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    • 47. 发明申请
    • Electric power steering unit and controller thereof
    • 电动助力转向装置及其控制器
    • US20070007070A1
    • 2007-01-11
    • US11448872
    • 2006-06-08
    • Takeshi SakataNobuyuki KobayashiHisayoshi Koiwai
    • Takeshi SakataNobuyuki KobayashiHisayoshi Koiwai
    • B62D5/04
    • H01R4/34B62D5/0403
    • An electric power steering unit includes: a controller 4 for controlling a drive of an electric motor 16; and a terminal base 4B, which is provided in the controller 4, which constitutes a signal terminal of the controller 4, wherein the terminal base 4B fastens a terminal by means of fastening with a bolt. Terminals of pieces of harness 16A to 16C extending from the electric motor 16 are fastened to output terminals 23A to 23C on the terminal base 4B by means of fastening bolts. The electric power steering unit more preferably includes: a contact resistance detection member (35, 36, 37) for detecting a contact resistance between each output terminal 23A to 23C and each terminal TN of the harness 16A to 16C; and an electric current control member (21, 22) for controlling a drive current supplied to the electric motor 16 with detection information obtained by this detection member.
    • 电动助力转向装置包括:控制电动机16的驱动的控制器4; 以及设置在控制器4中的终端基座4B,其构成控制器4的信号端子,其中终端基座4B通过用螺栓的紧固来固定终端。 从电动马达16延伸的线束16A至16C的端子通过紧固螺栓紧固到端子基座4B上的输出端子23A至23C。 电动动力转向装置更优选地包括:用于检测每个输出端子23A至23C与线束16A至16C的每个端子TN之间的接触电阻的接触电阻检测部件(35,36,37); 以及电流控制部件(21,22),用于通过由该检测部件获得的检测信息来控制供给电动机16的驱动电流。
    • 49. 发明申请
    • Solid electrolytic capacitor and method of manufacturing the same
    • 固体电解电容器及其制造方法
    • US20060084237A1
    • 2006-04-20
    • US11248201
    • 2005-10-13
    • Nobuyuki Kobayashi
    • Nobuyuki Kobayashi
    • H01L21/20
    • H01G9/028H01G9/15H01G11/56Y02E60/13
    • A solid electrolytic capacitor using a conductive polymer compound as a solid electrolyte includes an anode body, a dielectric oxide coating formed on a surface of the anode body, a first conductive polymer compound layer formed on a portion of the dielectric oxide coating, a silane coupling agent treatment layer formed at least on a portion of the dielectric oxide coating on which the first conductive polymer compound layer is not formed, and a second conductive polymer compound layer formed on the first conductive polymer compound layer and the silane coupling agent treatment layer. With this, a solid electrolytic capacitor having a high capacitance, a low ESR and high reliability and a method of manufacturing the solid electrolytic capacitor can be provided.
    • 使用导电性高分子化合物作为固体电解质的固体电解电容器包括阳极体,在阳极体的表面上形成的电介质氧化物涂层,形成在电介质氧化物涂层的一部分上的第一导电高分子化合物层,硅烷偶联体 至少在不形成有第一导电性高分子化合物层的电介质氧化物被膜上形成的第一导电性高分子化合物层和形成在第一导电性高分子化合物层和硅烷偶联剂处理层上的第二导电性高分子化合物层。 因此,可以提供具有高电容,低ESR和高可靠性的固体电解电容器和制造固体电解电容器的方法。
    • 50. 发明授权
    • Uninterruptible power supply system
    • 不间断电源系统
    • US07019989B2
    • 2006-03-28
    • US10787545
    • 2004-02-26
    • Nobuyuki KobayashiHirokazu Tokuda
    • Nobuyuki KobayashiHirokazu Tokuda
    • H02M5/45H02J7/00
    • H02J9/062H02J2009/068Y10T307/625
    • An uninterruptible power supply system prevents an output voltage from dropping due to an operation delay of a relay for isolating an alternating-current power source side and avoids an unexpected current flowing between the alternating-current power source side and the uninterruptible power supply system side. When short circuit occurs, a parallel converter connected in parallel to input terminals connected to an alternating-current power source is made to operate so that the output voltage thereof becomes “0” or the input voltage Vin and a series inverter connected in series between an input relay and one of output terminals is made to carry out a compensating operation with a smoothing capacitor taken as a power source so that a value of an applied voltage to the output terminals becomes an output voltage command value Vout*. This makes the output voltage of the parallel converter become “0” or Vin to produce no electric potential difference between the alternating-current power source side and the output side of the parallel converter. Therefore, no current flows between the alternating-current power source side and the parallel converter, and a value of an applied voltage to the output terminals is to be continuously maintained at the output voltage command value Vout* by the series inverter.
    • 不间断电源系统防止由于用于隔离交流电源侧的继电器的操作延迟而导致的输出电压下降,并且避免了在交流电源侧和不间断电源系统侧之间流出的意外电流。 当发生短路时,并联连接到连接到交流电源的输入端的并联转换器的输出电压变为“0”,或者输入电压Vin和串联逆变器串联连接在一个 输入继电器和一个输出端子用作为电源的平滑电容器执行补偿操作,使得对输出端子的施加电压的值变为输出电压指令值Vout *。 这使得并联变换器的输出电压变为“0”或Vin,从而在并联转换器的交流电源侧和输出侧之间不产生电位差。 因此,不会在交流电源侧和并联变换器之间流过电流,并且通过串联逆变器将连续输出端子的施加电压值保持在输出电压指令值Vout *。