Patents by Inventor Kohei MORIYAMA

Kohei MORIYAMA 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: 20190197967
    Abstract: A projection-type display device includes: a reflection-type spatial optical modulation unit having movable reflection elements; a light source unit; and a control unit that controls the reflection-type spatial optical modulation unit and the light source unit. The control unit divides each frame of a displayed image into a display period during which the light source unit emits light and a non-display period during which the light source unit does not emit light. The control unit further divides, among a plurality of sub-frames forming the frame, each of display sub-frames included in the display period into division display sub-frames. The control unit causes at least one of the light emitting elements of the light source unit to emit light for each of the display sub-frames, and sets respective inclined states of movable reflection elements for each of the division display sub-frames.
    Type: Application
    Filed: August 7, 2017
    Publication date: June 27, 2019
    Inventors: Kohei MORIYAMA, Makoto HADA
  • Patent number: 9093196
    Abstract: Conductive particles each includes a polymer base particle and a conductive layer coating the polymer base particle. Let the compressive elastic deformation characteristic KX of one conductive particle when the displacement of particle diameter of the conductive particles is X % be defined by the following formula: KX=(3/?2)·(SX?3/2)·(R?1/2)·FX. FX is the load (N) necessary for X % displacement of the conductive particles. SX is the compressive deformation amount (mm) upon X % displacement of the conductive particles. R is the particle radius (mm) of the conductive particles. The compressive elastic deformation characteristic K50 when the displacement of particle diameter of the conductive particles is 50% is 100 to 50000 N/mm2 at 20° C., and the recovery factor of particle diameter of the conductive particles when the displacement of particle diameter of the conductive particles is 50% is not less than 30% at 20° C.
    Type: Grant
    Filed: September 28, 2007
    Date of Patent: July 28, 2015
    Assignee: NISSHINBO HOLDINGS, INC.
    Inventors: Toshifumi Hashiba, Kazutoshi Hayakawa, Satomi Kudo, Kohei Moriyama, Tsuyoshi Fujii
  • Publication number: 20080078977
    Abstract: Conductive particles each includes a polymer base particle and a conductive layer coating the polymer base particle. Let the compressive elastic deformation characteristic KX of one conductive particle when the displacement of particle diameter of the conductive particles is X % be defined by the following formula: KX=(3/?2)·(SX?3/2)·(R?1/2)·FX. FX is the load (N) necessary for X % displacement of the conductive particles. SX is the compressive deformation amount (mm) upon X % displacement of the conductive particles. R is the particle radius (mm) of the conductive particles. The compressive elastic deformation characteristic K50 when the displacement of particle diameter of the conductive particles is 50% is 100 to 50000 N/mm2 at 20° C., and the recovery factor of particle diameter of the conductive particles when the displacement of particle diameter of the conductive particles is 50% is not less than 30% at 20° C.
    Type: Application
    Filed: September 28, 2007
    Publication date: April 3, 2008
    Applicant: NISSHINBO INDUSTRIES, INC.
    Inventors: Toshifumi HASHIBA, Kazutoshi HAYAKAWA, Satomi KUDO, Kohei MORIYAMA, Tsuyoshi FUJII