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US Patent 11596940 Microfluidic device

Patent 11596940 was granted and assigned to Oxford Nanopore Technologies on March, 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
Oxford Nanopore Technologies
Oxford Nanopore Technologies
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Current Assignee
Oxford Nanopore Technologies
Oxford Nanopore Technologies
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
115969400
Date of Patent
March 7, 2023
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Patent Application Number
163156020
Date Filed
July 6, 2017
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Patent Citations
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US Patent 10215768 Lipid bilayer sensor system
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US Patent 10036065 Biochemical analysis apparatus and rotary valve
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US Patent 10814298 Formation of array of membranes and apparatus therefor
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US Patent 11084015 Formation of array of membranes and apparatus therefor
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US Patent 11097269 Microfluidic device and sample analysis method
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US Patent 10338056 Apparatus for supporting an array of layers of amphiphilic molecules and method of forming an array of layers of amphiphilic molecules
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US Patent 10416117 Formation of layers of amphiphilic molecules
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US Patent 10549274 Electrical device with detachable components
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Patent Citations Received
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US Patent 12121894 Microfluidic device
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US Patent 11913936 Apparatus for supporting an array of layers of amphiphilic molecules and method of forming an array of layers of amphiphilic molecules
0
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US Patent 11789006 Nanopore sensing device, components and method of operation
Patent Primary Examiner
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Samuel P Siefke
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CPC Code
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B01L 2300/0636
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B01L 2300/0645
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B01L 2300/0816
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B01L 2300/087
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B01L 2300/14
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B01L 2300/161
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B01L 2200/0621
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B01L 2400/0406
0
...

A microfluidic device comprises: a sensor provided in a sensing chamber; a liquid inlet and liquid outlet connecting to the sensor chamber for respectively passing liquid into and out of the sensing chamber and; a sample input port in fluid communication with the liquid inlet; a liquid collection channel downstream of the sensing chamber outlet; a flow path interruption between the liquid outlet and the liquid collection channel, preventing liquid from flowing into the liquid collection channel from upstream; a buffer liquid filling from the sample input port to the sensing chamber, and filling the sensing chamber and filing from the liquid outlet to the flow path interruption; an activation system operable to complete the flow path between the liquid outlet and the liquid collection channel such that the sensor remains unexposed to gas or a gas/liquid interface.

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