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    • 1. 发明授权
    • Fluid discharging apparatus and method of controlling the fluid discharging apparatus
    • 流体排放装置和控制流体排放装置的方法
    • US08147035B2
    • 2012-04-03
    • US12163820
    • 2008-06-27
    • Satoru HosonoNobuhito Takahashi
    • Satoru HosonoNobuhito Takahashi
    • B41J2/14
    • B41J2/155B41J2/16508
    • A fluid discharging apparatus including a head, a medium support portion, a contact member, and an actuator portion. The head includes a plurality of nozzles through which a fluid is discharged onto a target medium. The medium support portion supports the medium. The contact member is provided within the medium support portion. The actuator portion moves at least one of the head and the medium support portion so that the plurality of nozzles are located close to or far from the contact member. During a standby state when fluid is not discharged onto the medium, the contact member is brought into contact with the head in order to seal the plurality of nozzles, and in a discharging state, the head is located away from the contact member in order to provide a space through which the medium is allowed to pass between the plurality of nozzles and the contact member.
    • 一种流体排放装置,包括头部,介质支撑部分,接触部件和致动器部分。 头部包括多个喷嘴,流体被排出到目标介质上。 介质支撑部分支撑介质。 接触构件设置在介质支撑部分内。 致动器部分移动头部和中间支撑部分中的至少一个,使得多个喷嘴位于靠近或远离接触构件的位置。 在液体未被排出到介质上的待机状态下,接触构件与头部接触以便密封多个喷嘴,并且在排出状态下,头部远离接触构件定位,以便 提供允许介质在多个喷嘴和接触构件之间通过的空间。
    • 2. 发明申请
    • FLUID DISCHARGING APPARATUS AND METHOD OF CONTROLLING THE FLUID DISCHARGING APPARATUS
    • 流体排放装置和控制流体排放装置的方法
    • US20090002448A1
    • 2009-01-01
    • US12163820
    • 2008-06-27
    • Satoru HosonoNobuhito Takahashi
    • Satoru HosonoNobuhito Takahashi
    • B41J2/145
    • B41J2/155B41J2/16508
    • A fluid discharging apparatus including a head, a medium support portion, a contact member, and an actuator portion. The head includes a plurality of nozzles through which a fluid is discharged onto a target medium. The medium support portion supports the medium. The contact member is provided within the medium support portion. The actuator portion moves at least one of the head and the medium support portion so that the plurality of nozzles are located close to or far from the contact member. During a standby state when fluid is not discharged onto the medium, the contact member is brought into contact with the head in order to seal the plurality of nozzles, and in a discharging state, the head is located away from the contact member in order to provide a space through which the medium is allowed to pass between the plurality of nozzles and the contact member.
    • 一种流体排放装置,包括头部,介质支撑部分,接触部件和致动器部分。 头部包括多个喷嘴,流体被排出到目标介质上。 介质支撑部分支撑介质。 接触构件设置在介质支撑部分内。 致动器部分移动头部和中间支撑部分中的至少一个,使得多个喷嘴位于靠近或远离接触构件的位置。 在液体未被排出到介质上的待机状态下,接触构件与头部接触以便密封多个喷嘴,并且在排出状态下,头部远离接触构件定位,以便 提供允许介质在多个喷嘴和接触构件之间通过的空间。
    • 3. 发明授权
    • Flushing method for fluid ejecting apparatus
    • 流体喷射装置的冲洗方法
    • US08727489B2
    • 2014-05-20
    • US12234254
    • 2008-09-19
    • Satoru HosonoSayuri Kawakami
    • Satoru HosonoSayuri Kawakami
    • B41J2/165
    • B41J2/16526B41J2/04581B41J2/04588B41J2/04591
    • A flushing method for a fluid ejecting apparatus that includes a pressure chamber filled with fluid, a pressure generating element on a surface of the pressure chamber that deforms the surface to change the pressure in the pressure chamber, and a nozzle in fluid communication with the pressure chamber that ejects the fluid, the method including repeatedly performing first flushing process a first period; and repeatedly performing a second flushing process with a second period. The flushing processes include causing the pressure chamber to expand into an expanded state, maintaining the expanded state, and contracting the pressure chamber from the expanded state, causing the fluid to be ejected from the nozzle. The amount of fluid ejected from the nozzle in the second flushing process is larger than the amount ejected in the first flushing process.
    • 一种用于流体喷射装置的冲洗方法,其包括填充有流体的压力室,压力室表面上的压力产生元件,其使表面变形以改变压力室中的压力,以及与压力流体连通的喷嘴 该喷射液体的方法包括在第一时间段内重复进行第一冲洗处理; 并且在第二周期中重复执行第二冲洗处理。 冲洗过程包括使压力室膨胀成膨胀状态,保持膨胀状态,并使压力室从膨胀状态收缩,使流体从喷嘴喷出。 在第二冲洗过程中从喷嘴喷射的流体的量大于在第一冲洗过程中喷出的量。
    • 5. 发明授权
    • Liquid ejecting apparatus
    • 液体喷射装置
    • US07611214B2
    • 2009-11-03
    • US11395467
    • 2006-03-30
    • Satoru HosonoYasuhiko KosugiToshiki Usui
    • Satoru HosonoYasuhiko KosugiToshiki Usui
    • B41J29/38
    • B41J2/04596B41J2/04581B41J2/04588B41J2/04593
    • A liquid ejecting apparatus includes: a head having a nozzle; a pressure-changing unit for changing pressure of liquid in the nozzle in such a manner that the liquid is ejected from the nozzle; a level-data setting unit for setting a selected level data from a plurality of level data, based on an ejecting data; a driving-signal generator for generating a first driving signal and a second driving signal; and a driving-pulse generator for generating a driving pulse based on the selected level data and the first driving signal and the second driving signal. The first driving signal and the second driving signal are periodical signals having a same period. The first driving signal includes a first large-drop pulse-wave and a third large-drop pulse-wave. The second driving signal includes a second large-drop pulse-wave. The first large-drop pulse-wave, the second large-drop pulse-wave and the third large-drop pulse-wave have a same waveform, and appear in that order at regular intervals.
    • 液体喷射装置包括:具有喷嘴的头部; 压力改变单元,用于以使得液体从喷嘴喷射的方式改变喷嘴中的液体的压力; 电平数据设定单元,用于基于排出数据从多个电平数据中设定所选择的电平数据; 用于产生第一驱动信号和第二驱动信号的驱动信号发生器; 以及驱动脉冲发生器,用于基于所选择的电平数据和第一驱动信号和第二驱动信号产生驱动脉冲。 第一驱动信号和第二驱动信号是具有相同周期的周期信号。 第一驱动信号包括第一大滴脉冲波和第三大脉冲波。 第二驱动信号包括第二大滴脉冲波。 第一个大滴波脉冲波,第二个大脉冲波和第三个大脉冲波具有相同的波形,并以规则的间隔按顺序出现。
    • 7. 发明授权
    • Liquid jetting head, liquid jetting apparatus incorporating the same, method and apparatus for measuring natural vibration period of the same
    • 液体喷射头,包括其的液体喷射装置,用于测量其本身振动周期的方法和装置
    • US06811241B2
    • 2004-11-02
    • US10342334
    • 2003-01-15
    • Keisuke NiishidaSatoru HosonoTomoaki TakahashiRyoichi TanakaHirofumi Teramae
    • Keisuke NiishidaSatoru HosonoTomoaki TakahashiRyoichi TanakaHirofumi Teramae
    • B41J29393
    • B41J2/04581B41J2/04588B41J2/04595B41J2/125
    • A first evaluation signal includes a first excitation element adapted to excite pressure fluctuation in liquid contained in the pressure chamber and a first ejection element which follows the excitation element after a first time period to eject a first liquid droplet from the nozzle. A second evaluation signal includes a second excitation element adapted to excite pressure fluctuation in liquid contained in the pressure chamber and a second ejection element which follows the excitation element after a second time period to eject a second liquid droplet from the nozzle which is longer than the first time period. The first evaluation signal is supplied to the pressure generating element to measure a first ejected amount of the first liquid droplet. The second evaluation signal is supplied to the pressure generating element to measure a second ejected amount of the second liquid droplet. An ejected amount ratio of the first ejected amount and the second ejected amount is calculated. A natural vibration period of a liquid jetting head based on the ejected amount ratio.
    • 第一评估信号包括适于激发包含在压力室中的液体中的压力波动的第一激励元件和在第一时间段之后跟随激励元件从喷嘴喷射第一液滴的第一喷射元件。 第二评估信号包括适于激发包含在压力室中的液体中的压力波动的第二激励元件和在第二时间段之后跟随激励元件的第二喷射元件,以从喷嘴喷射比第二喷射元件长的喷嘴的第二液滴 第一时间段 第一评估信号被提供给压力发生元件以测量第一液滴的第一喷射量。 第二评估信号被提供给压力发生元件以测量第二液滴的第二喷射量。 计算第一喷射量和第二喷射量的喷射量比。 基于喷射量比的液体喷射头的固有振动周期。
    • 9. 发明授权
    • Ink jet recording apparatus
    • 喷墨记录装置
    • US06460959B1
    • 2002-10-08
    • US09494421
    • 2000-01-31
    • Kaoru MomoseSatoru Hosono
    • Kaoru MomoseSatoru Hosono
    • B41J2938
    • B41J2/04581B41J2/04588B41J2/04593B41J2/04596
    • A drive signal generator generates a drive signal including a first waveform component for jetting an ink drop to be a micro dot and a second waveform component for jetting an ink drop to be a middle dot. A pressure generating element varies the volume of a pressure generating chamber in accordance with the drive signal to jet an ink drop from a nozzle orifice. An ink drop to be a large dot is jetted from the nozzle orifice when the first waveform component and the second waveform component are consecutively applied to the pressure generating element. A time interval T&mgr;m between an end point of the first waveform component and a start point of the second waveform component is set so as to substantially satisfy the following equation: T ⁢   ⁢ μ ⁢   ⁢ m = n 2 ⁢ Tc here, Tc denotes a natural period of the pressure generating chamber.
    • 驱动信号发生器产生包括用于将墨滴喷射成微点的第一波形分量的驱动信号和用于将墨滴喷射成中点的第二波形分量。 压力发生元件根据驱动信号改变压力发生室的体积,以从喷嘴口喷射墨滴。 当第一波形分量和第二波形分量连续地施加到压力产生元件时,从喷嘴孔喷射作为大点的墨滴。 将第一波形成分的终点与第二波形成分的起始点之间的时间间隔Tmum设定为基本满足下式:这里,Tc表示压力发生室的自然周期。