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US Patent 11886007 Asymmetric optical power splitting system and method

Patent 11886007 was granted and assigned to Apple (company) on January, 2024 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
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
118860070
Patent Inventor Names
Yi-Kuei Wu0
Alfredo Bismuto0
Yangyang Liu0
Yongming Tu0
Andrea Trita0
Date of Patent
January 30, 2024
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Patent Application Number
179856150
Date Filed
November 11, 2022
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Patent Citations
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US Patent 7031568 Optical power monitor
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US Patent 7149387 Double diffraction grating with flat passband output
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US Patent 7151635 Planar waveguide reflective diffraction grating
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US Patent 7263394 Coherence-gated optical glucose monitor
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US Patent 7324195 Planar waveguide based grating device and spectrometer for species-specific wavelength detection
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US Patent 6842545 Optoelectronic and photonic devices formed of materials which inhibit degradation and failure
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US Patent 6882758 Current tuned Mach-Zehnder optical attenuator
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US Patent 6903820 Measurements of substances using two different propagation modes of light through a common optical path
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...
Patent Primary Examiner
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Andrew Jordan
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CPC Code
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G02B 6/122
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G02B 6/12016
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G02B 6/1228
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G02B 27/1006
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G02B 6/12004
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G02B 27/10
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Patent abstract

A waveguide structure and a method for splitting light is described. The method may include optically coupling a first waveguide and a second waveguide, where the optical coupling may be wavelength insensitive. The widths of the first and second waveguides may be non-adiabatically varying and the optical coupling may be asymmetric between the first and second waveguides. A gap between the first and second waveguides may also be varied non-adiabatically and the gap may depend on the widths of the first and second waveguides. The optical coupling between the first and second waveguides may also occur in the approximate wavelength range of 800 nanometers to 1700 nanometers.

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