Miyoshi
Miyoshi Kawaguchi, Aichi-Ken JP
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20110063058 | ELECTROMAGNETIC ACTUATOR - In an electromagnetic actuator, an electromagnetic drive section forms a flux path between a plunger and an inner yoke, each member being made of magnetic material, and which drives the plunger in an axial direction through electromagnetic force, an operation section has a dog movable between a connection position where it is connected with a mating part and a release position where it is apart from the mating part in the axial direction, and which restrains movement of the mating part in a circumferential direction when the dog is at the connection position, and a retaining ring is interposed between the plunger and the dog such that relative movement of the dog to the plunger in the circumferential direction is permitted and relative movement of the dog to the plunger in the axial direction is restricted. | 03-17-2011 |
20110143875 | VEHICULAR DRIVE APPARATUS - In a drive apparatus in which a first motor-generator, a power split device, a shift mechanism, and a second motor-generator are coaxially arranged, a first support wall which is next to the second motor-generator and supports one end of a rotor, and a second support wall that supports the other end of the rotor are provided in a case. A switching portion of the shift mechanism is provided on the first support wall. This kind of structure enables the drive apparatus to be shorter in the axial direction. | 06-16-2011 |
Miyoshi Kawaguchi, Anjo JP
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20090093331 | Hybrid drive device - A hybrid drive device includes an input member connected to an engine; an output member connected to a wheel; a first rotating electrical machine; a second rotating electrical machine connected to the output member; and a differential gear device including at least four rotational elements. The input member, the output member, and the first rotating electrical machine are respectively connected to different rotational elements of the differential gear device. The output member is capable of selectively connecting to one of two rotational elements of the differential gear device to which neither the input member nor the first rotating electrical machine is connected. | 04-09-2009 |
Miyoshi Kawaguchi, Anjo-Shi JP
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20080207374 | Drive apparatus - A hybrid drive unit that includes an input shaft connected to an engine; an output shaft connected to wheels; a first rotary electric machine; a second rotary electric machine connected to the output shaft; a power distribution device that distributes a rotational driving force of the input shaft to the output shaft and to the first rotary electric machine; a second rotary electric machine fixing device that selectively fixes a rotor of the second rotary electric machine; and a transmission cutoff device capable of cutting off transmission of rotation between the output shaft and the second rotary electric machine at least in a state when the rotor of the second rotary electric machine is fixed. | 08-28-2008 |
Miyoshi Kimura, Isesaki-Shi JP
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20110127770 | COUPLING RING - A coupling ring is provided, including a series of unit members with adjacent unit members rotatably coupled to each other, and a fastener coupling unit members on both ends to each other. A concave groove provided to extend circumferentially is externally fitted into an outer circumference of each of two opposing flanges. The unit members on the both ends are coupled to each other by the fastener to be turned into an annular state. The fastener is fastened to thereby press an inclined surface. The flanges are pressure-bonded to each other by forces generated during pressing. A stopper member is provided to restrict a separation angle between the unit member on one end and an adjacent unit member to fall within a certain angle in an open state in which the unit members on the both ends are not coupled to each other provided on at least one of the unit members. | 06-02-2011 |
20120139238 | PIPE CONNECTION STRUCTURE - To prevent attachment in an inclined state, a coupling ring with an inner concave groove is fitted to an outer circumferences of abutting flange portions, and is fastened to reduce an inner diameter thereof so that an inclined surface formed on each side surface of the concave groove presses an inclined surface formed on an opposite surface of each of the flange portions. The pair of flange portions are coupled by force generated at the time of pressing. An attachment correcting surface is provided on each of the flange portions or each of the pipes so that, only where the coupling ring is attached and fastened in an orientation inclined at an angle equal to or larger than a prescribed angle, the attachment correcting surface is abutted to a part of the coupling ring prior to completion of the fastening so as to prohibit the part from being brought closer. | 06-07-2012 |
Miyoshi Kimura, Tokyo JP
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20080290658 | Fitting Structure - Engagement section | 11-27-2008 |
Miyoshi Makino, Nagoya-Shi JP
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20140290039 | METHOD FOR MANUFACTURING GAS SENSOR - Among first and second swaged sections, the second swaged section begins to be swaged prior to the first swaged section. Hence, a strong force can be prevented from acting on a rubber plug in a free state at a time and the first swaged section can begin to be swaged in such a state that a portion of the rubber plug that corresponds to the second swaged section is aligned as compared to the case where the first and second swaged sections begin to be simultaneously swaged. This prevents the position of the rubber plug from being significantly varied during swaging and also prevents the rubber plug from protruding from an outer tube. | 10-02-2014 |
20150268187 | GAS SENSOR - In a gas sensor | 09-24-2015 |
Miyoshi Makino, Obu-Shi JP
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20160114420 | PRODUCTION METHOD FOR WELDED BODY AND PRODUCTION METHOD FOR GAS SENSOR - In a main metal piece | 04-28-2016 |
Miyoshi Ono, Hamamatsu-Shi JP
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20130166265 | METHOD FOR SIMULATING INDOOR ILLUMINANCE - Described herein is a method for simulating indoor illuminance which includes preparing an intrinsic optical property function of a bidirectional transmittance function and a bidirectional reflectivity function based on values actually measured for each plate-shaped optical member; for a skylight constructed by combining a plurality of those optical members, creating an optical physical model based on the intrinsic optical property function and the construction mode of each optical member constituting the skylight; calculating the skylight light distribution data for daylight, which is introduced through the skylight, by using the optical physical model; and simulating the indoor illuminance, which would be provided by actually installing the skylight, on the basis of the light distribution data. The simulation is performed on a computer system which has stored the intrinsic optical property function of each optical member in a database. | 06-27-2013 |
Miyoshi Takagi, Tokyo JP
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20140057478 | ELECTRICAL CONNECTOR - The operability and usage durability of a lock cancellation operating part | 02-27-2014 |
Miyoshi Ueno, Kyoto JP
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20140209250 | DETACHING APPARATUS AND DETACHING METHOD - In a detaching apparatus, a detachment starter bends one end part of a first plate-like body into a cylindrical or prismatic surface in a direction opposite to a second plate-like body, thereby forming a single and straight boundary line between an adhering region and a detached region. A separator increases a distance between a first holder holding the first plate-like body and a second holder holding the second plate-like body to separate the first and second plate-like bodies. | 07-31-2014 |
20140210133 | PATTERN FORMING APPARATUS AND PATTERN FORMING METHOD - A pattern forming apparatus comprises: a first holder which holds a blanket carrying a pattern forming material on one surface in a horizontal posture with a carrying surface for the pattern forming material faced up; a second holder which holds a plate for patterning the pattern forming material or a substrate, to which a pattern is transferred, as a processing object such that the processing object is proximate to and facing the carrying surface of the blanket held on the first holder; and a push-up unit which partially pushes up an effective area in a central part of the blanket from a lower surface side of the blanket to bring the effective area into contact with the processing object held on the second holder and moves along the lower surface of the blanket to change a push-up position of the blanket. | 07-31-2014 |
20140290839 | TRANSFER APPARATUS AND TRANSFER METHOD - A transfer apparatus includes a plurality of holders respectively coming into contact with a carrier and a roller member. Each of the holders is sequentially separated from the carrier in accordance with a movement of the roller member, moves to a retracted position where the holder does not interfere with the roller member, comes into contact with the other surface of the carrier again after the passage of the roller member, and moves in the direction away from the carrier while sucking the carrier by the suction unit. | 10-02-2014 |
Miyoshi Watanabe, Fuji-Shi JP
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20090126588 | Method and apparatus for manufacturing relief material for seamless printing - A workpiece | 05-21-2009 |
Miyoshi Watanabe, Tokyo JP
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20100189916 | METHOD OF MANUFACTURING CYLINDRICAL PRINTING SUBSTRATE AND MANUFACTURING DEVICE - The present invention has an object to provide a cylindrical printing substrate having a highly accurate thickness and surface smoothness suitable for printing. The present invention is a method of manufacturing a cylindrical printing substrate containing a photosensitive resin cured layer, comprising the steps of: (i) forming a spiral coating layer by applying the photosensitive resin on a cylindrical support body by a spiral coating method; (ii) forming an application layer made of the spiral coating layer having a uniform surface by bringing a doctor blade into contact with the spiral coating layer and having the spiral coating layer pass through a gap formed by the doctor blade and the cylindrical support body outer circumferential surface and then, of separating the doctor blade from the application layer; and (iii) forming the photosensitive resin cured layer by light-curing the application layer, in which the doctor blade is brought into contact with the spiral coating layer from below the cylindrical support layer and then, the doctor blade is separated downward, a manufacturing device for use in the manufacturing method. | 07-29-2010 |
20110198323 | METHOD FOR PRODUCING BLANK PRINTING SLEEVE FOR LASER ENGRAVING, AND APPARATUS FOR PRODUCING THE SAME - The present invention provides a method for producing a blank printing sleeve for laser engraving, comprising: (1) a step of laminating a photosensitive resin composition layer (a) on a hollow cylindrical support (b); (2) a step of photo-curing the laminated photosensitive resin composition layer (a) to form a cured photosensitive resin layer (c); and (3) a step of cutting the hollow cylindrical support (b) and the cured photosensitive resin layer (c) approximately in a circumferential direction of the hollow cylindrical support (b) by a laser cutting method and/or a water beam cutting method. | 08-18-2011 |
Miyoshi Yamashita, Joetsu-Shi JP
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20090143617 | METHOD FOR PREPARING (E3, Z5) -3,5-ALKADIENYL ACETATE - Provided is a method for preparing (E3,Z5)-3,5-alkadienyl acetate and (E3,Z5)-3,5-dodecadienyl acetate which is a sex pheromone of Brazilian apple leafminer. Specifically, provided is a method for preparing (E3,Z5)-3,5-alkadienyl acetate, comprising steps of hydrolyzing 5,5-diethoxy-(Z3)-3-pentenyl methoxymethyl ether in the presence of an acid to obtain 4-formyl-(E3)-butenyl methoxymethyl ether; reacting the 4-formyl-(E3)-butenyl methoxymethyl ether with alkylidene triphenylphosphorane in accordance with the Wittig reaction to obtain (E3,Z5)-3,5-alkadienyl methoxymethyl ether; and obtaining (E3,Z5)-3,5-alkadienyl acetate using the (E3,Z5)-3,5-alkadienyl methoxymethyl ether as a starting substance. | 06-04-2009 |
20100069664 | METHOD FOR PREPARING (E3,Z5)-3,5-ALKADIENYL ACETATE - Provided is a method for preparing (E3,Z5)-3,5-alkadienyl acetate and (E3,Z5)-3,5-dodecadienyl acetate which is a sex pheromone of Brazilian apple leafminer. Specifically, provided is a method for preparing (E3,Z5)-3,5-alkadienyl acetate, comprising steps of hydrolyzing 5,5-diethoxy-(Z3)-3-pentenyl methoxymethyl ether in the presence of an acid to obtain 4-formyl-(E3)-butenyl methoxymethyl ether; reacting the 4-formyl-(E3)-butenyl methoxymethyl ether with alkylidene triphenylphosphorane in accordance with the Wittig reaction to obtain (E3,Z5)-3,5-alkadienyl methoxymethyl ether; and obtaining (E3,Z5)-3,5-alkadienyl acetate using the (E3,Z5)-3,5-alkadienyl methoxymethyl ether as a starting substance. | 03-18-2010 |
20110282102 | Method for Producing Aldehyde and Ketone - Provided is a highly efficient method for the production of aldehydes and ketones, which is inexpensive, exhibits high reactivity, and is capable of easy separation of byproduct after the reaction. More particularly, there is provided a method for producing an aldehyde or a ketone, comprising at least an oxidation step of oxidizing a primary alcohol or a secondary alcohol in the presence of a polymeric carbodiimide represented by the following formula (1) and having a weight-average molecular weight of 300 to 5000, and a sulfoxide compound, together with an acid and a base, or together with a salt of the acid and the base. | 11-17-2011 |
20130245313 | 5-ACETOXY-(E3)-3-PENTENYL METHOXYMETHYL ETHER AND METHOD FOR PREPARING (E3)-3-ALKENYL ACETATE USING THE SAME - Provided are 5-acetoxy-(E3)-3-pentenyl methoxymethyl ether which can be prepared in conventional reaction equipment and a method for preparing an (E3)-3-alkenyl acetate by using it. More specifically, 5-hydroxy-(E3)-3-pentenyl methoxymethyl ether obtained by reacting 4-formyl-(E3)-3-butenyl methoxymethyl ether with a reductant is reacted with an acetylating agent to prepare 5-acetoxy-(E3)-3-pentenyl methoxymethyl ether. (E3)-3-alkenyl methoxymethyl ether obtained by a coupling reaction between the 5-acetoxy-(E3)-3-pentenyl methoxymethyl ether and a Grignard reagent is treated with an acid, and then reacted with an acetylating agent to prepare the (E3)-3-alkenyl acetate. | 09-19-2013 |
20140275656 | (Z,Z,E)-1-CHLORO-6,10,12-PENTADECATRIENE AND METHOD FOR PREPARING (Z,Z,E)-7,11,13-HEXADECATRIENAL BY USING SAME - Provided are (Z,Z,E)-1-chloro-6,10,12-pentadecatriene that can be synthesized without an oxidation reaction and a method for preparing (Z,Z,E)-7,11,13-hexadecatienal by using (Z,Z,E)-1-chloro-6,10,12-pentadecatriene while not using an oxidation reaction. More specifically, provided is a method for preparing (Z,Z,E)-7,11,13-hexadecatrienal including a step of reacting a Grignard reagent into which (Z,Z,E)-1-chloro-6,10,12-pentadecatriene is converted with ethyl orthoformate to obtain (Z,Z,E)-1,1-diethoxy-7,11,13-hexadecatriene, and a step of treating the (Z,Z,E)-1,1-diethoxy-7,11,13-hexadecatriene with an acid to obtain (Z,Z,E)-7,11,13-hexadecatrienal. | 09-18-2014 |
20140275657 | METHOD FOR PRODUCING CHLOROHYDROCARBON HAVING CONJUGATED DOUBLE BONDS - Provided is a method for producing a chlorohydrocarbon having conjugated double bonds by stereoselectively chlorinating an alcohol having conjugated double bonds. More specifically, provided is a method for producing a chlorohydrocarbon having conjugated double bonds, the method including a step of chlorinating an alcohol having conjugated double bonds with a chlorinating agent in a solvent in the presence of a base and in the absence of metal salt for chlorination of the alcohol, and the alcohol being represented by the formula (1): | 09-18-2014 |
20140309452 | OMEGA-HALO-2-ALKYNAL, METHOD FOR PRODUCING SAME, AND METHOD FOR PRODUCING CONJUGATED Z-ALKEN-YN-YL ACETATE USING SAME - Provided is a method for industrially producing a conjugated Z-alken-yn-yl acetate such as Z-13-hexadecen-11-yn-yl acetate which is a sex pheromone component of a pine processionary moth, and an intermediate for the conjugated Z-alken-yn-yl acetate under mild conditions at a high yield. More specifically, provided is a method for producing a conjugated Z-alken-yn-yl acetate (5) comprising the steps of: reacting an ω-halo-2-alkynal (1) with an alkylidene triphenylphosphorane (3) through a Wittig reaction to obtain a conjugated Z-alken-yn-yl halide (4), and acetoxylating the conjugated Z-alken-yn-yl halide (4) into a conjugated Z-alken-yn-yl acetate (5). | 10-16-2014 |
20160076063 | Method for Producing (Z)-2-Benzoyloxy-12-Heptadecene and (2S,12Z)-2-Hydroxy-12-Heptadecene and Method for Producing (2S,12Z)-2-Acetoxy-12-Heptadecene - Provided are methods including a method for industrially producing (2S,12Z)-2-acetoxy-12-heptadecene, which is, for example, a sex pheromone of pistachio twig borer. The methods can include a production method comprising a step of reacting racemic (2RS,12Z)-2-hydroxy-12-heptadecene with vinyl benzoate in the presence of a lipase to obtain a mixture of optically active (2R,12Z)-2-benzoyloxy-12-heptadecene of Formula (R,Z-2) and optically active (2S,12Z)-2-hydroxy-12-heptadecene of Formula (S,Z-1), a step of heating the mixture to distill out the optically active (2S,12Z)-2-hydroxy-12-heptadecene (S,Z-1), and a step of acetylating the optically active (2S,12Z)-2-hydroxy-12-heptadecene (S,Z-1) to obtain optically active (2S,12Z)-2-acetoxy-12-heptadecene of Formula (S,Z-3). | 03-17-2016 |
20160107969 | METHOD FOR PRODUCING AN OMEGA-HALO-2-ALKYNAL - Provided is a method for industrially producing a conjugated Z-alken-yn-yl acetate such as Z-13-hexadecen-11-yn-yl acetate which is a sex pheromone component of a pine processionary moth, and an intermediate for the conjugated Z-alken-yn-yl acetate under mild conditions at a high yield. More specifically, provided is a method for producing a conjugated Z-alken-yn-yl acetate (5) comprising the steps of: reacting an ω-halo-2-alkynal (1) with an alkylidene triphenylphosphorane (3) through a Wittig reaction to obtain a conjugated Z-alken-yn-yl halide (4), and acetoxylating the conjugated Z-alken-yn-yl halide (4) into a conjugated Z-alken-yn-yl acetate (5). | 04-21-2016 |
20160107978 | METHOD FOR PRODUCING A CONJUGATED Z-ALKEN-YN-YL ACETATE - Provided is a method for industrially producing a conjugated Z-alken-yn-yl acetate such as Z-13-hexadecen-11-yn-yl acetate which is a sex pheromone component of a pine processionary moth, and an intermediate for the conjugated Z-alken-yn-yl acetate under mild conditions at a high yield. More specifically, provided is a method for producing a conjugated Z-alken-yn-yl acetate (5) comprising the steps of: reacting an ω-halo-2-alkynal (1) with an alkylidene triphenylphosphorane (3) through a Wittig reaction to obtain a conjugated Z-alken-yn-yl halide (4), and acetoxylating the conjugated Z-alken-yn-yl halide (4) into a conjugated Z-alken-yn-yl acetate (5). | 04-21-2016 |
Miyoshi Yamashita, Niigata-Ken JP
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20120321588 | SEX PHEROMONE COMPOSITION OF PEACH FRUIT MOTH AND ATTRACTANT COMPRISING THE SAME - Provided are a novel sex pheromone composition of peach fruit moth which is expected to be used in emergence forecast, mass trapping and mating disruption and has higher attractiveness than that of conventional sex pheromone compositions; and a sex attractant, a mating disruptant and a control method comprising the novel sex pheromone composition as an active ingredient. Specifically provided are a novel sex pheromone composition of peach fruit moth comprising (Z)-7-tricosene and (Z)-13-eicosen-10-one, a sex attractant and a mating disruptant comprising this sex pheromone composition, and a method for controlling peach fruit moth using this sex pheromone composition. | 12-20-2012 |
20150119597 | METHOD FOR PRODUCING 2-ISOPROPYLIDENE-5-METHYL-4-HEXENYL BUTYRATE - Provided is a simple and efficient method for producing 2-isopropylidene-5-methyl-4-hexenyl butyrate. More specifically, provided is a method for producing 2-isopropylidene-5-methyl-4-hexenyl butyrate, the method including the steps of: isomerizing 2-isopropenyl-5-methyl-4-hexenoic acid ester (1) into 2-isopropylidene-5-methyl-4-hexenoic acid ester (2), reducing thus formed 2-isopropylidene-5-methyl-4-hexenoic acid ester (2) into 2-isopropylidene-5-methyl-4-hexenol (3), and butyrylating thus formed 2-isopropylidene-5-methyl-4-hexenol (3) into 2-isopropylidene-5-methyl-4-hexenyl butyrate (4), | 04-30-2015 |
Miyoshi Yamauchi, Osaka-Shi JP
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20080224932 | PORTABLE TERMINAL DEVICE - A portable terminal device can suppress/reduce a noise radiated from the portable terminal device, especially more effectively can suppress/reduce adverse effects of a high-frequency noise in VHF/UHF band or higher, so that reception sensitivity of its antenna can be improved effectively. The portable terminal device is arranged such that a sheet member includes at least one of a conductive sheet and a metal deposition sheet inside a housing, an electronic circuit substrate is provided inside the sheet material, and an antenna member is provided outside the sheet member. | 09-18-2008 |