Washiya, JP
Kimito Washiya, Kanagawa JP
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20080237928 | CASTING DEVICE, SOLUTION CASTING APPARATUS, AND SOLUTION CASTING METHOD - A casting dope is cast onto a casting belt to form a casting film, and then the casting film is peeled as a wet film from the casting belt. The wet film is guided through a transfer area toward a tenter drying device. In the tenter drying device, a tenter performs sequentially the drying, the stretching and the relaxation of the wet film during transporting the wet film. On the wet film, a bowing phenomena occurs by the relaxation to generate a first disorientation of an optical axis, and therefore the orientation of slow axed becomes not uniform. The stretching provide a second disorientation of the optical axis so as to cancel the first disorientation. Thus in the obtained film, the nonuniformity of the orientation of the slow axes is reduced. | 10-02-2008 |
Kimito Washiya, Minami-Ashigara-Shi JP
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20080200667 | METHOD FOR PRODUCING CELLULOSE ACYLATE FILM - Cellulose with a calcium (Ca) content of at most 10 ppm is used as a raw material of cellulose acylate. The cellulose acylate is synthesized by esterification of cellulose with carboxylic acid such as acetic acid. A dope containing the cellulose acylate and a solvent is continuously cast onto a belt, which is a support, to form a casting film. The casting film is peeled off from the belt as a film, and then the film is dried. | 08-21-2008 |
Kiyotada Washiya, Akita JP
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20090231362 | Method of Reproducing Microscope Observation, Device of Reproducing Microscope Observation, Program for Reproducing Microscope Observation, and Recording Media Thereof - A plurality of data of still image for screening and zooming shot at maximum magnification to perform magnified observation with regard to a plurality of divided areas obtained by dividing a shoot target area in a microscopic image such that a portion of a peripheral portion of each of the dividing areas is overlapped to each other, and a plurality of data of still image for focusing shot by respectively shifting focus in each of the divided areas, are created. From data of tiled still image for screening and zooming and data of edited still images for focusing, which are obtained by applying a predetermined processing to the data of still image, an animated image for screening, an animated image for zooming, and an animated image for focusing are created, and an animated image reproducing motion of a microscopic image in actual microscope observation is displayed on a computer screen. And, when a mouse cursor is located on a specific region of the animated image, a comment balloon about the specific region is displayed. | 09-17-2009 |
Koji Washiya, Odawara JP
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20120246521 | STORAGE APPARATUS AND FAILURE DETECTION METHOD - Reduction of data processing capacity attributable to the occurrence of a failure is prevented by promptly identifying the failure location. | 09-27-2012 |
20130332768 | STORAGE SYSTEM, STORAGE CONTROL APPARATUS AND METHOD - A storage system comprises a storage device for storing data, a control apparatus which controls the storage device and comprises multiple communication ports, and a switch apparatus which expands the number of storage device couplings and comprises multiple communication ports. Respective multiple communication ports of the control apparatus are coupled to respective multiple communication ports of the switch apparatus, and the switch apparatus is coupled to the storage device. The control apparatus configures at least one communication port of the multiple communication ports of the control apparatus, to a dedicated communication port for outputting only a prescribed command issued when a failure is detected. | 12-12-2013 |
Motoo Washiya, Tokyo JP
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20100140801 | Device - In a device acting as a semiconductor device, a first chip has a first protective layer pattern while a second chip has a second protective layer pattern which is two-dimensionally symmetrical with the first protective layer pattern to provide a reflection symmetrical relationship between the first and the second protective layer patterns. When the first and the second chips form a back-to-back structure, both the first and the second protective layer patterns are completely superposed with each other. | 06-10-2010 |
Nobuhiro Washiya, Fujisawa JP
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20080235715 | Optical disc apparatus - To eliminate scratches on a disc surface of an optical disc in an emergency eject operation, there is provided an optical disc apparatus including: an emergency eject detector for detecting an emergency eject instruction; a rotation speed detector for producing a signal corresponding to the rotation speed of the optical disc; and a logical circuit unit which is operated by a first signal from the emergency eject detector and a second signal from the rotation speed detector, and when the second output signal is not more than a reference level, produces a third signal so as to input a control signal for instructing stop of the actuator control into an actuator controller. After detection of the emergency eject instruction, the apparatus performs the actuator control without producing the third signal until the rotation speed is not more than a predetermined value. Thus the objective lens is made in a focus control state or in a saving state in which the objective lens is separated from the disc surface. | 09-25-2008 |
20090316538 | Optical Disc Apparatus - An optical disc apparatus comprises an overcurrent detector and when the overcurrent detector detects an overcurrent during a recording operation or a reproduction operation and during an operation for controlling a focus of an objective lens, a rotation speed of an optical disc is reduced and an actuator is controlled to cause the objective lens to be in a retracted state under the condition that a disc motor exerts brake force. The objective lens is in the retracted state until the rotation speed of the optical disc becomes equal to or smaller than a predetermined value and when the rotation speed of the optical disc is equal to or smaller than the predetermined value, the objective lens is released from the retracted state. | 12-24-2009 |
Ryuta Washiya, Tokyo JP
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20140231965 | MICROFINE STRUCTURE FORMATION METHOD AND MICROFINE STRUCTURE FORMED BODY - Provided are a method for forming a microfine structure and a microfine structure forming body prepared by the method. The method allows a remaining film part to be formed thinner and more uniform on a substrate than the conventional techniques. The method comprises the steps of: forming an oxide layer on a metallic thin film; a photocurable resin layer via first and second adhesive layers over the oxide layer; and transferring a microfine structure formed on a mold by pressing the mold onto the photocurable resin layer. The first adhesive layer includes a compound having at least two hydrolysable functional groups, and the second adhesive layer includes a compound having at least a hydrolysable functional group and a reactive functional group. | 08-21-2014 |
Ryuta Washiya, Hitachi JP
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20090243126 | METHOD AND APPARATUS FOR IMPRINTING MICROSTRUCTURE AND STAMPER THEREFOR - A method of imprinting a microstructure comprising: contacting a stamper comprising a pattern layer with the microstructure of the order of from micrometers to nanometers in one face of the pattern layer and a substrate supporting the pattern layer with an imprinting member having a deformable layer to which the microstructure is imprinted, wherein the pattern layer is supported on a round surface having a prescribed radius of curvature of the substrate, the center of the round surface protruding towards the rear face of the pattern layer; causing the deformable layer on the imprinting member; and separating the stamper from the cured deformable layer. | 10-01-2009 |
20090246309 | FINE STRUCTURE IMPRINTING MACHINE - A fine structure imprinting machine is provided which can surely and easily eliminate static electricity in removing a stamper from an imprinting object. The fine structure imprinting machine is adapted to bring the stamper with a fine concavo-convex pattern formed thereon into contact with the imprinting object, thereby to imprint the fine concavo-convex pattern of the stamper onto a surface of the imprinting object. The stamper has a conductive film on at least a pattern formation surface thereof. The stamper is fixed by a conductive holding member, the conductive film is connected to the holding member via the conductor, and the holding member is connected to a ground within the machine. | 10-01-2009 |
20100062098 | STAMPER FOR MINUTE STRUCTURE TRANSFER AND A METHOD FOR MANUFACTURING THE SAME - The present invention can provide a stamper for minute structure transfer to be excellent in durability. The present invention is characterized by which a minute pattern as formed in one side of a substrate comes in contact with a material to be transferred and the minute pattern is transferred on a resin layer of a surface of the material to be transferred. At least one layer of a thin film is mounted on at least one side of both surfaces of the substrate, the substrate and the thin film are different in a coefficient of linear expansion each other, and the substrate is curved to swell up to be convex in the side of the minute pattern by an internal stress generated in the thin film. | 03-11-2010 |
20100189836 | MICROPATTERN TRANSFER DEVICE - In a micropattern transfer device, a stamper on which a fine indented pattern is formed is brought into contact with a material to be transferred, and the fine indented pattern on the stamper is transferred onto a surface of the material to be transferred. The micropattern transfer device includes a holding mechanism which holds an entire outer circumferential portion of the material to be transferred. The holding mechanism holds the material to be transferred such that a distance between the material to be transferred and the stamper is substantially equal to or shorter than a distance between the holding mechanism and the stamper. | 07-29-2010 |
20100255139 | MICROPATTERN TRANSFER STAMPER AND MICROPATTERN TRANSFER DEVICE - A micropattern transfer stamper has a space that hermetically contains fluid, on an opposite side of a surface with an indented pattern formed thereon of a pattern forming sheet member. The pattern forming sheet member is convexly bent by pressure of the fluid contained in the space. When the indented pattern is transferred onto the material to be transferred, the pattern forming sheet member deforms following the surface of the material to be transferred. | 10-07-2010 |
20120029110 | PHOTOPOLYMERIZABLE RESIN COMPOSITION FOR TRANSFERRING MICROSTRUCTURE - A photopolymerizable resin composition for transferring a microstructure, which allows a thinner and uniform thin film to be formed, a transfer accuracy of extremely smaller microfine pattern to be excellent, and a curing time of the thin film to be shortened, is provided. The photopolymerizable resin composition for transferring a microstructure comprises the following component (A), component (B), component (C), component (D) and component (E) at the rate described below: | 02-02-2012 |
20120205838 | DEVICE AND METHOD FOR TRANSFERRING MICRO STRUCTURE - A microstructure transferring device is characterized in that the device comprises a stamper made from a first photo-curable resin composition cured with light with a first wavelength, and a light source emitting light with a second wavelength longer than the first wavelength. The microstructure is transferred to an impression receptor supplied with a second photo-curable resin composition, which is curable with light with the second wavelength emitted by the light source. | 08-16-2012 |
20130011632 | MICROFINE STRUCTURE, METHOD FOR PRODUCING MICROFINE STRUCTURE, AND POLYMERIZABLE RESIN COMPOSITION FOR PRODUCING THE SAME - Provided is a method for producing a microfine structure comprising the steps of: forming a resin film by applying a liquid polymerizable resin composition containing a high molecular weight component, a low molecular weight component and a reactive dilution component to an adhesion promoting layer formed on a substrate; imprinting a mold with an extremely fine convex concave pattern onto the resin film; and transferring the convex concave pattern to the resin film. Herein, components of the adhesion promoting layer, the high molecular weight component, the low molecular weight component and the reactive dilution component respectively have cross-linking reactive functional groups which react with each other. | 01-10-2013 |
20130167494 | Filter and Method of the Same - the present invention is characterized in that a filter made of resin comprises a through-hole film portion ( | 07-04-2013 |
Ryuta Washiya, Ibaraki JP
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20080229948 | IMPRINT DEVICE AND METHOD OF MANUFACTURING IMPRINTED STRUCTURE - An imprint device transfers a micropattern created on a stamper onto a material to be transferred, by bringing the stamper and the material to be transferred into contact with each other. The imprint device has a flow passage for discharging a fluid to a rear surface of the stamper or the material to be transferred, to thereby bend the stamper or the material to be transferred. | 09-25-2008 |
Satoru Washiya, Saitama JP
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20110006692 | APPARATUS FOR DRIVING CAPACITIVE LIGHT EMITTING DEVICE - A capacitive light emitting device includes: a capacitive light emitting device | 01-13-2011 |
20110284721 | ORGANIC ELECTROLUMINESCENCE ILLUMINATION DEVICE - An organic electroluminescence illumination device including: an organic electroluminescence panel including: a transparent substrate; a transparent electrode formed on the transparent substrate; an organic light emitting layer formed on the transparent electrode; and a metal electrode formed on the organic light emitting layer, wherein the organic light emitting layer comprises: an illumination area that is formed as a main light emitting area of the organic electroluminescence illumination device; a reference area, which is electrically-insulated from the illumination area; and a light receiving area, which is electrically-insulated from the illumination area and the reference area; and an organic light emitting layer driving part that drives individually the illumination area and the reference area, wherein the organic light emitting layer driving part detects current flowing in the light receiving area. | 11-24-2011 |
Satoru Washiya, Niiza-Shi JP
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20110089980 | CAPACITIVE LOAD DRIVER - A capacitive load driver includes a first switching element whose first end receives positive potential, an EL element arranged between a second end of the first switching element and the ground, a charge collecting capacitor whose first end is connected to a positive electrode terminal of the EL element, a voltage source connected between a second end of the charge collecting capacitor and the ground, and a controller. The controller charges a parasitic capacitance of the EL element and the charge collecting capacitor, and thereafter, applies negative potential from the voltage source to the second end of the charge collecting capacitor. Thereafter, the controller brings the output voltage of the voltage source to ground potential so that the charge collecting capacitor is discharged to charge the EL element. The capacitance of the charge collecting capacitor is set to be sufficiently greater than that of the parasitic capacitance. | 04-21-2011 |