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US Patent 10384204 Systems for operating electrokinetic devices

Patent 10384204 was granted and assigned to Berkeley Lights on August, 2019 by the United States Patent and Trademark Office.

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Patent abstractTimelineTable: Further ResourcesReferences
Is a
Patent
Patent
1

Patent attributes

Patent Applicant
Berkeley Lights
Berkeley Lights
1
Current Assignee
Berkeley Lights
Berkeley Lights
1
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
1
Patent Number
103842041
Patent Inventor Names
Paul M. Lundquist1
Russell A. Newstrom1
Andrew W. McFarland1
Daniele Malleo1
J. Tanner Nevill1
Jonathan Cloud Dragon Hubbard1
Justin K. Valley1
Keith J. Breinlinger1
Date of Patent
August 20, 2019
1
Patent Application Number
149637591
Date Filed
December 9, 2015
1
Patent Citations Received
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US Patent 11925949 Fluid metering component and spraying apparatus thereof
2
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US Patent 11242524 HTP genomic engineering platform for improving fungal strains
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US Patent 10954511 HTP genomic engineering platform for improving fungal strains
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US Patent 11028401 Manipulation of genes involved in signal transduction to control fungal morphology during fermentation and production
1
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US Patent 11029180 Fluid metering component and spraying apparatuses thereof
‌
US Patent 11299741 Manipulation of genes involved in signal transduction to control fungal morphology during fermentation and production
‌
US Patent 11479779 Systems and methods for high-throughput automated strain generation for non-sporulating fungi
Patent Primary Examiner
‌
Christine T Mui
1
Patent abstract

A system for operating an electrokinetic device includes a support configured to hold and operatively couple with the electrokinetic device, an integrated electrical signal generation subsystem configured to apply a biasing voltage across a pair of electrodes in the electrokinetic device, and a light modulating subsystem configured to emit structured light onto the electrokinetic device. The system can further include a thermally controlled flow controller, and/or be configured to measure impedance across the electrokinetic device. The system can be a light microscope, including an optical train. The system can further include a light pipe, which can be part of the light modulating subsystem, and which can be configured to supply light of substantially uniform intensity to the light modulating subsystem or directly to the optical train.

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