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US Patent 11630368 Radio frequency passband signal generation using photonics

Patent 11630368 was granted and assigned to Lawrence Livermore National Security (company) on April, 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
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Lawrence Livermore National Security (company)
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Current Assignee
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Lawrence Livermore National Security (company)
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
116303680
Patent Inventor Names
Apurva Shantharaj Gowda0
Jason Thomas Chou0
Peter Thomas Setsuda DeVore0
Jacky Chak-Kee Chan0
David Simon Perlmutter0
Date of Patent
April 18, 2023
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Patent Application Number
175483940
Date Filed
December 10, 2021
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Patent Citations
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US Patent 10069619 Optical sample and hold system and method
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US Patent 10063320 Apparatus and method for implementing a photonic radio front end
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US Patent 10075154 Analog front end circuit of an optical pulse energy digitizer
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US Patent 10139704 High-speed analog-to-digital converter
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US Patent 11184087 Optical encoder devices and systems
Patent Primary Examiner
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Hanh Phan
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CPC Code
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H04B 10/2507
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G02F 1/21
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G02F 1/0123
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G02F 1/225
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G02F 1/0121
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H04B 10/541
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H04B 10/548
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H04B 10/516
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...

Devices, methods and systems for generating wideband, high-fidelity arbitrary radio frequency (RF) passband signals are described. A voltage tunable optical filter for arbitrary RF passband signal generation includes a first input configured to receive a broadband optical pulse train, a second input configured to receive a first control voltage representative of an amplitude signal, an electrooptic modulator to receive the broadband optical pulse train and the first control voltage, to modulate the broadband optical pulse train in accordance with the amplitude signal, and to produce two complementary optical outputs that form two arms of an interferometer, an optical delay component to impart an optical path difference into one of the complementary outputs of the electrooptic modulator, and a combiner or a splitter to receive two complementary optical outputs of the electrooptic modulator after impartation of the optical path difference and to produce an output interference pattern of fringes.

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