IP Library Granted Patent US 12,463,352
Granted Patent B2
US 12,463,352 · App. 18/352,852 · Granted Nov 4, 2025

Circularly polarized array antenna for millimeter wave communications

Inventors: Abhishek Singh (San Diego, CA); Sebastian Rowson (San Diego, CA)
Assignee: KYOCERA AVX Components (San Diego), Inc.
H01Q21/062H01Q3/36H01Q5/378H01Q5/48H01Q7/00H01Q9/0492H01Q9/265H01Q21/24
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Quick Facts
Patent No.
US 12,463,352
App. No.
18/352,852
Granted
Nov 4, 2025
Kind
B2
Abstract

A circularly polarized array antenna is provided. The circularly polarized array antenna includes a ground plane and a plurality of circularly polarized antennas. Each of the circularly polarized antennas is configured to communicate over a frequency band ranging from 24 gigahertz (GHz) to 52 GHz. Each of the circularly polarized antennas includes a column substrate coupled to the ground plane. The column substrate includes a plurality of faces. Each of the circularly polarized antennas further includes a plurality of isolated magnetic dipole elements. Each of the isolated magnetic dipole elements is disposed on a different face of the column substrate.

Claims (10)

1 . An array antenna comprising: a ground plane; a phase shifter circuit comprising a plurality of phase shifters, each of the plurality of phase shifters electrically coupled to a radio frequency (RF) source, the RF source configured to provide a RF signal to the phase shifter circuit; and a plurality of antennas arranged on the ground plane in a row-column configuration, each of the plurality of antennas configured to communicate over a frequency band ranging from 24 GHz to 52 GHz, each of the plurality of antennas comprising: a column substrate coupled to the ground plane, the column substrate having a plurality of faces, such that the phase shifter circuit configured to provide the RF signal to each of the plurality of faces and configured to adjust a phase angle associated with the RF signal, the phase angle of the RF signal provided to each of the plurality of faces of the column substrate are different; a plurality of antenna elements, each of the plurality of antenna elements disposed on a different face of the plurality of faces of the column substrate, wherein each of the plurality of antenna elements comprises: a bottom portion; a first vertical portion extending from the bottom portion; a second vertical portion extending from the bottom portion; a first horizontal portion extending from the first vertical portion; and a second horizontal portion extending from the second vertical portion; and one or more parasitic elements, each of the one or more parasitic elements disposed on a different face of the column substrate, each of the one or more parasitic elements electrically coupled to a corresponding antenna element.

2 . The array antenna of claim 1 , wherein each of the plurality of antenna elements forms a capacitive region between the first horizontal portion and the second horizontal portion.

3 . The array antenna of claim 2 , wherein each of the plurality of antenna elements forms a loop about which an inductive region is formed.

4 . The array antenna of claim 1 , wherein a radiation pattern associated with the array antenna is left-hand circularly polarized or right-hand circularly polarized.

5 . The array antenna of claim 4 , wherein a length of the ground plane is substantially the same as a width of the ground plane.

6 . The array antenna of claim 1 , wherein the plurality of antenna elements comprises: a first antenna element disposed on a first face of the column substrate; a second antenna element disposed on a second face of the column substrate; a third antenna element disposed on a third face of the column substrate; and a fourth antenna element disposed on a fourth face of the column substrate.

7 . The array antenna of claim 1 , wherein a height of the column substrate is shorter than a length of the ground plane and a width of the ground plane.

8 . The array antenna of claim 1 , wherein the frequency band ranges from 24 GHz to 30 GHz.

9 . The array antenna of claim 1 , wherein the frequency band ranges from 30 GHz to 40 GHz.

10 . The array antenna of claim 1 , further comprising: an amplitude control circuit comprising a plurality of amplifiers, each of the plurality of amplifiers coupled between a corresponding phase shifter of the phase shifter circuit and a corresponding antenna element of the array antenna, each of the plurality of amplifiers configured to amplify a phase-shifted RF signal received from the corresponding phase shifter.