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US Patent 11561346 Tunable echelle grating

Patent 11561346 was granted and assigned to Apple (company) on January, 2023 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Apple (company)
Apple (company)
Current Assignee
Apple (company)
Apple (company)
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
11561346
Date of Patent
January 24, 2023
Patent Application Number
17386297
Date Filed
July 27, 2021
Patent Citations
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US Patent 10359571 Multi-mode interferometer coupler with core strips
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US Patent 10429597 Interposer assemblies and arrangements for coupling at least one optical fiber to at least one optoelectronic device
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US Patent 10529003 Optical biomodule for detection of diseases at an early onset
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US Patent 10687718 Systems and methods for non-pulsatile blood volume measurements
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US Patent 10852492 Techniques to combine two integrated photonic substrates
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US Patent 11231319 Athermal wavelength stability monitor using a detraction grating
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US Patent 11064592 Systems and methods for wavelength locking in optical sensing systems
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US Patent 10009668 Methods and systems for board level photonic bridges
...
Patent Citations Received
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US Patent 11906778 Achromatic light splitting device with a high V number and a low V number waveguide
0
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US Patent 11886007 Asymmetric optical power splitting system and method
0
Patent Primary Examiner
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Ryan A Lepisto
CPC Code
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G02B 6/29328
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G02B 6/29326
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G02B 6/29395
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G02B 6/12007
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G02B 6/12014
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G02B 6/29308
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G02B 6/12016
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G02B 6/124

Configurations for a tunable Echelle grating are disclosed. The tunable Echelle grating may include an output waveguide centered in a waveguide array, with input waveguides on both sides of the output waveguide. A metal tuning pad may be located over the slab waveguide and may be heated to induce a temperature change in the slab waveguide. By increasing the temperature of the propagation region of the slab waveguide, the index of refraction may shift, thus causing the peak wavelength of the channel to shift. This may result in an optical component capable of multiplexing multiple light sources in an energy efficient manner while maintaining a small form factor.

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