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US Patent 11656075 High-sensitivity gas-mapping 3D imager and method of operation

Patent 11656075 was granted and assigned to Bridger Photonics, Inc. on May, 2023 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
Bridger Photonics, Inc.
Bridger Photonics, Inc.
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Current Assignee
Bridger Photonics, Inc.
Bridger Photonics, Inc.
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
116560750
Date of Patent
May 23, 2023
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Patent Application Number
173991060
Date Filed
August 11, 2021
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Patent Citations
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US Patent 8081670 System and method for providing chirped electromagnetic radiation
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US Patent 8175126 Arbitrary optical waveform generation utilizing optical phase-locked loops
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US Patent 8582085 Chirped coherent laser radar with multiple simultaneous measurements
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US Patent 8781755 Fugitive emission flux measurement
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US Patent 9559486 Precise broadband frequency modulated laser
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US Patent 9696423 Method for improving performance of a Sodar system
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US Patent 9759597 Methods for calibrating a fugitive emission rate measurement
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US Patent 9784560 Length metrology apparatus and methods for suppressing phase noise-induced distance measurement errors
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Patent Citations Received
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US Patent 12123830 Rapidly tuneable diode lidar
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US Patent 11921211 Apparatuses and methods for a rotating optical reflector
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Patent Primary Examiner
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Hina F Ayub
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CPC Code
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G01N 2021/1793
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G01N 2021/1795
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G01N 21/39
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G01N 21/53
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G06V 20/64
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G01P 5/00
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G01C 15/00
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G01B 21/20
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Measurement apparatuses and methods are disclosed for generating high-precision and -accuracy gas concentration maps that can be overlaid with 3D topographic images by rapidly scanning one or several modulated laser beams with a spatially-encoded transmitter over a scene to build-up imagery. Independent measurements of the topographic target distance and path-integrated gas concentration are combined to yield a map of the path-averaged concentration between the sensor and each point in the image. This type of image is particularly useful for finding localized regions of elevated (or anomalous) gas concentration making it ideal for large-area leak detection and quantification applications including: oil and gas pipeline monitoring, chemical processing facility monitoring, and environmental monitoring.

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