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US Patent 11506535 Diffraction grating design

Patent 11506535 was granted and assigned to Apple (company) on November, 2022 by the United States Patent and Trademark Office.

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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
115065350
Patent Inventor Names
Alfredo Bismuto0
Yongming Tu0
Date of Patent
November 22, 2022
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Patent Application Number
170149020
Date Filed
September 8, 2020
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Patent Citations
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US Patent 10529003 Optical biomodule for detection of diseases at an early onset
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US Patent 11231319 Athermal wavelength stability monitor using a detraction grating
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US Patent 10852492 Techniques to combine two integrated photonic substrates
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US Patent 10009668 Methods and systems for board level photonic bridges
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US Patent 10132996 Back side via vertical output couplers
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Patent Citations Received
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US Patent 11971574 Multi-mode devices for multiplexing and de-multiplexing
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US Patent 11886007 Asymmetric optical power splitting system and method
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US Patent 11906778 Achromatic light splitting device with a high V number and a low V number waveguide
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Patent Primary Examiner
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Abdullahi Nur
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CPC Code
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G01J 3/1809
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G01J 3/20
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G01J 3/28
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G01J 3/02
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G02B 27/4233
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G02B 5/1861
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G02B 6/34
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Configurations for a diffraction grating design and methods thereof are disclosed. The diffraction grating system can include an input waveguide located at a first location on or near a Rowland circle and multiple output waveguides located at a second and third location on or near the Rowland circle. The input waveguide may be located between the output waveguides and this configuration of input and output waveguides can reduce the footprint size of the device. In some examples, the optical component can function as a de-multiplexer. Additionally, the optical component may separate the input wavelength band into two output wavelength bands which are separated from one another by approximately 0.1 μm.

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