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US Patent 7972885 Broadband imaging device and manufacturing thereof

Patent 7972885 was granted and assigned to Banpil Photonics, Inc. on July, 2011 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Current Assignee
Banpil Photonics, Inc.
Banpil Photonics, Inc.
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
79728850
Patent Inventor Names
Achyut Kumar Dutta0
Robert Allen Olah0
Date of Patent
July 5, 2011
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Patent Application Number
125666590
Date Filed
September 24, 2009
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Patent Citations Received
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US Patent 12072448 High-speed light sensing apparatus
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US Patent 11756969 Germanium-silicon light sensing apparatus
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US Patent 11755104 Eye gesture tracking
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US Patent 11773783 Flexible sensor system for prognostic health monitoring of composite aerostructures
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US Patent 11923396 Integrated circuit photodetector
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US Patent 12013463 Light-sensing apparatus and light-sensing method thereof
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US Patent 11747450 High-speed light sensing apparatus
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US Patent 11749696 High-speed light sensing apparatus II
Patent Primary Examiner
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David Nhu
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Patent abstract

This invention relates to imaging device and its related transferring technologies to independent substrate able to attain significant broadband capability covering the wavelengths from ultra-violet (UV) to long-Infrared. More particularly, this invention is related to the broadband image sensor (along with its manufacturing technologies), which can detect the light wavelengths ranges from as low as UV to the wavelengths as high as 20 μm covering the most of the wavelengths using of the single monolithic image sensor on the single wafer. This invention is also related to the integrated circuit and the bonding technologies of the image sensor to standard integrated circuit for multicolor imaging, sensing, and advanced communication. Our innovative approach utilizes surface structure having more than micro-nano-scaled 3-dimensional (3-D) blocks which can provide broad spectral response. Utilizing multiple micro-nano scaled blocks help to increase the absorption spectra more than the material used as the absorption layer. In addition, utilizing the multiple nano-scaled 3-D blocks help to increase the absorption over the wavelength due to the multiple reflections and diffractions inside the 3-D structures. The absorption layers will be designed to achieve the required quantum efficiency and also required speed.

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