Okugawa, JP
Akihiro Okugawa, Kyoto JP
Patent application number | Description | Published |
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20150264462 | CAPACITIVE TRANSDUCER - A capacitive transducer has a back plate including a fixed electrode, a diaphragm facing the back plate with an air gap interposed therebetween, the diaphragm acting as a movable electrode, at least a first stopper of a first protruding length, and a second stopper of a second protruding length. The first and second stoppers protrude from at least either the surface on the back plate near the air gap or the surface on the diaphragm near the air gap. The first stopper is provided at a position corresponding to a first position on the diaphragm. The second the stopper is provided at a position corresponding to a second position on the diaphragm. An amount of displacement of the diaphragm at the first position is greater than an amount of displacement of the diaphragm at the second position. The protruding length of the first stopper is shorter than the protruding length of the second stopper. | 09-17-2015 |
20150264464 | CAPACITANCE-TYPE TRANSDUCER - A capacitance-type transducer has a back plate having a fixed electrode, a diaphragm that opposes the back plate via an air gap and serves as a movable electrode, and at least first stoppers having a first projection length and second stoppers having a second projection length that project from at least one of a surface of the back plate on the air gap side and a surface of the diaphragm on the air gap side. At least one of the diaphragm and the fixed electrode is divided into at least a first region having a first surface area and a second region having a second surface area, a first sensing portion made up of the diaphragm and the fixed electrode is constituted in the first region, and a second sensing portion made up of the diaphragm and the fixed electrode is constituted in the second region. | 09-17-2015 |
Akiyoshi Okugawa, Aichi-Ken JP
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20140375097 | PANEL-SHAPED SEAT BACK FRAME AND SEAT BACK HAVING THE SAME - There is provided a panel-shaped seat back frame used for a seat back of a vehicle seat. The panel-shaped seat back frame includes a basic frame member configured by a metallic rod-shaped material, and a panel-shaped forming member which is made of a hard foamed resin and covers the basic frame member. | 12-25-2014 |
20140375105 | VEHICLE SEAT AND METHOD OF MANUFACTURING THE SAME - There is provided a method of manufacturing a vehicle seat configured by covering a seat cover on a sitting surface side of a seat frame via a seat pad and by covering a non-sitting surface side of the seat frame with a carpet, the vehicle seat including an end fixing part having a groove into which both ends of the seat cover and the carpet are to be inserted and fixed. The method includes fixing, to the end of the seat cover, an insertion member having stiffness, which can be inserted and fixed in the groove integrally with the seat cover, arranging the carpet such that the end thereof covers an entrance of the groove, and inserting the insertion member into the groove to thus push and fix the end of the carpet in the groove while the end of the carpet abuts on the insertion member. | 12-25-2014 |
Futoshi Okugawa, Settsu-Shi JP
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20130220095 | CUTTER - A release space ( | 08-29-2013 |
Futoshi Okugawa, Osaka JP
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20100199654 | GAS PRESSURE ACTUATOR - Disclosed is a gas pressure actuator whose actuator body has a cylinder, a piston and a gas generator in which a powder is loaded, and the gas generator is positioned at an end portion of the cylinder. The gas generator injects a high pressure gas into the cylinder by the combustion of the powder, thereby moving the piston. The actuator body is provided with a coating which covers the entire actuator body from outside. The coating is a resin coating having electrically insulating, waterproof, and dustproof characteristics. | 08-12-2010 |
20100218659 | CUTTING APPARATUS, BREAKER, CONTACTOR, AND ELECTRICAL CIRCUIT BREAKER | 09-02-2010 |
20130255463 | CUTTER - A cutter includes a stopper with which a blade after cutting a harness with a cutting portion collides and stops. The blade includes a flexible guide portion which protrudes further in a forward direction of the blade than the cutting portion. | 10-03-2013 |
20130255464 | CUTTER - A cutter includes a blade member configured to cut a current-carrying member by an edge portion, a gas generator configured to move the blade member toward the current-carrying member, a receiving member arranged on a side opposite to the blade member relative to the current-carrying member and defining a receiving surface for receiving the current-carrying member upon cutting thereof, and a stopper configured to restrict forward movement of the blade member such that the blade member stops at a predetermined position. An insulating protective film softer than the current-carrying member is formed on a surface of the edge portion, inner surfaces of guide portions formed in a front end portion of the blade member, and the receiving surface of the receiving member. | 10-03-2013 |
20130263714 | CUTTER - A cutter includes a blade which has a cutting portion. The cutting portion includes a first edge portion at a front end of the blade in a forward direction, and a second edge portion different in height from the first edge portion by a height. | 10-10-2013 |
20130263715 | CUTTER - A cutter includes a blade and a case. A harness is placed across a second hole. A second inner cylinder member has a back-side inner wall extending from the harness toward a first inner cylinder member, for guiding a cutting portion to the harness. | 10-10-2013 |
20140326122 | CUTTER - A cutter prevents movement of a harness being cut. The cutter includes: a first cylindrical member and a second cylindrical member whose axial ends face each other, with a predetermined distance therebetween, and sandwich the harness in the axial direction; and a blade accommodated in the first cylindrical member to be slidable in the axial direction and including a cutting portion on a front side and a pusher on a back side. The first cylindrical member includes a back side tapered portion and a front side tapered portion at which an inner diameter of the first cylindrical member on an inner surface where the pusher slides is gradually reduced from a back side to a front side. | 11-06-2014 |
Keisuke Okugawa, Kasugai-Shi JP
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20160126125 | ELECTROSTATIC CHUCK - An electrostatic chuck includes: a body substrate having a substrate front surface and a substrate rear surface and made of ceramic; an attraction electrode provided in the body substrate; a metal base having a base front surface and a base rear surface, and placed such that the base front surface faces the substrate rear surface of the body substrate; and an internal through hole formed so as to penetrate the base front surface and the base rear surface of the metal base. The body substrate has a plurality of heating regions in each of which a heater electrode is provided. In the internal through hole, a plurality of heater electrode terminals are provided which are electrically connected to the heater electrode in each heating region. The plurality of heater electrode terminals provided in the internal through hole are electrically connected to a connection member provided in the internal through hole. | 05-05-2016 |
Kimitake Okugawa, Osaka JP
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20130141800 | FRESNEL LENS - A Fresnel lens comprises a first surface, and a second surface being the reverse side surface of the first surface and having a plurality of lens surfaces. Each lens surface is configured from a part of a side surface of an elliptical cone, which has an apex located on the second surface side and a bottom surface located on the first surface side. Here, in the Fresnel lens, any normal line intersecting with the lens surface configured from the part of the side surface of the elliptical cone among normal lines of respective points on the first surface is non-parallel to a central axis of the elliptical cone corresponding to the lens surface with which the any normal line intersects. | 06-06-2013 |
20140008340 | HYBRID ULTRAPRECISION MACHINING DEVICE AND HYBRID ULTRAPRECISION MACHINING METHOD - There is provided a hybrid ultraprecision machining device for manufacturing a micro-machined product from a workpiece, the machining device comprising: an electromagnetic-wave-machining means for roughly machining the workpiece; a precision-machining means for precisely machining the roughly machined workpiece, the precision-machining means being equipped with a replaceable cutting tool selected from the group consisting of a planar tool, a shaper tool, a fly-cutting tool, a diamond-turning tool and a micro-milling tool; a shape-measurement means for measuring a shape of the workpiece upon use of the electromagnetic-wave machining means and the precision-machining means; and a control means for controlling the electromagnetic-wave-machining means or the precision-machining means, based on information on the shape of the workpiece, the shape being measured by the shape-measuring means. | 01-09-2014 |
20140316552 | METHOD FOR DETERMINING A MACHINING MEANS IN HYBRID ULTRAPRECISION MACHINING DEVICE, AND HYBRID ULTRAPRECISION MACHINING DEVICE - There is provided a method for determining a machining means in a hybrid ultraprecision machining device for manufacturing a micro-machined product from a workpiece, the machining device comprising: an electromagnetic-wave-machining means for roughly machining the workpiece; a precision-machining means for precisely machining the roughly machined workpiece; and a shape-measurement means for measuring a shape of the workpiece upon use of the electromagnetic-wave machining means and the precision-machining means, wherein a choice is made between the electromagnetic-wave-machining means and the precision-machining means in the determination of the machining means, on the basis of: information on a stereoscopic model of the micro-machined product; information on a removal volume to be removed from a volume of the workpiece in the manufacturing of the micro-machined product; and data on a removal process time of the electromagnetic-wave-machining means and data on a removal process time of the precision-machining means. | 10-23-2014 |
20150025667 | METHOD FOR CREATING MACHINING DATA FOR USE IN HYBRID ULTRAPRECISION MACHINING DEVICE, AND HYBRID ULTRAPRECISION MACHINING DEVICE - There is provided a method for creating machining data for a hybrid ultraprecision machining device for manufacturing a micro-machined product from a workpiece, the machining device comprising: an electromagnetic-wave-machining means for roughly machining the workpiece; a precision-machining means for precisely machining the roughly machined workpiece; and a shape-measurement means, wherein the creation of the machining data makes use of: information on original shape corresponding to shape of the workpiece; information on roughly-machining shape to be removed from the workpiece by the electromagnetic-wave-machining means; and stereoscopic model of after-electromagnetic-wave-machining shape which is obtained by subtracting the roughly-machining shape from the original shape, wherein the machining data is created for electromagnetic-wave machining on the basis of information on a plurality of sliced portions obtained by partially slice-cutting from the stereoscopic model of the after-electromagnetic-wave-machining shape. | 01-22-2015 |
Masatoshi Okugawa, Shizuoka JP
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20080283722 | Autofocus Device and Microscope Using the Same - A microscope apparatus | 11-20-2008 |
20090002811 | Microscopic Image Capturing Device - The present invention relates to a microscopic image capturing apparatus having a structure that, in scanning an imageable area of an imaging unit in a predetermined direction in an imaging object area, in which a sample is present, can reliably set a focal point of the imaging unit on each imaging position set inside the imaging object area regardless of the type of focusing actuator. The microscopic image capturing apparatus has a sample setting stage having a sample setting surface that is inclined with respect to a scan plane orthogonal to an optical axis of an objective lens. By moving the sample setting stage, which has such a sample setting surface, along the scan plane in a manner such that the distance in the optical axis direction between the imaging unit and the sample setting surface varies monotonously, the focal point position of the imaging unit is adjusted in only one direction along the optical axis of the objective lens. In this case, even when a stepping motor is applied as the focusing actuator, the occurrence of lost motion in a driving system based on the stepping motor is prevented reliably and the focal point of the imaging unit can be set reliably on each imaging position set inside the imaging object area. | 01-01-2009 |
Masatoshi Okugawa, Hamamatsu-Shi JP
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20100309306 | IMAGE ACQUIRING APPARATUS, IMAGE ACQUIRING METHOD, AND IMAGE ACQUIRING PROGRAM - In acquisition of a micro image of a sample S by a micro image acquiring unit | 12-09-2010 |
20150160447 | MICROSCOPE IMAGING DEVICE, AND MICROSCOPE IMAGING METHOD - The microscope imaging system is provided with: a stage having a mount face on which a specimen is to be mounted; an imaging unit having an imaging element for imaging a part of an imaging region set on the mount face; and a optical unit arranged between the stage and the imaging unit and having an objective lens for imaging light from a part of the imaging region onto the imaging unit. The specimen is arranged so that the mount face is orthogonal to an optical axis of the objective lens. | 06-11-2015 |
20150296126 | IMAGE CAPTURING APPARATUS AND FOCUSING METHOD THEREOF - An image capturing apparatus is configured to store the control result of a focus position during scanning of segmented regions and determine an initial focus position in scanning of the (n+1)th segmented region, based on the control result stored during scanning of the nth (n is an integer of 1 or more) or earlier segmented region. The foregoing technique allows this image capturing apparatus to roughly determine the initial focus position in the next-scanned segmented region by making use of the control result of the segmented region the scanning of which has been already completed. This can suppress increase in processing time necessary for imaging, by simplification of pre-focus. | 10-15-2015 |
20150301327 | IMAGE CAPTURING APPARATUS AND IMAGE CAPTURING METHOD - An image capturing apparatus is configured to store the control result of a focus position during scanning of segmented regions and determine an initial focus position in scanning of the (n+1)th segmented region, based on the control result stored during scanning of the nth (n is an integer of 1 or more) or earlier segmented region. The foregoing technique allows this image capturing apparatus to roughly determine the initial focus position in the next-scanned segmented region by making use of the control result of the segmented region the scanning of which has been already completed. This can suppress increase in processing time necessary for imaging, by simplification of pre-focus. | 10-22-2015 |
20160077322 | IMAGE ACQUISITION DEVICE AND METHOD AND SYSTEM FOR ACQUIRING FOCUSING INFORMATION FOR SPECIMEN - In an image acquisition device, an optical path difference generating member can form an optical path length difference of a second optical image without splitting light in a second optical path. This can suppress the quantity of light required for the second optical path to obtain information of the focal position, whereby a quantity of light can be secured for a first imaging device to capture an image. The image acquisition device synchronizes the movement of a predetermined part of a sample within a field of an objective lens with rolling readout such that each pixel column of a second imaging device is exposed to an optical image of the predetermined part in the sample. | 03-17-2016 |
20160080632 | IMAGE ACQUISITION DEVICE AND METHOD AND SYSTEM FOR CREATING FOCUS MAP FOR SPECIMEN - An image acquisition device reciprocates a focal position of an objective lens with respect to a sample in the optical axis direction of the objective lens, while moving a field position of the objective lens with respect to the sample. This makes it possible to acquire contrast information of image data at the field position of the objective lens sequentially as the field position moves with respect to the sample. The image acquisition device acquires the image data by the rolling readout of the image pickup element according to the reciprocation of the focal position of the objective lens. | 03-17-2016 |
Michitaka Okugawa, Toyota-Shi JP
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20120267413 | CONNECTING ROD BREAKING METHOD - A notch is formed in an inner circumference of a bolt hole formed on each side of a large end of the connecting rod such that the notch extends continuously along the inner circumference. By radially propagating progress of breakage from the notch as a starting point, a connecting rod is broken into a rod portion and a cap portion. In this case, since no confluence of breakage propagation exists, the connecting rod can be broken without generating any breaking surface step. | 10-25-2012 |
Narimasa Okugawa, Hyogo JP
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20150240013 | PROCESS FOR PRODUCING POLYACRYLIC ACID (SALT)-BASED WATER ABSORBENT RESIN - Provided is a method for producing a polyacrylic acid (salt)-based water absorbent resin in which the physical properties (especially liquid permeability) are improved and maintained even in large scale production. The method for producing a polyacrylic acid (salt)-based water absorbent resin, which sequentially includes a polymerization step, in which a monomer aqueous solution having acrylic acid (salt) as a main component is polymerized, a drying step, in which a water-containing gel-like crosslinked polymer obtained in the polymerization step is dried, and a classification step, in which a polymer obtained in the drying step is classified, wherein a rocking-type sieve classification apparatus is used in the classification step, and the rocking-type sieve classification apparatus has a sieve net having a trajectory and a rotation speed in the following ranges; radial gradient R: from 5 to 40 mm, tangential gradient T: from 0.1 to 25 mm, eccentric gradient E: from 40 to 80 mm, and rotation speed F: from 60 to 600 rpm. | 08-27-2015 |
Shinichiro Okugawa, Toyota-Shi JP
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20090037082 | EXHAUST EMISSION CONTROL DEVICE FOR INTERNAL COMBUSTION ENGINE - An exhaust emission control device removes particulate matters contained in exhaust gas of an internal combustion engine and deposited in a particulate filter. The device has a catalyst judging block judging the catalytic activity of catalyst held in the particulate filter, an exhaust gas detecting block detecting a flow rate of the exhaust gas, an injection type selecting block selecting a first fuel injection type or a second fuel injection type according to the catalytic activity and the flow rate of the exhaust gas, and a fuel injection control block controlling fuel injected into the engine to heighten the temperature of the exhaust gas according to the first fuel injection type and to supply unburned hydrocarbons to the particulate filter according to the second fuel injection type. | 02-05-2009 |
Shinichiro Okugawa, Toyota-City JP
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20080314029 | Exhaust purification device - An exhaust purification device increases temperature of a particulate filter by at least one of a first temperature increase device and a second temperature increase device to combust and remove particulate matters deposited in a particulate filter. The second temperature increase device increases the temperature of the particulate filter to temperature higher than the temperature achieved by the first temperature increase device. An engine output at the time when the second temperature increase device performs the temperature increase operation is equal to an engine output at the time when the first temperature increase device performs the temperature increase operation. The exhaust purification device sets a ratio between an operation period of the first temperature increase device and an operation period of the second temperature increase device according to estimated temperature of the particulate filter. | 12-25-2008 |
Yoji Okugawa, Hyogo JP
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20130109833 | CYCLIC PEPTIDE COMPOUND OR PHARMACOLOGICALLY ACCEPTABLE SALT THEREOF AND METHOD FOR PRODUCING SAME | 05-02-2013 |
Yoshinaga Okugawa, Mie JP
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20160115548 | ULCERATIVE COLITIS (UC)-ASSOCIATED COLORECTAL NEOPLASIA MARKERS - Embodiments provide methods and compositions related to detecting neoplasia in ulcerative colitis patients by detection and analysis of the methylation state of miR-1, -9, -124, miR-137 and/or miR-34b/c in samples from UC patients. | 04-28-2016 |
Yoshitaka Okugawa, Tokyo JP
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20100038762 | CIRCUIT BOARD MANUFACTURING METHOD, SEMICONDUCTOR MANUFACTURING APPARATUS, CIRCUIT BOARD AND SEMICONDUCTOR DEVICE - There is provided a circuit board manufacturing method that makes it possible to manufacture a next-generation semiconductor device in a stable manner and improve the yield during secondary mounting processing. A circuit board | 02-18-2010 |
Yuji Okugawa, Tokyo JP
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20100289864 | SCANNING OPTICAL DEVICE AND IMAGE FORMING APPARATUS - A scanning optical device, comprises a light source to emit a light beam; a deflecting section to deflect the emitted light beam so as to scan; an optical element to make the scanning light beam to converge; and a correcting mechanism to correct an attitude of the optical element so as to adjust a convergence position of the scanning light beam; wherein at least a part of the correcting mechanism is arranged between the deflecting section and the optical element. | 11-18-2010 |
20120306989 | SCANNING OPTICAL DEVICE THAT SCANS PHOTORECEPTOR WITH LASER LIGHT AND IMAGE FORMING APPARATUS - A scanning optical device that scans a photoreceptor with laser light includes a light source, a light outputting section, and a projection. The laser light from the light source is output through the light outputting section so that the photoreceptor is irradiated with the laser light. The projection projects through a partition wall toward the photoreceptor. The light outputting section is disposed in a position separated from the photoreceptor by the partition wall. The projection contains a polygon motor that rotates a polygon mirror to reflect the laser light. | 12-06-2012 |
20150346627 | IMAGE FORMING APPARATUS AND EXPOSURE POSITION ADJUSTING METHOD - In one aspect of the present invention, exposure timings for a plurality of light beams are adjusted on the basis of a toner concentration of a boundary part between line images formed by one light beam and line images formed by another light beam neighboring the one light beam and a toner concentration of a part except the boundary part in a pattern image. Here, in the pattern image, line images extending in the main-scan direction of a photoreceptor are formed while having a predetermined pitch in the sub-scan direction of the photoreceptor and also the boundary part is arranged so as to be shifted from the sub-scan direction of the photoreceptor, by an image forming section. | 12-03-2015 |