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Ken Takahashi

Ken Takahashi, Yokohama-Shi JP

Patent application numberDescriptionPublished
20100281938REFLECTION MEMBER FOR SHOT PEENING AND SHOT PEENING METHOD HAVING THE SAME - The reflection portion of the reflection member is moved along the inner surface in the hole of the pipe from the entrance opening of the hole of the pipe to the exit opening of the hole thereof. In this case, the reflection portion is guided by the guide portion provided at both sides of the reflection portion. The shots, which are projected toward the inner surface in the hole of the pipe reach the reflection portion through the holes of the guide portion of the entrance side, and they are reflected toward the inner surface in the hole of the pipe. Since the shots can be reflected toward the inner surface inside in the hole of the pipe, the tendency that shots may be moved toward the inner surface outside in the hole of the curved portion can be small.11-11-2010

Ken Takahashi, Mito JP

Patent application numberDescriptionPublished
20080290349Compound semiconductor wafer, light emitting diode and manufacturing method thereof - A light emitting diode includes a compound semiconductor crystal layer (11-27-2008
20100018768CABLE WITH CRIMPING TERMINAL AND METHOD OF MAKING THE SAME - A cable with a crimping terminal includes a cable including a conductor and an insulator including a plastic material, and the crimping terminal bonded to the conductor of the cable at a crimping portion by crimping connection. The conductor of the cable is bonded to the crimping terminal by a metallic bonding material at a crimping portion, and the metallic bonding material includes silver as a main component.01-28-2010
20100218981Solar cell lead, method of manufacturing the same, and solar cell using the same - A solar cell lead includes a strip plate conductive material that a surface thereof is coated with solder plating. The coated solder plating includes a concavo-convex portion on a surface thereof and a 0.2% proof stress of not more than 90 MPa by a tensile test. The coated solder plating includes a hot-dip solder plating layer formed by supplying a molten solder on the surface of the strip plate conductive material. A plating temperature is set to be not higher than a liquidus-line temperature of the used solder plus 120° C., and an oxide film on a surface of the hot-dip solder plating layer is set to be not more than 7 nm in thickness.09-02-2010
20110120752METHOD FOR FABRICATING A SOLAR BATTERY MODULE AND A WIRING SUBSTRATE FOR A SOLAR BATTERY - A method for fabricating a solar battery module includes cell preparing step for preparing a solar battery cell having an electrode wiring, wiring substrate preparing step for preparing a base material and a wiring substrate having a wiring pattern provided above the base material, mounting step for electrically connecting the wiring pattern with the electrode wiring and mounting the solar battery cell on the wiring substrate, and exposing step for removing the base material to expose the wiring pattern.05-26-2011
20110220196LEAD WIRE FOR SOLAR CELL, MANUFACTURING METHOD AND STORAGE METHOD THEREOF, AND SOLAR CELL - Disclosed is a lead wire for a solar cell having excellent bondability with a solar cell. The solar cell lead wire (09-15-2011

Patent applications by Ken Takahashi, Mito JP

Ken Takahashi, Kanagawa JP

Patent application numberDescriptionPublished
20100194904IMAGE PICKUP APPARATUS AND METHOD FOR SIGNAL PROCESSING IN IMAGE PICKUP APPARATUS - An image pickup apparatus including an image pickup device having a plurality of photodiodes regularly disposed, a reference voltage signal generation section which generates a reference voltage signal in a nonlinear pattern, and an AD conversion section which converts an analog signal output from each of the photodiodes into a digital signal on the basis of the reference voltage signal from the reference voltage signal generation section.08-05-2010

Patent applications by Ken Takahashi, Kanagawa JP

Ken Takahashi, Osaka JP

Patent application numberDescriptionPublished
20080259678Method for initializing resistance-variable material, memory device containing a resistance-variable material, and method for initializing nonvolatile memory circuit including variable resistor - An initialization method of the present invention is a method for initializing a material (variable-resistance material) (10-23-2008
20090079009MEMORY DEVICE, MEMORY CIRCUIT AND SEMICONDUCTOR INTEGRATED CIRCUIT HAVING VARIABLE RESISTANCE - A first variable resistor (03-26-2009
20100182821MEMORY DEVICE, MEMORY CIRCUIT AND SEMICONDUCTOR INTEGRATED CIRCUIT HAVING VARIABLE RESISTANCE - A first variable resistor (07-22-2010

Patent applications by Ken Takahashi, Osaka JP

Ken Takahashi, Shimotsuga-Gun JP

Patent application numberDescriptionPublished
20080305368FUEL CELL STACK - A fuel cell stack includes a load receiver provided at an outer end of a fuel cell unit, a guide receiver provided in a box, and a pressure receiver provided in at least one corner in the box. The guide receiver abuts against the load receiver for receiving the external load. The pressure receiver protrudes toward the fuel cell unit. The pressure receiver abuts against a corner of the fuel cell unit for receiving the load. The pressure receiver has a resin receiver, and the resin receiver abuts against a curved portion of the fuel cell unit for supporting the fuel cell unit.12-11-2008
20090130524FUEL CELL - A fuel cell includes a membrane electrode assembly, and first and second separators. A first insulating bushing is attached to a first positioning hole of a first separator, and a second insulating bushing is attached to a second positioning hole of the second separator. An inner wall of the first insulating bushing is fitted to an outer wall of the second insulating bushing for positioning the first and second separators such that the first and second separators are insulated from each other.05-21-2009
20090297920FUEL CELL STACK - A fuel cell stack includes a stack body formed by stacking a plurality of unit cells, and a casing including end plates. Components of the stack body are held together in the casing. Side plates and angle members of the casing form an outer profile line, and the end plates are positioned inside the outer profile line. Corners of insulating plates protrude outwardly beyond corners of the end plates, and are positioned inside the inner wall surfaces of the corners of the casing.12-03-2009
20090311571FUEL CELL STACK - A casing of a fuel cell stack has stack deformation prevention structure for limiting the change of an interval between end plates on the lower side in a direction of gravity, due to swelling of the lower side of the stack body in the direction of gravity. The stack deformation prevention structure is configured such that elastic modulus of a side plate provided on a lower side of the stack body in the direction of gravity is higher than elastic modulus of a side plate provided on an upper side of the stack body in the direction of gravity.12-17-2009
20100143766FUEL CELL STACK - A fuel cell stack includes a casing containing a plurality of fuel cell units. A ridge is formed integrally at the center in the width direction of a side panel of the casing. The ridge contacts a load receiver to support the load of the fuel cell units. A plurality of separate reinforcement plates bridging a recess of the back surface of the ridge are provided on the side panel. The reinforcement plates are fixed to the side panel at welding points by spot welding.06-10-2010

Patent applications by Ken Takahashi, Shimotsuga-Gun JP

Ken Takahashi, Tochigi JP

Patent application numberDescriptionPublished
20100136011ANTIBODIES THAT BIND TO OBM - Novel proteins and polypeptides binding to osteoclastogenesis inhibitory factor (OCIF) (OCIF-binding molecules, OBMs) and nucleic acids encoding these proteins and polypeptides are provided. Processes for producing these proteins, polypeptides, and nucleic acid molecules by genetic engineering are provided. Medicinal compounds are provided which comprise proteins and nucleic acids according to the invention, as well as proteins which bind to OBM, including anti-OBM antibodies. These compounds may be used for the treatment of bone disease.06-03-2010

Ken Takahashi, Nakakoma-Gun JP

Patent application numberDescriptionPublished
20090259333COMPONENT MOUNTING APPARATUS, SERVICE PROVIDING DEVICE AND SERVICING METHOD - A service receiving method for receiving a component library generated from mounted component data, including component size and mounting conditions, via a communication system that includes the Internet. The method includes the service provider receiving mounted component data having mounting conditions actually realized by a fabrication of non-defective products. The method also includes the service provider deriving a component library from a mounted component database.10-15-2009

Ken Takahashi, Fukaya-Shi JP

Patent application numberDescriptionPublished
20090028609PATTERN FORMING APPARATUS AND PATTERN FORMING METHOD - A pattern forming apparatus includes an intaglio having a pattern of depressions, developing units which form a first potential difference with the intaglio, supply a liquid developer containing charged phosphor particles to the pattern and develop by aggregating the phosphor particles in the depressions, and a transfer roller which forms a second potential difference with the developed intaglio and a glass sheet arranged in opposed relation to each other and sequentially transfers the phosphor particles aggregated in the depressions to the glass sheet.01-29-2009
20090056741Cleaning apparatus, cleaning method, pattern formation apparatus, and pattern formation method - A pattern formation apparatus has a drum-like intaglio rolling along a transferred medium. After the intaglio is charged by a charger, a pattern of toner particles is formed by supplying a liquid developer of each color to the intaglio via a developing machine and an electric field is formed between the intaglio and the transferred medium by rolling the intaglio along the transferred medium to transfer charged toner particles to the transferred medium. A cleaning apparatus which cleans the intaglio after the pattern in each color being transferred to the transferred medium has nozzles at an angle for blowing a cleaning liquid against recesses and removal rollers for removing toner particles liberated from the recesses together with the cleaning liquid.03-05-2009
20090060577PLATE, AND PATTERN FORMING DEVICE AND PATTERN FORMING METHOD USING THE SAME PLATE - A pattern forming device has an original plate for pattern formation having pattern-shaped concave portions in a high-resistance layer. When phosphor particles collected in the concave portions are transferred to a glass plate, an electric field is formed between separate electrodes and a transfer roller, and a high-frequency voltage is applied to a common electrode to apply a voltage between the separate electrodes, hence to generate ultrasonic waves from a piezoelectric layer.03-05-2009
20090087773LIQUID DEVELOPING AGENT AND PROCESS FOR PRODUCING THE SAME - A liquid developing agent includes a toner particle having a nuclear particle and a covering layer containing a wax, provided on the surface of the nuclear particle in which the wax has at least one of polar groups and aromatic substituent groups, is substantially insoluble in an electric insulation solvent at room temperature, has a melting point below a boiling point of the electric insulation solvent, and is dissolved in the insulation solvent at a temperature higher than the melting point.04-02-2009
20090123855PATTERN FORMING METHOD - By using an intaglio plate for holding a pattern formed by a developing agent, a transfer device for transferring patterns developed on the intaglio plate to a transfer object medium, and a baking chamber for eliminating an electrode layer after transfer or heightening resistance thereof, the patterns developed on the intaglio plate are transferred onto the electrode layer disposed at the opposite side of the transfer object medium, and then heated in the baking chamber, whereby the electrode layer is eliminated or heightened in resistance.05-14-2009

Patent applications by Ken Takahashi, Fukaya-Shi JP

Ken Takahashi, Warren, NJ US

Patent application numberDescriptionPublished
20090068762Methods of Processing a Substrate and Forming a Micromagnetic Device - A method of processing a substrate with a conductive film formed thereover and method of forming a micromagnetic device. In one embodiment, the method of processing the substrate includes reducing a temperature of the substrate to a stress-compensating temperature, and maintaining the temperature of the substrate at the stress-compensating temperature for a period of time. The method also includes increasing the temperature of the substrate above the stress-compensating temperature.03-12-2009
20110217793Methods of Processing a Substrate and Forming a Micromagnetic Device - A method of processing a substrate with a conductive film formed thereover and method of forming a micromagnetic device. In one embodiment, the method of processing the substrate includes reducing a temperature of the substrate to a stress-compensating temperature, and maintaining the temperature of the substrate at the stress-compensating temperature for a period of time. The method also includes increasing the temperature of the substrate above the stress-compensating temperature.09-08-2011

Ken Takahashi, Bloomfield, MI US

Patent application numberDescriptionPublished
20090085379REINFORCEMENT SYSTEM FOR AN AUTOMOTIVE VEHICLE - A reinforcement member and reinforcement system for an article of manufacture (e.g., an automotive vehicle) are disclosed. The reinforcement member includes a carrier member and a reinforcement material and the carrier member includes one or multiple portions. The one portion or at least one of the multiples portions includes a reinforced portion that is divided into multiple sections.04-02-2009

Ken Takahashi, Kawasaki JP

Patent application numberDescriptionPublished
20110246421DISTRIBUTED PROCESSING DEVICE, AND STORAGE MEDIUM STORING DISTRIBUTED PROCESSING PROGRAM - A distributed processing device includes receiving unit receives a plurality of process requests to records stored on a database, an acquiring unit acquires execution frequency of each processes responsive to the plurality of process requests related to a record identified by an attribute name, on a per attribute name basis of a plurality of attribute names, each attribute name identifying each of the plurality of records, sorting unit sorts the plurality of process requests into a first set and a second set in accordance with the acquired execution frequency of each process on each of the plurality of attribute names, a determining unit determines a first node, serving as an allocation destination of the process request sorted in the first set, from among a plurality of nodes, each node having the database, and an allocating unit allocates the process request sorted in the first set to the first node.10-06-2011
20110246510DEVICE AND METHOD FOR DISTRIBUTED PROCESSING - A distributed processing device includes a searching unit that searches, in accordance with attribute names identifying a plurality of records stored on a database, a process group for a second process having as a process target a record of an attribute name different from an attribute name included in a process request of a first process selected from among the process group to the database, a determining unit that determines the first process and the second process as execution targets to be executed by a plurality of nodes when the second process is hit by the searching unit, and an allocation unit that allocates the execution target determined by the determining unit to the plurality of nodes that execute the processes in parallel to the database.10-06-2011

Ken Takahashi, Kumagaya-Shi JP

Patent application numberDescriptionPublished
20110317096PLANAR LIGHTING DEVICE AND LIQUID-CRYSTAL DISPLAY DEVICE WITH THE SAME - According to one embodiment, a planar lighting device includes a plurality of light sources, a light guide layer provided on a light-emission side of the light sources and configured to guide light from the light sources, and a reflective layer provided on an opposite side of the light guide layer to the light sources and through which a part of the light is transmitted. The light guide layer includes light-scattering properties for scattering light and is formed so that optical transmittance T based on the light-scattering properties is 40%≦T≦93%.12-29-2011