Patents by Inventor Tetsuo Sato

Tetsuo Sato 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).

  • Publication number: 20170264121
    Abstract: A battery management method and apparatus. In one embodiment of the method, a source current is divided into Ic and Icr. Ic is transmitted to and charges a battery. A first voltage is generated that is related to Icr. The first voltage is converted into a first digital signal. A processing unit receives and processes the first digital signal in accordance with instructions stored in a memory. The transmission of Ic to the battery is interrupted in response to the processing unit processing the first digital signal. Current provided by the battery is divided into Idc and Idcr. Idc is transmitted to a device. A second voltage is generated that is related to Idcr. The second voltage is converted into a second digital signal. The processing unit receives and processes the second digital signal in accordance with instructions stored in the memory. The transmission of Idc to the battery is interrupted in response to the processing unit processing the second digital signal.
    Type: Application
    Filed: May 26, 2017
    Publication date: September 14, 2017
    Inventors: Tetsuo Sato, Tsutomu Kawano, Koji Kashimoto, Takao Hidaka, Tsuyoshi Ota, Ryoji Kato
  • Publication number: 20170253762
    Abstract: The invention provides a resin-thin-film-forming composition employed in hydrofluoric acid etching, which composition contains a hydrogenated polybutadiene compound having a (meth)acrylic group and a radical polymerization initiator.
    Type: Application
    Filed: July 30, 2015
    Publication date: September 7, 2017
    Applicant: NISSAN CHEMICAL INDUSTRIES, LTD.
    Inventor: Tetsuo SATO
  • Patent number: 9752938
    Abstract: An apparatus, in one embodiment, can include a configuration including a plurality of heat generation devices. The apparatus also includes a plurality of thermal sensors respectively, operably connected to each of the plurality of heat generation devices, wherein each thermal sensor of the plurality of thermal sensors includes a respective output terminal configured to provide a voltage representative of the temperature of the respective heat generation device. The apparatus further includes an output circuit configured to output the highest temperature information among the heat generation devices. The output terminals of the plurality of thermal sensors are tied together. A corresponding method is also discussed.
    Type: Grant
    Filed: May 5, 2014
    Date of Patent: September 5, 2017
    Assignee: Renesas Electronics America Inc.
    Inventors: Tetsuo Sato, Ryotaro Kudo
  • Publication number: 20170207642
    Abstract: An apparatus and method for use in devices such as rechargeable battery packs. The apparatus, in one embodiment, includes an integrated circuit comprising a first circuit, a second circuit, and a thin film transistor (TFT). The first circuit is configured to generate a square wave signal. The second circuit is configured to convert the square wave signal to a direct current (DC) signal. The TFT is configured to activate and conduct current in response to the DC control signal.
    Type: Application
    Filed: January 13, 2017
    Publication date: July 20, 2017
    Inventors: Tetsuo Sato, Shigeru Maeta, Toshio Kimura, Kenji Yoshida
  • Patent number: 9711984
    Abstract: A method and apparatus for generating a high voltage at a battery system. The apparatus in one embodiment includes a supply node configured for direct or indirect coupling to a supply voltage. A converter is coupled between an input node and an output node, wherein the converter is configured to operate in a forward mode or a reverse mode. The converter generates a voltage at the converter output node for charging a battery when operating in the forward mode, wherein a magnitude of the voltage generated at the converter output node is less than a magnitude of the supply voltage. The converter generates a voltage at the converter input node when operating in the reverse mode, wherein a magnitude of the voltage generated at the converter input node is different than a magnitude of a voltage provided by the battery. A control circuit is coupled to and configured to control operation of the converter in the forward mode or the reverse mode.
    Type: Grant
    Filed: October 28, 2014
    Date of Patent: July 18, 2017
    Assignee: Renesas Electronics America Inc.
    Inventors: Kenji Yoshida, Tetsuo Sato, Shigeru Maeta, Chikara Kobayashi
  • Patent number: 9667083
    Abstract: A battery management method and apparatus. In one embodiment of the method, a source current is divided into Ic and Icr. Ic is transmitted to and charges a battery. A first voltage is generated that is related to Icr. The first voltage is converted into a first digital signal. A processing unit receives and processes the first digital signal in accordance with instructions stored in a memory. The transmission of Ic to the battery is interrupted in response to the processing unit processing the first digital signal. Current provided by the battery is divided into Idc and Idcr. Idc is transmitted to a device. A second voltage is generated that is related to Idcr. The second voltage is converted into a second digital signal. The processing unit receives and processes the second digital signal in accordance with instructions stored in the memory. The transmission of Idc to the battery is interrupted in response to the processing unit processing the second digital signal.
    Type: Grant
    Filed: November 25, 2014
    Date of Patent: May 30, 2017
    Assignee: Renesas Electronics America Inc.
    Inventors: Tetsuo Sato, Tsutomu Kawano, Koji Kashimoto, Takao Hidaka, Tsuyoshi Ota, Ryoji Kato
  • Publication number: 20170117815
    Abstract: A method and apparatus for isolating voltages while transmitting data signals. In one embodiment of the method, a modulation circuit modulates a carrier signal using an input data signal. A demodulation circuit receives the modulated carrier signal via a first capacitor coupled in series between the modulation circuit and the demodulation circuit. The demodulation circuit also receives the carrier signal via a second capacitor coupled in series between the demodulation circuit and the circuit that generates the carrier signal. The demodulation circuit demodulates the modulated carrier signal using the carrier signal.
    Type: Application
    Filed: October 26, 2015
    Publication date: April 27, 2017
    Inventor: Tetsuo Sato
  • Publication number: 20170077729
    Abstract: A transformer less battery charger system. In one embodiment, the battery charger system includes input terminals for receiving an AC voltage, output terminals for receiving terminals of a rechargeable battery pack, and a non-isolated DC-DC converter coupled between the input terminals and the output terminals. A device is also coupled somewhere between the input terminals and the output terminals. The device is configured to selectively and indirectly couple the input terminals to the output terminals. More particularly, the device indirectly couples the input terminals to the output terminals when the rechargeable battery pack terminals are received by the output terminals, and the device indirectly decouples the input terminals from the output terminals when the rechargeable battery pack terminals are separated from the output terminals.
    Type: Application
    Filed: September 11, 2015
    Publication date: March 16, 2017
    Inventors: Tetsuo Sato, Shigeru Maeta, Toshio Kimura, Atsushi Mitamura, Akira Negishi, Gary S. Jacobson
  • Patent number: 9570985
    Abstract: According to an embodiment of the invention, an apparatus includes a microprocessor-based pulse-width modulation controller configured to generate a pulse-width modulation signal, and a synchronous converter including a first transistor, a second transistor, a first driver, and a second driver. The apparatus further includes a drive voltage generator configured to generate a drive voltage for the synchronous converter. The drive voltage generator is further configured to generate the drive voltage based on a measured output current and a measured input voltage.
    Type: Grant
    Filed: July 2, 2010
    Date of Patent: February 14, 2017
    Assignee: Renesas Electronics America Inc.
    Inventors: Tetsuo Sato, Jim Comstock, Ryotaro Kudo, Masashi Koyano
  • Publication number: 20160369062
    Abstract: [Problem] To provide a polymerizable composition having an excellent transparency in near-infrared wavelength and excellent heat resistance, and a method for producing the same.
    Type: Application
    Filed: August 30, 2016
    Publication date: December 22, 2016
    Inventors: Michael Popall, Ruth Houbertz-Krauss, Sebastien Cochet, Herbert Wolter, Kentaro Ohmori, Tetsuo Sato
  • Publication number: 20160322901
    Abstract: A trench MOSFET is disclosed that includes a semiconductor substrate having a vertically oriented trench containing a gate. The trench MOSFET further includes a source, a drain, and a conductive element. The conductive element, like the gate is contained in the trench, and extends between the gate and a bottom of the trench. The conductive element is electrically isolated from the source, the gate, and the drain. When employed in a device such as a DC-DC converter, the trench MOSFET may reduce power losses and electrical and electromagnetic noise.
    Type: Application
    Filed: July 11, 2016
    Publication date: November 3, 2016
    Inventors: Tetsuo Sato, Tomoaki Uno, Hirokazu Kato, Nobuyoshi Matsuura
  • Patent number: 9434818
    Abstract: [Problem] To provide a polymerizable composition having an excellent transparency in near-infrared wavelength and excellent heat resistance, and a method for producing the same.
    Type: Grant
    Filed: January 21, 2011
    Date of Patent: September 6, 2016
    Assignees: Fraundhofer-Gesellschaft zur Foerderung der angewandter Forschung e.V., Nissan Chemical Industries, Ltd.
    Inventors: Michael Popall, Ruth Houbertz-Krauss, Sebastien Cochet, Herbert Wolter, Kentaro Ohmori, Tetsuo Sato
  • Publication number: 20160254808
    Abstract: An apparatus that includes a first device connected to an inductor. The first device includes a first silicon carbide (SiC) junction gate field-effect transistor (JFET), a first SiC schottky barrier diode (SBD) connected to a gate and a drain of the first SiC JFET, and a first silicon (Si) transistor connected to transmit current to a source of the first SiC JFET. An inductor input terminal is connected to the drain of the first SiC JFET.
    Type: Application
    Filed: February 27, 2015
    Publication date: September 1, 2016
    Inventors: Tetsuo Sato, Koichi Yamazaki
  • Publication number: 20160216607
    Abstract: The invention provides a resist pattern formation method, employing a resist pattern forming composition which includes at least a polymerizable monomer that is liquid at room temperature, an organic gelling agent, and a photopolymerization initiator. The method includes a step of preparing the resist pattern forming composition; a step of applying, onto a substrate, the prepared resist pattern forming composition, to thereby form a coating film; a step of forming a gel with the organic gelling agent present in the coating film; and a step of patterning the coating film which has been gelled by the organic gelling agent.
    Type: Application
    Filed: August 29, 2014
    Publication date: July 28, 2016
    Applicant: NISSAN CHEMICAL INDUSTRIES, LTD.
    Inventor: Tetsuo SATO
  • Patent number: 9401644
    Abstract: A trench MOSFET is disclosed that includes a semiconductor substrate having a vertically oriented trench containing a gate. The trench MOSFET further includes a source, a drain, and a conductive element. The conductive element, like the gate is contained in the trench, and extends between the gate and a bottom of the trench. The conductive element is electrically isolated from the source, the gate, and the drain. When employed in a device such as a DC-DC converter, the trench MOSFET may reduce power losses and electrical and electromagnetic noise.
    Type: Grant
    Filed: March 24, 2015
    Date of Patent: July 26, 2016
    Assignee: Renesas Electronics America Inc.
    Inventors: Tetsuo Sato, Tomoaki Uno, Hirokazu Kato, Nobuyoshi Matsuura
  • Publication number: 20160118825
    Abstract: A method and apparatus for generating a high voltage at a battery system. The apparatus in one embodiment includes a supply node configured for direct or indirect coupling to a supply voltage. A converter is coupled between an input node and an output node, wherein the converter is configured to operate in a forward mode or a reverse mode. The converter generates a voltage at the converter output node for charging a battery when operating in the forward mode, wherein a magnitude of the voltage generated at the converter output node is less than a magnitude of the supply voltage. The converter generates a voltage at the converter input node when operating in the reverse mode, wherein a magnitude of the voltage generated at the converter input node is different than a magnitude of a voltage provided by the battery. A control circuit is coupled to and configured to control operation of the converter in the forward mode or the reverse mode.
    Type: Application
    Filed: October 28, 2014
    Publication date: April 28, 2016
    Inventors: Kenji Yoshida, Tetsuo Sato, Shigeru Maeta, Chikara Kobayashi
  • Publication number: 20150361257
    Abstract: The method of the invention for producing a substrate having a pattern includes a step of forming a resist film by applying, onto a substrate, a composition containing a resin as component (A), the resin being formed through reaction between a polyol (a1) and a cross-linking agent (a2), the polyol (a1) being selected from among a polybutadiene polyol, a hydrogenated polybutadiene polyol, a polyisoprene polyol, and a hydrogenated polyisoprene polyol, and a step of patterning, through etching, the substrate on which the resist film has been formed.
    Type: Application
    Filed: January 28, 2014
    Publication date: December 17, 2015
    Applicant: NISSAN CHEMICAL INDUSTRIES, LTD.
    Inventor: Tetsuo SATO
  • Publication number: 20150194894
    Abstract: A trench MOSFET is disclosed that includes a semiconductor substrate having a vertically oriented trench containing a gate. The trench MOSFET further includes a source, a drain, and a conductive element. The conductive element, like the gate is contained in the trench, and extends between the gate and a bottom of the trench. The conductive element is electrically isolated from the source, the gate, and the drain. When employed in a device such as a DC-DC converter, the trench MOSFET may reduce power losses and electrical and electromagnetic noise.
    Type: Application
    Filed: March 24, 2015
    Publication date: July 9, 2015
    Inventors: Tetsuo Sato, Tomoaki Uno, Hirokazu Kato, Nobuyoshi Matsuura
  • Patent number: 9000497
    Abstract: A trench MOSFET is disclosed that includes a semiconductor substrate having a vertically oriented trench containing a gate. The trench MOSFET further includes a source, a drain, and a conductive element. The conductive element, like the gate is contained in the trench, and extends between the gate and a bottom of the trench. The conductive element is electrically isolated from the source, the gate, and the drain. When employed in a device such as a DC-DC converter, the trench MOSFET may reduce power losses and electrical and electromagnetic noise.
    Type: Grant
    Filed: September 14, 2012
    Date of Patent: April 7, 2015
    Assignee: Renesas Electronics Corporation
    Inventors: Tetsuo Sato, Tomoaki Uno, Hirokazu Kato, Nobuyoshi Matsuura
  • Publication number: 20150077062
    Abstract: A battery management method and apparatus. In one embodiment of the method, a source current is divided into Ic and Icr. Ic is transmitted to and charges a battery. A first voltage is generated that is related to Icr. The first voltage is converted into a first digital signal. A processing unit receives and processes the first digital signal in accordance with instructions stored in a memory. The transmission of Ic to the battery is interrupted in response to the processing unit processing the first digital signal. Current provided by the battery is divided into Idc and Idcr. Idc is transmitted to a device. A second voltage is generated that is related to Idcr. The second voltage is converted into a second digital signal. The processing unit receives and processes the second digital signal in accordance with instructions stored in the memory. The transmission of Idc to the battery is interrupted in response to the processing unit processing the second digital signal.
    Type: Application
    Filed: November 25, 2014
    Publication date: March 19, 2015
    Inventors: Tetsuo Sato, Tsutomu Kawano, Koji Kashimoto, Takao Hidaka, Tsuyoshi Otal, Ryoji Kato