Patents by Inventor Yoshiaki Honda

Yoshiaki Honda 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: 6753196
    Abstract: An electron source 10 has an n-type silicon substrate 1, a drift layer 6 formed on one surface of the substrate 1, and a surface electrode 7 formed on the drift layer 6. A voltage is applied so that the surface electrode 7 becomes positive in polarity relevant to the substrate 1, whereby electrons injected from the substrate 1 into the drift layer 6 drift within the drift layer 6, and are emitted through the surface electrode 7. In a process for manufacturing this electron source 10, when the drift layer 6 is formed, a porous semiconductor layer containing a semiconductor nanocrystal is formed in accordance with anodic oxidation. Then, an insulating film is formed on the surface of each semiconductor nanocrystal. Anodic oxidation is carried out while emitting light that essentially contains a wavelength in a visible light region relevant to the semiconductor layer.
    Type: Grant
    Filed: June 25, 2002
    Date of Patent: June 22, 2004
    Assignee: Matsushita Electric Works, Ltd.
    Inventors: Takuya Komoda, Tsutomu Ichihara, Koichi Aizawa, Yoshiaki Honda, Yoshifumi Watabe, Takashi Hatai, Toru Baba
  • Patent number: 6720717
    Abstract: A lower electrode (2) and surface electrode (7) composed of a layer-structured conductive carbide layer is formed on one principal surface side of the substrate (1) composed of an insulative substrate such as a glass or ceramic substrate. A non-doped polycrystalline silicon layer (3) is formed on the lower electrode (2). An electron transit layer (6) composed of an oxidized porous polycrystalline silicon is formed on the polycrystalline silicon layer (3). The electron transit layer (6) is composed of a composite nanocrystal layer including polycrystalline silicon and many nanocrystalline silicons residing adjacent to a grain boundary of the polycrystalline silicon. When voltage is applied between the lower electrode (2) and the surface electrode (7) such that the surface electrode (7) has a higher potential, electrons are injected from the lower electrode (2) toward the surface electrode (7), and emitted through the surface electrode (7) through the electron transit layer (6).
    Type: Grant
    Filed: September 24, 2002
    Date of Patent: April 13, 2004
    Assignee: Matsushita Electric Works, Ltd.
    Inventors: Takuya Komoda, Yoshiyuki Takegawa, Koichi Aizawa, Takashi Hatai, Tsutomu Ichihara, Yoshiaki Honda, Yoshifumi Watabe, Toru Baba
  • Patent number: 6707061
    Abstract: In a field emission-type electron source (10), lower electrodes (8) made of an electroconductive layer, a strong field drift layer (6) including drift portions (6a) made of an oxidized or nitrided porous semiconductor, and surface electrodes (7) made of a metal layer are provided on an upper side of a dielectric substrate (11) made of glass. When voltage is applied to cause the surface electrodes (7) to be anodic with respect to the lower electrodes (8), electrons injected from the lower electrodes (8) to the strong field drift layer (6) are led to drift through the strong field drift layer (6) and are emitted outside through the surface electrodes (7). A pn-junction semiconductor layer composed of an n-layer (21) and a p-layer (22) is provided between the lower electrode (8) and the strong field drift layer (6) to prevent a leakage current from flowing to the surface electrode (7) from the lower electrode (8), thereby reducing amount of power consumption.
    Type: Grant
    Filed: July 22, 2002
    Date of Patent: March 16, 2004
    Assignee: Matsushita Electric Works, Ltd.
    Inventors: Takuya Komoda, Yoshiaki Honda, Koichi Aizawa, Tsutomu Ichihara, Yoshifumi Watabe, Takashi Hatai, Toru Baba
  • Publication number: 20030182520
    Abstract: A control system comprises multiple memories consuming different current amounts for operation, wherein multiple programs corresponding to different functions are stored in the memories, wherein, in accordance with a function to be processed by an operating circuit, one of the programs is read from one of the memories and is processed, and wherein, from a specific memory for which the current consumed during an operation is equal to or smaller than a predetermined amount, the operating circuit reads and executes one of the programs that performs a function for which an operating time period is equal to or greater than a predetermined value.
    Type: Application
    Filed: March 7, 2003
    Publication date: September 25, 2003
    Inventors: Takanobu Tsunemiya, Masanori Ohtsuka, Koji Ohshima, Yasuhiro Harada, Yoshiaki Honda
  • Patent number: 6586853
    Abstract: Since a structure of a cooling fan of an alternative current generator for a vehicle is formed with a resin molding product having an insert metal fitting, a freedom degree on said fan design shape configuration and said installation performance of said fan to a core can be compatible. A cooling fan structure having a high shape configuration design freedom degree and having an installation strength similar to that of said fan according to said prior art can be obtained.
    Type: Grant
    Filed: January 31, 2001
    Date of Patent: July 1, 2003
    Assignee: Hitachi, Ltd.
    Inventors: Sakae Ishida, Susumu Sasaki, Yoshiaki Honda
  • Patent number: 6583578
    Abstract: An electron source (10) is provided with an n-type silicon substrate (1) as a conductive substrate, a drift layer (6) composed of oxidized porous polycrystalline silicon which is formed on the main surface of the silicon substrate (1), and a surface electrode (7) as a conductive thin film formed on the drift layer (6). The process for, forming the surface electrode (7) includes the steps of forming a first layer composed of Cr on the drift layer (6), forming a second layer composed of Au on the first layer, and alloying the two layers. The surface electrode (7) has higher adhesion for the drift layer 6 and/or stability for the lapse of time. In addition, the surface electrode (7) has lower density of states in an energy region near energy of emitted electrons, in comparison with the simple substance of Cr. In the surface electrode (7), scattering of the electrons is less so that electron emitting efficiency is higher.
    Type: Grant
    Filed: October 17, 2000
    Date of Patent: June 24, 2003
    Assignee: Matsushita Electric Works, Ltd.
    Inventors: Tsutomu Ichihara, Takuya Komoda, Koichi Aizawa, Yoshiaki Honda, Yoshifumi Watabe, Takashi Hatai
  • Publication number: 20030102793
    Abstract: In a field emission-type electron source (10), a strong field drift layer (6) and a surface electrode (7) consisting of a gold thin film are provided on an n-type silicon substrate (1). An ohmic electrode (2) is provided on the back surface of the n-type silicon substrate (1). A direct current voltage is applied so that the surface electrode (7) becomes positive in potential relevant to the ohmic electrode (2). In this manner, electrons injected from the ohmic electrode (2) into the strong field drift layer (6) via the n-type silicon substrate (6) drift in the strong field drift layer (6), and is emitted to the outside via the surface electrode (7).
    Type: Application
    Filed: November 5, 2002
    Publication date: June 5, 2003
    Inventors: Takuya Komoda, Koichi Aizawa, Yoshiaki Honda, Tsutomu Ichihara, Yoshifumi Watabe, Takashi Hatai, Toru Baba, Yoshiyuki Takegawa
  • Publication number: 20030090211
    Abstract: An electron source (10) has an electron source element (10a) including a lower electrode (12), a drift layer (6) and a surface electrode (7). The drift layer (6) is interposed between the lower electrode (12) and the surface electrode (7). When a certain voltage is applied between the surface electrode (7) and the lower electrode (12) such that the surface electrode (7) has a higher potential than that of the lower electrode (12), a resultingly induced electric field allows electrons to pass through the drift layer (6) and then the electrons are emitted through the surface electrode (7). When a forward-bias voltage is applied between the surface electrode (7) and the lower electrode (12), a reverse-bias voltage is applied after the forward-bias voltage has been applied to release out of the drift layer (6) an electron captured by a trap (9) in the drift layer (6).
    Type: Application
    Filed: October 28, 2002
    Publication date: May 15, 2003
    Applicant: MATSUSHITA ELECTRIC WORKS, LTD.
    Inventors: Takuya Komoda, Tsutomu Ichihara, Koichi Aizawa, Yoshiaki Honda, Yoshifumi Watabe, Takashi Hatai, Yoshiyuki Takegawa, Toru Baba
  • Publication number: 20030076023
    Abstract: A lower electrode (2) and surface electrode (7) composed of a layer-structured conductive carbide layer is formed on one principal surface side of the substrate (1) composed of an insulative substrate such as a glass or ceramic substrate. A non-doped polycrystalline silicon layer (3) is formed on the lower electrode (2), An electron transit layer (6) composed of an oxidized porous polycrystalline silicon is formed on the polycrystalline silicon layer (3). The electron transit layer (6) is composed of a composite nanocrystal layer including polycrystalline silicon and many nanocrystalline silicons residing adjacent to a grain boundary of the polycrystalline silicon. When voltage is applied between the lower electrode (2) and the surface electrode (7) such that the surface electrode (7) has a higher potential, electrons are injected from the lower electrode (2) toward the surface electrode (7), and emitted through the surface electrode (7) through the electron transit layer (6).
    Type: Application
    Filed: September 24, 2002
    Publication date: April 24, 2003
    Applicant: Matsushita Electric Works, Ltd.
    Inventors: Takuya Komoda, Yoshiyuki Takegawa, Koichi Aizawa, Takashi Hatai, Tsutomu Ichihara, Yoshiaki Honda, Yoshifumi Watabe, Toru Baba
  • Publication number: 20030025510
    Abstract: This invention relates to a strobe charge apparatus for charging a capacitor using a flyback transformer.
    Type: Application
    Filed: July 29, 2002
    Publication date: February 6, 2003
    Inventors: Shoji Ichimasa, Yoshiaki Honda
  • Patent number: 6516153
    Abstract: A capacitor charging apparatus includes a DC/DC converter for stepping up the voltage of a battery and charging the capacitor; a detection circuit that determines whether a primary current of the DC/DC converter reaches a predetermined limit current; a control circuit that controls the DC/DC converter according to a detection signal received from the detection circuit; and a battery-information detection circuit that detects battery information of the battery. The control circuit performs a predetermined calculation using the battery information received from the battery-information detection circuit to determine the predetermined limit current and to vary the primary current of the DC/DC converter so as to control the DC/DC converter each time the capacitor is charged by the DC/DC converter.
    Type: Grant
    Filed: November 15, 2001
    Date of Patent: February 4, 2003
    Assignee: Canon Kabushiki Kaisha
    Inventors: Yoshiaki Honda, Yukio Odaka
  • Publication number: 20030020059
    Abstract: In a field emission-type electron source (10), lower electrodes (8) made of an electroconductive layer, a strong field drift layer (6) including drift portions (6a) made of an oxidized or nitrided porous semiconductor, and surface electrodes (7) made of a metal layer are provided on an upper side of a dielectric substrate (11) made of glass. When voltage is applied to cause the surface electrodes (7) to be anodic with respect to the lower electrodes (8), electrons injected from the lower electrodes (8) to the strong field drift layer (6) are led to drift through the strong field drift layer (6) and are emitted outside through the surface electrodes (7). A pn-junction semiconductor layer composed of an n-layer (21) and a p-layer (22) is provided between the lower electrode (8) and the strong field drift layer (6) to prevent a leakage current from flowing to the surface electrode (7) from the lower electrode (8), thereby reducing amount of power consumption.
    Type: Application
    Filed: July 22, 2002
    Publication date: January 30, 2003
    Inventors: Takuya Komoda, Yoshiaki Honda, Koichi Aizawa, Tsutomu Ichihara, Yoshifumi Watabe, Takashi Hatai, Toru Baba
  • Publication number: 20030013215
    Abstract: An electron source 10 has an n-type silicon substrate 1, a drift layer 6 formed on one surface of the substrate 1, and a surface electrode 7 formed on the drift layer 6. A voltage is applied so that the surface electrode 7 becomes positive in polarity relevant to the substrate 1, whereby electrons injected from the substrate 1 into the drift layer 6 drift within the drift layer 6, and are emitted through the surface electrode 7. In a process for manufacturing this electron source 10, when the drift layer 6 is formed, a porous semiconductor layer containing a semiconductor nanocrystal is formed in accordance with anodic oxidation. Then, an insulating film is formed on the surface of each semiconductor nanocrystal. Anodic oxidation is carried out while emitting light that essentially contains a wavelength in a visible light region relevant to the semiconductor layer.
    Type: Application
    Filed: June 25, 2002
    Publication date: January 16, 2003
    Applicant: Matsushita Electric Works, Ltd.
    Inventors: Takuya Komoda, Tsutomu Ichihara, Koichi Aizawa, Yoshiaki Honda, Yoshifumi Watabe, Takashi Hatai, Toru Baba
  • Patent number: 6498426
    Abstract: A field emission-type electron source (10) is provided with a conductive substrate (1), a semiconductor layer formed on a surface of the conductive substrate (1), at least a part of the semiconductor layer being made porous, and a conductive thin film (7) formed on the semiconductor layer. Electrons injected into the conductive substrate (1) are emitted from the conductive thin film (7) through the semiconductor layer by applying a voltage between the conductive thin film (7) and the conductive substrate (1) in such a manner that the conductive thin film (7) acts as a positive electrode against the conductive substrate (1). The semiconductor layer includes a porous semiconductor layer (6) in which columnar structures (21) and porous structures (25) composed of fine semiconductor crystals of nanometer scale coexist, a surface of each of the structures being covered with an insulating film (22,24).
    Type: Grant
    Filed: April 21, 2000
    Date of Patent: December 24, 2002
    Assignee: Matsushita Electric Works, Ltd.
    Inventors: Yoshifumi Watabe, Yukihiro Kondo, Koichi Aizawa, Takuya Komoda, Yoshiaki Honda, Takashi Hatai, Tsutomu Ichihara, Nobuyoshi Koshida
  • Patent number: 6486634
    Abstract: To provide a vehicular charging and generating system capable of issuing alarm to a driver even when failure is caused in a rectifying apparatus of the vehicular charging and generating system, failure detecting means issues alarm when a difference between an output voltage of generated voltage detecting means and an output voltage of average phase voltage detecting means is higher than first difference voltage set when failure is not caused in a rectifying element or when the difference is lower than second difference voltage set when failure is not caused in the rectifying element.
    Type: Grant
    Filed: February 23, 2001
    Date of Patent: November 26, 2002
    Assignees: Hitachi, Ltd., Hitachi Car Engineering Co., Ltd.
    Inventors: Shuuichi Kokubun, Sakae Hikita, Shouju Masumoto, Yoshiaki Honda
  • Publication number: 20020117935
    Abstract: In order to provide a small sized, high speed rotation and high output vehicle use AC generation system, a vehicle use AC generator and a vehicle use AC generator use drive force transmission system which enhances output in a broad range from a low speed to a high speed, in a vehicle use AC generation system including a vehicle use AC generator coupled to a crank pulley shaft of an engine via a pulley, the vehicle use AC generator being provided with a rotor having magnetic poles and a field winding for magnetizing the magnetic poles, a stator which is disposed being spaced apart with a predetermined gap with respect to the rotor and has a stator winding for generating an AC voltage through magnetization of the magnetic poles, a first shaft to which the pulley is provided and a second shaft integral with the rotor, wherein the first shaft is disposed within the side face of the vehicle use AC generator and at a equivalent position with respect to the second shaft when seen from the crank pulley shaft or rathe
    Type: Application
    Filed: September 17, 2001
    Publication date: August 29, 2002
    Inventors: Hiroshi Kanazawa, Kazuo Tahara, Yoshiaki Honda, Masami Takano, Hiromitsu Seino, Naoyuki Tanaka
  • Publication number: 20020057909
    Abstract: A capacitor charging apparatus includes a DC/DC converter for stepping up the voltage of a battery and charging the capacitor; a detection circuit that determines whether a primary current of the DC/DC converter reaches a predetermined limit current; a control circuit that controls the DC/DC converter according to a detection signal received from the detection circuit; and a battery-information detection circuit that detects battery information of the battery. The control circuit performs a predetermined calculation using the battery information received from the battery-information detection circuit to determine the predetermined limit current and to vary the primary current of the DC/DC converter so as to control the DC/DC converter each time the capacitor is charged by the DC/DC converter.
    Type: Application
    Filed: November 15, 2001
    Publication date: May 16, 2002
    Inventors: Yoshiaki Honda, Yukio Odaka
  • Patent number: 6285118
    Abstract: A field emission type electron source 10 is provided with an n-type silicon substrate 1, a strong field drift layer 6 formed on the n-type silicon substrate 1 directly or inserting a polycrystalline silicon layer 3 therebetween, and an electrically conductive thin film 7, which is a thin gold film, formed on the strong field drift layer 6. Further, an ohmic electrode 2 is provided on the back surface of the n-type silicon substrate 1. Hereupon, electrons, which are injected from the n-type silicon substrate 1 into the strong field drift layer 6, drift in the strong field drift layer 6 toward the surface of the layer, and then pass through the electrically conductive thin film 7 to be emitted outward. The strong field drift layer 6 is formed by making the polycrystalline silicon 3 formed on the n-type silicon substrate 1 porous by means of an anodic oxidation, and further oxidizing it using dilute nitric acid or the like.
    Type: Grant
    Filed: November 15, 1999
    Date of Patent: September 4, 2001
    Assignee: Matsushita Electric Works, Ltd.
    Inventors: Takashi Hatai, Takuya Komoda, Yoshiaki Honda, Koichi Aizawa, Yoshifumi Watabe, Tsutomu Ichihara, Yukihiro Kondo, Nobuyoshi Koshida
  • Publication number: 20010017530
    Abstract: To provide a vehicular charging and generating system capable of issuing alarm to a driver even when failure is caused in a rectifying apparatus of the vehicular charging and generating system, failure detecting means issues alarm when a difference between an output voltage of generated voltage detecting means and an output voltage of average phase voltage detecting means is higher than first difference voltage set when failure is not caused in a rectifying element or when the difference is lower than second difference voltage set when failure is not caused in the rectifying element.
    Type: Application
    Filed: February 23, 2001
    Publication date: August 30, 2001
    Applicant: Hitachi, Ltd.
    Inventors: Shuuichi Kokubun, Sakae Hikita, Shouju Masumoto, Yoshiaki Honda
  • Publication number: 20010017500
    Abstract: To reduce noise, there is provided an alternator for motor vehicles having a rotor and a stator which is mounted between a pair of brackets. In the alternator a stator core forming the stator is made up of laminations of thin sheets. And at least a part of the thin sheets making up the stator core are split into four divisions or more in the circumferential direction; the thin sheets of each layer being laid with splits thereof arranged alternately in the circumferential direction.
    Type: Application
    Filed: February 26, 2001
    Publication date: August 30, 2001
    Applicant: Hitachi, Ltd.
    Inventors: Makoto Hirama, Eiji Naito, Sakae Ishida, Susumu Sasaki, Kenichiro Matsubara, Shinji Yamazaki, Susumu Tajima, Yoshiaki Honda