Patents by Inventor Seikoh Arimura

Seikoh Arimura 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: 10842056
    Abstract: A cooling device has a cooler, a circulator, a semiconductor temperature detection unit, a refrigerant temperature detection unit, an output acquisition unit, and a flow velocity control unit. An output area of a power converter is divided into a first output area equal to and smaller than a threshold and a second output area exceeding the threshold. The flow velocity control unit controls, in the first output area, the flow velocity of the refrigerant to be maintained within a range where the refrigerant in the heat receiving portion is kept in a non-boiling state; and controls, in the second output area, the flow velocity to be maintained within a range where the refrigerant is in the non-boiling state or a nucleate boiling state. The flow velocity in the second output area is equal to or greater than an upper limit value of the flow velocity in the first output area.
    Type: Grant
    Filed: December 9, 2019
    Date of Patent: November 17, 2020
    Assignee: DENSO CORPORATION
    Inventors: Seikoh Arimura, Takashi Masuzawa, Hitoshi Yoshimura, Hiroshi Taki
  • Publication number: 20200120838
    Abstract: A cooling device has a cooler, a circulator, a semiconductor temperature detection unit, a refrigerant temperature detection unit, an output acquisition unit, and a flow velocity control unit. An output area of a power converter is divided into a first output area equal to and smaller than a threshold and a second output area exceeding the threshold. The flow velocity control unit controls, in the first output area, the flow velocity of the refrigerant to be maintained within a range where the refrigerant in the heat receiving portion is kept in a non-boiling state; and controls, in the second output area, the flow velocity to be maintained within a range where the refrigerant is in the non-boiling state or a nucleate boiling state. The flow velocity in the second output area is equal to or greater than an upper limit value of the flow velocity in the first output area.
    Type: Application
    Filed: December 9, 2019
    Publication date: April 16, 2020
    Applicant: DENSO CORPORATION
    Inventors: Seikoh ARIMURA, Takashi MASUZAWA, Hitoshi YOSHIMURA, Hiroshi TAKI
  • Patent number: 9374023
    Abstract: The present application presents a power conversion control device that does not reduce electric power conversion efficiency. A mode judging section judges whether a direction of current flowing through an inductor has been reversed or not based on both an average value of current flowing through the inductor, the average value being calculated by an average current calculating section, and a difference (i.e peak current) between a maximum value and a minimum value of a current flowing through the inductor, the difference being calculated by a peak current calculating section. And then if the judging section has determined that the direction of current flowing through an inductor has been reversed, the power conversion control device makes the switching elements ON/OFF-operation corresponding to either one of a power running mode or an electric power regenerating mode.
    Type: Grant
    Filed: March 26, 2013
    Date of Patent: June 21, 2016
    Assignee: DENSO CORPORATION
    Inventor: Seikoh Arimura
  • Publication number: 20130250636
    Abstract: The present application presents a power conversion control device that does not reduce electric power conversion efficiency. A mode judging section judges whether a direction of current flowing through an inductor has been reversed or not based on both an average value of current flowing through the inductor, the average value being calculated by an average current calculating section, and a difference (i.e peak current) between a maximum value and a minimum value of a current flowing through the inductor, the difference being calculated by a peak current calculating section. And then if the judging section has determined that the direction of current flowing through an inductor has been reversed, the power conversion control device makes the switching elements ON/OFF-operation corresponding to either one of a power running mode or an electric power regenerating mode.
    Type: Application
    Filed: March 26, 2013
    Publication date: September 26, 2013
    Applicant: DENSO CORPORATION
    Inventor: Seikoh ARIMURA
  • Patent number: 7932685
    Abstract: The control apparatus for a power conversion apparatus having chopper circuits and a capacitor, each of which includes a switching circuit and a coil, the switching circuit being on/off-controlled in accordance with specific timings determined in accordance with a current flowing through the coil to create required voltage in the capacitor, includes a function of evenly dividing an interval between adjacent specific timings of one of the chopper circuits to produce divided timings to be allocated to the other chopper circuits, and a function of setting, for each of the other chopper circuits, an on-time period of the switching circuit such that, when the interval varies as a result of which the specific timing of each of the other chopper circuits deviates from a corresponding one of the divided timings, an interval between adjacent specific timings of each of the other chopper circuits is varied to reduce the deviation.
    Type: Grant
    Filed: March 9, 2009
    Date of Patent: April 26, 2011
    Assignee: Denso Corporation
    Inventors: Seikoh Arimura, Tomonori Kimura
  • Publication number: 20090230899
    Abstract: The control apparatus for a power conversion apparatus having chopper circuits and a capacitor, each of which includes a switching circuit and a coil, the switching circuit being on/off-controlled in accordance with specific timings determined in accordance with a current flowing through the coil to create required voltage in the capacitor, includes a function of evenly dividing an interval between adjacent specific timings of one of the chopper circuits to produce divided timings to be allocated to the other chopper circuits, and a function of setting, for each of the other chopper circuits, an on-time period of the switching circuit such that, when the interval varies as a result of which the specific timing of each of the other chopper circuits deviates from a corresponding one of the divided timings, an interval between adjacent specific timings of each of the other chopper circuits is varied to reduce the deviation.
    Type: Application
    Filed: March 9, 2009
    Publication date: September 17, 2009
    Inventors: Seikoh Arimura, Tomonori Kimura