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US Patent 12003272 Timing measurement apparatus

Patent 12003272 was granted and assigned to Lawrence Livermore National Security (company) on June, 2024 by the United States Patent and Trademark Office.

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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
120032720
Patent Inventor Names
Apurva Shantharaj Gowda0
David Simon Perlmutter0
Jason Thomas Chou0
Peter Thomas Setsuda DeVore0
Joshua Linne Olson0
Date of Patent
June 4, 2024
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Patent Application Number
176679990
Date Filed
February 9, 2022
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Patent Citations
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US Patent 7522842 Optical transmission system using Raman amplification
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US Patent 7587144 Tunable radio frequency and microwave photonic filters
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US Patent 7643212 Rotationally tunable optical delay line
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US Patent 7787779 Photonic time-domain electromagnetic signal generator and system using the same
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US Patent 7868799 System and method for remoting a photonic analog-to-digital converter
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US Patent 7133135 Method and apparatus for the direct characterization of the phase of an optical signal
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US Patent 7209664 Frequency agile transmitter and receiver architecture for DWDM systems
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US Patent 7259901 Optical signal demodulators
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Patent Primary Examiner
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Hibret A Woldekidan
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CPC Code
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H04B 10/614
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H04B 10/613
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H04B 10/67
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H04B 10/616
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H04B 10/65
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H04B 10/6161
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H04B 10/508
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H04B 10/07951
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Patent abstract

Methods, devices and systems for providing accurate measurements of timing errors using optical techniques are described. An example timing measurement device includes an optical hybrid that receives two optical pulse trains and produces two or more phase shifted optical outputs. The timing measurement device further includes two or more optical filters that receive the outputs of the optical hybrid to produce multiple pulse signals with distinctive frequency bands. The device also includes one or more photodetectors and analog-to-digital converters to receive to produce electrical signals in the digital domain corresponding to the optical outputs of the hybrid. A timing error associated with the optical pulse trains can be determined using the electrical signals in digital domain based on a computed phase difference between a first frequency band signal and a second frequency band signal and a computed frequency difference between the first frequency band signal and the second frequency band.

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