band;

a second plurality of antenna elements arranged at a corner of at least two of the first plurality of reflectors, the corner comprising an area where the first edge of one of the first plurality of reflectors is coupled to the second edge of another one of the first plurality of reflectors, the second plurality of antenna elements configured to radiate within a second frequency band different than the first frequency band;

a second plurality of reflectors, the second plurality of reflectors mounted to an end of the first plurality of reflectors;

a third plurality of antenna elements arranged on a face of at least one of the second plurality of reflectors, the third plurality of antenna elements configured to radiate within a third frequency band different than the first frequency band and the second frequency band; and

wherein the first plurality of antenna elements are interleaved with the second plurality of antenna elements in both azimuth and elevation planes of the antenna array.

2. The antenna array according to claim 1 , further comprising a feed board galvanically isolated from the first plurality of reflectors, wherein the second plurality of antenna elements are mounted on the feed board.

3. The antenna array according to claim 1 , wherein the first plurality of antenna elements are arranged on the face of the least one of the first plurality of reflectors at a first angle relative to the least one of the first plurality of reflectors and the second plurality of antenna elements are arranged at the corner at a second angle relative to the least one of the first plurality of reflectors.

4. The antenna array according to claim 1 , wherein the first plurality of reflectors comprises six reflectors arranged in a hexagonal pattern.

5. The antenna array according to claim 4 , wherein the first plurality of antenna elements are arranged on the faces of all six reflectors.

6. The antenna array according to claim 5 , wherein the second plurality of antenna elements are arranged on the all six corners of the six reflectors.

7. The antenna array according to claim 1 , wherein the second plurality of reflectors comprises three reflectors arranged in a triangular pattern.

8. The antenna array according to claim 1 , further comprising a mounting plate, the mounting plate coupling the second plurality of reflectors to the first plurality of reflectors.

9. The antenna array according to claim 1 , wherein a width of each of the first plurality of reflectors is based upon the first frequency band of the first plurality of antenna elements.

10. The antenna array according to claim 1 , wherein a width of each of the second plurality of reflectors is based upon the third frequency band of the third plurality of antenna elements.

11. The antenna array according to claim 1 , wherein the first plurality of antenna elements comprises a first plurality of dual-polarized dipole antennas, the second plurality of antenna elements comprises a second plurality of dual-polarized dipole antennas, and the third plurality of antenna elements comprises a third plurality of dual-polarized dipole antennas.

12. An antenna array, comprising:

a first plurality of reflectors arranged in a first shape, the shape comprising at least two faces and at least two edges;

a first plurality of dipole antennas arranged on the at least two faces of the first plurality of reflectors, the first plurality of dipole antennas configured to radiate within a first frequency band;

a second plurality of dipole antennas arranged at the at least two edges of the first plurality of reflectors, the second plurality of dipole antennas configured to radiate within a second frequency band different than the first frequency band;

a second plurality of reflectors arranged in a second shape, the second shape comprising at least two faces and at least two edges;

a third plurality of dipole antennas arranged on a face of at least one of the second plurality of reflectors, the third plurality of dipole antennas configured to radiate within a third frequency band different than the first frequency band and the second frequency band; and

wherein the first plurality of dipole antennas are interleaved with the second plurality of dipole antennas in both azimuth and elevation planes of the antenna array.

13. The antenna array according to claim 12 , further comprising a plurality of feed boards galvanically isolated from the first plurality of reflectors, wherein the second plurality of dipole antennas are mounted on the plurality of feed boards.

14. The antenna array according to claim 13 , wherein the first plurality of antenna elements are arranged on the at least two faces of the first plurality of reflectors at a first angle relative to the first plurality of reflectors and the second plurality of antenna elements are arranged on the plurality of feed boards at a second angle relative to the least one of the first plurality of reflectors.

15. The antenna array according to claim 14 , wherein the plurality of reflectors comprises six reflectors arranged in a hexagonal pattern.

16. The antenna array according to claim 15 , wherein the second plurality of reflectors comprises three reflectors arranged in a triangular pattern.

17. The antenna array according to claim 16 , wherein the first angle is substantially zero-degrees and the second angle is substantially sixty-degrees.

18. The antenna array according to claim 12 , further comprising a mounting plate, the mounting plate coupling the second plurality of reflectors to the first plurality of reflectors.

19. The antenna array according to claim 12 , wherein a width of each of the first plurality of reflectors is based upon the first frequency band of the first plurality of antenna elements.

20. The antenna array according to claim 12 , wherein a width of each of the second plurality of reflectors is based upon the third frequency band of the third plurality of antenna elements.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 27, 2019
From: GALTRONICS CORPORATION LTD
To: GALTRONICS USA, INC.
Reel/Frame 048709/0900 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2018
From: FARZANEH, SADEGH; GAVRILOVIC, MINYA; BROMLEY, DES; JOLANI, FARID
To: GALTRONICS USA, INC.
Reel/Frame 047693/0502 →
Continuity (3)
Provisional Application 62595274 · Dec 6, 2017
Provisional Application 62647989 · Mar 26, 2018
Related Publication 20190173162A1 · Jun 6, 2019