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US Patent 10481324 Fiber optic diffraction grating

Patent 10481324 was granted and assigned to Chiral Photonics on November, 2019 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
‌
Chiral Photonics
Current Assignee
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Chiral Photonics
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10481324
Date of Patent
November 19, 2019
Patent Application Number
15612246
Date Filed
June 2, 2017
Patent Citations
‌
US Patent 10126494 Configurable polarization mode coupler
‌
US Patent 10078019 Configurable chiral fiber tip-positioned sensor
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US Patent 10101536 Multichannel optical coupler array
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US Patent 10197736 Polarization maintaining optical fiber array
Patent Citations Received
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US Patent 11966091 Multichannel optical coupler array
0
‌
US Patent 10914891 Multichannel optical coupler
‌
US Patent 11022762 Optical fiber connectors for rotational alignment
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US Patent 11609376 Space division multiplexers
‌
US Patent 10838155 Multichannel optical coupler
Patent Primary Examiner
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Peter Radkowski
Patent abstract

The present invention is directed to an optical fiber grating having a core, that is capable of controlling the light signal transmission therethrough by causing at least one of: at least one spectral peak, and/or at least one spectral dip in its core light transmission spectrum, corresponding to at least one predetermined wavelength. The inventive optical fiber diffraction grating comprises at least one longitudinally positioned structural element of a predetermined geometric profile and that is configured for diffracting a portion of the transmitted light signal at at least one predefined wavelength thereof, from at least one core mode into at least one of: at least one cladding mode and/or at least one radiating mode. Various embodiments of a number of novel techniques for fabrication of the inventive optical fiber diffraction grating are provided, inclusive of a novel technique for fabricating the inventive grating from a single material. Advantageously, such novel fabrication techniques rely on configuration of a desired geometric profile for the at least one structural element portion of the novel grating, each profile comprising a number of readily configurable parameters that can be selected and/or adjusted during fabrication, to produce a variety of novel fiber diffraction gratings, each having a corresponding specific desirable core transmission spectrum having at least one of: least one spectral peak, and/or at least one spectral dip therein, corresponding to at least one specific desired wavelength, dependent on the configuration of the applicable geometric profile.

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