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    • 1. 发明授权
    • Liquid injection device
    • 液体注射装置
    • US09528511B2
    • 2016-12-27
    • US13032483
    • 2011-02-22
    • Hideki Kojima
    • Hideki Kojima
    • A61B17/32F04B43/04A61B17/3203
    • F04B43/04A61B17/3203
    • A liquid injection device includes: a chamber to which the liquid to be injected is supplied and the injection nozzle is connected; a pump that pumps the liquid into the chamber; a volume varying unit that varies the volume of the chamber by being deformed according to a drive voltage applied thereto; and a drive voltage applying unit that applies the drive voltage having a predetermined voltage waveform to the volume varying unit in a state in which the liquid is supplied to the chamber, wherein the pump is a unit that pumps the liquid to the chamber in a state involving the pressure variations, and the drive voltage applying unit is a unit that applies the drive voltage to the volume varying unit while compensating the influence applied by the pressure variations of the pumped to the chamber on injection by varying the voltage waveform of the drive voltage.
    • 液体注入装置包括:供应待注射液体并连接注射喷嘴的腔室; 将液体泵入室内的泵; 体积变化单元,其通过根据施加到其上的驱动电压而变形来改变所述室的体积; 以及驱动电压施加单元,其在将液体供应到所述室的状态下将具有预定电压波形的驱动电压施加到所述体积变化单元,其中所述泵是在所述室中将所述液体泵送到所述室的单元 涉及压力变化,并且驱动电压施加单元是将驱动电压施加到体积变化单元的单元,同时通过改变驱动电压的电压波形来补偿由泵送到室内的泵的压力变化所施加的影响 。
    • 6. 发明授权
    • Power transmission transformer for noncontact power transfer device
    • 用于非接触式电力传输装置的变电变压器
    • US07999649B2
    • 2011-08-16
    • US12804882
    • 2010-08-02
    • Hideki Kojima
    • Hideki Kojima
    • H01F27/30H01F38/30H01F27/28
    • H01F38/14H01F5/02H01F17/0006H01F17/02H01F27/027H01F27/306H01F27/38H01F2005/043H02J5/005H02J50/10
    • The present invention provides a power transmission transformer of which workability in implementing and reliability of connection are considered in a noncontact power transfer device using individual self-oscillation circuits. The power transmission transformer for a noncontact power transfer device including a transmitting coil L1 and a drive coil L2 for self-oscillation on a power transmission device side includes a bobbin in which the transmitting coil and the drive coil L2 are disposed, in which the transmitting coil and the drive coil L2 are configured by an air-core coil using self-bonding wire, and the bobbin 1 includes a winder spindle 1a, 1b on both surfaces opposed to each other across a collar 2 formed of a flat plate, and a mating portion 3 for mating with an external portion in an end portion of the winder spindle 1b, and the drive coil L2 is mounted on the winder spindle 1b and the transmitting coil L1 is mounted on the other, opposed winder spindle 1a across the collar.
    • 本发明提供一种输电变压器,其在使用单独的自振荡电路的非接触式电力传输装置中考虑了其在连接的实现和可靠性方面的可操作性。 用于非接触式动力传递装置的动力传递变压器包括发射线圈L1和用于在动力传递装置一侧进行自振荡的驱动线圈L2的非接触式动力传递装置,其中设置有发射线圈和驱动线圈L2的线轴, 线圈和驱动线圈L2由使用自粘接线的空心线圈构成,线轴1包括在由平板形成的轴环2上彼此相对的两个表面上的卷绕轴1a,1b, 配合部分3用于与卷绕机心1b的端部中的外部部分配合,并且驱动线圈L2安装在卷绕轴1b上,并且传动线圈L1穿过套环安装在另一个相对的卷绕轴1a上。
    • 9. 发明申请
    • FLUID EJECTION DEVICE AND FLUID EJECTION METHOD
    • 流体喷射装置和流体喷射方法
    • US20100082054A1
    • 2010-04-01
    • US12568161
    • 2009-09-28
    • Takeshi SETOKazuo KAWASUMIYasuyoshi HAMAHideki KOJIMAYasuhiro ONO
    • Takeshi SETOKazuo KAWASUMIYasuyoshi HAMAHideki KOJIMAYasuhiro ONO
    • A61B17/32
    • A61B17/3203
    • A fluid ejection device includes: a fluid chamber in which fluid flows; a volume varying unit having a pressure generating element that varies the volume of the fluid chamber on the basis of a driving signal; an inlet fluid channel and an outlet fluid channel intercommunicating with the fluid chamber; a fluid channel pipe having a connection fluid channel that intercommunicates with the outlet fluid channel at a first end thereof and intercommunicates with a fluid ejection port at a second end thereof; a fluid supply unit that supplies fluid to the inlet fluid channel; and a controller that applies a driving signal to the pressure generating element and controls variation of the volume of the fluid chamber by the volume varying unit, wherein the controller applies a driving signal to the pressure generating element so that a maximum ejection velocity of fluid in liquid is larger than a maximum ejection velocity of fluid in the air.
    • 流体喷射装置包括:流体流动的流体室; 体积变化单元,具有根据驱动信号改变流体室的体积的压力产生元件; 入口流体通道和与流体室相通的出口流体通道; 流体通道管,其具有连接流体通道,其在其第一端处与出口流体通道相互连通,并在其第二端处与流体排出口相通; 流体供应单元,其将流体供应到入口流体通道; 以及控制器,其向所述压力产生元件施加驱动信号并且通过所述体积变化单元控制所述流体室的体积的变化,其中所述控制器向所述压力产生元件施加驱动信号,使得流体的最大喷射速度 液体大于空气中流体的最大喷射速度。