Lightweight, low profile phased array antenna with electromagnetically coupled integrated subarrays
First Claim
1. An antenna, including:
- a first layer of dielectric material having first and second opposite planar surfaces, said first layer of dielectric material including one or more patches of electrically conductive material provided on said first planar surface thereof;
a second layer of dielectric material having first and second opposite planar surfaces;
a first ground plane layer interposed between said first and second layers of dielectric material, said first ground plane layer having first and second opposite planar surfaces disposed in abutting relation with said second planar surface of said first layer of dielectric material and said first planar surface of said second layer of dielectric material, respectively, said first ground plane layer including one or more co-planar waveguide resonators provided on said first planar surface thereof, wherein said patches and said resonators are disposed in electromagnetically coupled relation to each other;
a second ground plane layer having first and second opposite planar surfaces, said first planar surface of said second ground plane layer being disposed in abutting relation with said second planar surface of said second layer of dielectric material, said second ground plane layer including signal handling circuitry provided on said first planar surface thereof, wherein said resonators and said signal handling circuitry are disposed in electromagnetically coupled relation to each other; and
,wherein said first dielectric layer has a relatively low dielectric constant and said second dielectric layer has a relatively high dielectric constant, and the above-cited layers are arranged in a stacked configuration.
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Abstract
A lightweight, low profile phased array antenna 10 is disclosed which includes an electromagnetically coupled integrated subarray in a multilayer structure with no vertical electrical connections and no phase shifters. The integrated subarray includes a first layer 11 having an array of patches 20 of electrically conductive material. A second layer 15, is provided, in parallel registration with the first layer 11, which includes an array of resonators 22, each resonator 22 being electromagnetically coupled to a corresponding patch 20 in the first layer 11. A third layer 19 is provided which is in parallel registration with the second layer 15. Electromagnetic couplers 24 and 34 in the second and third layers 15 and 19 couple energy received by resonators 22 in the second layer 15, to processing circuitry in the third layer 19. The antenna of the present invention is adapted for transmit and receive modes of operation.
39 Citations
15 Claims
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1. An antenna, including:
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a first layer of dielectric material having first and second opposite planar surfaces, said first layer of dielectric material including one or more patches of electrically conductive material provided on said first planar surface thereof; a second layer of dielectric material having first and second opposite planar surfaces; a first ground plane layer interposed between said first and second layers of dielectric material, said first ground plane layer having first and second opposite planar surfaces disposed in abutting relation with said second planar surface of said first layer of dielectric material and said first planar surface of said second layer of dielectric material, respectively, said first ground plane layer including one or more co-planar waveguide resonators provided on said first planar surface thereof, wherein said patches and said resonators are disposed in electromagnetically coupled relation to each other; a second ground plane layer having first and second opposite planar surfaces, said first planar surface of said second ground plane layer being disposed in abutting relation with said second planar surface of said second layer of dielectric material, said second ground plane layer including signal handling circuitry provided on said first planar surface thereof, wherein said resonators and said signal handling circuitry are disposed in electromagnetically coupled relation to each other; and
,wherein said first dielectric layer has a relatively low dielectric constant and said second dielectric layer has a relatively high dielectric constant, and the above-cited layers are arranged in a stacked configuration. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15)
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Specification