Patents by Inventor Ryotaro Kudo

Ryotaro Kudo 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).

  • Patent number: 10135328
    Abstract: A step down convertor with a distributed driving system. In one embodiment, an apparatus is disclosed that includes an inductor coupled to an output node. The apparatus also includes first and second circuits. The first circuit can transmit current to the output node via the inductor, and the second can transmit current to the output node via the inductor. The apparatus also includes a third circuit for modifying operational aspects of the first circuit or the second circuit based on a magnitude of current flowing through the inductor.
    Type: Grant
    Filed: November 6, 2017
    Date of Patent: November 20, 2018
    Assignee: RENESAS ELECTRONICS AMERICA INC.
    Inventors: Tetsuo Sato, Ryotaro Kudo, Hideo Ishii, Kenichi Nakano
  • Patent number: 10082428
    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: July 25, 2017
    Date of Patent: September 25, 2018
    Assignee: Renesas Electronics America Inc.
    Inventors: Tetsuo Sato, Ryotaro Kudo
  • Patent number: 9973017
    Abstract: A charger circuit includes a first path regulator, a path switch, and a second path regulator. The first path regulator is configured to generate a first regulation current based on an input voltage and an input current. The path switch is configured to pass or block a first charging current in response to a control signal. The first charging current is generated based on the first regulation current. The second path regulator is configured to generate a second regulation current based on the input voltage and the input current. At least one of the first charging current and a second charging current is used to charge a battery. The second charging current is generated based on the second regulation current. The second charging current is transferred to the battery without passing through the path switch.
    Type: Grant
    Filed: September 16, 2015
    Date of Patent: May 15, 2018
    Assignee: SAMSUNG ELECTRONICS CO., LTD.
    Inventors: Ryotaro Kudo, Dongjin Keum, Yus Ko, Hyunseok Nam, Gwang-Yol Noh, Whanseok Seo, Jaeyoup Choi
  • Publication number: 20180062501
    Abstract: A step down convertor with a distributed driving system. In one embodiment, an apparatus is disclosed that includes an inductor coupled to an output node. The apparatus also includes first and second circuits. The first circuit can transmit current to the output node via the inductor, and the second can transmit current to the output node via the inductor. The apparatus also includes a third circuit for modifying operational aspects of the first circuit or the second circuit based on a magnitude of current flowing through the inductor.
    Type: Application
    Filed: November 6, 2017
    Publication date: March 1, 2018
    Inventors: Tetsuo Sato, Ryotaro Kudo, Hideo Ishii, Kenichi Nakano
  • Publication number: 20170336265
    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: Application
    Filed: July 25, 2017
    Publication date: November 23, 2017
    Inventors: Tetsuo Sato, Ryotaro Kudo
  • Patent number: 9812942
    Abstract: A step down convertor with a distributed driving system. In one embodiment, an apparatus is disclosed that includes an inductor coupled to an output node. The apparatus also includes first and second circuits. The first circuit can transmit current to the output node via the inductor, and the second can transmit current to the output node via the inductor. The apparatus also includes a third circuit for modifying operational aspects of the first circuit or the second circuit based on a magnitude of current flowing through the inductor.
    Type: Grant
    Filed: January 10, 2012
    Date of Patent: November 7, 2017
    Assignee: Renesas Electronics America Inc.
    Inventors: Tetsuo Sato, Ryotaro Kudo, Hideo Ishii, Kenichi Nakano
  • 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
  • Patent number: 9705401
    Abstract: A buck-boost converter includes: a converting circuit; a ripple injector; a hysteresis comparator; and a switching controller. The converting circuit is configured to generate an output voltage by adjusting an input voltage in a buck mode, a boost mode, and a buck-boost mode. The ripple injector is configured to generate a ripple based on switching signals corresponding to switching operations of the converting circuit. The hysteresis comparator outputs at least one switching control signal by comparing an output control voltage with a feedback voltage generated by adding the ripple to a divided voltage generated by performing a voltage division on the output voltage. The switching controller is configured to change a current flow path of the converting circuit based on the at least one switching control signal.
    Type: Grant
    Filed: June 17, 2015
    Date of Patent: July 11, 2017
    Assignee: SAMSUNG ELECTRONICS CO., LTD.
    Inventors: Min-Soo Cho, Jae-Yeol Han, Dong-Jin Keum, Il-Young Sohn, Ryotaro Kudo
  • Patent number: 9641076
    Abstract: A switching regulator switches a current from input direct current (DC) power to generate target DC power. The switching regulator includes: a direct current (DC)-DC converter and a ripple injection circuit. The DC-DC converter is configured to: generate an output voltage at an output terminal based on an input voltage applied to an input terminal, and according to a switching cycle that selectively forms a voltage-down current path or a voltage-up current path based on a comparison between a reference voltage and a voltage sensed at a feedback node; and apply a feedback current from the output terminal to the feedback node. The ripple injection circuit is configured to: generate a pulse current synchronized with the switching cycle; and apply the pulse current to the feedback node.
    Type: Grant
    Filed: January 5, 2015
    Date of Patent: May 2, 2017
    Assignee: SAMSUNG ELECTRONICS CO., LTD.
    Inventors: Ryotaro Kudo, Gwang-yol Noh, Hwa-yeal Yu
  • 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
  • Patent number: 9418986
    Abstract: A semiconductor device is improved in reliability. A power MOSFET for switching, and a sense MOSFET for sensing a current flowing in the power MOSFET, which is smaller in area than the power MOSFET, are formed in one semiconductor chip. The semiconductor chip is mounted over a chip mounting portion, and sealed in a resin. To first and second source pads for outputting the current flowing in the power MOSFET, a metal plate is bonded. A third source pad for sensing the source voltage of the power MOSFET is at a position not overlapping the metal plate. A coupled portion between a source wire forming the third pad and another source wire forming the first and second pads is at a position overlapping the metal plate.
    Type: Grant
    Filed: August 19, 2012
    Date of Patent: August 16, 2016
    Assignee: Renesas Electronics Corporation
    Inventors: Tomoaki Uno, Yoshitaka Onaya, Hirokazu Kato, Ryotaro Kudo, Koji Saikusa
  • Patent number: 9369045
    Abstract: In a switching power source which controls a current which flows in an inductor through a switching element which performs a switching operation in response to a PWM signal, and forms an output voltage by a capacitor which is provided in series in the inductor, a booster circuit which is constituted of a bootstrap capacity and a MOSFET is provided between an output node of the switching element and a predetermined voltage terminal. The boosted voltage is used as an operational voltage of a driving circuit of the switching element, another source/drain region and a substrate gate are connected with each other, and a junction diode between one source/drain region and the substrate gate is inversely directed with respect to the boosted voltage which is formed by the bootstrap capacity.
    Type: Grant
    Filed: November 19, 2013
    Date of Patent: June 14, 2016
    Assignee: Renesas Electronics Corporation
    Inventors: Kyoichi Hosokawa, Ryotaro Kudo, Toshio Nagasawa, Koji Tateno
  • Publication number: 20160099640
    Abstract: A buck-boost converter includes: a converting circuit; a ripple injector; a hysteresis comparator; and a switching controller. The converting circuit is configured to generate an output voltage by adjusting an input voltage in a buck mode, a boost mode, and a buck-boost mode. The ripple injector is configured to generate a ripple based on switching signals corresponding to switching operations of the converting circuit. The hysteresis comparator outputs at least one switching control signal by comparing an output control voltage with a feedback voltage generated by adding the ripple to a divided voltage generated by performing a voltage division on the output voltage. The switching controller is configured to change a current flow path of the converting circuit based on the at least one switching control signal.
    Type: Application
    Filed: June 17, 2015
    Publication date: April 7, 2016
    Inventors: Min-Soo CHO, Jae-Yeol HAN, Dong-Jin KEUM, Il-Young SOHN, Ryotaro KUDO
  • Publication number: 20160087462
    Abstract: A charger circuit includes a first path regulator, a path switch, and a second path regulator. The first path regulator is configured to generate a first regulation current based on an input voltage and an input current. The path switch is configured to pass or block a first charging current in response to a control signal. The first charging current is generated based on the first regulation current. The second path regulator is configured to generate a second regulation current based on the input voltage and the input current. At least one of the first charging current and a second charging current is used to charge a battery. The second charging current is generated based on the second regulation current. The second charging current is transferred to the battery without passing through the path switch.
    Type: Application
    Filed: September 16, 2015
    Publication date: March 24, 2016
    Inventors: RYOTARO KUDO, DONGJIN KEUM, YUS KO, HYUNSEOK NAM, GWANG-YOL NOH, WHANSEOK SEO, JAEYOUP CHOI
  • Patent number: 9136761
    Abstract: The present invention realized miniaturization of a power supply device using a multiphase system. The power supply device includes, for example, a common control unit, a plurality of PWM-equipped drive units, and a plurality of inductors. The common control unit outputs clock signals respectively different in phase to the PWM-equipped drive units. The clock signals are controllable in voltage state individually respectively. For example, the clock signal can be brought to a high impedance state. In this case, the PWM-equipped drive unit detects this high impedance state and stops its own operation. It is thus possible to set the number of phases in multiphase arbitrarily without using another enable signal or the like.
    Type: Grant
    Filed: March 11, 2013
    Date of Patent: September 15, 2015
    Assignee: RENESAS ELECTRONICS CORPORATION
    Inventor: Ryotaro Kudo
  • Publication number: 20150194892
    Abstract: A switching regulator switches a current from input direct current (DC) power to generate target DC power. The switching regulator includes: a direct current (DC)-DC converter and a ripple injection circuit. The DC-DC converter is configured to: generate an output voltage at an output terminal based on an input voltage applied to an input terminal, and according to a switching cycle that selectively forms a voltage-down current path or a voltage-up current path based on a comparison between a reference voltage and a voltage sensed at a feedback node; and apply a feedback current from the output terminal to the feedback node. The ripple injection circuit is configured to: generate a pulse current synchronized with the switching cycle; and apply the pulse current to the feedback node.
    Type: Application
    Filed: January 5, 2015
    Publication date: July 9, 2015
    Inventors: Ryotaro KUDO, Gwang-yol NOH, Hwa-yeal YU
  • Publication number: 20140321506
    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: Application
    Filed: May 5, 2014
    Publication date: October 30, 2014
    Applicant: Renesas Electronics America Inc.
    Inventors: Tetsuo Sato, Ryotaro Kudo
  • Publication number: 20140173302
    Abstract: Miniaturization of a multiphase type power supply device can be achieved. A power supply control unit in which, for example, a microcontroller unit, a memory unit and an analog controller unit are formed over a single chip, a plurality of PWM-equipped drive units, and a plurality of inductors configure a multiphase power supply. The microcontroller unit outputs clock signals each having a frequency and a phase defined based on a program on the memory unit to the respective PWM-equipped drive units. The analog controller unit detects a difference between a voltage value of a load and a target voltage value acquired via a serial interface and outputs an error amp signal therefrom. Each of the PWM-equipped drive units drives each inductor by a peak current control system using the clock signal and the error amp signal.
    Type: Application
    Filed: February 24, 2014
    Publication date: June 19, 2014
    Applicant: RENESAS ELECTRONICS CORPORATION
    Inventors: Ryotaro KUDO, Tomoaki UNO, Koji TATENO, Hideo ISHII, Kazuyuki UMEZU, Koji SAIKUSA
  • Publication number: 20140152282
    Abstract: In a switching power source which controls a current which flows in an inductor through a switching element which performs a switching operation in response to a PWM signal, and forms an output voltage by a capacitor which is provided in series in the inductor, a booster circuit which is constituted of a bootstrap capacity and a MOSFET is provided between an output node of the switching element and a predetermined voltage terminal. The boosted voltage is used as an operational voltage of a driving circuit of the switching element, another source/drain region and a substrate gate are connected with each other, and a junction diode between one source/drain region and the substrate gate is inversely directed with respect to the boosted voltage which is formed by the bootstrap capacity.
    Type: Application
    Filed: November 19, 2013
    Publication date: June 5, 2014
    Applicant: Renesas Electronics Corporation
    Inventors: Kyoichi HOSOKAWA, Ryotaro KUDO, Toshio NAGASAWA, Koji TATENO
  • Patent number: 8714815
    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: January 25, 2013
    Date of Patent: May 6, 2014
    Assignee: Renesas Electronics America Inc.
    Inventors: Tetsuo Sato, Ryotaro Kudo