Patents by Inventor Norimasa Yanase

Norimasa Yanase 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: 20100261083
    Abstract: A power supply apparatus, which can detect an abnormal voltage drop in a power cell and, if recovery from this voltage drop is made, resume power generation, thereby realizing reasonable and stable power supply, is provided.
    Type: Application
    Filed: May 29, 2008
    Publication date: October 14, 2010
    Inventors: Norimasa Yanase, Noboru Ishisone, Tsuneaki Tamachi, Toru Ozaki, Takafumi Sarata, Kazutaka Yuzurihara, Fumiharu Iwasaki
  • Patent number: 7811691
    Abstract: To provide a small-sized fuel cell system capable of providing a mode having a simple constitution preventing power generation of a fuel cell in an overload state, preventing a deterioration in the fuel cell system and providing a stable output from the fuel cell in the fuel cell system constituting a power source by the fuel cell. Overload states of all of single cells constituting a fuel cell are detected and an output of the fuel cell is controlled such that when the overload state is detected, the output of the fuel cell is cut or a cell in the overload state is recovered to a normal power generating state.
    Type: Grant
    Filed: August 31, 2005
    Date of Patent: October 12, 2010
    Assignee: Seiko Instruments Inc.
    Inventors: Norimasa Yanase, Fumiharu Iwasaki, Kazutaka Yuzurihara, Tsuneaki Tamachi, Takafumi Sarata, Toru Ozaki
  • Publication number: 20100227241
    Abstract: A pressure regulating valve comprises a first pressure deformation part (120) receiving the pressure on the fuel demand side and deformable and a second pressure deformation part (130) so installed as to face the first pressure deformation part (120), receiving a predetermined pressure, and deformable. A first flow passage (140), a second flow passage (150), and a communication passage (160) allowing the first and second flow passages (140, 150) to communicate with each other are formed in the space between the first and second pressure deformation parts (120, 130). The pressure regulating valve further comprises a valve member (170) having a valve element (172) which has a connection part (171) extending through the communication passage (160) and connecting the first pressure deformation part (120) to the second pressure deformation part (130), installed in the connection part (171), and closing the communication passage (160) when moved to the second pressure deformation part (130) side.
    Type: Application
    Filed: February 15, 2007
    Publication date: September 9, 2010
    Applicant: SEIKO INSTRUMENTS INC.
    Inventors: Takafumi Sarata, Norimasa Yanase, Toru Ozaki, Tsuneaki Tamachi, Kazutaka Yuzurihara, Fumiharu Iwasaki, Noboru Ishisone
  • Publication number: 20100151338
    Abstract: A solution vessel 4 freely changeable in volume is provided inside a reaction chamber 2. As a reactant solution 11 stored in the solution vessel 4 is supplied to a workpiece 3 placed in the reaction chamber 2, the volume of the solution vessel 4 is decreased, and the capacity of the reaction chamber 2 is increased. Thus, a region where hydrogen is generated is increased within a small space.
    Type: Application
    Filed: August 2, 2006
    Publication date: June 17, 2010
    Inventors: Takafumi Sarata, Norimasa Yanase, Toru Ozaki, Tsuneaki Tamachi, Kazutaka Yuzurihara, Fumiharu Iwasaki
  • Publication number: 20100136449
    Abstract: A power supply apparatus comprises a combined power source composed of a plurality of power cells configured electrically independently, a switch for arbitrarily connecting each of the power cells by selectively connecting terminals of the power cells through switching elements, a voltage detector for respectively detecting differences in potentials between the terminals of the power cells, a voltage regulator for stabilizing a voltage supplied to a load, a current detector for detecting a load current supplied to the load, and a controller for controlling ON-OFF states of the switching elements by controlling the switch by a control signal generated based on voltage signals on the voltages detected by the voltage detector, a power consumption of the load, and an output power of the combined power source.
    Type: Application
    Filed: May 29, 2008
    Publication date: June 3, 2010
    Inventors: Norimasa Yanase, Noboru Ishisone, Tsuneaki Tamachi, Toru Ozaki, Takafumi Sarata, Kazutaka Yuzurihara, Fumiharu Iwasaki
  • Publication number: 20100104911
    Abstract: After hydrogen fed from the side part of the bottom plate 13 along the face direction through the fluid supply plate 15 is dispersed in the flow space 14 and is then dispersed in the paths 26 in the block group 25, hydrogen is transferred into the small openings for uniformly feeding hydrogen to each cell unit.
    Type: Application
    Filed: July 3, 2008
    Publication date: April 29, 2010
    Inventors: Toru Ozaki, Fumiharu Iwasaki, Kazutaka Yuzurihara, Takafumi Sarata, Tsuneaki Tamachi, Norimasa Yanase, Noboru Ishisone
  • Publication number: 20100075198
    Abstract: After hydrogen fed from introduction hole 22 is dispersed in a first space 15 as a first buffer part, the hydrogen is further dispersed in a first recess part 28 and a second recess part 30 as a second buffer part, which is then uniformly dispersed in individual paths 26 between block groups 25 to make the volume of hydrogen flowing in the paths 26 uniform, and is then transferred at a sufficient feed pressure into small openings 24 through the second recess part 29 for uniformly feeding hydrogen to each cell unit.
    Type: Application
    Filed: July 3, 2008
    Publication date: March 25, 2010
    Inventors: Toru Ozaki, Takafumi Sarata, Kazutaka Yuzurihara, Fumiharu Iwasaki, Tsuneaki Tamachi, Norimasa Yanase, Noboru Ishisone
  • Publication number: 20100062318
    Abstract: Hydrogen supplied from an introduction port (22) is diffused in a first space (15), which is a first buffer section. Thereafter, it is sent to a first space (15), which is a second buffer section, through a communication port (23), and is radially diffused in the first space (15) so that the flow rate is made uniform. Then, it is sent to small-openings (24) formed on a same circumference (S), so that the hydrogen can be supplied to each of the cell units evenly.
    Type: Application
    Filed: July 3, 2008
    Publication date: March 11, 2010
    Inventors: Toru Ozaki, Fumiharu Iwasaki, Kazutaka Yuzurihara, Takafumi Sarata, Tsuneaki Tamachi, Norimasa Yanase, Noboru Ishisone
  • Publication number: 20100015488
    Abstract: Hydrogen supplied from an introduction port 22 is diffused in a first space 15, a first buffer section, is then further diffused in a first recessed section 30, a second buffer section, and is uniformly dispersed to channels 26 of a block group 25. Thus, the amounts of the hydrogen flowing through the channels 26 are uniformized, and the hydrogen is sent to fine openings 24, and uniformly supplied to each cell.
    Type: Application
    Filed: December 21, 2007
    Publication date: January 21, 2010
    Inventors: Toru Ozaki, Fumiharu Iwasaki, Kazutaka Yuzurihara, Takafumi Sarata, Tsuneaki Tamachi, Norimasa Yanase, Noboru Ishisone
  • Publication number: 20090305095
    Abstract: A hydrogen production apparatus 1 is constructed in which when work 3 is close to a supply hole 7, a strut 22 is pushed to open the supply hole 7, and when erosion of the work 3 progresses to cause the strut 22 to protrude, the supply hole 7 is closed with a seal member 24, so that products do not stay on the work 3, a reaction solution 12 is not fed to portions other than the work 3, and even if the attitude of the apparatus is changed, a hydrogen production reaction can be controlled appropriately.
    Type: Application
    Filed: December 21, 2007
    Publication date: December 10, 2009
    Applicant: BRUCE L.DAMS ESQ.
    Inventors: Takafumi Sarata, Fumiharu Iwasaki, Norimasa Yanase, Kazutaka Yuzurihara, Noboru Ishisone, Toru Ozaki, Tsuneaki Tamachi
  • Publication number: 20090023031
    Abstract: This invention provides a fuel battery comprising a solid polymer electrolyte membrane, an anode-side catalyst body and a cathode-side catalyst body disposed respectively on both sides of the solid polymer electrolyte membrane, and a fuel guide part in which the anode-side catalyst body is disposed opposite to the anode-side catalyst body on the opposite side where the anode-side catalyst body faces the solid polymer electrolyte membrane and which guides a fuel which has been externally supplied toward the center of the face of the anode-side catalyst body.
    Type: Application
    Filed: October 5, 2006
    Publication date: January 22, 2009
    Inventors: Toru Ozaki, Fumiheru Iwasaki, Kazutaka Yuzurihara, Tsuneaki Tamachi, Takafumi Sarata, Norimasa Yanase
  • Publication number: 20080220297
    Abstract: Hydrogen generation materials are a complex hydride which generates hydrogen upon hydrolysis, and an aqueous solution comprising water for causing the hydrolysis, and an accelerator dissolved therein for accelerating a hydrogen generation reaction. A method of hydrogen generation by a hydrogen generator comprises a first step S1 of detecting that the internal pressure of a reactor is lower than a reference pressure, and supplying the aqueous accelerator solution to the reactor; a second step S2 of dissolving the complex hydride in the aqueous accelerator solution to cause a hydrogen generation reaction; and a third step S3 of detecting that the internal pressure of the reactor is higher than the reference pressure, and stopping the supply of the aqueous accelerator solution, and repeats the flow from the first step S1 to the third step S3.
    Type: Application
    Filed: March 24, 2006
    Publication date: September 11, 2008
    Applicant: SEIKO INSTRUMENTS INC.
    Inventors: Takafumi Sarata, Norimasa Yanase, Toru Ozaki, Tsuneaki Tamachi, Kazutaka Yuzurihara, Fumiharu Iwasaki
  • Patent number: 7336053
    Abstract: An electric equipment has a battery and an electric condenser that has an internal resistance lower than that of the battery and accumulates therein an electric power of the battery. A charge control circuit controls a charge current originating from the electric power of the battery and flowing from the battery to the electric condenser. The charge control circuit controls the charge current in accordance with a self-discharge rate of the battery. A load is driven with the electric power accumulated in the electric condenser.
    Type: Grant
    Filed: March 30, 2004
    Date of Patent: February 26, 2008
    Assignee: Seiko Instruments Inc.
    Inventors: Fumiyasu Utsunomiya, Kazuyoshi Furuta, Fumiharu Iwasaki, Tsuneaki Tamachi, Takafumi Sarata, Norimasa Yanase
  • Publication number: 20070264541
    Abstract: In a fuel cell power source system comprising a fuel cell, a fuel supplier for supplying a fuel to the fuel cell, an electricity storing member capable of charging and discharging an energy, and a control circuit for controlling outputs of the fuel cell and the electricity storing member and the fuel supplier for supplying a power to an external load, there are provided a method of operating the fuel cell power source system and a fuel cell system promoting safety of the fuel cell system and reducing a deterioration in the fuel cell by removing the fuel remaining at inside of the fuel cell after stopping the fuel supplier. At an initial stage of supplying the power to the external load and inside of the fuel cell system, the power is supplied from the electricity storing member, and the electricity storing member is charged by using an output outputted from the fuel cell by generating the power by the fuel cell by using the fuel remaining at inside of the fuel cell system after stopping the external load.
    Type: Application
    Filed: January 12, 2006
    Publication date: November 15, 2007
    Applicant: SEIKO INSTRUMENTS INC.
    Inventors: Norimasa Yanase, Fumiharu Iwasaki, Kazutaka Yuzurihara, Tsuneaki Tamachi, Takafumi Sarata, Toru Ozaki
  • Publication number: 20060147776
    Abstract: A fuel cell system comprises a liquid storage section for storing a reacting solution, a reacting section for generating reacting gas from the reacting solution, a gas storage section for storing the reacting gas supplied from the reacting section, and a fuel cell for generating electricity while the reacting gas is being used as fuel. A reacting solution supply volume adjusting device supplies the reacting solution from the liquid storage section to the reacting section when the pressure in the liquid storage section is higher than the pressure in the reacting section and stops the supply of the reacting solution when the pressure in the liquid storage section is lower than the pressure in the reacting section.
    Type: Application
    Filed: February 23, 2004
    Publication date: July 6, 2006
    Inventors: Takafumi Sarata, Tuneaki Tamachi, Norimasa Yanase, Kazuyoshi Furuta, Fumiharu Iwasaki
  • Publication number: 20050244241
    Abstract: Disclosed are a cooling system, a cooling method, and an electronic apparatus which easily allow a reduction in size and which help to achieve an improvement in terms of energy efficiency. The cooling system uses a liquid constituting a fuel of a fuel cell as a cooling medium.
    Type: Application
    Filed: April 19, 2005
    Publication date: November 3, 2005
    Inventors: Joichi Miyazaki, Keishi Honmura, Ko Yamazaki, Fumiharu Iwasaki, Tsuneaki Tamachi, Takafumi Sarata, Norimasa Yanase, Toru Ozaki
  • Publication number: 20040207361
    Abstract: Provided is electronic equipment in which an electric power of a battery or a secondary battery, having a high internal resistance, can be efficiently utilized. The electronic equipment includes: a first battery such as a battery or a secondary battery, having a high internal resistance; an electric condenser having an internal resistance lower than that of the first battery for accumulating therein an electric power of the first battery; a charge control circuit for controlling a charge current, for the electric condenser, originating from the electric power of the first battery; and a load driven with the accumulated electric power of the electric condenser.
    Type: Application
    Filed: March 30, 2004
    Publication date: October 21, 2004
    Inventors: Fumiyasu Utsunomiya, Kazuyoshi Furuta, Fumiharu Iwasaki, Tsuneaki Tamachi, Takafumi Sarata, Norimasa Yanase