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US Patent 10386224 Flexible conductive apparatus and systems for detecting pressure

Patent 10386224 was granted and assigned to Studio 1 Labs on August, 2019 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Studio 1 Labs
Studio 1 Labs
Current Assignee
Studio 1 Labs
Studio 1 Labs
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10386224
Date of Patent
August 20, 2019
Patent Application Number
16099964
Date Filed
October 24, 2017
Patent Citations Received
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US Patent 12067124 Systems and methods for node selection and ranking in cyber-physical systems
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US Patent 11992751 Virtual reality hand gesture generation
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US Patent 11465041 Force sensing resistor (FSR) with polyimide substrate, systems, and methods thereof
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US Patent 10549183 Electronic controller with a hand retainer, outer shell, and finger sensing
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US Patent 10649583 Sensor fusion algorithms for a handheld controller that includes a force sensing resistor (FSR)
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US Patent 10691233 Sensor fusion algorithms for a handheld controller that includes a force sensing resistor (FSR)
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US Patent 10820444 Systems and methods for monitoring the presence of rack mounted equipment
...
Patent Primary Examiner
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Andre J Allen
Patent abstract

A variable conductive apparatus responsive to an applied external force for use in a variable pressure sensor, monitoring system, or other devices. The variable conductive apparatus comprises a first conductive path that includes a first conductive surface; a second conductive path that includes a second conductive surface, a part of the second conductive surface having a conductive contact surface area with a part of the first conductive surface when there is no applied external force, another part of the second conductive surface separate from another part of the first conductive surface when there is no applied external force, wherein the applied external force increases conductive contact surface area between the first conductive surface and the second conductive surface and results in an increase in conductivity between the first conductive surface and the second conductive surface.

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