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US Patent 10446899 Flared dielectric coupling system and methods for use therewith

Patent 10446899 was granted and assigned to AT&T Intellectual Property I on October, 2019 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
AT&T Intellectual Property I
AT&T Intellectual Property I
Current Assignee
AT&T Intellectual Property I
AT&T Intellectual Property I
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10446899
Date of Patent
October 15, 2019
Patent Application Number
15695487
Date Filed
September 5, 2017
Patent Citations Received
‌
US Patent 11431555 Apparatus and methods for mitigating a fault that adversely affects ultra-wideband transmissions
‌
US Patent 11381007 Antenna system with planar antenna and directors and methods for use therewith
‌
US Patent 11387560 Impedance matched launcher with cylindrical coupling device and methods for use therewith
‌
US Patent 11502724 Method and apparatus for transitioning between electromagnetic wave modes
‌
US Patent 11533079 Methods and apparatuses for facilitating guided wave communications with an enhanced flexibility in parameters
‌
US Patent 10622722 System and method for launching guided electromagnetic waves with impedance matching
‌
US Patent 10623033 Methods and apparatus to reduce distortion between electromagnetic wave transmissions
‌
US Patent 10623056 Guided wave splitter and methods for use therewith
...
Patent Primary Examiner
‌
Benny T. Lee
Patent abstract

In accordance with one or more embodiments, a dielectric coupler includes a neck portion configured to receive a first electromagnetic wave from a hollow waveguide. A flared portion is configured to generate, responsive to the first electromagnetic wave, a second electromagnetic wave along a surface of a transmission medium, wherein the flared portion at least partially surrounds the transmission medium, wherein the second electromagnetic wave propagates along the surface of the transmission medium without requiring an electrical return path. A tapered portion is configured to interface the neck portion to the flared portion.

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