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US Patent 11682752 Light-emitting device with nano-structured light extraction layer

Patent 11682752 was granted and assigned to Lumileds on June, 2023 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
Lumileds
Lumileds
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Current Assignee
Lumileds
Lumileds
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
116827520
Date of Patent
June 20, 2023
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Patent Application Number
177013190
Date Filed
March 22, 2022
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Patent Citations
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US Patent 11081622 III-nitride multi-wavelength LED for visible light communication
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US Patent 11355480 Micropixellation for alignment-free assembly
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US Patent 11563148 Light-emitting device with configurable spatial distribution of emission intensity
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Patent Citations Received
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US Patent 11869923 Light-emitting array with dielectric light collection structures
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US Patent 11932163 Image sequence with reference image for uniform lighting of route for controlling pixel lamp of motor vehicle arranged on route
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US Patent 11942587 Light-emitting device with nano-structured light extraction layer
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Patent Primary Examiner
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Kenneth B Lee, Jr.
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CPC Code
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G09G 3/32
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G09G 2320/0686
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H01L 27/156
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H01L 33/42
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H01L 33/62
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H01L 33/58
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H01L 2933/0066
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A semiconductor light-emitting device includes a junction or active layer between doped semiconductor layers coextensive over a contiguous device area, corresponding sets of electrical contacts connected to the semiconductor layers, and multiple nanostructured optical elements at a surface of one semiconductor layer opposite the other semiconductor layer. Composite electrical contacts of one set include a conductive layer, a transparent dielectric layer between the conductive and semiconductor layers, and vias through the dielectric layer connecting the conductive and semiconductor layers. The nanostructured elements redirect light, propagating laterally in optical modes supported by the semiconductor layers, to exit the device. The composite electrical contacts can be independent and define independently addressable pixel areas of the device. The nanostructured elements and thin semiconductor layers can yield high contrast between adjacent pixel areas without trenches between them. A drive circuit can provide drive current that differs among pixel areas.

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