Patents by Inventor Toshihiko Iwasaki
Toshihiko Iwasaki has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20210087669Abstract: A film forming apparatus according to an embodiment includes: a process chamber forming a film on a substrate; an abatement device detoxifying a first exhaust gas exhausted from the process chamber; a first supply pipe for supplying a gas containing water to the process chamber; a first vacuum pump provided in a first flow path of the first exhaust gas between the process chamber and the abatement device; a second vacuum pump provided in the first flow path between the first vacuum pump and the abatement device; and a first detector provided in the first flow path between the second vacuum pump and the abatement device and capable of detecting a hydrogenated gas.Type: ApplicationFiled: August 26, 2020Publication date: March 25, 2021Applicant: Kioxia CorporationInventors: Yuta KONNO, Toshihiko Nagase, Atsuko Sakata, Kohei Nagata, Ryohei Kitao, Akifumi Gawase, Takeshi Iwasaki
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Publication number: 20210038621Abstract: An object of the present invention is to provide a novel pharmaceutical agent for improving autism spectrum disorder, a pharmaceutical agent for improving a mental disease, or a supplement exerting an effect of improving social behaviors or developing sociality or an anti-anxiety and anti-stress effect or a functional food exerting such an effect. The present invention also provides a pharmaceutical agent for promoting the secretion of oxytocin and/or vasopressin in the brain. The above objects are achieved by a pharmaceutical agent for improving autism spectrum disorder, a pharmaceutical agent for improving a mental disease, or a supplement exerting an effect of improving social behaviors or developing sociality or an anti-anxiety and anti-stress effect or a functional food exerting such an effect, or a pharmaceutical agent for promoting the secretion of oxytocin and/or vasopressin, which comprises D-allulose as an active ingredient.Type: ApplicationFiled: January 26, 2018Publication date: February 11, 2021Inventors: Toshihiko YADA, Yusaku IWASAKI, Shigetomo SUYAMA
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Publication number: 20200365639Abstract: A deformation of a stacked lens is suppressed. A stacked lens structure has a configuration in which substrates with lenses having a lens disposed on an inner side of a through-hole formed in the substrate are bonded and stacked by direct bonding. The present technique can be applied to a camera module or the like in which a stacked lens structure in which at least three substrates with lenses including first to third substrates with lenses which are substrates with lenses in which a through-hole is formed in the substrate and a lens is formed on an inner side of the through-hole is integrated with a light receiving element, for example.Type: ApplicationFiled: July 31, 2020Publication date: November 19, 2020Applicant: Sony CorporationInventors: Hiroyasu MATSUGAI, Hiroyuki ITOU, Suguru SAITO, Keiji OHSHIMA, Masanori IWASAKI, Toshihiko HAYASHI, Shuzo SATO, Nobutoshi FUJII, Hiroshi TAZAWA, Toshiaki SHIRAIWA, Minoru ISHIDA
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Patent number: 10818717Abstract: A deformation of a stacked lens is suppressed. A stacked lens structure has a configuration in which substrates with lenses having a lens disposed on an inner side of a through-hole formed in the substrate are bonded and stacked by direct bonding. The present technique can be applied to a camera module or the like in which a stacked lens structure in which at least three substrates with lenses including first to third substrates with lenses which are substrates with lenses in which a through-hole is formed in the substrate and a lens is formed on an inner side of the through-hole is integrated with a light receiving element, for example.Type: GrantFiled: September 9, 2019Date of Patent: October 27, 2020Assignee: Sony CorporationInventors: Hiroyasu Matsugai, Hiroyuki Itou, Suguru Saito, Keiji Ohshima, Masanori Iwasaki, Toshihiko Hayashi, Shuzo Sato, Nobutoshi Fujii, Hiroshi Tazawa, Toshiaki Shiraiwa, Minoru Ishida
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Publication number: 20200325570Abstract: A spraying material comprising a rare earth (R), aluminum and oxygen, the spraying material being a powder and comprising a crystalline phase of a rare earth (R) aluminum monoclinic (R4Al2O9) and a crystalline phase of a rare earth oxide (R2O3), with respect to diffraction peaks detected within a diffraction angle 2? range from 10° to 70° by a X-ray diffraction method using the characteristic X-ray of Cu-K?, the spraying material having diffraction peaks attributed to the rare earth oxide (R2O3) and diffraction peaks attributed to the rare earth (R) aluminum monoclinic (R4Al2O9), and an intensity ratio I(R)/I(RAL) of an integral intensity I(R) of the maximum diffraction peak attributed to the rare earth oxide (R2O3) to an integral intensity I(RAL) of the maximum diffraction peak attributed to the rare earth aluminum monoclinic (R4Al2O9) being at least 1.Type: ApplicationFiled: April 8, 2020Publication date: October 15, 2020Applicant: Shin-Etsu Chemical Co., Ltd.Inventors: Ryo Iwasaki, Noriaki Hamaya, Toshihiko Tsukatani, Yugo Taniguchi
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Patent number: 10529954Abstract: An object of the present invention is to provide an organic thin-film laminate capable of suppressing function reduction even when an intermediate layer is formed using a wet method. The organic thin-film laminate has one or more organic functional layers, the organic thin-film laminate being characterized by being provided with: a first light-emitting layer 12 containing a first light-emitting-layer material that is soluble in a polar solvent other than a fluorinated solvent, and is insoluble in a fluorinated solvent; a second light-emitting layer 14 laminated on the first light-emitting layer 12; and one or more intermediate layers comprising a non-curable material, the intermediate layers being provided between the first light-emitting layer 12 and the second light-emitting layer 14, an intermediate layer 13, among the one or more intermediate layers, containing a conductive polymer having no polymerizable group and containing a fluorinated solvent in the range of 1-1000 mass ppm.Type: GrantFiled: March 18, 2016Date of Patent: January 7, 2020Assignees: KONICA MINOLTA, INC., NATIONAL UNIVERSITY CORPORATION YAMAGATA UNIVERSITYInventors: Kazuhiro Oikawa, Toshihiko Iwasaki, Takayuki Chiba, Yong-Jin Pu, Junji Kido
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Publication number: 20200006415Abstract: A deformation of a stacked lens is suppressed. A stacked lens structure has a configuration in which substrates with lenses having a lens disposed on an inner side of a through-hole formed in the substrate are bonded and stacked by direct bonding. The present technique can be applied to a camera module or the like in which a stacked lens structure in which at least three substrates with lenses including first to third substrates with lenses which are substrates with lenses in which a through-hole is formed in the substrate and a lens is formed on an inner side of the through-hole is integrated with a light receiving element, for example.Type: ApplicationFiled: September 9, 2019Publication date: January 2, 2020Applicant: Sony CorporationInventors: Hiroyasu MATSUGAI, Hiroyuki ITOU, Suguru SAITO, Keiji OHSHIMA, Masanori IWASAKI, Toshihiko HAYASHI, Shuzo SATO, Nobutoshi FUJII, Hiroshi TAZAWA, Toshiaki SHIRAIWA, Minoru ISHIDA
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Publication number: 20200002590Abstract: A heat storage particle that includes a ceramic particle containing a vanadium oxide as a main component thereof, and a metal film covering the ceramic particle.Type: ApplicationFiled: August 7, 2019Publication date: January 2, 2020Inventors: Kou Tanaka, Yuji Yokoyama, Mitsugu Takada, Ryo Teraura, Mitsunari Imasaka, Noboru Tanida, Toshihiko Yamada, Yoshihiro Iwasaki
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Patent number: 10513777Abstract: A processing chamber accommodating a mounting table includes a first region and a second region. As the mounting table rotates, a substrate mounting region of the mounting table moves in a circumferential direction around the axis to pass through the first region and the second region. A first gas supply unit supplies a precursor gas to the first region from an injection unit disposed to face the mounting table. An exhaust outlet exhausts an exhaust port formed to extend along a closed path surrounding the exhaust outlet. A second gas supply unit supplies purge gas from an injection port formed to extend along a closed path surrounding the exhaust port. A plasma generation unit generates plasma from a reaction gas in the second region. An angular range of the second region is larger than an angular range of the first region.Type: GrantFiled: February 12, 2013Date of Patent: December 24, 2019Assignee: TOKYO ELECTRON LIMITEDInventors: Masahide Iwasaki, Satoshi Yonekura, Toshihiko Iwao
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Publication number: 20190369355Abstract: There is provided a camera module including a stacked lens structure including a plurality of lens substrates. The plurality of lens substrates includes a first lens substrate including a first lens that is disposed at an inner side of a through-hole formed in the first lens substrate, and a second lens substrate including a second lens that is disposed at an inner side of a through-hole formed in the second lens substrate, wherein the first lens substrate is directly bonded to the second lens substrate. The camera module further includes an electromagnetic drive unit configured to adjust a distance between the stacked lens structure and a light-receiving element.Type: ApplicationFiled: January 16, 2018Publication date: December 5, 2019Applicant: SONY SEMICONDUCTOR SOLUTIONS CORPORATIONInventors: Munekatsu FUKUYAMA, Hiroyasu MATSUGAI, Hiroyuki ITOU, Suguru SAITO, Keiji OHSHIMA, Masanori IWASAKI, Toshihiko HAYASHI, Shuzo SATO, Nobutoshi FUJII, Hiroshi TAZAWA, Toshiaki SHIRAIWA, Yusuke MORIYA, Minoru ISHIDA
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Patent number: 10431618Abstract: A deformation of a stacked lens is suppressed. A stacked lens structure has a configuration in which substrates with lenses having a lens disposed on an inner side of a through-hole formed in the substrate are bonded and stacked by direct bonding. The present technique can be applied to a camera module or the like in which a stacked lens structure in which at least three substrates with lenses including first to third substrates with lenses which are substrates with lenses in which a through-hole is formed in the substrate and a lens is formed on an inner side of the through-hole is integrated with a light receiving element, for example.Type: GrantFiled: July 15, 2016Date of Patent: October 1, 2019Assignee: Sony CorporationInventors: Hiroyasu Matsugai, Hiroyuki Itou, Suguru Saito, Keiji Ohshima, Masanori Iwasaki, Toshihiko Hayashi, Shuzo Sato, Nobutoshi Fujii, Hiroshi Tazawa, Toshiaki Shiraiwa, Minoru Ishida
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Patent number: 10365918Abstract: A controller includes a communication controller having a communication area and a normal control controller having a normal control area, and is provided in a vehicle. The controller stores an update program, which is transferred via an external communication mechanism from an external server to a vehicle, in the communication controller. If it is determined, based on manipulation of a key switch to a stop position, that updating can be performed, the controller transfers the update program stored in the communication controller to the normal control controller and performs rewriting. A program is thereby reliably rewritten within a short period of time to improve work efficiency.Type: GrantFiled: November 10, 2015Date of Patent: July 30, 2019Assignees: KOBELCO CONSTRUCTION MACHINERY CO., LTD., Kobe Steel, Ltd.Inventors: Kazuhiro Iwasaki, Toshihiko Nishimura
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Publication number: 20180183011Abstract: An object of the present invention is to provide an organic thin-film laminate capable of suppressing function reduction even when an intermediate layer is formed using a wet method. The organic thin-film laminate has one or more organic functional layers, the organic thin-film laminate being characterized by being provided with: a first light-emitting layer 12 containing a first light-emitting-layer material that is soluble in a polar solvent other than a fluorinated solvent, and is insoluble in a fluorinated solvent; a second light-emitting layer 14 laminated on the first light-emitting layer 12; and one or more intermediate layers comprising a non-curable material, the intermediate layers being provided between the first light-emitting layer 12 and the second light-emitting layer 14, an intermediate layer 13, among the one or more intermediate layers, containing a conductive polymer having no polymerizable group and containing a fluorinated solvent in the range of 1-1000 mass ppm.Type: ApplicationFiled: March 18, 2016Publication date: June 28, 2018Inventors: Kazuhiro OIKAWA, Toshihiko IWASAKI, Takayuki CHIBA, Yong-Jin PU, Junji KIDO
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Patent number: 9843008Abstract: There is constituted an organic electroluminescent element, including: an anode; a cathode; and a light-emitting layer sandwiched between the anode and the cathode, wherein at least two kinds or more of light-emitting dopants each of which exhibits an emission spectrum having a peak in a region of a wavelength of 580 nm or more are contained in the light-emitting layer.Type: GrantFiled: February 27, 2015Date of Patent: December 12, 2017Assignee: KONICA MINOLTA, INC.Inventors: Kazuki Kato, Toshihiko Iwasaki
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Publication number: 20170069863Abstract: There is constituted an organic electroluminescent element, including: an anode; a cathode; and a light-emitting layer sandwiched between the anode and the cathode, wherein at least two kinds or more of light-emitting dopants each of which exhibits an emission spectrum having a peak in a region of a wavelength of 580 nm or more are contained in the light-emitting layer.Type: ApplicationFiled: February 27, 2015Publication date: March 9, 2017Inventors: Kazuki KATO, Toshihiko IWASAKI
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Patent number: 8980443Abstract: Disclosed is an organic electroluminescent element which can be produced by a wet process, has improved laminated structure, and also has improved external quantum efficiency and an improved service life. The organic electroluminescent element comprises at least an anode; a cathode and a laminated structure intercalated between the anode and the cathode, all of which are arranged on a substrate, wherein the laminated structure has at least four layers formed by a wet process, and wherein the layers produced by the wet process include at least a hole injection layer, a hole transport layer and a light-emitting layer. The organic electroluminescent element is characterized in that the hole injection layer comprises an electrically conductive polymer, the hole transport layer comprises a polymeric compound having a repeating unit represented by general formula (1), and the polymeric compound has a weight average molecular weight of 50,000 to 200,000 in terms of polystyrene content.Type: GrantFiled: April 14, 2010Date of Patent: March 17, 2015Assignee: Konica Minolta Holdings, Inc.Inventors: Kazutoshi Murota, Toshihiko Iwasaki
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Patent number: 8860014Abstract: An organic electroluminescent member comprising: a positive electrode and a negative electrode on a substrate: multiple organic layers which include at least a positive hole transport layer, a light-emitting layer and an electron transport layer, and which are arranged between the positive electrode and the negative electrode; and an electron injection layer arranged between the electron transport layer and the negative electrode. The electron injection layer is formed from at least one selected from the group consisting of alkali metals and compounds containing alkali metals having a melting point of less than 90° C., and at least one selected from the group consisting of alkali metals, alkaline earth metals, compounds containing alkali metals, and compounds containing.Type: GrantFiled: January 31, 2011Date of Patent: October 14, 2014Assignee: Konica Minolta Holdings, Inc.Inventors: Kenji Arai, Toshihiko Iwasaki
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Publication number: 20120319139Abstract: Provided is an organic electroluminescent member comprising: a positive electrode and a negative electrode on a substrate; multiple organic layers which include at least a positive hole transport layer, a light-emitting layer and an electron transport layer, and which are arranged between the positive electrode and the negative electrode; and an electron injection layer arranged between the electron transport layer and the negative electrode. The electron injection layer is formed from at least one selected from the group consisting of alkali metals and compounds containing alkali metals having melting point of less than 90° C.Type: ApplicationFiled: January 31, 2011Publication date: December 20, 2012Applicant: KONICA MINOLTA HOLDINGS, INC.Inventors: Kenji Arai, Toshihiko Iwasaki
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Publication number: 20120007072Abstract: Disclosed is an organic electroluminescent element which can be produced by a wet process, has improved laminated structure, and also has improved external quantum efficiency and an improved service life. The organic electroluminescent element comprises at least an anode; a cathode and a laminated structure intercalated between the anode and the cathode, all of which are arranged on a substrate, wherein the laminated structure has at least four layers formed by a wet process, and wherein the layers produced by the wet process include at least a hole injection layer, a hole transport layer and a light-emitting layer. The organic electroluminescent element is characterized in that the hole injection layer comprises an electrically conductive polymer, the hole transport layer comprises a polymeric compound having a repeating unit represented by general formula (1), and the polymeric compound has a weight average molecular weight of 50,000 to 200,000 in terms of polystyrene content.Type: ApplicationFiled: April 14, 2010Publication date: January 12, 2012Inventors: Kazutoshi Murota, Toshihiko Iwasaki
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Publication number: 20110084601Abstract: Disclosed is a coating type organic EL element having excellent chromaticity stability to driving current, excellent chromaticity stability during continuous driving and excellent color rendering property.Type: ApplicationFiled: June 26, 2009Publication date: April 14, 2011Applicant: KONICA MINOLTA HOLDINGS, INC.Inventors: Yoriko Nakayama, Toshihiko Iwasaki, Kunimasa Hiyama