Circularly polarized antennas

US10826183B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10826183-B2
Application numberUS-201916681618-A
CountryUS
Kind codeB2
Filing dateNov 12, 2019
Priority dateDec 29, 2016
Publication dateNov 3, 2020
Grant dateNov 3, 2020

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

An antenna includes a dielectric substrate, a circular patch overlying the dielectric substrate, and a metamaterial ground plane. One or more antenna feeds are coupled to the circular patch. The antenna feeds may include impedance transformers. The metamaterial ground plane includes a plurality of conductive patches and a ground plane. The conductive patches are arranged along a first plane below the circular patch and are separated from the circular patch by at least the dielectric substrate. The conductive patches are arranged in a pattern that provides circular symmetry with respect to a center of the circularly polarized antenna. The ground plane is arranged along a second plane and is electrically coupled to at least a first portion of the conductive patches. One or more of the conductive patches and the ground plane are coupled to ground.

First claim

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What is claimed is: 1. A circularly polarized antenna, comprising: a first dielectric substrate having a front side and a back side opposite the front side; a second dielectric substrate spaced from the first dielectric substrate, the second dielectric substrate having a front side and a back side opposite the front side, wherein the first dielectric substrate and the second dielectric substrate are arranged so that a back side of the first dielectric substrate faces a front side of the second dielectric substrate; a circular patch configured as a radiating element, the circular patch disposed on the front side of the first dielectric substrate; a first conductive ring disposed on the front side of the first dielectric substrate surrounding the circular patch such that a space extends between the first conductive ring and the circular patch; one or more antenna feeds coupled to the circular patch; a metamaterial ground plane comprising: a plurality of conductive patches disposed on the back side of the first dielectric substrate, the plurality of conductive patches including a center conductive patch having a circular shape and a plurality of surrounding conductive patches that are spaced from the center conductive patch and extend radially outward in a pattern that provides circular symmetry with respect to a center of the circularly polarized antenna; and a ground plane disposed on the front side of the second dielectric substrate and electrically coupled to at least a first portion of the plurality of conductive patches. 2. The circularly polarized antenna of claim 1 wherein each of the one or more antenna feeds includes an impedance transformer, and the plurality of conductive patches are arranged in a pattern that provides circular symmetry with respect to a phase center of the circularly polarized antenna. 3. The circularly polarized antenna of claim 1 wherein the plurality of conductive patches include the center conductive patch surrounded in a radial direction by a plurality of intermediate conductive patches, and the plurality of intermediate conductive patches are surrounded in a radial direction by a plurality of outer conductive patches. 4. The circularly polarized antenna of claim 1 wherein the plurality of conductive patches include the center conductive patch surrounded in a radial direction by a plurality of intermediate conductive patches each having a curved edge that is equidistant from a center of the center conductive patch. 5. The circularly polarized antenna of claim 1 wherein the plurality of conductive patches include the center conductive patch surrounded in a radial direction by a plurality of intermediate conductive patches extending radially to an outer edge of the first dielectric substrate. 6. The circularly polarized antenna of claim 1 wherein the plurality of conductive patches include the center conductive patch surrounded in a radial direction by a plurality of intermediate conductive patches that are surrounded in a radial direction by a plurality of outer conductive patches. 7. An antenna configured to receive radiation at global navigation satellite system (GNSS) frequencies, comprising: a first dielectric substrate having a front side and a back side opposite the front side; a second dielectric substrate spaced from the first dielectric substrate, the second dielectric substrate having a front side and a back side opposite the front side, wherein the first dielectric substrate and the second dielectric substrate are arranged so that a back side of the first dielectric substrate faces a front side of the second dielectric substrate; a circular patch configured as a radiating element, the circular patch disposed on the front side of the first dielectric substrate; a ring disposed on the front side of the first dielectric substrate surrounding the circular patch and spaced from the circular patch; one or more impedance transformers, each of the one or more impedance transformers coupled to a first input feed and coupled to the circular patch at an output; and a metamaterial ground plane comprising: a plurality of conductive patches disposed on the back side of the first dielectric substrate, the plurality of conductive patches arranged including a center conductive patch having a circular shape and a plurality of surrounding conductive patches that are spaced from the center conductive patch and extend radially outward in a pattern that provides circular symmetry with respect to a center of the antenna; and a ground plane disposed on the back side of the second dielectric substrate and electrically coupled to at least a first portion of the plurality of conductive patches. 8. The antenna of claim 7 wherein the plurality of conductive patches are arranged in a pattern that provides circular symmetry with respect to a phase center of the antenna. 9. The antenna of claim 7 wherein the ring is a discontinuous ring comprising discrete conductive elements surrounding the circular patch, each of the discrete conductive elements isolated from the circular patch. 10. The antenna of claim 7 wherein the plurality of conductive patches include the center conductive patch surrounded in a radial direction by a plurality of intermediate conductive patches. 11. The antenna of claim 10 wherein the plurality of intermediate conductive patches each have a curved edge, and each of the curved edge is equidistant from a center of the center conductive patch. 12. The antenna of claim 10 wherein the plurality of intermediate conductive patches extend radially to an outer edge of the first dielectric substrate. 13. The antenna of claim 10 wherein the plurality of intermediate conductive patches are surrounded in a radial direction by a plurality of outer conductive patches. 14. The antenna of claim 13 wherein the plurality of outer conductive patches extend radially to an outer edge of the first dielectric substrate. 15. A circularly polarized antenna, comprising: a first dielectric substrate having a front side and a back side opposite the front side; a second dielectric substrate spaced from the first dielectric substrate, the second dielectric substrate having a front side and a back side opposite the front side, wherein the first dielectric substrate and the second dielectric substrate are arranged so that a back side of the first dielectric substrate faces a front side of the second dielectric substrate; a circular patch configured as a radiating element, the circular patch disposed on the front side of the first dielectric substrate; a first conductive ring disposed on the front side of the first dielectric substrate and surrounding the circular patch such that a space extends between the first conductive ring and the circular patch; one or more antenna feeds coupled to the circular patch; a metamaterial ground plane comprising: a plurality of conductive patches disposed on the back side of the first dielectric substrate or a front side of the second dielectric substrate, the plurality of conductive patches including a center conductive patch having a circular shape and a plurality of surrounding conductive patches that are spaced from the center conductive patch and extend radially outward in a pattern that provides circular symmetry with respect to a center of the circularly polarized antenna; and a ground plane disposed on the back side of the second dielectric substrate and electrically coupled to at least a first portion of the plurality of conductive patches. 16. The circularly polarized antenna of claim 15 wherein the plurality of conduc

Assignees

Inventors

Classifications

  • H01Q9/0435Primary

    using two feed points · CPC title

  • Resonant slot antennas · CPC title

  • with means for suppressing spurious modes, e.g. cross polarisation · CPC title

  • Radiating ends of two-conductor microwave transmission lines, e.g. of coaxial lines, of microstrip lines · CPC title

  • H01Q9/0428Primary

    radiating a circular polarised wave · CPC title

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What does patent US10826183B2 cover?
An antenna includes a dielectric substrate, a circular patch overlying the dielectric substrate, and a metamaterial ground plane. One or more antenna feeds are coupled to the circular patch. The antenna feeds may include impedance transformers. The metamaterial ground plane includes a plurality of conductive patches and a ground plane. The conductive patches are arranged along a first plane bel…
Who is the assignee on this patent?
Trimble Inc
What technology area does this patent fall under?
Primary CPC classification H01Q9/0435. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Nov 03 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).