in:(Ken Sakai)

MEMORY CONTROLLER, STORAGE DEVICE, INFORMATION PROCESSING SYSTEM, AND METHOD OF CONTROLLING MEMORY CONTROLLER PCT/JP2015/067958
[SAKAI, Lui 阪井 塁, SAKAI, Lui 阪井 塁, TSUTSUI, Keiichi 筒井 敬一, SAKAI, Lui 阪井 塁, TSUTSUI, Keiichi 筒井 敬一, FUJINAMI, Yasushi 藤波 靖, SAKAI, Lui 阪井 塁, TSUTSUI, Keiichi 筒井 敬一, FUJINAMI, Yasushi 藤波 靖, IWAKI, Hiroyuki 岩城 宏行, SAKAI, Lui 阪井 塁, TSUTSUI, Keiichi 筒井 敬一, FUJINAMI, Yasushi 藤波 靖, IWAKI, Hiroyuki 岩城 宏行, ISHII, Ken 石井 健, SAKAI, Lui 阪井 塁, TSUTSUI, Keiichi 筒井 敬一, FUJINAMI, Yasushi 藤波 靖, IWAKI, Hiroyuki 岩城 宏行, ISHII, Ken 石井 健, ADACHI, Naohiro 足立 直大, SAKAI, Lui 阪井 塁, TSUTSUI, Keiichi 筒井 敬一, FUJINAMI, Yasushi 藤波 靖, IWAKI, Hiroyuki 岩城 宏行, ISHII, Ken 石井 健, ADACHI, Naohiro 足立 直大, IKEGAYA, Ryoji 池谷 亮志, SAKAI, Lui 阪井 塁, TSUTSUI, Keiichi 筒井 敬一, FUJINAMI, Yasushi 藤波 靖, IWAKI, Hiroyuki 岩城 宏行, ISHII, Ken 石井 健, ADACHI, Naohiro 足立 直大, IKEGAYA, Ryoji 池谷 亮志, NAKANISHI, Kenichi 中西 健一] 1-7-1 Konan, Minato-ku, Tokyo 〒1080075 東京都港区港南1丁目7番1号 Tokyo1080075 The present invention improves the convenience of an information processing system. In a memory controller of the information processing system, a request generating unit generates a request for requesting writing or reading of any of data, redundancy, and a codeword comprising data and redundancy in or from a non-volatile memory provided with a data area for storing data and a redundancy area for storing redundancy for performing error detection and error correction on data. A control unit issues the generated request to control the writing and reading in and from the non-volatile memory.
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Image transfer system with preliminary-exposure device NCL 12 ECL 1,2 NDR 19 NFG 34 CNT JPX CNT JPX CNT JPX CNT JPX CNT JPX CNT JPX CNT JPX CNT JPX CNT JPX CNT JPX CNT JPX CLAS EDF 5 US07/182190
[Asano Yuki(2-4, Momozono-cho,Mizuho-ku, Nagoya-shi, Aichi-ken), Sago Akira(1-37, Hakuryu-cho,Mizuho-ku, Nagoya-shi, Aichi-ken), Ueda Masashi(85-58, Aza-Ukishima, Atsutahigashi-cho,Mizuho-ku, Nagoya-shi, Aichi-ken), Takagi Osamu(1-37, Hakuryu-cho,Mizuho-ku, Nagoya-shi, Aichi-ken), Matsumoto Yumio(19-18, Shirayama-cho, 6-chome,Kasugai-shi, Aichi-ken), Hayakawa Kiyoharu(269, Aza-Ryuto, Oaza-Sakogishinden, Yatomi-cho,Ama-gun Aichi-ken), Sakaibara Kenji(32, Aza-Yashiki, Oaza-Sachihara,Ichinomoya-shi, Aichi-ken), Katoh Tokunori(1206, Asamiya, Hagiwara-cho,Ichinomiya-shi, Aichi-ken), Hayashi Shigeyuki(3-27, Shimosaka-cho,Mizuho-ku, Nagoya-shi, Aichi-ken), Akao Michitoshi(3-27, Shimosaka-cho,Mizuho-ku, Nagoya-shi, Aichi-ken), Sakai Jun(8-12, Sakurada-cho,Atsuta-ku, Nagoya-shi, Aichi-ken)] A method and an apparatus of exposing a photosensitive medium for forming thereon a latent image which corresponds to an original image to be reproduced and which is developed into a visible image. The photosensitive medium has a basic minimum amount of exposure to a radiation, below which a density of the visible image remains constant and above which the density varies with an amount of exposure to the radiation. An entire recording surface of the photosensitive medium is evenly exposed to a first radiation by a predetermined first exposure amount determined by the basic minimum amount, and each label area of the recording surface is exposed to a second radiation by a second exposure amount which corresponds to a density in a corresponding local area of the original image, so that the first and second exposure amounts cooperate to form the latent image.
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Pyridinecarboxamide derivatives NCL 5 ECL 1 COD 03 CLAS EDF 7 US09/101441
[Oshida Norio(Saitama-ken,JPX), Mimaki Yoji(Saitama-ken,JPX), Satoh Hiroaki(Saitama-ken,JPX), Yokoyama Shinji(Komoro,JPX), Muraki Yukiko(Saitama-ken,JPX), Nishimura Kazumi(Saitama-ken,JPX), Hamada Tamiko(Saitama-ken,JPX), Sakurai Einosuke(Saitama-ken,JPX), Sakai Hiroshi(Saitama-ken,JPX), Sugai Toshiji(Saitama-ken,JPX), Tonoike Tomomi(Saitama-ken,JPX), Itoh Koichi(Saitama-ken,JPX)] N-(12-Nitroxydodecyl)-6-(4-ethyl or isopropyl-1-piperazinyl)pyridine-3-carboxamide or physiologically acceptable salts thereof. The said compounds have excellent inhibiting activity of cerebral edema, especially ischemic cerebral edema, and inhibiting activity of delayed neuronal death (an inhibiting activity of Ca-influx in neuronal cells). Cerebral edema is a pathologic condition accompanying cerebrovascular disorders, especially the acute stage cerebrovascular disorders and then the compounds are useful as an inhibiting agent for cerebral edema or a therapeutic agent for cerebrovascular disorders. Moreover, because the compounds do hardly show a behavior suppressing action, which is considered to be side effect in treating cerebrovascular disorders at the acute stage, they are an excellent therapeutic agent for, in particular, the acute stage cerebrovascular disorders. Moreover, the compounds show a cerebral protective activity (an anti-anoxic activity), an activity of increasing cerebral blood flow, and an activity of inhibiting lipid peroxidation, and these activities may lead to the increased utility as a therapeutic agent for cerebrovascular disorders.
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Driving force transmission system NCL 39 ECL 1 NDR 28 NFG 38 COD 03 COD 03 CLAS EDF 7 US09/014627
[Ikeda Akihiko(Aichi-ken,JPX), Ogawa Shinji(Toyota,JPX), Suzuki Hirokazu(Toyota,JPX), Ohba Mitsuru(Anjo,JPX), Tsuchiya Fumitomo(Toyota,JPX), Ichikawa Akihiko(Toyota,JPX), Kano Tomoyuki(Toyota,JPX), Ashida Satoshi(Toyota,JPX), Sakai Toshifumi(Okazaki,JPX), Takuno Hiroshi(Aichi-ken,JPX), Suzuki Kunihiko(Gamagori,JPX), Kokubo Naoyuki(Aichi-ken,JPX), Shimada Masayuki(Takahama,JPX), Sakai Naoyuki(Anjo,JPX), Hosokawa Takashi(Kariya,JPX), Suzuki Akio(Toyota,JPX), Isomura Moritaka(Kariya,JPX)] A driving force transmission system comprising: a coupling case and a shaft arranged rotatably relative to each other; a pilot clutch and a main clutch for controlling a torque transmission between the coupling case and the shaft; an electromagnet for controlling the actions of the pilot clutch and the main clutch; and oil for retaining the functions of the pilot clutch and the main clutch. This system further comprises a coupling case, a shaft, a rotor, an X-ring and an O-ring for isolating a coupling oil chamber, in which the pilot clutch and the main clutch are arranged, liquid-tight from the surrounding space.
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Driving force transmission system US09/481408
[Ikeda Akihiko(Aichi-ken,JPX), Ogawa Shinji(Toyota,JPX), Suzuki Hirokazu(Toyota,JPX), Ohba Mitsuru(Anjo,JPX), Tsuchiya Fumitomo(Toyota,JPX), Ichikawa Akihiko(Toyota,JPX), Kano Tomoyuki(Toyota,JPX), Ashida Satoshi(Toyota,JPX), Sakai Toshifumi(Okazaki,JPX), Takuno Hiroshi(Aichi-ken,JPX), Suzuki Kunihiko(Gamagori,JPX), Kokubo Naoyuki(Aichi-ken,JPX), Shimada Masayuki(Takahama,JPX), Sakai Naoyuki(Anjo,JPX), Hosokawa Takashi(Kariya,JPX), Suzuki Akio(Toyota,JPX), Isomura Moritaka(Kariya,JPX)] A driving force transmission system comprising: a coupling case and a shaft arranged rotatably relative to each other; a pilot clutch and a main clutch for controlling a torque transmission between the coupling case and the shaft; an electromagnet for controlling the actions of the pilot clutch and the main clutch; and oil for retaining the functions of the pilot clutch and the main clutch. This system further comprises a coupling case, a shaft, a rotor, an X-ring and an O-ring for isolating a coupling oil chamber, in which the pilot clutch and the main clutch are arranged, liquid-tight from the surrounding space.
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Preparation process of polyester NCL 32 ECL 1 CLAS EDF 7 US09/300292
[Terado Yuji(Kanagawa-ken,JPX), Suizu Hiroshi(Kanagawa-ken,JPX), Takagi Masatoshi(Kanagawa-ken,JPX), Ajioka Masanobu(Kanagawa-ken,JPX), Hiraoka Shoji(Yamaguchi-ken,JPX), Sakai Masayuki(Hiroshima-ken,JPX), Suzuki Hiroyuki(Kanagawa-ken,JPX), Shinagawa Ryo(Kanagawa-ken,JPX), Ogawa Shinji(Kanagawa-ken,JPX), Kotaki Yasushi(Tokyo-to,JPX)] The invention provides a process for producing high-molecular aliphatic polyesters capable of being substitutes for general-purpose resins that are required to have high toughness, in a simplified manner and at a high volume efficiency. Specifically, in the process, used as the starting material is an easily-available, low-molecular aliphatic polyester prepolymer to be prepared through polycondensation of inexpensive materials of an aliphatic hydroxycarboxylic acid such as lactic acid, glycolic acid or the like, an aliphatic polyalcohol such as butanediol or the like, and an aliphatic polycarboxylic acid such as succinic acid or the like, and the starting prepolymer is crystallized and thereafter polycondensed in a solid phase in the presence of a catalyst to give the intended, tough and high-molecular aliphatic polyester.
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Aminoketone derivatives and use thereof NCL 6 ECL 1 RLAP COD 74 APN 243235 APD 19940516 PSC 01 PNO 5498619 RLAP COD 84 APN 839434 APD 19920224 PSC 01 PNO 5338857 CLAS EDF 6 US08/423208
[Tanada Hideki(Chiba-ken,JPX), Sakai Kazuya(Chiba-ken,JPX), Kajiya Seitaro(Chiba-ken,JPX), Ohto Norio(Chiba-ken,JPX), Horikomi Kazutoshi(Chiba-ken,JPX), Matsubara Akira(Kanagawa-ken,JPX), Shimizu Hideshi(Kanagawa-ken,JPX), Mizuchi Akira(Chiba-ken,JPX)] Aminoketone derivative compounds containing a heterocyclic ring bonded to an aminoketone moiety and useful as effective ingredients of centrally acting muscle relaxants and pollakiurea curing agents. (+)3-phenyl-5-[2-(1-pyrrolidinylmethyl)butyryl] isoxazole, which has a more remarkable central muscle relaxant action as compared with its racemic modification, can be effectively separated from the racemic modification using optically active 10-camphorsulfonic acid as the agent for the optical resolution.
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Composite molded article and method for making same NCL 10 ECL 1 NDR 7 NFG 14 COD 03 CLAS EDF 6 US08/141602
[Sakai Hideo(Kanagawa-Ken,JPX), Motai Kojiro(Kanagawa-Ken,JPX), Kishi Satoru(Kanagawa-Ken,JPX), Morita Katsuyuki(Kanagawa-Ken,JPX), Hosoyama Nobuyuki(Kanagawa-Ken,JPX), Tanabe Hiroshi(Kanagawa-Ken,JPX), Iida Shuji(Mie-Ken,JPX), Nakai Kiyotaka(Aichi-Ken,JPX)] A composite molded article which is produced by joining multilayer boards composed of fiber-reinforced thermoplastic resin onto the surface of a core material made of a foamed resin, and its production method. The composite molded article is constituted by a core material which is composed of a foamed resin molded into a desired shape, and the multilayer boards which are produced such that a plurality of prepregs containing reinforcement fiber by a volume content of not less than 30% and not more than 85% are laminated with the direction of the reinforcement fiber being different with respect to each other, and are heated to not less than a melting temperature of a thermoplastic resin contained therein so as to mutually glue the prepregs, and to remove air contained inside. When the composite molded article is produced, the multilayer boards having been molded into shapes adapted to a shape of the core material are heated to not less than the melting temperature of the thermoplastic resin and are pressed and glued to the core material to make the composite material article.
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Apparatus and method for applying a coating to a base material NCL 14 ECL 1 NDR 20 NFG 26 COD 03 COD 03 CLAS EDF 6 US08/725313
[Takeno Kazuta(Kanagawa-ken,JPX), Ito Takeo(Kanagawa-ken,JPX), Kasahara Shigeo(Kanagawa-ken,JPX), Takayama Gen(Kanagawa-ken,JPX), Kaneko Hiroshi(Kanagawa-ken,JPX), Sakai Yoshiyuki(Shizuoka-ken,JPX), Kusago Toshihiko(Shizuoka-ken,JPX), Iguchi Katsuhiko(Shizuoka-ken,JPX)] A coating die is disclosed, in which a slit-like spacing 29 is formed between a pair of die elements 25, 27 arranged in opposed relation to each other. A band-shaped electrode sheet 23 is movable along the length of the spacing 29. The sides of the slit-like spacing along the width of the electrode sheet 23 are enclosed. An electrode piling agent is supplied from an external source into the die element pair 25, 27 through supply flow paths 47, 49. Discharge ports 47a, 49a of the supply flow paths 47, 49 are open to the slit-like spacing 29. The portion of the spacing 29 downstream of the discharge ports 47a, 49a in the direction of movement of the electrode sheet 23 has a thickness equivalent to the thickness of the electrode sheet 23 plus the thickness of the electrode piling agent coated on the two sides of the electrode sheet 23. The portion of the spacing 29 upstream of the discharge ports 47a, 49a has a thickness substantially equal to the thickness of the electrode sheet 23. The job of coating the electrode piling agent on the two sides of the electrode sheet can thus be performed with high accuracy.
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Substrate process method and substrate process apparatus US09/362860
[Takamori Hideyuki(Kumamoto-ken,JPX), Tateyama Kiyohisa(Kumamoto-ken,JPX), Mizosaki Kengo(Kumamoto-ken,JPX), Anai Noriyuki(Kumamoto-ken,JPX), Sakai Mitsuhiro(Kumamoto-ken,JPX), Tanaka Shinobu(Kumamoto-ken,JPX), Honda Yoichi(Kumamoto-ken,JPX), Shimomura Yuji(Kumamoto-ken,JPX)] Just after resist solution is coated on a substrate, it is dried substantially in a non-heating state. In reality, inertia gas or the like is blown from a shower head to the substrate. Thus, the resist solution coated on the substrate is dried. Consequently, transfer marks that cause the film thickness of resist film to be unequal and the line width of a circuit pattern to fluctuate can be prevented.
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