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    • 3. 发明授权
    • Fluid ejection device and method to control fluid ejection device
    • 流体喷射装置和控制流体喷射装置的方法
    • US09005226B2
    • 2015-04-14
    • US12854698
    • 2010-08-11
    • Takahiro MatsuzakiHideki KojimaShigeo Sugimura
    • Takahiro MatsuzakiHideki KojimaShigeo Sugimura
    • A61B17/3203A61B17/00
    • A61B17/3203A61B2017/00154
    • A fluid ejection device includes a pulsating flow generation section adapted to eject a fluid in a pulsed manner; a fluid supply section adapted to supply the pulsating flow generation section with the fluid; a fluid supply tube having flexibility adapted to communicate the pulsating flow generation section and the fluid supply section with each other; and a drive control section adapted to perform drive control of the pulsating flow generation section and the fluid supply section, wherein the drive control section starts up the pulsating flow generation section, makes the fluid supply section supply the fluid at a first flow rate for a predetermined time period, and then makes the fluid supply section supply the fluid at a second flow rate lower than the first flow rate after the predetermined time period elapses.
    • 流体喷射装置包括适于以脉冲方式喷射流体的脉动流产生部分; 流体供应部分,适于向脉动流产生部分提供流体; 具有适于将脉动流产生部和流体供给部彼此连通的柔性的流体供给管; 以及驱动控制部,其适于对所述脉动流产生部和所述流体供给部进行驱动控制,其中,所述驱动控制部启动所述脉动流生成部,使所述流体供给部以第一流量供给所述流体, 预定时间段,然后使流体供应部分在经过预定时间段之后以比第一流量低的第二流量供应流体。
    • 5. 发明授权
    • Fluid injection device
    • 流体注射装置
    • US08857734B2
    • 2014-10-14
    • US13039042
    • 2011-03-02
    • Hideki Kojima
    • Hideki Kojima
    • B05B1/08A61B17/3203
    • A61B17/3203A61B2217/005B05B1/08B05B14/30
    • A fluid injection device includes: a pulse generator which converts fluid into pulse flow; a suction pipe projecting from the pulse generator; an injection pipe which is eccentrically inserted into the suction pipe such that the outer circumferential surface of the injection pipe contacts the inner circumferential surface of the suction pipe, and has an injection opening communicating with the pulse generator; and a suction channel and a suction opening formed between the inner circumferential surface of the suction pipe and the outer circumferential surface of the injection pipe, wherein the injection pipe is fixed to the inner circumferential surface of the suction pipe in the vicinity of the injection opening.
    • 流体注射装置包括:脉冲发生器,其将流体转换成脉冲流; 从脉冲发生器突出的吸管; 喷射管,其被偏心地插入到吸入管中,使得喷射管的外周面与吸入管的内周面接触,并且具有与脉冲发生器连通的喷射开口; 以及形成在吸入管的内周面和喷射管的外周面之间的吸入通道和吸入口,其中,喷射管在喷射口附近固定在吸入管的内周面上 。
    • 7. 发明授权
    • Core for coil device such as power transformers, choke coils used in
switching power supply
    • 线圈装置的核心,如电力变压器,扼流圈用于开关电源
    • US5440225A
    • 1995-08-08
    • US21867
    • 1993-02-24
    • Hideki Kojima
    • Hideki Kojima
    • H01F3/14H01F27/24H01F30/00H01F38/24
    • H01F3/14H01F27/24
    • The invention pertains to a core for a coil device of a switching power supply which can avoid accidental breakage of the portion where the core cross-sectional area narrows. When one core segment is rotated 180 degrees about its center axis in the long direction of one leg 2, the projection 51 of one core segment 1A and the projection 52 of another core segment 1B, and the indentation 61 of the one core segment 1A and the indentation 62 of the other core segment 1B are aligned so as to mutually overlap. The characteristics of a coil device can be controlled by the contacting surface areas of both core segment projections or by spacing between the projections. Since the cross-sectional area of each core projection can be made wider, accidental breakage of the core projection does not occur easily.
    • 本发明涉及开关电源的线圈装置的芯体,其可以避免芯部横截面积变窄的部分的意外断裂。 当一个芯段在一个支脚2的长方向上绕其中心轴线旋转180度时,一个芯段1A的突起51和另一个芯段1B的突起52以及一个芯段1A的凹陷61和一个芯段1A的凹陷61 另一个芯片段1B的凹口62被对准以便相互重叠。 线圈装置的特征可以通过两个芯段突起的接触表面区域或突起之间的间隔来控制。 由于可以使每个芯体突起的横截面积更宽,因此不容易发生芯体突起的意外断裂。
    • 8. 发明授权
    • Fluid injection device and medical instrument including fluid injection device
    • 流体注射装置和包括流体注射装置在内的医疗器械
    • US08382702B2
    • 2013-02-26
    • US13209543
    • 2011-08-15
    • Kazuaki UchidaHideki KojimaAtsuya Hirabayashi
    • Kazuaki UchidaHideki KojimaAtsuya Hirabayashi
    • A61M31/00A61M1/00A61M5/00
    • A61B17/3203A61B2017/00185A61B2017/0019A61M5/168A61M5/30F04B43/04
    • Fluid is pressurized and supplied to a fluid chamber with a fluid pressurizing and supplying unit. The pressurized fluid within the fluid chamber is ejected through an injection nozzle by reduction of the volume of the fluid chamber caused by applying a driving voltage to a volume varying unit. In applying the driving voltage to the volume varying unit, the effect imposed on fluid injection by pressure fluctuations of the fluid pressurized and supplied to the fluid chamber is compensated by changing the voltage waveform of the driving voltage. When the pressure of the supply flow amount is decreased to a pressure lower than a predetermined pressure, the time intervals of the driving waveform are corrected. The maneuverability of a fluid injection device does not deteriorate even when the pressure of the fluid pressurized and supplied to the fluid chamber fluctuates.
    • 流体被加压并且被供应到具有流体加压和供应单元的流体室。 流体室内的加压流体通过减小通过向体积变化单元施加驱动电压而导致的流体室的体积而通过注射喷嘴喷射。 在将驱动电压施加到体积变化单元时,通过改变驱动电压的电压波形来补偿通过加压和供应到流体室的流体的压力波动对流体注入的影响。 当供给流量的压力降低到低于预定压力的压力时,校正驱动波形的时间间隔。 即使加压并供应到流体室的流体的压力波动,流体注入装置的机动性也不会劣化。