Patents by Inventor Shogo Moroe

Shogo Moroe 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: 10473367
    Abstract: A heat pump apparatus, including: a two-cylinder compressor including: an electric motor; two compression units to be driven by the electric motor, the two-cylinder compressor being structured to switch between two operation modes including single operation in which one of the compression units is brought into a non-compression state, and parallel operation in which both the compression units are brought into a compression state; an inverter drive control device supplying drive power to the electric motor of the two-cylinder compressor; an operation mode detecting-determining unit determining a current operation mode based on an electric signal acquired from the inverter drive control device; and a capacity control device determining a rotating frequency of the electric motor so that a temperature of a target object is brought close to a set value, to thereby control the inverter drive control device based on a result of determination of the operation mode detecting-determining unit.
    Type: Grant
    Filed: May 21, 2014
    Date of Patent: November 12, 2019
    Assignee: Mitsubishi Electric Corporation
    Inventors: Tetsuhide Yokoyama, Yosuke Shinomoto, Shogo Moroe, Akira Satake, Masashi Fujitsuka, Takeshi Mori, Taro Kato, Hideaki Maeyama, Keiko Tada
  • Patent number: 9885357
    Abstract: A hermetic compressor includes a hermetic container having a bottom portion in which lubricating oil is stored and an electric motor including a stator and a rotator. The hermetic compressor further includes a drive shaft attached to the rotator and a compression mechanism for compressing refrigerant by using rotation of the drive shaft. The hermetic compressor also includes a rotary pressure increasing mechanism for increasing a pressure of refrigerant gas, the rotary pressure increasing mechanism being arranged on the rotator, and a cylindrical lateral wall for partitioning a space above the electric motor into an outer space and an inner space in a manner that the a cylindrical lateral wall surrounds the rotary pressure increasing mechanism. Finally, the hermetic compressor includes a discharge pipe for allowing the refrigerant to flow out from the inner space into an external circuit that is external to the hermetic container.
    Type: Grant
    Filed: January 16, 2013
    Date of Patent: February 6, 2018
    Assignee: Mitsubishi Electric Corporation
    Inventors: Tetsuhide Yokoyama, Teruhiko Nishiki, Shogo Moroe, Taro Kato, Keisuke Shingu, Shin Sekiya, Toshihide Koda
  • Patent number: 9879676
    Abstract: A multi-cylinder rotary compressor includes plural compression mechanism parts. A drawing force is applied to a vane of at least one of the compression mechanism parts radially outward with respect to a drive shaft, making a pressing force pressing the vane toward a piston smaller than in other compression mechanism parts. In a normal state, a pressing force due to a gas pressure difference between a suction pressure and a discharge pressure is larger than the drawing force, and a vane front end is pressed against a rotary piston peripheral wall. When the drawing force becomes greater than the pressing force, the vane front end is moved to separate from the rotary piston peripheral wall with a space through which oil is introduced from a sealed container, and a retention mechanism retains the vane separated from the piston, and the compression mechanism part switches to an uncompressed state.
    Type: Grant
    Filed: April 25, 2014
    Date of Patent: January 30, 2018
    Assignee: Mitsubishi Electric Corporation
    Inventors: Shogo Moroe, Tetsuhide Yokoyama, Toshiaki Iwasaki, Taro Kato, Hideaki Maeyama, Shinichi Takahashi, Kanichiro Sugiura
  • Publication number: 20170089624
    Abstract: A hermetic compressor, includes: a hermetic container storing a lubricating oil; an electric motor; a drive shaft; a compression mechanism; a rotary pressure increasing mechanism increasing pressure of refrigerant gas; a cylindrical lateral wall partitioning a space above the electric motor into outer and inner spaces; and a discharge pipe allowing refrigerant to flow out from the inner space into an external circuit. The refrigerant gas discharged from the compression mechanism into the hermetic container is moved from a space below the electric motor up to an upper end of the rotator through rotator vents of the rotator, flows into the rotary pressure increasing mechanism to be increased in pressure, flows into the inner space to increase a pressure in the inner space, and is discharged to an outside through the discharge pipe while suppressing inflow of the refrigerant gas from the outer space to the inner space.
    Type: Application
    Filed: March 19, 2014
    Publication date: March 30, 2017
    Applicant: MITSUBISHI ELECTRIC CORPORATION
    Inventors: Tetsuhide YOKOYAMA, Teruhiko NISHIKI, Shogo MOROE, Taro KATO, Keisuke SHINGU (Deceased), Shin SEKIYA, Toshihide KODA
  • Patent number: 9541310
    Abstract: A sealed compressor includes a centrifugal impeller above a rotor to synchronously rotate. A refrigerant rises through a rotor air hole, flows in an upper space, and flows out from a discharge pipe. The centrifugal impeller includes an oil separation plate on the rotor, and plural vanes standing on the oil separation plate, and forms inter-vane flow passages between adjacent vanes, and a vane inner flow passage that guides refrigerant from the rotor air hole to inner entrances of the inter-vane flow passages. Outer exits of the inter-vane flow passages are disposed along an entire circumference, and refrigerant increased in pressure while passing through the inter-vane flow passages flows out from the outer exits to the upper space. The oil separation plate closes a short-circuit passage through which the refrigerant directly flows from the vane inner flow passages to the discharge pipe without passing through the inter-vane flow passages.
    Type: Grant
    Filed: January 16, 2013
    Date of Patent: January 10, 2017
    Assignee: Mitsubishi Electric Corporation
    Inventors: Tetsuhide Yokoyama, Shogo Moroe, Yoshinori Shirafuji, Teruhiko Nishiki, Taro Kato, Hideaki Maeyama, Hiroki Nagasawa, Keisuke Shingu
  • Publication number: 20160084546
    Abstract: A heat pump apparatus, including: a two-cylinder compressor including: an electric motor; two compression units to be driven by the electric motor, the two-cylinder compressor being structured to switch between two operation modes including single operation in which one of the compression units is brought into a non-compression state, and parallel operation in which both the compression units are brought into a compression state; an inverter drive control device supplying drive power to the electric motor of the two-cylinder compressor; an operation mode detecting-determining unit determining a current operation mode based on an electric signal acquired from the inverter drive control device; and a capacity control device determining a rotating frequency of the electric motor so that a temperature of a target object is brought close to a set value, to thereby control the inverter drive control device based on a result of determination of the operation mode detecting-determining unit.
    Type: Application
    Filed: May 21, 2014
    Publication date: March 24, 2016
    Applicant: MITSUBISHI ELECTRIC CORPORATION
    Inventors: Tetsuhide YOKOYAMA, Yosuke SHINOMOTO, Shogo MOROE, Akira SATAKE, Masashi FUJITSUKA, Takeshi MORI, Taro KATO, Hideaki MAEYAMA, Keiko TADA
  • Publication number: 20160047379
    Abstract: A multi-cylinder rotary compressor includes plural compression mechanism parts. A drawing force is applied to a vane of at least one of the compression mechanism parts radially outward with respect to a drive shaft, making a pressing force pressing the vane toward a piston smaller than in other compression mechanism parts. In a normal state, a pressing force due to a gas pressure difference between a suction pressure and a discharge pressure is larger than the drawing force, and a vane front end is pressed against a rotary piston peripheral wall. When the drawing force becomes greater than the pressing force, the vane front end is moved to separate from the rotary piston peripheral wall with a space through which oil is introduced from a sealed container, and a retention mechanism retains the vane separated from the piston, and the compression mechanism part switches to an uncompressed state.
    Type: Application
    Filed: April 25, 2014
    Publication date: February 18, 2016
    Applicant: MITSUBISHI ELECTRIC CORPORATION
    Inventors: Shogo MOROE, Tetsuhide YOKOYAMA, Toshiaki IWASAKI, Taro KATO, Hideaki MAEYAMA, Shinichi TAKAHASHI, Kanichiro SUGIURA
  • Publication number: 20150354572
    Abstract: A hermetic compressor, includes a hermetic container having a bottom portion in which lubricating oil is stored; an electric motor including a stator and a rotator; a drive shaft attached to the rotator; a compression mechanism for compressing refrigerant by using rotation of the drive shaft; a rotary pressure increasing mechanism for increasing a pressure of refrigerant gas, the rotary pressure increasing mechanism being arranged on the rotator; a cylindrical lateral wall for partitioning a space above the electric motor into an outer space and an inner space in a manner that the a cylindrical lateral wall surrounds the rotary pressure increasing mechanism; and a discharge pipe for allowing the refrigerant to flow out from the inner space into an external circuit that is external to the hermetic container.
    Type: Application
    Filed: January 16, 2013
    Publication date: December 10, 2015
    Applicant: Mitsubishi Electric Corporation
    Inventors: Tetsuhide YOKOYAMA, Teruhiko NISHIKI, Shogo MOROE, Taro KATO, Keisuke SHINGU, Shin SEKIYA, Toshihide KODA
  • Publication number: 20150052936
    Abstract: A sealed compressor includes a centrifugal impeller above a rotor to synchronously rotate. A refrigerant rises through a rotor air hole, flows in an upper space, and flows out from a discharge pipe. The centrifugal impeller includes an oil separation plate on the rotor, and plural vanes standing on the oil separation plate, and forms inter-vane flow passages between adjacent vanes, and a vane inner flow passage that guides refrigerant from the rotor air hole to inner entrances of the inter-vane flow passages. Outer exits of the inter-vane flow passages are disposed along an entire circumference, and refrigerant increased in pressure while passing through the inter-vane flow passages flows out from the outer exits to the upper space. The oil separation plate closes a short-circuit passage through which the refrigerant directly flows from the vane inner flow passages to the discharge pipe without passing through the inter-vane flow passages.
    Type: Application
    Filed: January 16, 2013
    Publication date: February 26, 2015
    Applicant: Mitsubishi Electric Corporation
    Inventors: Tetsuhide Yokoyama, Shogo Moroe, Yoshinori Shirafuji, Teruhiko Nishiki, Taro Kato, Hideaki Maeyama, Hiroki Nagasawa, Keisuke Shingu