Kameshima, JP
Atsuko Kameshima, Tokyo JP
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20090124953 | Adhesive skin patch sheet - A adhesive skin patch sheet comprises a support, a pressure-sensitive adhesive layer and a release sheet laminated in that order, the release sheet is divided by a cut line into a small first release sheet and a large second release sheet, the cut line is formed so as to be convex only from the second release sheet toward the first release sheet. | 05-14-2009 |
20120111392 | BACK PROTECTIVE SHEET FOR SOLAR CELL MODULE, SOLAR CELL MODULE PROVIDED WITH SAME, AND PRODUCTION METHOD OF SOLAR CELL MODULE - A back protective sheet for a solar cell module in which a thermoplastic resin sheet containing heat-expandable particles is formed on at least one side of a base sheet, a solar cell module having this back protective sheet for a solar cell module, and a production method of this solar cell module. | 05-10-2012 |
20120148837 | ENERGY RAY-CURABLE PRESSURE-SENSITIVE ADHESIVE COMPOSITION AND PRESSURE-SENSITIVE ADHESIVE SHEET FOR INSPECTING STAMPERS - Disclosed is an energy ray-curable pressure-sensitive adhesive composition having a polymer component and an energy ray polymerization initiator, the polymer component being a (meth)acrylate copolymer that includes a hydroxyl group or an energy ray-curable functional group in its molecule and has a mass average molecular weight of 500,000 to 1,000,000, and a content of components having a molecular weight of 2,000,000 or more in the polymer component being 15 mass % or less. Also disclosed is a pressure-sensitive adhesive sheet for inspecting stampers having a substrate sheet and an energy ray-curable pressure-sensitive adhesive layer formed on the substrate sheet using said energy ray-curable pressure-sensitive adhesive composition. The composition exhibits excellent adhesion to a substrate sheet and excellent durability and is able to be separated and removed easily from an adherend without leaving any residual material can be formed. | 06-14-2012 |
Hisamitsu Kameshima, Hasuda-Shi JP
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20120184061 | SEALING MATERIAL SHEET FOR SOLAR CELL MODULE AND A METHOD OF MANUFACTURING SOLAR CELL MODULE - Disclosed are a sealing material sheet for a solar cell module and a method of manufacturing a solar cell module capable of reducing damage to a photoelectric conversion cell and leakage of a sealing material during manufacturing of a solar cell module, and easily manufacturing a high-quality solar cell module. A sealing material sheet for a solar cell module includes transparent resin (A) exhibiting an MFR (190° C., 2.16 kg load) of 10 to 20 g/10 min and transparent resin (B) exhibiting an MFR (190° C., 2.16 kg load) of 30 to 40 g/10 min. The mass ratio α (=W | 07-19-2012 |
Junji Kameshima, Fujisawa-Shi JP
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20080254975 | Photocatalyst-coated body and photocatalytic coating liquid therefor - There is disclosed a photocatalyst-coated body which is superior in weather resistance, noxious gas decomposability, and various coating properties (such as ultraviolet absorptivity, transparency and film strength) while preventing corrosion of a substrate (in particular an organic substrate), and a photocatalyst coating liquid therefor. The photocatalyst-coated body comprises a substrate and a photocatalyst layer provided on the substrate. The photocatalyst layer comprises photocatalyst particles of 1 part or more by mass and less than 20 parts by mass; inorganic oxide particles of 70 parts or more by mass and less than 99 parts by mass; and a hydrolyzable silicone of zero parts or more by mass and less than 10 parts by mass, provided that a total amount of the photocatalyst particles, the inorganic oxide particles and the hydrolyzable silicone is 100 parts by mass. | 10-16-2008 |
20090286673 | Photocatalyst-coated body and photocatalytic coating liquid for the same - A photocatalyst-coated body and a photocatalytic coating liquid which exert an excellent weather resistance, harmful gas decomposability, and other desired characteristics (such as transparency and film strength), while preventing erosion of the substrate are provided. The photocatalyst-coated body comprises a substrate and a photocatalytic layer provided on the substrate. The photocatalytic layer comprises photocatalytic particles and inorganic oxide particles, and has interstices between the particles in the layer. | 11-19-2009 |
20110060269 | METHOD FOR KILLING CELLS USING PHOTOCATALYTIC TITANIUM DIOXIDE PARTICLES - Photocatalytic titanium dioxide particles are disclosed having improved dispersibility into an aqueous solvent not only under neutral physiological conditions in vivo but also over a wide pH range, and improved cell affinity and cell uptake property. The photocatalytic titanium dioxide particles comprise particles comprising photocatalytic titanium dioxide and a cationic hydrophilic polymer modifying surfaces of the photocatalytic titanium dioxide particles, wherein the hydrophilic polymer is bonded to the photocatalytic titanium dioxide particles. The particles are very useful for medical applications, such as destruction of cancer cells, e.g., when administered to a mammal the titanium dioxide particles are taken up by cells of the mammal, and if then irradiated with UV light the particles kill the cells via photocatalytic degrading capability. | 03-10-2011 |
Junji Kameshima, Kanagawa-Ken JP
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20080261805 | Photocatalytic Titanium Dioxide Microparticle, Dispersion Liquid Thereof and Process for Producing the Same - Photocatalytic titanium dioxide particles are disclosed having improved dispersibility into an aqueous solvent not only under neutral physiological conditions in vivo but also over a wide pH range, and improved cell affinity and cell uptake property. The photocatalytic titanium dioxide particles comprise particles comprising photocatalytic titanium dioxide and a cationic hydrophilic polymer modifying surfaces of the photocatalytic titanium dioxide particles, wherein the hydrophilic polymer is bonded to the photocatalytic titanium dioxide particles. The photocatalytic titanium dioxide particles are very useful for medical applications, such as destruction of cancer cells. | 10-23-2008 |
20110082027 | PHOTOCATALYST-COATED BODY AND PHOTOCATALYTIC COATING LIQUID THEREFOR - A photocatalyst-coated body comprises a substrate and a photocatalyst layer provided on the substrate, the photocatalyst layer comprising photocatalyst particles of 1 part or more by mass and less than 20 parts by mass, inorganic oxide particles of 70 parts or more by mass and less than 99 parts by mass, and the dried substance of a hydrolyzable silicone of zero parts or more by mass and less than 10 parts by mass, provided that a total amount of the photocatalyst particles, the dried substance of the inorganic oxide particles and the hydrolyzable silicone is 100 parts by mass in terms of silica, wherein the photocatalyst layer has a film thickness of 3.0 μm or less. | 04-07-2011 |
20110143914 | PHOTOCATALYST-COATED BODY, COATING COMPOSITION FOR THE SAME, AND PROCESS FOR PRODUCING PHOTOCATALYST-COATED BODY - A photocatalyst-coated body includes a substrate with an organic material as a surface thereof, a photocatalyst layer with interstices between the particles in the layer and an intermediate layer provided between the substrate and the photocatalyst layer. The photocatalyst layer includes photocatalyst particles in a range of 1 part≦x<20 parts by mass, inorganic oxide particles in a range of 70 parts≦y<99 parts by mass, and a dried substance of a hydrolyzable silicone in a range of zero parts≦z<10 parts by mass, provided that a total amount of the photocatalyst particles, the inorganic oxide particles, and the dried substance of the hydrolyzable silicone is 100 parts by mass in terms of silica. The intermediate layer comprising a silicone-modified resin, wherein the silicone-modified resin includes silicon atom in an amount of 0.2% by mass or more and less than 16.5% by mass. | 06-16-2011 |
20120142521 | PHOTOCATALYST-COATED BODY AND PHOTOCATALYTIC COATING LIQUID THEREFOR - A photocatalyst-coated body comprises a substrate and a photocatalyst layer provided on the substrate, the photocatalyst layer comprising photocatalyst particles of 1 part or more by mass and less than 20 parts by mass, inorganic oxide particles of 70 parts or more by mass and less than 99 parts by mass, and the dried substance of a hydrolyzable silicone of zero parts or more by mass and less than 10 parts by mass, provided that a total amount of the photocatalyst particles, the dried substance of the inorganic oxide particles and the hydrolyzable silicone is 100 parts by mass in terms of silica. The inorganic oxide particles have a number average particle diameter ranging from 10 nm or more to less than 40 nm calculated by measuring lengths of 100 particles randomly selected from particles located within a visible field magnified 200,000 times by a scanning electron microscope. | 06-07-2012 |
Junji Kameshima, Fukuoka JP
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20110136660 | PHOTOCATALYST-COATED BODY - A photocatalyst-coated body which exhibits ability to decompose harmful gases while preventing deterioration of the substrate for a long time period is provided. The photocatalyst-coated body comprises a substrate, an intermediate layer provided on the substrate and a photocatalyst layer provided on the intermediate layer. The photocatalyst layer comprises photocatalyst particles composed of metal oxide which is excited by ultraviolet light. The intermediate layer comprises a weather resistant resin and a hydroxyphenyl triazine compound. | 06-09-2011 |
Takashi Kameshima, Hyogo JP
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20160061963 | RADIATION DETECTING ELEMENT, RADIATION DETECTING APPARATUS AND MANUFACTURING METHOD OF RADIATION DETECTING ELEMENT - When a scintillator and a reinforcing member are bonded by using an adhesive, scattering and reflection occur at interfaces between the scintillator and the adhesive and between the adhesive and the reinforcing member. Due to this, a blurred image is formed on a sensor, and the resolution deteriorates. A radiation detecting element comprises: a substrate transparent to visible light; and a fluorescent screen that emits fluorescence in response to radiation by a dopant added to a material that is the same as a material of the substrate, wherein the fluorescent screen is thinner than the substrate, and the substrate and the fluorescent screen are bonded while maintaining continuity of a refractive index. | 03-03-2016 |
Takashi Kameshima, Tokushima JP
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20090299008 | Organic antimony compound, process for producing the same, living radical polymerization initiator, process for producing polymer using the same, and polymer - An organoantimony compound represented by the formula (1), processes for producing polymers with use of the compound, and polymers | 12-03-2009 |
Takashi Kameshima, Tokushima-Shi JP
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20110224351 | METHOD FOR PRODUCING GRAFT COPOLYMER, GRAFT COPOLYMER OBTAINED BY THE METHOD, RUBBER COMPOSITION CONTAINING THE GRAFT COPOLYMER, AND TIRE - Provided are a method of producing a graft copolymer, the method involving subjecting a radically polymerizable monomer to living radical graft polymerization with a rubber component formed of a natural rubber and/or a synthetic diene-based rubber in an aqueous medium in the presence of a polymerization control agent, a rubber composition containing the graft copolymer obtained by the method, and a tire obtained by using the rubber composition in any one of its tire members. Further provided are a method of efficiently producing a graft copolymer, the method involving subjecting a radically polymerizable monomer, in particular, a functional group-containing radically polymerizable monomer to living radical graft polymerization with the natural rubber and/or the synthetic diene-based rubber, a rubber composition containing the graft copolymer obtained by the method and excellent in, for example, low heat generating property, wear resistance, and fracture characteristic, and a tire obtained by using the rubber composition in any one of its tire members and having the above-mentioned properties. | 09-15-2011 |
20110275774 | ORGANOANTIMONY COMPOUND, PROCESS FOR PREPARING SAME, LIVING RADICAL POLYMERIZATION INITIATOR, PROCESS FOR PRODUCING POLYMER WITH USE OF SAME, AND THE POLYMER - An organoantimony compound represented by the formula (1), processes for producing polymers with use of the compound, and polymers | 11-10-2011 |
Takatoshi Kameshima, Kanagawa JP
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20080254631 | METHOD FOR FABRICATION OF SEMICONDUCTOR DEVICE - Disclosed herein is a method for fabrication of semiconductor device involving a first step of coating the substrate with a double-layered insulating film in laminate structure having the skeletal structure of inorganic material and a second step of etching the upper layer of the insulating film as far as the lower layer of the insulating film. In the method for fabrication of semiconductor device, the first step is carried out in such a way that the skeletal structure is incorporated with a pore-forming material of hydrocarbon compound so that one layer of the insulating film contains more carbon than the other layer of the insulating film. | 10-16-2008 |
Takatoshi Kameshima, Yamanashi-Ken JP
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20080254641 | Manufacturing Method Of Semiconductor Device And Film Deposition System - A dielectric film ( | 10-16-2008 |
Takatoshi Kameshima, Kumamoto JP
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20140054739 | SEMICONDUCTOR DEVICE AND ELECTRONIC DEVICE - There is provided a semiconductor device including a substrate made from a semiconductor material, and layers that are made from plural kinds of materials and formed over the substrate. An opening portion that is formed to penetrate at least a layer formed as an insulating film among the layers formed over the substrate and expose a surface of an electrode pad is filled with aluminum or an aluminum alloy. | 02-27-2014 |
Takatoshi Kameshima, Tottori JP
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20090061092 | FILM FORMING METHOD AND FILM FORMING APPARATUS - A film forming method is characterized in that the method is provided with a step of introducing a processing gas including inorganic silane gas into a processing chamber, in which a mounting table composed of ceramics including a metal oxide is arranged, and precoating an inner wall of the processing chamber including a surface of the mounting table with a silicon-containing nonmetal thin film; a step of mounting a substrate to be processed on the mounting table precoated with the nonmetal thin film; and a step of introducing a processing gas including organic silane gas into the processing chamber, and forming a silicon-containing nonmetal thin film on a surface of the substrate mounted on the mounting table. | 03-05-2009 |
Tamotsu Kameshima, Kariya-Shi JP
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20160042543 | IMAGE DISPLAY CONTROL APPARATUS AND IMAGE DISPLAY SYSTEM - An image display control apparatus according to an embodiment includes, for example, includes a region identification portion distinguishing between a first region corresponding to a window in a vehicle inside image and a second region in the vehicle inside image excluding the first region, an image generation portion generating an image at least for a display range displayed at a display device, the image including a composite image where the vehicle inside image at the second region and a vehicle outside image conforming to the second region are superimposed on each other with a specified ratio and a vehicle outside image at the first region, a display range decision portion configured to change the display range, and a display control portion controlling the display device so that the image generated by the image generation portion is displayed at the display range which is decided by the display range decision portion. | 02-11-2016 |
Tokuya Kameshima, Kawasaki-Shi JP
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20090251722 | DOCUMENT PROCESSING APPARATUS, DOCUMENT PROCESSING METHOD, COMPUTER-READABLE MEDIUM AND COMPUTER DATA SIGNAL - A document processing apparatus includes an acquisition unit, a detection unit, a specifying unit and an output unit. The acquisition unit acquires document data containing pieces of page image data corresponding to pages of documents. Each document is formed by stacking and half-folding sheets. The detection unit detects pieces of page image data corresponding to pages to be printed on a same side of a same sheet in the documents, from the page image data contained in the document data. The specifying unit specifies pieces of page image data corresponding to respective pages of each document, from the page image data contained in the document data based on a detection result. The output unit outputs data, which is based on pieces of page image data corresponding to respective pages of at least one of the documents, based on a specifying result. | 10-08-2009 |
20100067040 | DOCUMENT PROCESSING APPARATUS, PRINTING SYSTEM, DOCUMENT PROCESSING METHOD, COMPUTER-READABLE MEDIUM AND COMPUTER DATA SIGNAL - A document processing apparatus includes an acquiring unit and an output unit. The acquiring unit acquires first document data containing page image data corresponding to pages of a document. Each page of the document has a first end and a second end opposite to the first end. The output unit outputs second document data in which an order or a direction of the page image data is changed, when the first document data contains first page image data indicating that an image is drawn in a first area corresponding to the first end of at least one of the pages of the document and second page image data indicating that an image is drawn in a second area corresponding to the second end of at least one of the pages of the document and when page numbers of the first and second page image data have a predetermined relationship. | 03-18-2010 |
Toshio Kameshima, Sagamihara-Shi JP
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20080224058 | PHOTOELECTRIC CONVERTER AND X-RAY IMAGE PICK-UP DEVICE - A photoelectric converter includes a plurality of substrates, which are located adjacent to each other and on which a plurality of photoelectric conversion devices are two-dimensionally arranged, and either scan circuits or detection circuits that are arranged on two opposing sides of the photoelectric converter, whereby scanning directions either from the scan circuits or from the detection circuits, which are arranged on the two opposing sides, are capable of being set so as to be performed in like directions. | 09-18-2008 |
20100108899 | PHOTOELECTRIC CONVERTER AND X-RAY IMAGE PICK-UP DEVICE - A photoelectric converter includes a plurality of substrates, which are located adjacent to each other and on which a plurality of photoelectric conversion devices are two-dimensionally arranged, and either scan circuits or detection circuits that are arranged on two opposing sides of the photoelectric converter, whereby scanning directions either from the scan circuits or from the detection circuits, which are arranged on the two opposing sides, are capable of being set so as to be performed in like directions. | 05-06-2010 |
20110147598 | PHOTOELECTRIC CONVERTER - Disclosed is a photoelectric converter. | 06-23-2011 |
Toshio Kameshima, Kanagawa JP
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20110221935 | IMAGE PICK-UP APPARATUS AND IMAGE PICK-UP SYSTEM - An image pick-up apparatus comprising an area sensor in which detecting elements are two-dimensionally arranged on a substrate, and a reference supply circuit, for supplying a reference voltage to the detecting elements, which comprises a regulator for regulating the reference voltage. A low-pass filter is arranged between the regulator and the detecting elements. The reference voltage is supplied through the low-pass filter from the reference supply circuit. | 09-15-2011 |
Toshio Kameshima, Saitama-Shi JP
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20090086915 | IMAGING SYSTEM AND DRIVING METHOD THEREOF - When a gain correction is performed for the radiographed object image, the acquisition of the object image having a high grade quality and no artifact is realized. For that purpose, an image storing unit is provided for storing an image for correction radiographed based on conditions set with the table in a state in which no object exists to each operation modes of the plurality of operation modes; and an image processing unit is provided for performing a gain correction processing of the radiographed object image and performs the gain correction processing of the radiographed object image obtained based on the conditions set in the table of the operation mode selected by the selecting unit in a state in which the object exists using a corresponding image for correction extracted from the image storage unit based on the operation mode selected by the selecting unit. | 04-02-2009 |
Toshio Kameshima, Saitama-Ken JP
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20090294679 | RADIATION IMAGING APPARATUS, ITS CONTROL METHOD, AND RECORDING MEDIUM STORING PROGRAM FOR EXECUTING THE CONTROL METHOD - To provide a radiation imaging apparatus capable of restraining the change of image qualities due to the change of sensitivities of an MIS-type photoelectric conversion element and its control method. Therefore, an MIS-type photoelectric conversion element | 12-03-2009 |
20100046711 | RADIATION IMAGING APPARATUS, CONTROL METHOD THEREOF, AND RADIATION IMAGING SYSTEM USING RADIATION IMAGING APPARATUS - A radiation imaging apparatus comprises a first diving circuit unit to drive a first switching element connected to a conversion element, wherein the conversion element converting radiation into charges, a second diving circuit unit to drive a second switching element connected to the conversion element, and a control unit to control the first diving circuit and the second diving circuit independently at different timing. | 02-25-2010 |
20110240870 | RADIATION IMAGING APPARATUS, ITS CONTROL METHOD, AND RECORDING MEDIUM STORING PROGRAM FOR EXECUTING THE CONTROL METHOD - To provide a radiation imaging apparatus capable of restraining the change of image qualities due to the change of sensitivities of an MIS-type photoelectric conversion element and its control method. Therefore, an MIS-type photoelectric conversion element | 10-06-2011 |
Yoshikazu Kameshima, Okayama JP
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20150290635 | METHOD FOR PRODUCING METAL NANOPARTICLE COMPLEX, AND METAL NANOPARTICLE COMPLEX PRODUCED BY SAID METHOD - A method for producing a metal nanoparticle complex according to the present invention is a method for producing a metal nanoparticle complex in which metal nanoparticles are supported in pores of a porous body, said method comprising at least: an adsorption step of allowing an organic metal complex to adsorb in pores of a porous body; and a decomposition/reduction step of heating the porous body, which has had the organic metal complex adsorbed in the pores thereof, under a reductive atmosphere to decompose an organic compound in the organic metal complex adsorbed in the pores of the porous body and also reduce a metal cation in the organic metal complex, thereby causing metal nanoparticles to be supported in the pores of the porous body. | 10-15-2015 |