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Kazuaki Tabata, Kanagawa JP

Kazuaki Tabata, Kanagawa JP

Patent application numberDescriptionPublished
20080240987Micro fluidic device and method for producing micro fluidic device - A micro fluidic device comprises a micro channel in which a plurality of fluids form laminar flows and are supplied, wherein an inner wall of the micro channel comprise a protruding part that is substantially parallel to the flows of the fluids and protrudes in directions substantially vertical to interfaces formed by the plurality of fluids.10-02-2008
20090098027MICROREACTOR DEVICE - A microreactor device comprises: a microchannel that sends one or more fluids; and a section that isolates vibrations to a first portion of the microchannel.04-16-2009
20090107030REACTION METHOD USING A MICROREACTOR, AND A MICROREACTOR - A reaction method using a microreactor, comprises: forming, in a microchannel, an at least two-layered laminar flow in n kinds (n is an integer of 3 or more) of a fluid 04-30-2009
20100072116CLASSIFYING DEVICE AND METHOD OF CLASSIFICATION - A classifying device for classifying particles using a centrifugal force contains a microchannel includes a curved portion including a first tubular channel and a second tubular channel; and a diaphragm that is provided within the curved portion, and that is located at a position between the first tubular channel and the second tubular channel; and wherein the diaphragm has at least a first apertured group formed in a central region of the diaphragm and a second apertured group formed in a first end region and a second end region of the diaphragm, the first apertured group and the second apertured group communicate the first tubular channel with the second tubular channel along a direction of the centrifugal force, the first apertured group has a mesh, and the second apertured group has a mesh that is different in size from the mesh of the first apertured group.03-25-2010
20100122957MICROCHANNEL DEVICE, SEPARATION APPARATUS, AND SEPARATION METHOD - A microchannel device is provided, the microchannel device containing a microfluidic channel including a sub fluidic channel in which at least one filtration diaphragm is provided, wherein the microfluidic channel has at least a supply port, a first discharge port and a second discharge port, the supply port and the first discharge port are connected through the filtration diaphragm, the supply port and the second discharge port are connected without the filtration diaphragm, and the filtration diaphragm is provided parallel to a fluidic channel direction of the microfluidic channel.05-20-2010
20100282397LAMINATED STRUCTURE, DONOR SUBSTRATE, AND METHOD FOR FABRICATING LAMINATED STRUCTURE - A laminated structure includes: a plurality of first electroconductive films each having a prescribed hardness; and a plurality of second electroconductive films each having a hardness that is lower than the prescribed hardness. The first and second electroconductive films are laminated alternately.11-11-2010
20110073530LIQUID TRANSPORTING APPARATUS, CLASSIFYING APPARATUS, AND CLASSIFYING METHOD - A liquid transporting apparatus includes: a microchannel; a transporting liquid supply port through which transporting liquid is supplied to the microchannel; a partition wall as defined herein, and that has an opening; a first split channel that is provided on an upper side of the partition wall; a second split channel that is provided on a lower side of the partition wall; a particle dispersion supply port through which a particle dispersion is supplied to a middle portion of a width direction of the first split channel; and at least one drain port through which the fluid is discharged from downstreams of the first and second split channels, and a pattern that generates an upward-directed flow with respect to a vertical direction in a middle portion of a section of the microchannel is formed in an inner wall of the microchannel or in the partition wall.03-31-2011
20110168210MICRO-NANO BUBBLE GENERATING METHOD, MICROCHANNEL CLEANING METHOD, MICRO-NANO BUBBLE GENERATING SYSTEM, AND MICROREACTOR - A micro-nano bubble generating method comprises: introducing a liquid into a microchannel, in which the microchannel is defined by a microchannel wall an entirety or a portion of which is formed by a porous wall having through pores with radii of 10 to 1,000 nm; and supplying a gas directly into the microchannel from outside the porous wall by a pressurized-gas supplying section, to allow micro-nano bubbles to be contained in the liquid.07-14-2011

Patent applications by Kazuaki Tabata, Kanagawa JP