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US Patent 7897044 Fluid separation device

Patent 7897044 was granted and assigned to National Center for Scientific Research on March, 2011 by the United States Patent and Trademark Office.

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Patent

Patent attributes

Current Assignee
National Center for Scientific Research
National Center for Scientific Research
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
7897044
Date of Patent
March 1, 2011
Patent Application Number
11851711
Date Filed
September 7, 2007
Patent Citations Received
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US Patent 12091710 Systems and methods for handling microfluidic droplets
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US Patent 11821109 Compartmentalised combinatorial chemistry by microfluidic control
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US Patent 11913870 Microfluidic chip device for optical force measurements and cell imaging using microfluidic chip configuration and dynamics
0
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US Patent 11965877 Compositions and methods for molecular labeling
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US Patent 11747327 Compositions and methods for molecular labeling
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US Patent 11754499 Enzyme quantification
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US Patent 11768198 Compositions and methods for molecular labeling
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US Patent 11786872 Vitro evolution in microfluidic systems
Patent Primary Examiner
‌
Ernest G. Therkorn
Patent abstract

The present invention relates to a fluidic separation device comprising:at least one microchannel (2; 66) extending along a longitudinal axis (X), the microchannel having a cross-section that presents a width measured along a first transverse axis (Y) and a thickness measured along a second transverse axis (Z) perpendicular to the first, the width being greater than the thickness, the microchannel including, along the second transverse axis, bottom and top walls (3 and 4);at least first, second, and third inlets (7, 8, and 9) in fluidic communication with the microchannel (2), the second inlet (8) being disposed on the second transverse axis (Z) between the first and third inlets (7 and 9); andat least first and third transverse separation walls (10 and 11) respectively separating the first and second inlets and the second and third inlets, the first and second separation walls (10; 11) being arranged in such a manner that the second inlet (8) is separated from each of said bottom and top walls (3 and 4) by a non-zero distance measured along the second transverse axis (Z), the second inlet (8) being, in particular, adjacent to at least one of the separation walls.

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