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US Patent 11777049 Photo-detecting apparatus with low dark current

Patent 11777049 was granted and assigned to Artilux on October, 2023 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Artilux
Artilux
Current Assignee
Artilux
Artilux
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
11777049
Patent Inventor Names
Yun-Chung Na
Yen-Cheng Lu
Date of Patent
October 3, 2023
Patent Application Number
17005288
Date Filed
August 27, 2020
Patent Citations
‌
US Patent 7884310 Device and method for the demodulation electromagnetic wave fields having separated detection and demodulation regions
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US Patent 7090133 METHOD OF AND APPARATUS FOR PRODUCING A DIGITAL IMAGE OF AN OBJECT WITH REDUCED SPECKLE-PATTERN NOISE, BY CONSECUTIVELY CAPTURING, BUFFERING AND PROCESSING A SERIES OF DIGITAL IMAGES OF THE OBJECT OVER A SERIES OF CONSECUTIVELY DIFFERENT PHOTO-INTEGRATION TIME PERIODS
‌
US Patent 7411265 Photodiode and phototransistor
‌
US Patent 7629661 Semiconductor devices with photoresponsive components and metal silicide light blocking structures
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US Patent 7750958 Pixel structure
‌
US Patent 7826058 All optical and hybrid reflection switch at a semiconductor/glass interface due to laser beam intersection
‌
US Patent 10418407 High-speed light sensing apparatus III
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US Patent 10613202 Time-of-flight detection pixel
...
Patent Citations Received
‌
US Patent 12072448 High-speed light sensing apparatus
0
Patent Primary Examiner
‌
Bitew A Dinke
CPC Code
‌
H01L 31/02005
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H01L 27/14609
‌
H01L 31/109
‌
H01L 27/14643
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H01L 27/1462
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H01L 27/1461
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H01L 31/1075
Patent abstract

A photo-detecting apparatus is provided. The photo-detecting apparatus includes a carrier conducting layer having a first surface; an absorption region is doped with a first dopant having a first conductivity type and a first peak doping concentration, wherein the carrier conducting layer is doped with a second dopant having a second conductivity type and a second peak doping concentration, wherein the carrier conducting layer comprises a material different from a material of the absorption region, wherein the carrier conducting layer is in contact with the absorption region to form at least one heterointerface, wherein a ratio between the first peak doping concentration of the absorption region and the second peak doping concentration of the carrier conducting layer is equal to or greater than 10; and a first electrode and a second electrode both formed over the first surface of the carrier conducting layer.

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