IP Library › Granted Patent US 8,830,133
Granted Patent B2
US 8,830,133 · App. 12/866,137 · Granted Sep 9, 2014

Circularly polarised array antenna

Inventors: Andrew Reginald Weily (Epping, AU); Yingjie Jay Guo (Epping, AU); Ian Maxwell Davis (Bella Vista, AU); John Seward Kot (North Narrabeen, AU)
Assignee: Commonwealth Scientific and Industrial Research Organisation
H01Q21/064H01Q21/24H01Q1/38H01Q21/0075H01Q13/106
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Quick Facts
Patent No.
US 8,830,133
App. No.
12/866,137
Granted
Sep 9, 2014
Kind
B2
Abstract

A circularly polarized array antenna ( 30 ) is disclosed. A single layer dielectric substrate ( 36 ) has a ground plane ( 32 ) located on its upper surface of the substrate and covering only part of the upper surface. A plurality of antenna elements ( 40 - 54 ) are also located on said upper surface of the substrate. Each antenna element has a slot element ( 60 - 74 ) formed in the ground plane and a respective loading element ( 80 - 94 ) located within each slot element. The antenna elements being arranged in a regular array where each respective slot element is sequentially rotated in space with respect to adjacent slot elements, and the loading elements generate a perturbation under excitation. A microstrip feed network ( 100 ) is located on the underside of the substrate to provide excitation to each slot element, and including feeds of different lengths to be electrically sequentially rotated in common with spatial rotation of the slot elements. A single microstrip feed point ( 108 ) extends to the edge of the substrate for connection purposes. A reflecting plane is located parallel to and spaced apart from the underside of the substrate. The ground plane extends to cover the entire microstrip feed array.

Claims (11)

1. An antenna comprising:

a single layer dielectric substrate;

a ground plane located on the upper surface of the substrate and covering only part of said upper surface;

a plurality of antenna elements also located on said upper surface of the substrate, each antenna element having a slot element formed in the ground plane and a respective loading element located within each slot element, said antenna elements being arranged in a regular array where each respective slot element is sequentially rotated in space with respect to adjacent slot elements, and said loading elements generate a perturbation under excitation;

a microstrip feed network located on the underside of the substrate to provide excitation to each slot element, and including feeds of different lengths to be electrically sequentially rotated in common with spatial rotation of said slot elements, and a single microstrip feed line extending to an edge of said substrate for connection purposes; and

a reflector located parallel to and spaced apart from the underside of the substrate;

wherein said ground plane extends to cover the entire microstrip feed array, and said ground plane covers said substrate to the extent that at least ½ wavelength at an operational frequency between the edges of the ground plane and the edges of the substrate is not covered, except where said ground plane covers said single microstrip feed line.

2. An antenna according to claim 1 wherein said reflector is at least as large in surface area as said substrate.

3. An antenna according to claim 1 where said regular array is at least a 2×1 array.

4. An antenna according to claim 1 further comprising a housing that supports said substrate at the substrate edges and supports or incorporates said reflector.

5. An antenna according to claim 1 wherein said substrate is formed of a liquid crystal polymer material.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2010
From: WEILY, ANDREW REGINALD; GUO, YINGJIE JAY; DAVIS, IAN MAXWELL; KOT, JOHN SEWARD
To: COMMONWEALTH SCIENTIFIC AND INDUSTRIAL RESEARCH ORGANISATION
Reel/Frame 025454/0141 →
Priority Claims (1)
AU 2008900495 · Feb 4, 2008 · national
Continuity (1)
Related Publication 20110090129A1 · Apr 21, 2011