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US Patent 11692809 Self-mixing interferometry-based absolute distance measurement with distance reference

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
Apple (company)
Apple (company)
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Current Assignee
Apple (company)
Apple (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
116928090
Date of Patent
July 4, 2023
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Patent Application Number
169455730
Date Filed
July 31, 2020
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Patent Citations
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US Patent 8625099 Particle concentration measuring device
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US Patent 8820147 Multiphase fluid characterization system
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US Patent 8982336 Physical quantity sensor and physical quantity measuring method
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US Patent 9229024 Method for adjusting a self mixing laser sensor system for measuring the velocity of a vehicle
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US Patent 9354315 Device for measuring wind speed
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US Patent 9397476 Laser sensor for self-mixing interferometry having a vertical external cavity surface emission laser (VECSEL) as the light source
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US Patent 9726474 Method of measuring a change in an optical path length using differential laser self-mixing interferometry and a differential laser self-mixing interferometry measuring system
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US Patent 9759736 Device for determining wind speed comprising a plurality of laser sources
0
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Patent Primary Examiner
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Mark Hellner
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A device includes a first component, a second component having a reconfigurable distance from the first component, an optical element, an SMI sensor, and a processor. The optical element has a fixed relationship with respect to the first component, and has a known optical thickness between a first surface and a second surface of the optical element. The SMI sensor has a fixed relationship with respect to the second component, and has an electromagnetic radiation emission axis that intersects the first and second surfaces of the optical element. The processor is configured to identify disturbances in an SMI signal generated by the SMI sensor, relate the disturbances to the known optical thickness of the optical element, and to determine a distance between the first and second components using the SMI signal and the relationship of the disturbances to the known optical thickness of the optical element.

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