Kamoshita
Heikichi Kamoshita, Hitachinaka JP
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20100017098 | Diagnostic Control Apparatus for Internal Combustion Engines - Disclosed is a diagnostic control apparatus for internal combustion engines capable of accurately diagnosing the presence and extent of air/fuel ratio variations in engine cylinders, even when the system has no part for detecting the air/fuel ratio in each cylinder. The diagnostic control apparatus measures the time required for the crankshaft to rotate to a specified angle for each cylinder; and based on this measured, required time, derives the 0.5 order component as the rotation fluctuation component for each two rotations of the crankshaft per each cylinder or the 1.0 order component as the rotation fluctuation component for each single rotation of the crankshaft; and also counts the number of times the 0.5 order component or 1.0 order component deviates from the preset range in the period set for each cylinder, and diagnoses an error in the output or in the air/fuel ratio for a particular cylinder when that count value exceeds a specified value. | 01-21-2010 |
20130024088 | CONTROL DEVICE OF INTERNAL COMBUSTION ENGINE - Control device of an internal combustion engine that determines whether or not to perform sensor element heating control of an air-fuel ratio sensor with high accuracy based on the mass of condensed water in an exhaust pipe. The control device computes the rate of change of condensed water mass in an exhaust pipe based on the saturated water vapor pressure and the water vapor partial pressure of exhaust gas, and computes the rate of change of evaporation mass in the exhaust pipe based on the amount of heat which the condensed water receives in the exhaust pipe. The control device updates the mass of condensed water based on the rate of change of condensed water mass and the rate of change of evaporation mass, and determines whether or not to perform heating control by a heating controlling unit based on the updated mass of condensed water. | 01-24-2013 |
Junichi Kamoshita, Miyagi JP
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20110207281 | SEMICONDUCTOR DEVICE AND METHOD OF PRODUCING SEMICONDUCTOR DEVICE - A method of producing a semiconductor device includes the steps of forming a trench in a semiconductor substrate of a first conductive type so that an active region having a first portion and a second region is formed; implanting a first impurity of the first conductive type at an implantation angle between 30 degrees and 45 degrees relative to a normal line in an implantation direction rotating relative to the normal line so that a first channel diffusion region and a channel stopper region of the first conductive type are formed; filling the trench with an insulation layer; implanting a second impurity of a second conductive type so that a second channel diffusion region of the second conductive type is formed; forming a gate insulation film on the first portion and the second portion; and forming a gate electrode on the gate insulation film. | 08-25-2011 |
20140061804 | SEMICONDUCTOR DEVICE AND METHOD OF MANUFACTURING SEMICONDUCTOR DEVICE - Provided is a semiconductor device including active regions formed in a semiconductor substrate and arranged in a first direction parallel to a surface of the semiconductor substrate; a first element isolating region formed in the semiconductor substrate and electrically isolating adjacent active regions from each other; and gate electrodes extending over the active regions respectively and arranged in the first direction. The first element isolating region includes a first region extending in a second direction orthogonal to the first direction and a second region extending in a direction intersecting the first region, one gate electrode of adjacent gate electrodes has a first edge side which includes a first overlap part placed on the second region, and another gate electrode of the adjacent gate electrodes has a second edge side which faces the first edge side and includes a second overlap part placed on the second region. | 03-06-2014 |
Keigo Kamoshita, Ogaki JP
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20160037647 | WIRING BOARD WITH BUILT-IN ELECTRONIC COMPONENT AND METHOD FOR MANUFACTURING THE SAME - A wiring board with a built-in electronic component includes a substrate having a cavity, an electronic component accommodated in the cavity, a conductive layer formed on the substrate and extending over the electronic component in the cavity, and a solder-resist layer formed on the conductive layer and having first and second openings such that the first openings are forming first pads including the conductive layer exposed by the first openings and that the second openings are forming second pads including the conductive layer exposed by the second openings. The second pads include portions of the conductive layer formed directly over the electronic component, respectively, and connected to the electronic component, the first pads include portions of the conductive layer formed on outer side with respect to the electronic component, respectively, and each second opening has an opening diameter which is formed smaller than an opening diameter of each first opening. | 02-04-2016 |
Kenji Kamoshita, Hadano-Shi JP
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20160047425 | CLUTCH, CLUTCH FORMING PUNCH, AND METHOD OF MANUFACTURING CLUTCH - A clutch comprises: an annular friction plate; an annular metal support having a bottom for supporting thereon the friction plate, an inner wall and an outer wall coaxial with the inner wall, both walls perpendicular to the bottom; and a swaging structure consisting of a first and a second multiplicity of swaging sections provided along the inner wall and along the outer wall, respectively, at equal angular intervals to hold the friction plate on the bottom in such a way that the latter swaging sections are offset from the former swaging sections in the circumferential direction so as not to coincide with the former swaging sections with respect to any radial directions. Such clutch can be manufactured by appropriate use of an inventive punch adapted to form the swaging structure discussed above. | 02-18-2016 |
Naoki Kamoshita, Shizuoka-Ken JP
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20080290095 | FUEL TANK - A fuel tank includes a tank body and a fuel inlet projecting upwardly from the tank body. A fuel cap can be removably coupled onto the fuel inlet, the fuel cap including a hollow neck portion that projects into the fuel inlet when the fuel cap is installed on the fuel inlet. A chamber in the neck portion has an opening in a lower portion of the chamber and a communicating passage in an upper portion of the chamber. The upper portion of the chamber of the neck is placed in communication with an interior of the tank body via the communicating passage when the fuel cap is installed on the fuel inlet so that the fuel level within the chamber of the neck portion and a fuel level in the tank body outside the neck portion are equalized when the fuel cap is coupled onto the fuel inlet. | 11-27-2008 |
Shinji Kamoshita, Gotemba-Shi JP
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20130219863 | EXHAUST GAS CONTROL APPARATUS AND METHOD - An exhaust gas control apparatus includes: a fuel supply portion that is provided so as to supply fuel to a portion of an exhaust passage, which is upstream of an exhaust gas purification member provided in the exhaust passage; a heating portion that is disposed between the fuel supply portion and the exhaust gas purification member; and a control portion that controls an amount of electric power that is supplied to the heating portion, based on an exhaust gas temperature and an exhaust gas flow rate. | 08-29-2013 |
Shinji Kamoshita, Gotenba-Shi JP
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20110083427 | EXHAUST PURIFICATION APPARATUS FOR INTERNAL COMBUSTION ENGINE - The present invention provides an internal combustion engine exhaust purification apparatus includes a filter configured to collect particulate matter contained in exhaust gas, a selective catalytic reduction converter provided downstream of the filter to reduce nitrogen oxide contained, an oxidation catalyst converter with an adsorption function provided upstream of the converter to temporarily adsorb the nitrogen oxide contained in the exhaust gas, a burner configured to increase the temperature of the exhaust gas flowing into the filter, the selective catalytic reduction converter, and the oxidation catalyst converter to set the temperature of the filter to at least a predetermined recovery temperature, thus recovering the filter, and an ECU configured to inhibit the burner from being started when the burner is otherwise to be started but if the selective catalytic reduction converter has not been activated. | 04-14-2011 |
Yutaka Kamoshita, Osaka JP
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20110035400 | ADVERTISING MEDIUM DETERMINATION DEVICE AND METHOD THEREFOR - It is also an object of the present invention to provide objective advertisement plan(s). The target specifying information storage means | 02-10-2011 |
20120095832 | Advertising Medium Determination Device and Method Therefor - It is also an object of the present invention to provide objective advertisement plan(s). The target specifying information storage part | 04-19-2012 |
20130204702 | Advertising Medium Determination Device and Method Therefor - It is also an object of the present invention to provide objective advertisement plan(s). The target specifying information storage part | 08-08-2013 |
20160005069 | Advertising Medium Determination Device and Method Therefor - It is also an object to provide objective advertisement plan(s). The target specifying information storage part | 01-07-2016 |