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US Patent 11710908 Shared-aperture dual-band dual-polarized antenna array and communication equipment

Patent 11710908 was granted and assigned to South China University of Technology on July, 2023 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
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Patent attributes

Patent Applicant
South China University of Technology
South China University of Technology
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Current Assignee
South China University of Technology
South China University of Technology
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
117109080
Date of Patent
July 25, 2023
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Patent Application Number
175570860
Date Filed
December 21, 2021
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Patent Citations
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US Patent 11424548 Method and apparatus for a meta-structure antenna array
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US Patent 7696951 Left-handed medium using no via
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US Patent 9035843 Ferrite-loaded, Fabry-Perot cavity antenna
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US Patent 11450953 Meta-structure antenna array
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Patent Citations Received
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US Patent 11837792 High-frequency radiator, multi-frequency array antenna, and base station
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Patent Primary Examiner
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Ab Salam Alkassim, Jr.
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CPC Code
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H01Q 15/0033
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H01Q 15/0046
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H01Q 15/0013
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H01Q 15/0086
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H01Q 15/0053
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H01Q 15/002
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H01Q 15/0026
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The invention discloses shared-aperture dual-band dual-polarized antenna array and communication equipment. The antenna array comprises a first dielectric substrate, a second dielectric substrate, a third dielectric substrate, a fourth dielectric substrate, and a fifth dielectric substrate. The first dielectric substrate, the second dielectric substrate, and the third dielectric substrate constitute a dielectric substrate group. The dielectric substrate group is provided with a low-frequency antenna element and four high-frequency antenna elements. The low-frequency antenna element is loaded with a filtering structure. The low-frequency antenna element and the high-frequency antenna element are fed by coaxial lines. The fourth dielectric substrate and the fifth dielectric substrate form a dual-function metasurface. When the dual-function metasurface is used as an artificial magnetic conductor reflector, the radiation of the low-frequency antenna element is enhanced in a low profile, and when used as a frequency selective surface, the electromagnetic scattering of the low-frequency antenna element in the high-frequency band is suppressed. Compared with the existing solutions, the present invention is more compact, and maintains high cross-band isolation and stable radiation patterns in dual bands.

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