Patents Assigned to Q Chip Limited
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Patent number: 8722414Abstract: The present invention provides a method of controlling a chemical process, the method comprising the steps of: (i) providing a laminar flow of a first fluid, the first fluid providing a first reagent or one or more precursor thereof), a laminar flow of a second fluid, the second fluid providing a second reagent (or one or more precursor thereof) and a laminar flow of barrier fluid; and (ii) causing the first and barrier fluids to contact one another so that the barrier fluid forms a barrier between the first reagent (or one or more precursor thereof) and the second reagent (or one or more precursor thereof) wherein step (ii) comprises forming segments of first fluid encased or sandwiched by barrier fluid, the segments being surrounded by the second fluid, and the barrier fluid is permeable to one or both of the first and second reagents. Devices for performing the method of the present invention are also provided.Type: GrantFiled: December 20, 2006Date of Patent: May 13, 2014Assignee: Q Chip LimitedInventors: Victoria Louise Workman, Robert Huw Davis, Daniel David Palmer
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Patent number: 8114319Abstract: The invention provides a device (1, 301, 501) for producing a spherical segmented flow of fluid, which device includes: a functional fluid conduit (6, 506) arranged to contain a functional fluid (15, 515); at least two carrier fluid conduits (7, 8, 507, 508), each carrier fluid conduit arranged to carry a carrier fluid (16, 514), the functional fluid conduit merging with the carrier fluid conduits at a junction (9) to form an encased flow conduit (9a, 529) thereby permitting functional fluid to be sandwiched (or encased) by the carrier fluid to form an encased flow, the encased flow conduit having a discontinuity (10, 510) therein such that the encased flow forms into a flow of alternate segmented spheres after the discontinuity, wherein the device is provided with a segmented flow conduit (11, 511) downstream of the encased flow conduit, the encased segmented flow conduit being provided with an enlargement (21, 512) in cross-section.Type: GrantFiled: December 19, 2005Date of Patent: February 14, 2012Assignee: Q Chip LimitedInventors: Robert Huw Davis, Daniel David Palmer
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Publication number: 20110160134Abstract: A method of making solid beads is disclosed, said method comprising: (i) providing a microfluidic device comprising a carrier fluid conduit and a functional fluid conduit which meet at a junction region; (ii) providing a laminar flow of a functional fluid comprising a solvent and a solute along the functional fluid conduit and providing a laminar flow of a carrier fluid along the carrier fluid conduit so as to form droplets of functional fluid in a flow of carrier fluid; (iii) cooling the segments of functional fluid in a conduit of the microfluidic device to form cooled (preferably frozen) droplets; and (iv) providing a liquid into intimate admixture with the cooled droplets so as to cause said solvent to exit said cooled droplets, thus forming solid beads. A microfluidic device for use in such a method is also disclosed.Type: ApplicationFiled: June 16, 2009Publication date: June 30, 2011Applicant: Q Chip LimitedInventors: Daniel Palmer, Richard Calder, Owen Shadick
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Patent number: 7802591Abstract: A microfluidic device comprises first and second inlet passages (13) for respective immiscible fluids, these inlet passages merging into a third passage (8) along which the two fluids flow under parallel laminar flow conditions, the third passage being formed with a constriction or other discontinuity (9) causing the two fluids to form into a flow of alternate segments.Type: GrantFiled: November 14, 2003Date of Patent: September 28, 2010Assignee: Q Chip LimitedInventors: David Anthony Barrow, Nicola Harries, Tyrone Gwyn Jones, Kostas Bouris
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Publication number: 20080230129Abstract: A device (1) for producing multiple fluid flows at substantially uniform rates, which device includes: A manifold (2) having a first inlet port (3) and a second inlet port, each inlet port arranged to provide fluid transfer from the inlet port to a respective annular channel (4, 5, 6), a distribution element (7) having a first aperture set (12) and a second aperture set (13) therein, each aperture set including at least one aperture and being arranged to be in fluid communication with one of the annular channels such that fluid is permitted to flow from the annular channel through an aperture to a respective fluid outlet.Type: ApplicationFiled: December 6, 2005Publication date: September 25, 2008Applicant: Q CHIP LIMITEDInventor: Robert Huw Davis