Tanaka, Aichi-Ken
Akimitsu Tanaka, Aichi-Ken JP
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20100031844 | Inflator - An inflator according to this invention has a structure that an interior part of a housing is charged with a pressurized gas and a gas generating agent capable of generating a gas when combusted, wherein the pressurized gas formed only of an inert gas; a quantity of heat to be generated when the gas generating agent is combusted is set within a range of 6000 to 10000 J/g; and a molar ratio between the pressurized gas and the combustion gas generated by the combustion of the gas generating agent is set within a range of 20 to 40. | 02-11-2010 |
Atsunosuke Tanaka, Aichi-Ken JP
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20090128312 | Switch having information display function for on-vehicle apparatus - A compartment temperature adjustment switch | 05-21-2009 |
Hajime Tanaka, Aichi-Ken JP
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20100263474 | STEERING APPARATUS - A steering apparatus includes: an input shaft that transmits a steering force input from a steering wheel; an output shaft that transmits a steered force by which wheels are steered; and an eccentric pin mechanism that includes an eccentric cam and an adapting plate. The output shaft is arranged at a position that is radially offset from the input shaft, and is connected to one of the eccentric cam and the adapting plate. The other one of the eccentric cam and the adapting plate is connected to the input shaft. A middle accommodation member that accommodates the eccentric pin mechanism is formed separately from an input-side accommodation member that accommodates the input shaft and an output-side accommodation member that accommodates the output shaft. | 10-21-2010 |
20100285889 | STEERING APPARATUS - A steering apparatus includes an input shaft that transmits a steering force input from a steering wheel and an output shaft that transmits a steered force by which wheels are steered. The output shaft is arranged at a position that is radially offset from the input shaft. One of an eccentric cam and an adapting plate that form an eccentric pin mechanism is connected to the input shaft. The output shaft is connected to the other one of the eccentric cam and the adapting plate. A first connecting portion of the input shaft, which is connected to the eccentric pin mechanism, is connectable to a second connecting portion of the output shaft, which is connected to the eccentric pin mechanism. | 11-11-2010 |
20110163526 | STEERING-FORCE TRANSMITTING APPARATUS FOR VEHICLE - A steering-force transmitting apparatus including (a) an operating-member-side shaft; (b) a turning-device-side shaft offset from the operating-member-side shaft; and (c) a rotation transmitting mechanism having (c-1) an axially protruding portion provided in one of the two shafts and (c-2) a radially extending groove provided in the other of the two shafts such that the axially protruding portion is engaged in the radially extending groove. The rotation transmitting mechanism is configured to change a rotational phase difference between the two shafts while causing one of the two shafts to be rotated by rotation of the other of the two shafts. An axially end portion of a main body portion of one of the two shafts and an axially end portion of the other of the two shafts overlap with each other in the axial direction. | 07-07-2011 |
Hiromi Tanaka, Aichi-Ken JP
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20100190069 | EXHAUST STATE CONTROL DEVICE FOR FUEL CELL FOR MOBILE UNIT - An exhaust state control device for a fuel cell for a mobile unit includes an exhaust gas temperature sensor ( | 07-29-2010 |
Hirotoshi Tanaka, Aichi-Ken JP
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20160084377 | INTERLOCK MECHANISM - An interlock mechanism includes a shift-and-select shaft a first fork, a second fork, a first inner lever, a second inner lever, an interlock member coaxially arranged around an outer circumference of the shift-and-select shaft while being allowed to rotate together with the shift-and-select shaft in the rotation direction as a unit and not allowed to be displaced in the axial direction, a first engagement portion formed on the first fork, a second engagement portion formed to project from the second fork, a first engaged portion formed to project from the inter lock member and engaged with the first engagement portion while the interlock member is positioned at a second rotation position and a second engaged portion formed on the interlock member and engaged with the second engagement portion while the interlock member is positioned at a first rotation position. | 03-24-2016 |
Katsufumi Tanaka, Aichi-Ken JP
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20110244326 | ELECTRODE FOR SECONDARY BATTERY AND MANUFACTURING PROCESS FOR THE SAME - It is an assignment to be solved to provide an electrode for secondary battery, electrode in which the active material is suppressed from coming off or falling down from the electricity collector, and that has excellent cyclic performance. | 10-06-2011 |
Koki Tanaka, Aichi-Ken JP
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20100096841 | Airbag apparatus - An airbag apparatus includes an airbag that includes a bag body provided with an insert hole for receiving an inflator and a sealing cloth arranged to cover a peripheral area of the insert hole. The sealing cloth includes on the location corresponding to the insert hole a through hole for receiving the inflator. The sealing cloth further includes around the through hole a slit that encircles the through hole generally wholly in a circumferential direction and enables relative slip movement between a peripheral area of the through hole on the sealing cloth and the peripheral area of the insert hole on the bag body in generally radial directions about the through hole | 04-22-2010 |
Masaki Tanaka, Aichi-Ken JP
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20110293948 | METHOD FOR COATING MOLDED ARTICLES - This invention discloses a coating method of plastic molded articles, which can form multilayer coating film composed of three layers of water-based primer, water-based base paint and clear paint, the film excelling in adherability to plastic molded articles, water resistance and durability, even when low-temperature baking at not higher than 100° C. is carried out in 3-coat-1-bake system. | 12-01-2011 |
Motoyuki Tanaka, Aichi-Ken JP
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20080224452 | Head-protecting airbag apparatus - The head-protecting airbag apparatus includes an airbag folded up in an elongative contour for covering a window of vehicle upon deployment, and a plurality of cases arranged along the length direction of the folded-up airbag for housing the airbag. The airbag apparatus is mounted on the vehicle by attaching mounting portions of the airbag along an upper periphery of the window together with the cases. The cases are connected by a bendable connecting member and thereby permitting the airbag stored in the cases to be transported in a bent state at the connecting member. The connecting member announces the occurrence of twisting of the airbag between the cases by shortening the distance between the cases for preventing the airbag from being mounted on the vehicle in a twisted state when the airbag apparatus is unfolded for mounting on the vehicle. | 09-18-2008 |
20090236829 | Head-protecting airbag - A head-protecting airbag adapted to be mounted on an upper periphery of a window of a vehicle for deployment downward to cover the window includes a primary inflatable portion that includes a protection portion for receiving an occupant's head and a secondary inflatable portion that admits inflation gas of the primary inflatable portion and is inflatable secondarily for preventing a pressure increase of the primary inflatable portion. The primary inflatable portion and the secondary inflatable portion are communicated with a tubular conduit. The protection portion includes an inlet-side inflatable portion located proximate an inlet port of the conduit and a lower inflatable portion located below the conduit. The lower inflatable portion is communicated with part of the inlet-side inflatable portion and has an opening dimension in a vertical direction that is greater than that of the conduit over an entire area below the conduit. | 09-24-2009 |
20090236833 | Head-protecting airbag - A head-protecting airbag is deployable downward from an upper periphery of a window of vehicle to cover the window. The airbag includes a primary inflatable portion that includes a protection portion for receiving an occupant's head and a secondary inflatable portion that admits inflation gas of the primary inflatable portion and is inflatable secondarily for preventing a pressure increase of the primary inflatable portion. The primary inflatable portion and the secondary inflatable portion are, communicated with a tubular conduit that is arranged along the lower periphery of the airbag. The protection portion includes an inlet-side inflatable portion communicated with the conduit and an upper inflatable portion located above the conduit. The conduit includes a main region located facing the outlet port and an enlarged-diameter region that is located facing the inlet port and has a greater opening dimension than the main region. | 09-24-2009 |
Nobutaka Tanaka, Aichi-Ken JP
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20090251831 | MOTOR DRIVE DEVICE - When an upper arm of U-phase has failed because of short-circuit, lower arms of V-phase phase and W-phase as the opposite arms are switching-operated. When only the lower arm of V-phase is turned on, a route of motor current passing through an IGBT element from a V-phase coil is formed, and therefore, the motor current returning to the short-circuited phase decreases. Further, by the switching operation of the arm opposite to the short-circuited arm, an AC current is induced in a motor generator. Therefore, it is possible to continuously drive the motor generator while preventing increase in the current passing through the short-circuited phase, without adding a new device structure. This ensures running of the vehicle in the limp mode. | 10-08-2009 |
Syunsuke Tanaka, Aichi-Ken JP
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20150336478 | RECLINING STRUCTURE OF VEHICULAR SEAT - A reclining structure of a vehicular seat is provided with: a coupling shaft configured to couple a seat back to a vehicle main body; a slide rail provided at a side part of the vehicle main body and having a curved guide shape; a slider mounted to the slide rail; an attaching and detaching mechanism configured to detachably engage the slider and the seat back with each other; and a slide lock mechanism configured to lock movement of the slider. The slide lock mechanism is provided with: a lock member guided by and mounted to the slider to be slidable in a diametrical direction; a cam member mounted to the slider to straightly push out the lock member in the diametrical direction; and a lock teeth having a teeth face arranged to face in the diametrical direction along the guide shape of the slide rail. | 11-26-2015 |
Takumi Tanaka, Aichi-Ken JP
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20090291344 | FUEL CELL - On an anode side separator, an adhesive is applied linearly along the upper and lower edges of the four edges thereof, around a receiving part and around a through-hole and so on. On a cathode side separator, the adhesive is applied at the same locations as on the anode side separator. The adhesive functions as support members for supporting the fastening load on the edges of the separators. | 11-26-2009 |
Toshimitsu Tanaka, Aichi-Ken JP
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20120255590 | THERMOELECTRIC CONVERSION MODULE - A thermoelectric conversion module includes two substrates, electrodes, thermoelectric conversion elements provided between the substrates and electrically connected in series via the electrodes, a polygonally-shaped thermoelectric conversion element disposition area provided on inner surface of the substrate wherein the thermoelectric conversion elements are disposed in the thermoelectric conversion element area, a fin radiator provided on outer surface of the substrate and a fin disposition area wherein the fin radiator is disposed in the fin disposition area. The fin disposition area and the thermoelectric conversion element disposition area are located on opposite sides of the substrates so as to overlap each other via the substrate. Part of each of the thermoelectric conversion elements located at least one corner of the thermoelectric conversion element disposition area is located outside the fin disposition area when the fin disposition area is projected on the thermoelectric conversion element disposition area. | 10-11-2012 |