Toshiyuki Kondo
Toshiyuki Kondo, Chiryu-Shi JP
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20110008695 | FUEL CELL SYSTEM AND METHOD OF CONTROLLING A FUEL CELL SYSTEM - If subsequent to discontinuing generation by the fuel cell stack it is predicted that evolved water formed by electrochemical reaction of a fuel gas and an oxidant gas during generation may freeze in the membrane-electrode assembly provided to the fuel cell stack, low-level generation (temperature gradient formation control) is carried out until the temperature of the membrane-electrode assembly is relatively higher than the temperature of the separators. This temperature gradient formation control is carried out only for the time period necessary to produce a temperature gradient between the membrane-electrode assembly and the separators, and is quickly discontinued once a temperature gradient is created between the membrane-electrode assembly and the separators. Thus, in a fuel cell system equipped with a fuel cell, reduced energy efficiency of the fuel cell system may be avoided, and low temperature startup may be improved. | 01-13-2011 |
20130061983 | SUCTION NOZZLE, SUCTION DEVICE, GAS FILLING DEVICE, GAS CONSUMING DEVICE AND GAS FILLING SYSTEM - A suction nozzle, which is configured to be interlocked with a gas filler nozzle used to supply a gas to a gas consuming device, comprises a suction port configured to suck moisture inside the gas filler nozzle when the suction nozzle is interlocked with the gas filler nozzle. | 03-14-2013 |
Toshiyuki Kondo, Tiryu-Shi JP
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20100176220 | MOVING BODY - A moving body, such as a vehicle, having one or more fuel cells mounted thereon. The fuel cells, which power the moving body, generate electricity and release water as a by-product. Accordingly, the moving body includes a water discharge module that releases water produced by the fuel cells to the atmosphere using a water outlet. The water outlet may be located in a front section of the moving body. The moving body may further include a water tank that temporarily stores water before releasing the water to the atmosphere. | 07-15-2010 |
20110313605 | MOVING BODY - Water contained in exhaust gas discharged from a fuel cell stack is separated by a gas-liquid separator and is accumulated in a recovery tank. The procedure of the invention sets a release amount of water and selects one or multiple positions for water release, based on the driving conditions including the vehicle speed and the acceleration, the turning state, activation or non-activation of skid reduction control, the distance from any object detected by clearance sonars, a distance from a subsequent vehicle measured by an extremely high frequency radar, and the presence of raindrops detected by a raindrop detection sensor, and releases the water accumulated in the recovery tank from water outlets at the selected one or multiple positions among water outlets at multiple different locations. This arrangement ensures adequate release of the water produced by the fuel cell stack to the atmosphere. | 12-22-2011 |
20110313606 | MOVING BODY - Water contained in exhaust gas discharged from a fuel cell stack is separated by a gas-liquid separator and is accumulated in a recovery tank. The procedure of the invention sets a release amount of water and selects one or multiple positions for water release, based on the driving conditions including the vehicle speed and the acceleration, the turning state, activation or non-activation of skid reduction control, the distance from any object detected by clearance sonars, a distance from a subsequent vehicle measured by an extremely high frequency radar, and the presence of raindrops detected by a raindrop detection sensor, and releases the water accumulated in the recovery tank from water outlets at the selected one or multiple positions among water outlets at multiple different locations. This arrangement ensures adequate release of the water produced by the fuel cell stack to the atmosphere. | 12-22-2011 |
20130149617 | MOVING BODY - A moving body, such as a vehicle, having one or more fuel cells mounted thereon. The fuel cells, which power the moving body, generate electricity and release water as a by-product. Accordingly, the moving body includes a water discharge module that releases water produced by the fuel cells to the atmosphere using a water outlet. The water outlet may be located in a front section of the moving body. The moving body may further include a water tank that temporarily stores water before releasing the water to the atmosphere. | 06-13-2013 |
20130295473 | MOVING BODY - A moving body, such as a vehicle, having one or more fuel cells mounted thereon. The fuel cells, which power the moving body, generate electricity and release water as a by-product. Accordingly, the moving body includes a water discharge module that releases water produced by the fuel cells to the atmosphere using a water outlet. The water outlet may be located in a front section of the moving body. The moving body may further include a water tank that temporarily stores water before releasing the water to the atmosphere. | 11-07-2013 |
20130295474 | MOVING BODY - A moving body, such as a vehicle, having one or more fuel cells mounted thereon. The fuel cells, which power the moving body, generate electricity and release water as a by-product. Accordingly, the moving body includes a water discharge module that releases water produced by the fuel cells to the atmosphere using a water outlet. The water outlet may be located in a front section of the moving body. The moving body may further include a water tank that temporarily stores water before releasing the water to the atmosphere. | 11-07-2013 |
Toshiyuki Kondo, Aichi-Ken JP
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20090045006 | Noise Eliminator for Fuel Cell - A noise eliminator for a fuel cell installed in an exhaust system discharging exhaust gas from the fuel cell, comprising an inner pipe having a plurality of sound transmission holes formed in its peripheral wall and allowing the exhaust gases to flow therethrough and an outer shell disposed to surround the inner pipe through a prescribed distance from the peripheral wall and constituting a sound absorbing chamber with a sound absorbing material filled in the clearance thereof from the inner pipe. The sound transmission hole has an inner diameter of 3 mm or greater, and a depth of 1.2 mm or less. | 02-19-2009 |
20090087719 | NOISE ELIMINATOR FOR FUEL CELL - A noise eliminator for a fuel cell has a noise elimination chamber that is filled with a noise elimination material, and also has discharge gas flow piping penetrating the noise elimination chamber and having holes in the peripheral wall of the piping and through which gas charged from the fuel cell flows. An electrically conductive material is added to the noise elimination material. The construction suppresses electrostatic charging even if discharge gas flows in the discharge gas flow piping. | 04-02-2009 |
20100068603 | HOLLOW FIBER MEMBRANE MODULE AND FUEL CELL SYSTEM - In a humidifying membrane module, a humidifying membrane having plural hollow fiber membranes bundled together is housed in a humidifying membrane chassis having a cylindrical outer periphery, and the humidifying membrane chassis is housed in an assembly chassis having a cylindrical inner periphery. The assembly chassis has an inlet port for taking air that is made to flow into hollow parts of the humidifying membrane, an outlet port for discharging the air, an inlet port for taking an off-gas that is made to flow in gaps in the humidifying membrane, and an outlet port for discharging the off-gas. The air and the off-gas flow in flow paths formed by utilizing the humidifying membrane chassis and the assembly chassis, but are not mixed with each other at positions other than the humidifying membrane owing to annular sealing members provided between the humidifying chassis and the assembly chassis. | 03-18-2010 |
Toshiyuki Kondo, Tokyo JP
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20090027912 | LIGHT SOURCE UNIT AND VEHICULAR LAMP - The disclosed subject matter provides a reflecting cover above and between a light-emitting chip and a projection lens. The diffused light from the light-emitting chip is led toward the projection lens via the reflecting cover such that it transmits through the projection lens at a certain angle. This makes it possible to increase the amount of controllable light, and to improve the amount of light beams radiated from the lamp, thereby realizing a brighter lamp and an improved light distribution shape. | 01-29-2009 |
20100008089 | LIGHTING FIXTURE - A compact lighting fixture having various functions can be achieved at low cost. The lighting fixture can provide a high degree of freedom for space utilization, can provide a comfortable illumination space with designed light distribution, can be configured to require a smaller space for installation, and can have an appearance that is not so different from its surroundings. As a component constituting the illumination optical system, a polygonal frustum portion can be located at a center and can have tapered side reflecting portions. When assuming that three concentric imaginary circles have respective radii of R | 01-14-2010 |
Toshiyuki Kondo, Tochigi JP
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20090139070 | METHOD FOR INSTALLING RUN CHANNEL FOR AUTOMOBILE, DEVICE FOR INSTALLING RUN CHANNEL FOR AUTOMOBILE, AND SOFT MEMBER INSTALLATION DEVICE - A versatile device for installing a run channel for an automobile, capable of contributing to man-hour reduction and being used for multiple models. A device for installing a run channel on a sash of an automobile door, the device being composed of a robot having a pair of arms and a run channel installation jig ( | 06-04-2009 |
20090165278 | METHOD AND DEVICE FOR INSTALLING OPEN SEAL - A method of installing an open seal ( | 07-02-2009 |
20090260211 | SOFT MEMBER MOUTING METHOD AND APPARATUS - A method for mounting a soft member ( | 10-22-2009 |
Toshiyuki Kondo, Hagagun JP
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20090248191 | HUB POSTURE DETECTION METHOD AND APPARATUS - Distance meters measure distances from a reference position to a first area including an upper pitch circle portion and a second area including a lower pitch circle portion. Center coordinates of the hub is calculated based on respective center coordinates of two hub bolts included within the first and second areas. Coordinates of three points defining apexes of a triangle are acquired. Inclination angle of the hub relative to a vertical plane is calculated based on the coordinates of the three points, and an orientation of each of the hub bolts is calculated based on the center coordinates of the hub and the center coordinates of the hub bolt. | 10-01-2009 |
20110265311 | WORKPIECE HOLDING METHOD - It is an object of the present invention to provide a workpiece holding method which enables a workpiece to be held when a multi-fingered hand is used to grasp the workpiece that is in an untidy heap, even if a target workpiece is subject to interference from another workpiece, and thereby the method enhances the success rate for holding the workpiece. A workpiece holding method, when two holding devices (first to fourth fingers F | 11-03-2011 |
Toshiyuki Kondo, Tochigi-Ken JP
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20110179627 | WORKPIECE ASSEMBLING METHOD - A workpiece assembling method uses an assembly work cell, the assembly work cell including: a worker station at which a worker works; an apparatus station at which an apparatus works; and a transfer unit that transfers a workpiece to be processed between the worker station and the apparatus station. In the method, the workpiece to be processed is alternately moved by the transfer unit between the worker station and the apparatus station, so that the worker and the apparatus alternately assemble the workpiece. | 07-28-2011 |
20110288683 | GRIP POSITION CALCULATOR AND METHOD OF CALCULATING GRIP POSITION - The grip position calculator determines a grip position where the fingers can grip a workpiece in any orientation of the workpiece. The calculator then determines an initial position where the finger tips can grip the workpiece and set the initial position as a point of calculation. Then an allowable gripping force is calculated which is an index that indicates an allowable force to be applied to the workpiece at point. Then other allowable forces are calculated for a plurality of points near the point of calculation. Then the point of calculation is selected as a possible gripping position if the allowable force a point is greater than any of the allowable forces. Otherwise, one of the points is selected for another point of calculation where the greatest allowable force (De) has been calculated and return to calculating an allowable gripping force. | 11-24-2011 |
Toshiyuki Kondo, Aichi JP
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20120037923 | LIGHT EMITTING DIODE ELEMENT AND METHOD FOR PRODUCING THE SAME - [PROBLEM] To provide a light emitting diode which can obtain emission at shorter wavelength side of emission range of normal 6H-type SiC doped with B and N, and a method for manufacturing the same. | 02-16-2012 |
20120228656 | SEMICONDUCTOR LIGHT EMITTING ELEMENT - [PROBLEM] A light extraction efficiency increases by suppressing a reflection of a semiconductor layer and a transparent substrate. | 09-13-2012 |
20130126907 | GROUP III NITRIDE SEMICONDUCTOR DEVICE AND METHOD FOR MANUFACTURING THE SAME - [Problem] To provide a group III nitride semiconductor device and a method for manufacturing the same in which dislocation density in a semiconductor layer can be precisely reduced. | 05-23-2013 |
20140312004 | ETCHING METHOD - Provided are an etching method capable of increasing an etching selectivity between a subject material and a resist, a sapphire substrate processed using the etching method, and a light-emitting device including the sapphire substrate. An etching method using a plasma etching apparatus includes: a resist film forming step of forming a resist film on a subject material; a pattern forming step of forming a predetermined pattern on the resist film; a resist degenerating step of exposing the resist film on which the pattern is formed to plasma under a predetermined degeneration condition to degenerate the resist film and increase an etching selectivity; and a subject material etching step of exposing the subject material to plasma under an etching condition different from the degeneration condition to etch the subject material using the resist film having an increased etching selectivity as a mask. | 10-23-2014 |
Toshiyuki Kondo, Nagoya-Shi JP
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20140170799 | METHOD OF MANUFACTURING GLASS SUBSTRATE WITH CONCAVE-CONVEX FLIM USING DRY ETCHING, GLASS SUBSTRATE WITH CONCAVE-CONVEX FILM, SOLAR CELL, AND METHOD OF MANUFACTURING SOLAR CELL - [Problem] A problem is to provide a method of manufacturing a glass substrate with a concave-convex film using dry etching capable of giving a fine concave-convex structure precisely by dry etching, a glass substrate with a concave-convex structure, a solar cell, and a method of manufacturing a solar cell. | 06-19-2014 |
20150091039 | SEMICONDUCTOR LIGHT EMITTING ELEMENT - A semiconductor light emitting element includes a semiconductor stack part that includes a light emitting layer, a diffractive face to which light emitted from the light emitting layer is incident, and convex portions or concave portions formed in a period which is longer than an optical wavelength of the light and is shorter than a coherent length of the light. The diffractive face reflects incident light in multimode according to Bragg's condition of diffraction and transmits the incident light in multimode according to the Bragg's condition of diffraction. The semiconductor stack part is formed on the diffractive face. The convex portions or the concave portions include a side surface and a curved portion which curves and extends to a center side of the convex portions or the concave portions from an upper end of the side surface. | 04-02-2015 |
Toshiyuki Kondo, Nagoya-Shi, Aichi JP
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20160111599 | LED ELEMENT - In order to achieve appropriate light distribution using light distribution characteristics resulting from diffraction while improving light extraction efficiency using a diffraction effect, an LED element provided with: a substrate in which periodic depressions or projections are formed on a front surface; a semiconductor laminated part that is formed on the front surface of the sapphire substrate, includes a light-emitting layer, and is formed of a group-III nitride semiconductor; and a reflecting part that reflects at least a part of light emitted from the light-emitting layer toward the front surface of the substrate, the LED element obtaining a diffraction effect of light emitted from the light-emitting layer at an interface between the substrate and the semiconductor laminated part, wherein a relation of 1/2×λ≦P≦16/9×λ, is satisfied, where a period of the depressions or the projections is P and a peak wavelength of the light emitted from the light-emitting layer is λ. | 04-21-2016 |