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    • 1. 发明授权
    • Hydraulically tuned channel architecture
    • 液压调谐通道结构
    • US4882595A
    • 1989-11-21
    • US303378
    • 1989-01-25
    • Kenneth E. TruebaWilliam R. KnightNiels J. Nielsen
    • Kenneth E. TruebaWilliam R. KnightNiels J. Nielsen
    • B41J2/14
    • B41J2/1404B41J2002/14387B41J2002/14403
    • The use of lumped resistive elements (28) in an ink feed channel (10) between an ink-propelling element, such as a resistor, (12) and an ink supply plenum (14) provides a means of achieving resistive decoupling and meniscus resonance control with a minimum of deleterious side effects and design compromises typical of prior art solutions. A secondary constriction (30) in the ink feed channel is defined by a width W.sub.2 sufficient to provide physical support for the resistive elements while avoiding resistance to ink refill. The printhead further comprises lead-in lobes (38) for assisting in purging any bubbles in the ink. The lobes are disposed between the projections and the plenum chamber and separate one pair of projections from a neighboring pair.
    • 在油墨推进元件(例如电阻器)(12)和供墨气室(14)之间的供墨通道(10)中使用集总电阻元件(28)提供了实现电阻去耦和弯液面共振的手段 控制与现有技术解决方案的典型的最小的有害的副作用和设计折中。 供墨通道中的次级收缩(30)由宽度W2限定,足以为电阻元件提供物理支撑,同时避免对油墨再填充的抵抗。 打印头还包括用于帮助清除墨水中的任何气泡的引入凸片(38)。 凸起布置在突起和增压室之间,并且将一对突起与相邻的对分开。
    • 3. 发明授权
    • Regulator for ink-jet pens
    • 喷墨笔调节器
    • US5040002A
    • 1991-08-13
    • US494710
    • 1990-03-16
    • James E. PollacekNiels J. Nielsen
    • James E. PollacekNiels J. Nielsen
    • B41J2/045B41J2/055B41J2/175
    • B41J2/175Y10T137/7897
    • A regulator (20) for an ink-jet pen (24) that has a print head (30) for expelling ink from a fluid volume includes a seat (36) mounted to a pen body (26) and having a port (42) formed through it. A valve element (38) is mounted adjacent to the seat for movement relative to the port (42). Magnetic attraction is employed for urging the seat (36) and valve element (38) together to thereby close the port (42) and permit underpressure to develop in the reservoir (22). The valve element (38) and seat (36) are configured and arranged so that when the underpressure within the reservoir (22) rises above the level that may cause failure of the ink-jet print head (30) the valve element (38) moves away from the seat (36) to permit air to enter the reservoir (22), thereby reducing the underpressure to an operable level.
    • 一种用于喷墨笔(24)的调节器(20),其具有用于从流体体积排出墨水的打印头(30),包括安装到笔体(26)并具有端口(42)的座(36) 通过它形成。 阀元件(38)邻近座位安装以相对于端口(42)移动。 采用磁吸引力将座(36)和阀元件(38)推到一起,从而关闭端口(42)并允许负压在储存器(22)中形成。 阀元件(38)和阀座(36)被构造和布置成使得当储存器(22)内的负压升高到可能导致喷墨打印头(30)故障的水平时,阀元件(38) 远离座椅(36)移动以允许空气进入储存器(22),从而将负压降低到可操作的水平。
    • 5. 发明授权
    • Ink jet orifice plate having integral separators
    • 具有整体分离器的喷墨孔板
    • US4528577A
    • 1985-07-09
    • US443980
    • 1982-11-23
    • Frank L. CloutierRobert N. LowPaul H. McClellandNiels J. Nielsen
    • Frank L. CloutierRobert N. LowPaul H. McClellandNiels J. Nielsen
    • B41J2/05B41J2/16G01D15/18
    • B41J2/162B41J2/1625C25D1/08
    • An orifice plate is provided of an electroformed material which incorporates an integral ink distribution manifold and integral hydraulic separators between orifices. The general approach to the method of making the orifice plate is to first construct a two-part mandrel made up of a "hard" mandrel which can be reused many times and a "soft" mandrel which is renewed each time the mandrel is used. Typically, the surface of the "hard" mandrel is configured by mask and etch techniques, or by mask and electroplate techniques to define the ink distribution manifold and the hydraulic separators, while the "soft" mandrel is configured by mask and develop techniques to define the orifices and edges between orifice plates. Upon completion of the mandrel, its surface is electroplated with a relatively uniform thickness of metal, and the newly electroplated surface having the orifice plates patterned therein is separated from the mandrel.
    • 孔板由电铸成型材料提供,其中包括一个整体式油墨分配歧管和在孔之间的一体式液压分离器。 制造孔板的方法的一般方法是首先构造由可以重复使用多次的“硬”心轴构成的两部分心轴和每次使用心轴时更新的“软”心轴。 通常,“硬”心轴的表面通过掩模和蚀刻技术或通过掩模和电镀技术来配置以限定油墨分配歧管和液压分离器,而“软”心轴由掩模构成并开发技术来定义 孔板之间的孔口和边缘。 在心轴完成时,其表面用相对均匀的金属厚度电镀,并且具有图案化的孔板的新电镀表面与心轴分离。
    • 7. 发明授权
    • Determining the operating energy of a thermal ink jet printhead using an
onboard thermal sense resistor
    • 使用车载热敏电阻确定热喷墨打印头的工作能量
    • US5418558A
    • 1995-05-23
    • US57943
    • 1993-05-03
    • Scott W. HockDavid A. JohnsonNiels J. Nielsen
    • Scott W. HockDavid A. JohnsonNiels J. Nielsen
    • B41J2/05B41J2/12
    • B41J2/04513B41J2/04536B41J2/0454B41J2/04563B41J2/0458B41J2/04588
    • A method for operating a thermal ink jet printer including a printhead having ink firing heater resistors responsive to pulses provided to the printhead. A sequence of pulse bursts of respective increasing or decreasing pulse energies that span a predetermined pulse energy range is applied to the printhead, each pulse burst comprised of a plurality of pulses having a pulse energy that is associated with such pulse burst and is constant for all pulses in such burst, and each burst having a sufficient number of pulses to allow the printhead to achieve a steady state operating temperature at the pulse energy of the pulse burst. A steady state operating temperature sample is determined for each of the sequence of pulses bursts of different pulse energies to produce a set of temperature samples respectively associated with the increasing pulse energies, and a turn on pulse energy is determined from the temperature samples. The thermal ink jet printhead is then operated with a pulse energy that is greater than the turn on pulse energy and in a range that provides a desired print quality while avoiding premature failure of the heater resistors.
    • 一种用于操作热喷墨打印机的方法,其包括响应于提供给打印头的脉冲的具有喷墨加热器电阻器的打印头。 跨越预定脉冲能量范围的相应增加或减小的脉冲能量的脉冲脉冲序列被施加到打印头,每个脉冲脉冲串包括具有脉冲能量的多个脉冲,该脉冲能量与所述脉冲脉冲串相关联,并且对于所有脉冲 脉冲,并且每个脉冲串具有足够数量的脉冲以允许打印头在脉冲脉冲的脉冲能量下实现稳态工作温度。 确定不同脉冲能量的脉冲脉冲序列中的每一个的稳态工作温度采样,以产生分别与增加的脉冲能量相关联的一组温度采样,并且从温度采样确定导通脉冲能量。 然后,热喷墨打印头以大于导通脉冲能量的脉冲能量和在提供期望打印质量的范围内操作,同时避免加热电阻器的过早故障。