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    • 51. 发明申请
    • Voltage Generating Circuit
    • 电压发生电路
    • US20080130337A1
    • 2008-06-05
    • US11866257
    • 2007-10-02
    • Yukio Takahashi
    • Yukio Takahashi
    • H02M7/06
    • H02M1/4225Y02B70/126
    • A voltage generating circuit for generating a DC voltage at both ends of a series capacitor based on an AC voltage generated from an AC power supply with one end thereof connected to a coil, the series capacitor including a first capacitor and a second capacitor with a series connecting point thereof connected to the other end of the AC power supply, the voltage generating circuit comprising: a first transistor connected to the one end of the AC power supply via the coil; a second transistor connected to the other end of the AC power supply; a first diode connected in parallel to the second transistor in a reverse direction, and in series to the first transistor in a forward direction; a second diode connected in parallel to the first transistor in a reverse direction, and in series to the second transistor in a forward direction; a third diode connected between the one end of the AC power supply via the coil and one end of the series capacitor, in a forward direction from the AC power supply to the one end of the series capacitor; and a fourth diode connected between the one end of the AC power supply via the coil and the other end of the series capacitor, in a reverse direction from the AC power supply to the other end of the series capacitor.
    • 一种电压发生电路,用于根据从一端连接到线圈的交流电源产生的交流电压产生串联电容器的两端的直流电压,所述串联电容器包括第一电容器和第二电容器, 连接点连接到交流电源的另一端,电压产生电路包括:第一晶体管,经由线圈连接到交流电源的一端; 连接到所述交流电源的另一端的第二晶体管; 第一二极管,反向并联连接到第二晶体管,并沿正向串联到第一晶体管; 第二二极管,反向并联连接到第一晶体管,并沿正向串联到第二晶体管; 经由线圈和串联电容器的一端在AC电源的一端之间从AC电源向串联电容器的一端连接的第三二极管; 以及连接在AC电源的一端经由线圈和串联电容器的另一端之间的第四二极管,从AC电源到串联电容器的另一端的相反方向。
    • 58. 发明授权
    • Variable capacity supercharger
    • 可变容量增压器
    • US06312217B1
    • 2001-11-06
    • US09524382
    • 2000-03-13
    • Yukio Takahashi
    • Yukio Takahashi
    • F01D1712
    • F02C6/12F01D17/165
    • A plurality of mounting holes 28 are bored in gas discharge channel 9a of turbine shroud 9 disposed on the inner periphery of turbine housing 1 on the opposite side to bearing housing. Screw holes 29 are constructed corresponding to mounting holes 28, in annular holder 12a formed in cover 12 so that gas discharge channel 9a can be inserted. Screw holes 29 are slightly offset from mounting holes 28 in the gas discharging direction. Stopping screws 30 with taper pins 30a tapered at tips thereof are screwed into screw holes 29, thereby taper pins 30a are inserted into mounting holes 28. Thus, the effects of thermal deformation of the turbine housing are prevented from directly acting on the turbine shroud.
    • 多个安装孔28在与轴承壳体相对的一侧设置在涡轮壳体1的内周上的涡轮机罩9的气体排出通道9a中钻孔。 螺钉孔29相应于形成在盖12中的环形保持件12a中的安装孔28构成,从而可以插入气体排出通道9a。 螺杆孔29在气体排出方向上稍微偏离安装孔28。 具有在其尖端处锥形的锥形销30a的止动螺钉30被拧入螺钉孔29中,从而锥形销30a插入到安装孔28中。因此,防止涡轮机壳体的热变形的影响直接作用在涡轮机外罩上。