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    • 1. 发明申请
    • FLUID EJECTING APPARATUS AND METHOD FOR TRANSPORTING FLUID
    • 流体喷射装置和运输流体的方法
    • US20090009544A1
    • 2009-01-08
    • US12167448
    • 2008-07-03
    • Toshio KumagaiJun Shimazaki
    • Toshio KumagaiJun Shimazaki
    • B41J29/38
    • B41J2/175B41J2/14274B41J2/17509B41J2/17566B41J2/17596B41J2002/14467B41J2202/20
    • A fluid ejecting apparatus including a head that ejects fluid, a first fluid storing section for storing the fluid that is located below the head, a second fluid storing section for storing the liquid that is located above the first fluid storing section, a pumping mechanism capable of moving the fluid from the first fluid storing section to the second fluid storing section through the head, and a controller that alternates between a first control mode wherein the pumping mechanism moves the fluid from the first fluid storing section to the second fluid storing section and a second control mode in which the fluid is allowed to flow from the second fluid storing section to the first fluid storing section through the head. Upon receiving an instruction to turn off the power, the controller shifts to the second control mode and then turns off the power.
    • 一种流体喷射装置,包括喷射流体的头部,用于存储位于头部下方的流体的第一流体存储部分,用于存储位于第一流体存储部分上方的液体的第二流体存储部分, 通过头部将流体从第一流体存储部分移动到第二流体存储部分;以及控制器,其在第一控制模式之间交替,其中泵送机构将流体从第一流体存储部分移动到第二流体存储部分, 第二控制模式,其中允许流体通过头部从第二流体存储部分流动到第一流体存储部。 当接收到关闭电源的指令时,控制器转移到第二控制模式,然后关闭电源。
    • 2. 发明授权
    • Fluid ejecting apparatus and method for transporting fluid
    • 用于输送流体的流体喷射装置和方法
    • US08141993B2
    • 2012-03-27
    • US12167448
    • 2008-07-03
    • Toshio KumagaiJun Shimazaki
    • Toshio KumagaiJun Shimazaki
    • B41J2/175B41J2/05B41J2/18
    • B41J2/175B41J2/14274B41J2/17509B41J2/17566B41J2/17596B41J2002/14467B41J2202/20
    • A fluid ejecting apparatus including a head that ejects fluid, a first fluid storing section for storing the fluid that is located below the head, a second fluid storing section for storing the liquid that is located above the first fluid storing section, a pumping mechanism capable of moving the fluid from the first fluid storing section to the second fluid storing section through the head, and a controller that alternates between a first control mode wherein the pumping mechanism moves the fluid from the first fluid storing section to the second fluid storing section and a second control mode in which the fluid is allowed to flow from the second fluid storing section to the first fluid storing section through the head. Upon receiving an instruction to turn off the power, the controller shifts to the second control mode and then turns off the power.
    • 一种流体喷射装置,包括喷射流体的头部,用于存储位于头部下方的流体的第一流体存储部分,用于存储位于第一流体存储部分上方的液体的第二流体存储部分, 通过头部将流体从第一流体存储部分移动到第二流体存储部分;以及控制器,其在第一控制模式之间交替,其中泵送机构将流体从第一流体存储部分移动到第二流体存储部分, 第二控制模式,其中允许流体通过头部从第二流体存储部分流动到第一流体存储部。 当接收到关闭电源的指令时,控制器转移到第二控制模式,然后关闭电源。
    • 6. 发明授权
    • Electrode container box, printing device and nozzle inspection method
    • 电极集装箱,印刷装置和喷嘴检查方法
    • US07753468B2
    • 2010-07-13
    • US11606923
    • 2006-12-01
    • Hironori EndoJun Shimazaki
    • Hironori EndoJun Shimazaki
    • B41J29/393
    • B41J2/16579
    • A cap 41 is used for nozzle inspections for clogging on the basis of a waveform of an output signal at a print head 24 when, in a state in which a potential difference has been generated among the print head 24, a regulating member 143 that is the opposing electrode opposite to the print head 24, or an ink-absorbing member 142, an operation is performed of ejecting ink from the nozzles 23 of the print head 24 to an opposing electrode. The cap 41 comprises a box member 141 in which the regulating member 143 and the ink-absorbing member 142 are contained and an electrode pin 145 that penetrates the box member 141 in a liquid-tight manner, and that is electrically connected with the regulating member 143. Thus, even when ink accumulates in the box member 141 after a nozzle inspection for clogging has taken place, no ink will leak from the part that the electrode pin 145 penetrates.
    • 根据打印头24的输出信号的波形,在打印头24中产生电位差的状态,调节部件143为 与打印头24相对的相对电极或吸墨构件142执行从打印头24的喷嘴23向相对电极喷射墨的操作。 盖41包括容纳调节构件143和吸墨构件142的盒构件141和以液密方式贯穿盒构件141并与调节构件电连接的电极销145 因此,即使在发生堵塞的喷嘴检查发生之后,即使油墨积聚在箱体141中,也不会从电极销145穿透的部分漏出油墨。
    • 8. 发明授权
    • Liquid ejecting apparatus and method for flushing liquid ejecting apparatus
    • 液体喷射装置和冲洗液体喷射装置的方法
    • US07784899B2
    • 2010-08-31
    • US12021935
    • 2008-01-29
    • Jun Shimazaki
    • Jun Shimazaki
    • B41J2/175
    • B41J2/2142B41J2/165B41J2/2139
    • The invention provides a method for flushing a liquid ejecting apparatus by ejecting liquid from a nozzle of a liquid ejecting head toward a liquid catcher that is provided opposite to a nozzle opening surface of the liquid ejecting head. The method comprises applying an electric field between the nozzle opening surface and the liquid catcher, ejecting the liquid from the nozzle toward the liquid catcher, detecting a change in voltage that is attributable to electrostatic induction generated when the liquid is ejected toward the liquid catcher, and determining whether to continue or discontinue the ejection of the liquid based on the change in voltage.
    • 本发明提供一种通过从液体喷射头的喷嘴将液体喷射到与液体喷射头的喷嘴开口表面相对设置的液体捕集器来冲洗液体喷射装置的方法。 该方法包括在喷嘴开口表面和液体捕获器之间施加电场,将液体从喷嘴朝向液体捕获器喷射,检测当液体朝向液体捕获器喷射时产生的静电感应引起的电压变化, 以及基于电压的变化确定是否继续或中止液体的喷射。
    • 9. 发明申请
    • Electrode container box, printing device and nozzle inspection method
    • 电极集装箱,印刷装置和喷嘴检查方法
    • US20070134969A1
    • 2007-06-14
    • US11606923
    • 2006-12-01
    • Hironori EndoJun Shimazaki
    • Hironori EndoJun Shimazaki
    • H01R13/625
    • B41J2/16579
    • A cap 41 is used for nozzle inspections for clogging on the basis of a waveform of an output signal at a print head 24 when, in a state in which a potential difference has been generated among the print head 24, a regulating member 143 that is the opposing electrode opposite to the print head 24, or an ink-absorbing member 142, an operation is performed of ejecting ink from the nozzles 23 of the print head 24 to an opposing electrode. The cap 41 comprises a box member 141 in which the regulating member 143 and the ink-absorbing member 142 are contained and an electrode pin 145 that penetrates the box member 141 in a liquid-tight manner, and that is electrically connected with the regulating member 143. Thus, even when ink accumulates in the box member 141 after a nozzle inspection for clogging has taken place, no ink will leak from the part that the electrode pin 145 penetrates.
    • 根据打印头24的输出信号的波形,在打印头24中产生电位差的状态,调节部件143为 与打印头24相对的相对电极或吸墨构件142执行从打印头24的喷嘴23向相对电极喷射墨的操作。 盖41包括容纳调节构件143和吸墨构件142的盒构件141和以液密方式贯穿盒构件141并与调节构件电连接的电极销145 143。 因此,即使在发生堵塞喷嘴检查之后,即使油墨积聚在箱体141中,墨水也不会从电极销145穿透的部分泄漏。