Susumu Matsumoto
Susumu Matsumoto, Takatsuki-Shi JP
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20090001473 | SEMICONDUCTOR DEVICE AND METHOD FOR MANUFACTURING THE SAME - At least a laminate of a gate insulating film | 01-01-2009 |
Susumu Matsumoto, Kitakyushu-Shi JP
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20110136619 | SPEED INCREASING/DECREASING APPARATUS - A first rotary shaft and a second rotary are disposed such that they are rotatable around a rotation axis. The second rotary shaft has a cylindrical supporting part that covers the end section of the first rotary shaft. A case supports the first rotary shaft and the second rotary shaft. A first rolling bearing is disposed between the first rotary shaft and the case and supports the first rotary shaft such that it is rotatable. A second rolling bearing is disposed between the supporting part and the first rotary shaft and supports the first rotary shaft and the second rotary shaft such that they are rotatable relative to each other. A transmission part of the second rotary shaft transmits to the second rolling bearing a preload force that pushes the second rotary shaft to the first rotary shaft side. A load-receiving part of the case that receives the preload force transmitted from the second rolling bearing to the first rolling bearing. | 06-09-2011 |
Susumu Matsumoto, Toyama JP
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20110304057 | SEMICONDUCTOR DEVICE AND MANUFACTURING METHOD OF THE DEVICE - A semiconductor device includes a semiconductor substrate including a first surface serving as an element formation surface, and a second surface opposite to the first surface; a through-via penetrating the semiconductor substrate; an insulating via coating film formed between a sidewall of the through-via and the semiconductor substrate; and an insulating protective film formed on the second surface of the semiconductor substrate. The via coating film and the protective film are different insulating films from each other. | 12-15-2011 |
20120025381 | SEMICONDUCTOR DEVICE AND METHOD FOR FABRICATING THE SAME - An interlayer insulating film containing oxygen and carbon is formed on a semiconductor substrate. A groove is formed in the interlayer insulating film. An auxiliary film containing predetermined first and second metallic elements is formed on a bottom surface and a sidewall of the formed groove. Then, an interconnect body layer containing copper is formed to fill the groove. By performing a thermal treatment, a first barrier film containing a compound of the first metallic element and an oxygen element of the interlayer insulating film, and a second barrier film containing a compound of the second metallic element and carbon element of the interlayer insulating film are formed on the interlayer insulating film on the bottom surface and the sidewall of the groove. | 02-02-2012 |
Susumu Matsumoto, Funabashi-Shi JP
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20120216505 | AIRCRAFT - A bird knocking-off rod of a bird knocking-off device is disposed outside a jet engine, in front of an air inlet of the jet engine and capable of rotating with a rotation area that is larger than an opening area of the air inlet of the jet engine. The rotary drive unit contains a rotary drive source and is capable of rotationally driving the bird knocking-off rod independently of rotation of the jet engine. Thus, bird strike against aircraft can be prevented. | 08-30-2012 |
Susumu Matsumoto, Sanyoonoda-Shi JP
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20130217915 | Catalyst and Method for Producing Acrylic Acid - The present invention relates to a method for producing acrylic acid through vapor-phase contact oxidation of acrolein, wherein a reactor tube is divided into at least two catalyst layers, and catalysts having a higher activity are charged in the reactor tube sequentially toward an outlet port side from a material source gas inlet port side for a reaction therein to give acrylic acid, and wherein a catalyst activity-controlling method is a method comprising: a step of mixing a molybdenum-containing compound, a vanadium-containing compound, a copper-containing compound and an antimony-containing compound with water, then drying and calcining a resulting mixture, in which a catalytically-active element composition is kept constant but material source compounds are made to vary in type to give composite metal oxides having a different activity. | 08-22-2013 |
Susumu Matsumoto, Ageo-City JP
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20140203211 | Scintillator - An afterglow property of cesium iodide: thallium (CsI:Tl), in which CsI is a host material and doped with thallium, is improved. It is possible to improve the afterglow property of a scintillator by doping a crystal material including CsI (cesium iodide), as a host material, and thallium (Tl), as a luminescent center, with bismuth (Bi). | 07-24-2014 |
Susumu Matsumoto, Hiratsuka-Shi JP
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20160122533 | POLYCARBONATE RESIN COMPOSITION FOR THIN OPTICAL COMPONENT, AND THIN OPTICAL COMPONENT - A polycarbonate resin composition for a thin optical component is provided, which has a high transmittance and a good hue and an excellent resistance to thermal discoloration, and a thin optical component is also provided. The polycarbonate resin composition for a thin optical component comprising, per 100 mass parts of a polycarbonate resin (A), 0.1 to 2 mass parts of a polyalkylene ether glycol compound (B) represented by general formula (1) and 0.005 to 0.5 mass parts of a phosphorus stabilizer (C). | 05-05-2016 |