Kawanishi, Kanagawa
Ayako Kawanishi, Kanagawa JP
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20140065839 | METHOD OF PATTERN FORMATION - According to the embodiments, a method for pattern formation includes: creating a first self-assembly material layer which contains a first segment and a second segment, on a substrate on which a guide layer is installed; creating a first self-assembled pattern in which the first self-assembly material layer is phase-separated, the pattern including a first area containing the first segment and a second area containing the second segment; creating a second self-assembly material layer which includes a third segment and a fourth segment, in the first self-assembled pattern; creating a second self-assembled pattern in which the second self-assembly material layer is phase-separated, and which includes a third area containing the third segment and a fourth area containing the fourth segment. | 03-06-2014 |
20140069325 | PATTERN FORMING METHOD - According to one embodiment, a pattern forming method includes forming a graphoepitaxy on a substrate, a process of forming a first self-assembly material layer that contains a first segment and a second segment in a depressed portion of the graphoepitaxy, a process of forming a first self-assembly pattern that has a first region containing the first segment, and a second region containing the second segment by performing a phase separation of the first self-assembly material layer, a process of forming a second self-assembly material layer containing a third segment and a fourth segment on a projected portion of the graphoepitaxy, and the first self-assembly pattern, a process of forming a second self-assembly pattern that has a third region containing the third segment, and a fourth region containing the fourth segment by performing a phase separation of the second self-assembly material layer. | 03-13-2014 |
20140072722 | PATTERN FORMATION METHOD - According to the embodiments, a pattern formation method includes a process of formation of a self-assembly material layer containing at least a first segment and a second segment on a substrate having a guide layer, a process of formation of a neutralization coating on the self-assembly material layer, and a process of formation of a self-assembly pattern including a first region containing the first segment and a second region containing the second segment following phase separation of the self-assembly material layer. | 03-13-2014 |
20140087566 | PATTERN FORMATION METHOD - A pattern formation method comprises a process of forming a resist pattern with an opening that exposes a first region of a glass film arranged on a substrate through a base film; a process of forming a neutralization film above the glass film; a process of forming a directed self-assembly material layer containing a first segment and a second segment above the glass film; a process of microphase separating the directed self-assembly material layer to form a directed self-assembly pattern containing a first part that includes the first segment and a second part that includes the second segment; and a process of removing either the first part or the second part and using the other as a mask to process the base film. | 03-27-2014 |
Haruka Kawanishi, Kanagawa JP
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20130297608 | CONTENT PRESENTATION DEVICE, CONTENT PRESENTATION TERMINAL, CONTENT PRESENTATION SYSTEM, CONTENT PRESENTATION PROGRAM, AND CONTENT PRESENTATION METHOD - A content presentation device including: an obtaining unit which obtains a preference of a first user, a preference of a second user, content identification information identifying a plurality of content items associated with the second user, and relationship information indicating a relationship between the first user and the second user; a content evaluating unit which evaluates display of each of the content items, based on the relationship information and a preference correlation between the preference of the first user and the preference of the second user, wherein the content evaluating unit gives a high evaluation to a content item associated with the second user, the content item having the preference correlation lower than a certain preference correlation and an affinity score higher than a certain affinity score, and the affinity score indicating strength of the relationship between the first user and the second user. | 11-07-2013 |
Hidekazu Kawanishi, Kanagawa JP
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20080298018 | HEAT SINK AND LASER DIODE - The present invention is directed to improve reliability by preventing deterioration in the structure of an inner wall of a water channel caused by galvanic corrosion. A heat sink in which a water channel of a cooling fluid is formed by stacking and bonding a plurality of thin plates, in which a surface in the water channel is made of the same metal material except for at least an end of a bonded part of the thin plates. | 12-04-2008 |
20090122824 | SEMICONDUCTOR LASER APPARATUS - A semiconductor laser apparatus having a first clad layer, a first guide layer, an active layer, a second guide layer, and a second clad later formed in the order listed is disclosed. A layer serving as an optical waveguide is formed between the first clad layer and the second clad layer and wherein the layer serving as an optical waveguide is formed with such a thickness that not only light of a fundamental mode but also light of a higher-order mode is guided. An absorption layer absorbing the light of a higher-order mode is formed in a position to suppress only the oscillation of the light of a higher-order mode, the absorption layer being formed as a layer forming part of the layer to serve as an optical waveguide. | 05-14-2009 |
20120291995 | HEAT SINK AND LASER DIODE - The present invention is directed to improve reliability by preventing deterioration in the structure of an inner wall of a water channel caused by galvanic corrosion. A heat sink in which a water channel of a cooling fluid is formed by stacking and bonding a plurality of thin plates, in which a surface in the water channel is made of the same metal material except for at least an end of a bonded part of the thin plates. | 11-22-2012 |
Hiriyuki Kawanishi, Kanagawa JP
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20110168515 | FLOW RATE CONTROL VALVE FOR CLUTCH CONTROL DEVICE - A clutch control device for vehicle equipped with a clutch actuator driven by a working fluid, wherein secular change in the flow rate control valve for controlling the working fluid is compensated, and the rate of connection of the clutch is correctly controlled by a simple means. To control the stroke of a clutch actuator | 07-14-2011 |
Isao Kawanishi, Kanagawa JP
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20090009659 | IMAGE CAPTURING APPARATUS AND METHOD - The present invention relates to an image capturing apparatus and method in which the image recording time is reduced and the memory capacity required for compression is also reduced. A number-of-bytes calculation unit | 01-08-2009 |
20090067744 | IMAGE PROCESSING APPARATUS AND METHOD, RECORDING MEDIUM, AND PROGRAM - For each pixel read from an imaging device, a horizontal counter value and a vertical counter value corresponding to the pixel are supplied from a signal generator to a distance computation section via an optical-axis-center coordinate setting section and an up-and-down and right-and-left weighting section. In the distance computation section, the distance to the optical-axis center is computed, and correction coefficients for the zoom wide end and for the zoom tele end, which correspond to the distance, are obtained by look-up tables. The two obtained correction coefficients are blended at a mixture ratio determined by a blend ratio setting section. The blended shading correction coefficients are gain adjusted by a gain adjustment section, after which they are supplied to a correction section. As a result, a correction corresponding to the distance to the optical-axis-center position is performed on the signal of each pixel supplied from an imaging section. | 03-12-2009 |
Jouichi Kawanishi, Kanagawa JP
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20120154940 | VEHICLE OUTSIDE REARVIEW MIRROR DEVICE - In a vehicle outside rearview mirror device including a mirror housing capable of tilting with respect to a vehicle body, the vehicle outside rearview mirror device includes a base fixed to the vehicle body; a shaft fixed to the base; and the mirror housing mounted to the shaft so as to be capable of tilting, wherein a wall that reduces a flow rate of a wind passing through a gap between the base and the mirror housing is provided to the shaft. | 06-21-2012 |
Naoyuki Kawanishi, Kanagawa JP
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20090169943 | SOLID ELECTROLYTE MULTILAYER MEMBRANE, METHOD AND APPARATUS OF PRODUCING THE SAME, MEMBRANE ELECTRODE ASSEMBLY, AND FUEL CELL - First, second and third dopes ( | 07-02-2009 |
Satoki Kawanishi, Kanagawa JP
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20100266250 | DISPERSION SHIFT OPTICAL FIBER - A 1.55 μm band dispersion shifted optical fiber is provided which has a low loss and low dispersion slope. A core region “a” is heavily doped with GeO | 10-21-2010 |
Tetsuro Kawanishi, Kanagawa JP
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20100062464 | OXIDATIVE CHROMOGENIC COMPOUND OR SALT THEREOF AND PRODUCTION METHOD THEREOF, AND REAGENT COMPOSITION AND TEST INSTRUMENT USING THE SAME - It is an object of the present invention to provide a means for measuring a concentration of various components rapidly with high accuracy and high sensitivity. The present invention is to provide an oxidative chromogenic compound or salt thereof represented by the following chemical formula (1): | 03-11-2010 |
Yasutomo Kawanishi, Kanagawa JP
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20090042124 | RESIST COMPOSITION CONTAINING NOVEL SULFONIUM COMPOUND, PATTERN-FORMING METHOD USING THE RESIST COMPOSITION, AND NOVEL SULFONIUM COMPOUND - A resist composition includes (A) a compound represented by the following formula (I): | 02-12-2009 |
20090047598 | RESIST COMPOSITION FOR ELECTRON BEAM, X-RAY, OR EUV, AND PATTERN-FORMING METHOD USING THE SAME - A positive resist composition for electron beam, X-ray or EUV includes (A) a compound represented by the following formula (I), and (B) a resin capable of decomposing by the action of an acid to increase solubility in an alkali developing solution, which includes a repeating unit represented by the following formula (II) and a repeating unit represented by the following formula (III): | 02-19-2009 |