Okanishi, JP
Ken Okanishi, Osaka JP
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20110172338 | PROCESSING ADDITIVE, MOLDING COMPOSITION MASTERBATCH OF PROCESSING ADDITIVE AND MOLDING ARTICLE - The present invention provides a processing additive which can bring about improvements in moldability at Mooney viscosity levels at which the dispersibility in a melt-processable resin is high and which further can work at reduced addition levels. The present invention is a processing additive comprising a fluoropolymer having an acid value of not lower than 0.5 KOH mg/g. | 07-14-2011 |
Kengo Okanishi, Kagawa JP
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20110059371 | MULTI-LAYER STRUCTURED CARBONACEOUS MATERIAL, PROCESS FOR PRODUCING THE SAME, AND NONAQUEOUS SECONDARY BATTERY ADOPTING THE SAME - It is aimed at providing: a negative electrode material for a nonaqueous secondary battery, which has a higher capacity, is low in irreversible capacity upon initial charge and discharge, and has excellent cycle characteristics; and a nonaqueous secondary battery adopting the negative electrode material. The object is achieved by: a multi-layer structured carbonaceous material obtained by mixing graphitic carbon particles with an organic compound and by thermally treating the mixture, wherein loop structures are present at an edge portion of each of the graphitic carbon particles, and wherein the graphitic carbon particles have carbonized products of the organic compound affixed to surfaces of the particles, respectively, while maintaining the loop structures; and a nonaqueous secondary battery adopting the multi-layer structured carbonaceous material. | 03-10-2011 |
20110171532 | COMPOSITE GRAPHITE PARTICLE FOR NONAQUEOUS SECONDARY BATTERY, NEGATIVE ELECTRODE MATERIAL CONTAINING THE SAME, NEGATIVE ELECTRODE AND NONAQUEOUS SECONDARY BATTERY - To provide a nonaqueous secondary battery exhibiting a sufficiently small charge/discharge irreversible capacity in the initial cycle, exhibiting an excellent charge acceptance and excellent cycle characteristics, even when the negative electrode material-containing active material layer on a current collector is highly densified so as to obtain a high capacity. A composite graphite particle for nonaqueous secondary batteries, which is a composite graphite particle (B) obtained by forming a spherical graphite particle (A) and a graphitized product of graphitizable binder, wherein the spherical graphite particle (A) is a specific graphite particle or the composite graphite particle satisfies (a) and/or (b): | 07-14-2011 |
Masatomi Okanishi, Fukushima-Ken JP
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20090200599 | U-SHAPED SONOS MEMORY HAVING AN ELEVATED SOURCE AND DRAIN - A semiconductor device and a method for manufacturing thereof are provided. The semiconductor device includes two epitaxial semiconductor layers formed on a semiconductor substrate, bit lines formed on upper portions of the two epitaxial semiconductor layers, and a charge storage layer formed on the semiconductor substrate between the two epitaxial semiconductor layers. | 08-13-2009 |
20100001333 | SEMICONDUCTOR DEVICE AND FABRICATION METHOD THEREFOR - The present invention provides semiconductor device and a fabrication method therefor. The semiconductor device includes trenches ( | 01-07-2010 |
20120315750 | SEMICONDUCTOR DEVICE AND FABRICATION METHOD THEREFOR - A semiconductor device includes bit lines ( | 12-13-2012 |
Masatomi Okanishi, Aizuwakamatsu-Shi JP
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20110020996 | SEMICONDUCTOR DEVICE AND MANUFACTURING METHOD THEREFOR - There is provided a semiconductor device including a semiconductor substrate ( | 01-27-2011 |
20120083086 | SEMICONDUCTOR DEVICE AND MANUFACTURING METHOD THEREFOR - There is provided a semiconductor device including a semiconductor substrate ( | 04-05-2012 |
Michikazu Okanishi, Osaka JP
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20110226711 | TRANSPORTATION TRAY - A cushioned top surface mat on which a plurality of devices are to be placed is provided on the top surface of a tray body. A bottom surface mat which is brought into contact with a plurality of devices placed on a lower tray body to restrict movement of the devices is provided on the bottom surface of the tray body. | 09-22-2011 |
Norimasa Okanishi, Tokyo JP
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20080285180 | MAGNETIC SENSING ELEMENT AND METHOD FOR MANUFACTURING THE SAME - An underlying layer is composed of Co—Fe—B that is an amorphous magnetic material. Thus, the upper surface of the underlying layer can be taken as a lower shield layer-side reference position for obtaining a gap length (GL) between upper and lower shields, resulting in a narrower gap than before. In addition, since the underlying layer has an amorphous structure, the underlying layer does not adversely affect the crystalline orientation of individual layers to be formed thereon, and the surface of the underlying layer has good planarizability. Accordingly, PW50 (half-amplitude pulse width) and SN ratio can be improved more than before without causing a decrease in rate of change in resistance (Δ R/R) or the like, thereby achieving a structure suitable for increasing recording density. | 11-20-2008 |
Tadashi Okanishi, Suntou-Gun JP
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20100314824 | IMAGE FORMING SYSTEM AND CONTROL METHOD THEREFOR, AND CONTROL UNIT FOR IMAGE FORMING APPARATUS - An image forming system including an image forming apparatus and a sheet feeding apparatus. The system includes: a first conveying unit conveying to the image forming apparatus a recording material; a second conveying unit conveying to an image forming unit of the image forming apparatus the recording material; a detector detecting a recording material type while the second conveying unit halts conveying the recording material; a first controller, based on detection by the detector, determining a speed for conveying the recording material to the image forming unit, and conveying the recording material at the conveying speed; and a second controller controlling recording material conveying speeds of the first conveying unit. Before the recording material reaches the second conveying unit, the second controller maintains a first conveying speed, and after the recording material reaches the second convey unit, maintains a second conveying speed determined by the first control unit. | 12-16-2010 |
Tadashi Okanishi, Mishima-Shi JP
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20110182606 | IMAGE FORMING APPARATUS - The image forming apparatus includes a loop amount detection sensor, disposed between a secondary transfer part and a fixing part, for detecting a loop amount of a transfer material by detecting a reflection of light radiated on the transfer material, a density detection sensor for detecting a density of a toner image that is primarily transferred to the intermediate transfer belt with the primary transfer roller, and a loop control part for controlling the loop amount of the transfer material based on the density of the toner image that is detected by the density detection sensor and the loop amount that is detected by the loop amount detection sensor. Accordingly, the image forming apparatus attains higher accuracy in the deflection amount detection by performing the deflection amount detection at least with the dependency of the image formed on the transfer material mitigated. | 07-28-2011 |
20130129371 | IMAGE FORMING APPARATUS - When a pre-rotation sequence is started at a time at which a print-start notification command is transmitted, in the case where a predicted time period is longer than a time period taken to perform the pre-rotation sequence, an appropriate FPOT is not realized. To determine whether the pre-rotation sequence can be started at a time at which a print reservation command that is to be transmitted before transmission of the print-start notification command is transmitted to the engine, a drum-rotation permission command is provided, whereby, in the case of immediately starting the pre-rotation sequence, the pre-rotation sequence can be started earlier than the pre-rotation sequence is started, reducing the FPOT. In the case of not immediately starting the pre-rotation sequence, a time period taken to perform image expansion and the time period taken to perform the pre-rotation sequence can be made to coincide with each other, reducing consumable items deterioration. | 05-23-2013 |
Takeou Okanishi, Nara JP
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20110281191 | POLYMER ELECTROLYTE FUEL CELL, FUEL CELL STACK INCLUDING THE SAME, FUEL CELL SYSTEM, AND METHOD FOR OPERATING FUEL CELL SYSTEM - A polymer electrolyte fuel cell of the present invention includes: a membrane-electrode assembly ( | 11-17-2011 |
20120040268 | POLYMER ELECTROLYTE FUEL CELL AND FUEL CELL STACK COMPRISING THE SAME - A polymer electrolyte fuel cell of the present invention comprises a membrane-electrode assembly ( | 02-16-2012 |
20120258380 | POLYMER ELECTROLYTE FUEL CELL - A polymer electrolyte fuel cell of the present invention includes a membrane-electrode assembly ( | 10-11-2012 |
20130101917 | POLYMER ELECTROLYTE FUEL CELL AND METHOD OF FABRICATING THE SAME - A polymer electrolyte fuel cell includes: a sealing structure ( | 04-25-2013 |
20130164640 | OPERATION METHOD OF POLYMER ELECTROLYTE FUEL CELL SYSTEM AND POLYMER ELECTROLYTE FUEL CELL SYSTEM - An operation method of a polymer electrolyte fuel cell system including an anode ( | 06-27-2013 |
20140329167 | FUEL CELL GAS DIFFUSION LAYER AND METHOD OF MANUFACTURING SAME - A fuel cell gas diffusion layer includes a porous member containing electrically-conductive particles and polymeric resin as major components, and a plurality of holes extending from a main surface of the fuel cell gas diffusion layer are formed. | 11-06-2014 |
Takeou Okanishi, Narra JP
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20110165493 | POLYMER ELECTROLYTE FUEL CELL AND FUEL CELL STACK COMPRISING THE SAME - A polymer electrolyte fuel cell of the present invention includes a membrane electrode assembly ( | 07-07-2011 |
Takeou Okanishi, Osaka JP
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20090181277 | MEMBRANE-MEMBRANE REINFORCING MEMBER ASSEMBLY, MEMBRANE-CATALYST LAYER ASSEMBLY, MEMBRANE-ELECTRODE ASSEMBLY, AND POLYMER ELECTROLYTE FUEL CELL - A membrane-membrane reinforcing member assembly ( | 07-16-2009 |
20100015487 | CATALYST-COATED MEMBRANE, MEMBRANE-ELECTRODE ASSEMBLY, FUEL CELL AND FUEL CELL STACK - The present invention provides a catalyst-coated membrane and a membrane-electrode assembly that can easily and surely achieve a polymer electrolyte fuel cell having excellent durability, in which the decomposition/degradation of a polymer electrolyte membrane can be suppressed, and a decrease in initial characteristics can be prevented sufficiently for a long period of time even when the polymer electrolyte fuel cell is frequently started and stopped. In the catalyst-coated membrane that includes an anode catalyst layer, a cathode catalyst layer, and a hydrogen ion conductive polymer electrolyte membrane interposed between the anode catalyst layer and the cathode catalyst layer, a peripheral area of at least one of the anode catalyst layer and the cathode catalyst layer is provided with a decrease portion in which the mass of the electrode catalyst per unit area of the catalyst layer decreases from the inner side toward the outer side. | 01-21-2010 |
20100038020 | METHOD FOR MANUFACTURING MEMBRANE-ELECTRODE ASSEMBLY - A method for manufacturing a membrane-electrode assembly of the present invention includes: a reinforcing member disposing step of disposing a reinforcing member ( | 02-18-2010 |
20100062304 | MEMBRANE MEMBRANE-REINFORCEMENT-MEMBER ASSEMBLY, MEMBRANE CATALYST-LAYER ASSEMBLY, MEMBRANE ELECTRODE ASSEMBLY AND POLYMER ELECTROLYTE FUEL CELL - A membrane membrane-reinforcement-member assembly, membrane catalyst-layer assembly, membrane electrode assembly, and polymer electrolyte fuel cell are provided, which are so configured as to ensure sufficient durability and a cost reduction in unit cells and be suited for mass production. To this end, a membrane membrane-reinforcement-member assembly ( | 03-11-2010 |
20100068588 | MEMBRANE-MEMBRANE REINFORCING MEMBRANE ASSEMBLY, MEMBRANE-CATALYST LAYER ASSEMBLY, MEMBRANE-ELECTRODE ASSEMBLY, AND POLYMER ELECTROLYTE FUEL CELL - A membrane-membrane reinforcing member assembly includes: a polymer electrolyte membrane ( | 03-18-2010 |
20100075187 | MEMBRANE-MEMBRANE REINFORCING MEMBER ASSEMBLY, MEMBRANE-CATALYST LAYER ASSEMBLY, MEMBRANE-ELECTRODE ASSEMBLY, AND POLYMER ELECTROLYTE FUEL CELL - A membrane-membrane reinforcing member assembly includes: a polymer electrolyte membrane ( | 03-25-2010 |
Toshiaki Okanishi, Amagasaki-Shi JP
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20090029607 | Propeller power transmission device for 1-engine, 2-shaft vessel - A propeller power transmission device according to the present invention comprises an input shaft | 01-29-2009 |
Toshiaki Okanishi, Hyogo JP
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20100051410 | Traveling System Transmission Structure for Vehicle - The traveling system transmission structure for vehicle includes a planetary gear unit, a forward/rearward-travel switch unit and a transmission case. A front end portion of a sun gear shaft is directly or indirectly supported by a front bearing wall that is detachably connected to a front side of the transmission case and a rear end portion of a planetary outputting member is directly or indirectly supported by an intermediate bearing wall, so that the planetary gear unit is accommodated in a front chamber that is sandwiched by the front bearing wall and the intermediate bearing wall. A front end portion of a forward/rearward-travel input shaft is directly or indirectly supported by the intermediate bearing wall and a rear end portion of a clutch shaft is supported by a rear bearing wall that is detachably connected to the rear side of the transmission case, so that the forward/rearward-travel switch unit is accommodated in a rear chamber that is sandwiched by the intermediate bearing wall and the rear bearing wall. | 03-04-2010 |
Yukio Okanishi, Osaka-Shi JP
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20120288677 | SUPER ABRASIVE WHEEL, METHOD OF MANUFACTURING WAFER USING THE SAME, AND WAFER - The super abrasive wheel includes a core rotating around a rotation axis and a super abrasive layer bonded to the core. The core has a first surface and a second surface located opposite to the first surface. An annular first protrusion portion protruding in the direction away from the first surface is provided at a portion of the second surface that is surrounded with the super abrasive layer. A reference surface is provided in the second surface on the inside of the first protrusion portion. The height from the reference surface to the first protrusion portion is denoted as A. A top portion having the height B from the reference surface is provided at a portion of the second surface between the first protrusion portion and the super abrasive layer. The height B is greater than the height A. | 11-15-2012 |