Patents by Inventor Toshiyuki Komatsu
Toshiyuki Komatsu 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: 20240091126Abstract: Base coat as an example of a resin composition for a cosmetic is a resin composition for a cosmetic used in a cosmetic to be adhered to nail as a part of living body. The resin composition for a cosmetic includes a stimulus-responsive material that undergoes a volume change by external stimuli, the external stimuli excluding both an external stimulus due to contact with a solvent and an external stimulus due to contact with a solution, and a solidified matter of the resin composition for a cosmetic has a surface with a water contact angle between 30° and 110° (inclusive). The solidified matter of the resin composition for a cosmetic undergoes the volume change by application of the external stimuli to reduce strength of adhesion to the part of living body.Type: ApplicationFiled: January 31, 2022Publication date: March 21, 2024Inventors: Tomoko KAWASHIMA, Taiki UMEMOTO, Keitaro AMARI, Yuko TANIIKE, Haruka KUSUKAME, Shinsuke KAWAGUCHI, Toshiyuki KOMATSU
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Patent number: 9867968Abstract: In a balloon tube (10) which is processed after it is mounted on a mold, a bag part (14) has a plurality of parts having a different drawability in a radial direction centered around an axial direction X, disposed along the axial direction X. The highest drawability part (11), which has the highest drawability, is disposed to separate from both ends of the bag part (14) in the axial direction X thereof. The balloon tube (10) is preferable to stably fabricate a balloon having a uniform film thickness.Type: GrantFiled: February 7, 2013Date of Patent: January 16, 2018Assignee: KANEKA CORPORATIONInventors: Toshiyuki Komatsu, Takuro Koda
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Publication number: 20150018866Abstract: In a balloon tube (10) which is processed after it is mounted on a mold, a bag part (14) has a plurality of parts having a different drawability in a radial direction centered around an axial direction X, disposed along the axial direction X. The highest drawability part (11), which has the highest drawability, is disposed to separate from both ends of the bag part (14) in the axial direction X thereof. The balloon tube (10) is preferable to stably fabricate a balloon having a uniform film thickness.Type: ApplicationFiled: February 7, 2013Publication date: January 15, 2015Inventors: Toshiyuki Komatsu, Takuro Koda
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Patent number: 7439454Abstract: A transport apparatus that enables a trough to be easily removed in one step, and a combination weighing apparatus provided with the same are provided. The transport apparatus includes a trough and a reciprocating movement mechanism, and is configured to convey an article placed in the trough in a predetermined direction. The reciprocating movement mechanism includes a motor box, and a support member. The trough has one of a protruding part and a depressed part, while the support member had the other of the protruding part and the depressed part. The motor is configured to move the trough via the support member along the conveyance direction such that the trough moves faster in a direction opposite the conveyance direction than in the conveyance direction. The protruding part is removably connected to the depressed part.Type: GrantFiled: March 11, 2005Date of Patent: October 21, 2008Assignee: Ishida Co., Ltd.Inventors: Toshiyuki Komatsu, Yukio Wakasa
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Publication number: 20080138637Abstract: An object of the present invention is to provide a polyimide multilayer adhesive film in which the thicknesses of the respective layers can be precisely measured by an infrared absorption method and a method for producing the same. In an adhesive film including a highly heat-resistant polyimide layer and an adhesive layer that contains a thermoplastic polyimide and that is disposed on at least one surface of the highly heat-resistant polyimide layer, the adhesive film is produced by a coextrusion-flow casting method and either of the highly heat-resistant polyimide layer or the adhesive layer contains, as a principal component, a polyimide resin having a functional group showing a characteristic infrared absorption wavelength.Type: ApplicationFiled: December 7, 2005Publication date: June 12, 2008Inventors: Masami Yanagida, Kenji Ueshima, Toshiyuki Komatsu
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Patent number: 7217114Abstract: A resin roller (10) is produced by disposing a core body (21) in a forming metal mold (1) having a cylindrical metal mold (13) and core supporting members (14) furnished at both edge parts of the cylindrical metal mold (13) as well as causing the core supporting members (14) to hold said both edge parts, and pouring a forming resin into the metal mold and solidifying it. The resin roller (10) has the core body (21) of the same outer diameter over a full length and a cylindrical resin-formed body (12), sealing members (24, 26) are furnished around the core body (21) in the vicinity of both edge parts of the resin-formed body (12), and the core body (21) is disposed such that the sealing members (24, 26) contact edge faces (14a) at sides of a roller forming space of the core supporting members (14).Type: GrantFiled: April 5, 2005Date of Patent: May 15, 2007Assignee: Kaneka CorporationInventors: Hiroshi Ohgoshi, Toshiyuki Komatsu, Koji Sezaki, Hidenari Tsunemi, Kenji Kobayashi
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Publication number: 20070095579Abstract: In order to provide a transport apparatus that enables a trough to be easily removed in one step, and a combination weighing apparatus provided with the same, a transport apparatus (10) is a transport apparatus including a trough (11) and a reciprocating movement mechanism (20), and is configured to convey an article placed in the trough (11) in a predetermined direction. The reciprocating movement mechanism (20) includes a motor box (12), a parallel link (13), and a linking member (16). The parallel link (13) that also functions as a support member includes a first link (13a) and a second link (13b) which respectively have a first depressed part (15a) and a second depressed part (15b) formed on one end part thereof. The first depressed part (15a) and the second depressed part (15b) support protruding parts (11a, 11b) protruding from the trough (11).Type: ApplicationFiled: March 11, 2005Publication date: May 3, 2007Applicant: ISHIDA CO., LTD.Inventors: Toshiyuki Komatsu, Yukio Wakasa
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Publication number: 20060088623Abstract: A resin roller (10) is produced by disposing a core body (21) in a forming metal mold (1) having a cylindrical metal mold (13) and core supporting members (14) furnished at both edge parts of the cylindrical metal mold (13) as well as causing the core supporting members (14) to hold said both edge parts, and pouring a farming resin into the metal mold and solidifying it. The resin roller (10) has the core body (21) of the same outer diameter over a full length and a cylindrical resin-formed body (12), sealing members (24, 26) are furnished around the core body (21) in the vicinity of both edge parts of the resin-formed body (12), and the core body (21) is disposed such that the sealing members (24, 26) contact edge faces (14a) at sides of a roller forming space of the core supporting members (14).Type: ApplicationFiled: December 9, 2005Publication date: April 27, 2006Applicant: KANEKA CORPORATIONInventors: Hiroshi Ohgoshi, Toshiyuki Komatsu, Koji Sezaki, Hidenari Tsunemi, Kenji Kobayashi
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Publication number: 20050238756Abstract: A resin roller (10) is produced by disposing a core body (21) in a forming metal mold (1) having a cylindrical metal mold (13) and core supporting members (14) furnished at both edge parts of the cylindrical metal mold (13) as well as causing the core supporting members (14) to hold said both edge parts, and pouring a forming resin into the metal mold and solidifying it. The resin roller (10) has the core body (21) of the same outer diameter over a full length and a cylindrical resin-formed body (12), sealing members (24, 26) are furnished around the core body (21) in the vicinity of both edge parts of the resin-formed body (12), and the core body (21) is disposed such that the sealing members (24, 26) contact edge faces (14a) at sides of a roller forming space of the core supporting members (14).Type: ApplicationFiled: April 5, 2005Publication date: October 27, 2005Inventors: Hiroshi Ohgoshi, Toshiyuki Komatsu, Koji Sezaki, Hidenari Tsunemi, Kenji Kobayashi
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Patent number: 6915570Abstract: A resin roller (10) is produced by disposing a core body (21) in a forming metal mold (1) having a cylindrical metal mold (13) and core supporting members (14) furnished at both edge parts of the cylindrical metal mold (13) as well as causing the core supporting members (14) to hold the both edge parts, and pouring a forming resin into the metal mold and solidifying it. The resin roller (10) has the core body (21) of the same outer diameter over a full length and a cylindrical resin-formed body (12), sealing members (24, 26) are furnished around the core body (21) in the vicinity of both edge parts of the resin-formed body (12), and the core body is disposed such that the sealing members (24, 26) contact edge faces (14a) at sides of a roller forming space of the core supporting members (14).Type: GrantFiled: May 17, 2000Date of Patent: July 12, 2005Assignee: Kaneka CorporationInventors: Hiroshi Ohgoshi, Toshiyuki Komatsu, Koji Sezaki, Hidenari Tsunemi, Kenji Kobayashi
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Patent number: 6756546Abstract: A dispensing table assembly is divided along a line of division into two dispensing tables 6 and 6. Each of the dispensing tables 6 and 6 so divided has a partition wall 33 secured to a cut edge 6a, which is left along the line of division, so as to extend upright. Each of the dispensing tables 6 and 6 has a distributing point T defined at a location distant from the partition wall 33 for distributing articles to be weighed, which have been supplied from above, uniformly onto the dispensing table. Each of the dispensing tables 6 and 6 also has inclined surface areas P1 and P6 inclined downwardly from the distributing point T towards the partition wall 33.Type: GrantFiled: October 29, 2002Date of Patent: June 29, 2004Assignee: Ishida Co., Ltd.Inventor: Toshiyuki Komatsu
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Publication number: 20030089529Abstract: A dispensing table assembly is divided along a line of division into two dispensing tables 6 and 6. Each of the dispensing tables 6 and 6 so divided has a partition wall 33 secured to a cut edge 6a, which is left along the line of division, so as to extend upright. Each of the dispensing tables 6 and 6 has a distributing point T defined at a location distant from the partition wall 33 for distributing articles to be weighed, which have been supplied from above, uniformly onto the dispensing table. Each of the dispensing tables 6 and 6 also has inclined surface areas P1 and P6 inclined downwardly from the distributing point T towards the partition wall 33.Type: ApplicationFiled: October 29, 2002Publication date: May 15, 2003Applicant: ISHIDA CO., LTD.Inventor: Toshiyuki Komatsu
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Patent number: 6168010Abstract: A method and apparatus of controlling a vibrating feeder applies a drive signal to a vibrating mechanism connected to the vibrating feeder at a first predetermined power level, and subsequently applies the drive signal to the vibrating mechanism at a second predetermined power level which is greater than zero and lower than the first predetermined power level whereby an amplitude of vibration of the vibrating feeder converges towards a target amplitude. Another method and apparatus of controlling a vibrating feeder applies a drive signal having a phase to a vibrating mechanism connected to the vibrating feeder at a first phase and subsequently applies the drive signal to the vibrating mechanism at a second phase which is different from the first phase, whereby an amplitude of vibration of the vibrating feeder converges towards a target amplitude.Type: GrantFiled: December 24, 1996Date of Patent: January 2, 2001Assignee: Ishida Co., Ltd.Inventor: Toshiyuki Komatsu
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Patent number: 6025115Abstract: A processing method for etching a substrate is described. This method includes subjecting a surface of a substrate to be processed to selective irradiation with a light in a gas atmosphere to form a surface-modified layer. The substrate surface with the surface-modified layer is then annealed to stabilize and make the surface-modified layer more etch resistant. Both the stabilized surface-modified layer and a non-modified portion of the substrate are then subjected to dry etching, thereby utilizing the higher resistance to dry etching of the stabilized surface-modified layer compared to the non-modified portion to selectively etch the non-modified portion to a desired depth.Type: GrantFiled: April 25, 1995Date of Patent: February 15, 2000Assignee: Canon Kabushiki KaishaInventors: Toshiyuki Komatsu, Yasue Sato, Shin-Ichi Kawate
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Patent number: 5993658Abstract: There are here provided a method for biodegrading trichloroethylene which comprises the step of bringing an aqueous medium containing trichloroethylene into contact with microorganisms having a trichloroethylene degrading ability derived from intestines of termites to degrade trichloroethylene; a method for obtaining the microorganisms; a method for remediating a soil by the use of the microorganisms; and a method for biodegrading an chlorinated organic compound with the microorganisms.Type: GrantFiled: September 24, 1996Date of Patent: November 30, 1999Assignee: Canon Kabushiki KaishaInventors: Kinya Kato, Shinya Kozaki, Takeshi Imamura, Toshiyuki Komatsu
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Patent number: 5981001Abstract: A processing method comprises:a first step of depositing on a substrate which is a specimen a film of any one of a semiconductor, a metal and an insulator;a second step of subjecting the surface of the film deposited in the first step, to irradiation with a beam having a given energy to produce a physical damage on the surface;a third step of subjecting the film surface on which the physical damage is produced in the second step, to selective irradiation with light to partially cause a photochemical reaction so that a mask pattern depending on the desired device structure is formed on the film surface; anda fourth step of carrying out photoetching using as a shielding member the mask pattern formed in the third step.Type: GrantFiled: April 25, 1995Date of Patent: November 9, 1999Assignee: Canon Kabushiki KaishaInventors: Toshiyuki Komatsu, Yasue Sato, Shin-Ichi Kawate
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Patent number: 5962194Abstract: A processing method comprises:a first step of depositing on a substrate which is a specimen a film of any one of a semiconductor, a metal and an insulator;a second step of subjecting the surface of the film deposited in the first step, to irradiation with a beam having a given energy to produce a physical damage on the surface;a third step of subjecting the film surface on which the physical damage is produced in the second step, to selective irradiation with light to partially cause a photochemical reaction so that a mask pattern depending on the desired device structure is formed on the film surface; anda fourth step of carrying out photoetching using as a shielding member the mask pattern formed in the third step.Type: GrantFiled: May 31, 1994Date of Patent: October 5, 1999Assignee: Canon Kabushiki KaishaInventors: Toshiyuki Komatsu, Yasue Sato, Shin-Ichi Kawate
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Patent number: 5866003Abstract: An apparatus for degrading a pollutant to purify a medium containing a pollutant using a microorganism, which comprises a container in which a region containing a microorganism capable of degrading the pollutant is provided, wherein the container has the first opening for introducing the medium into the container and the second opening for draining the medium passed through the region containing the microorganism from the container, and in the container a region containing a functional material which releases a material required for degrading the pollutant by the microorganism is provided between the first opening and the region containing microorganism.Type: GrantFiled: April 10, 1997Date of Patent: February 2, 1999Assignee: Canon Kabushiki KaishaInventors: Yukitoshi Okubo, Toshiyuki Komatsu, Kazumi Tanaka, Masanori Sakuranaga, Yuji Kawabata
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Patent number: 5863706Abstract: A processing method is described which has a first step of depositing on a substrate a specimen film which may be any one of a semiconductor, a metal and a insulator.In a second step, the surface of the specimen film deposited in the first step, is irradiated with an ion beam to produce a physical damage on the surface, next, in a third step, the damaged specimen film surface is selectively irradiated with the light to partially cause a photochemical reaction so that a mask pattern, which depends on the desired device structure, is formed on the film surface. Finally, in a fourth step, photoetching is performed using the mask pattern formed in the third step as a shielding member.Type: GrantFiled: April 25, 1995Date of Patent: January 26, 1999Assignee: Canon Kabushiki KaishaInventors: Toshiyuki Komatsu, Yasue Sato, Shin-Ichi Kawate
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Patent number: 5863789Abstract: A carrier for holding a microorganism in soil releases, from a constituting material thereof, an inducer for production of an enzyme of the microorganism for soil remediation. The carrier for holding a microorganism may comprise a combination of a microorganism holding carrier composed of a hydrophilic polymer for holding the microorganism with an inducer-holder composed of another polymer for holding inducer manifesting a biological action to the microorganism adjacent to each other. A method for remediation of soil comprises application of the microorganism-holding carrier into the soil. A soil-remedying agent comprises the microorganism-holding carrier and a microorganism held thereon which exhibits enzyme activity for decomposition of a polluting substance in the soil under action an inducer released by the carrier.Type: GrantFiled: July 24, 1997Date of Patent: January 26, 1999Assignee: Canon Kabushiki KaishaInventors: Toshiyuki Komatsu, Masanori Sakuranaga, Tsuyoshi Nomoto, Shinya Kozaki, Takeshi Imamura