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    • 2. 发明授权
    • Printhead interposing maintenance apparatus and method and image producing machine having same
    • 打印头插入维护装置和方法以及具有该装置的图像生成机
    • US06764160B1
    • 2004-07-20
    • US10320826
    • 2002-12-16
    • Scott J. PhillipsElliott A. EklundRoger LeightonJohn MurphyRonald L. NicholsDonald J. DrakeAntonio L. Williams
    • Scott J. PhillipsElliott A. EklundRoger LeightonJohn MurphyRonald L. NicholsDonald J. DrakeAntonio L. Williams
    • B41J2165
    • B41J2/16588B41J2/16523B41J2/17593B41J2002/1742
    • A printhead interposing maintenance method and apparatus are provided for maintaining a printhead assembly within a relatively tight space in an image producing machine. The printhead interposing maintenance apparatus for the method includes (a) at least a first home position adjacent a first side of four sides of an operating zone between a printhead assembly and an imaging surface in the image producing machine; (b) a first moving device for moving the printhead assembly from a printing first position adjacent the imaging surface to a maintaining second position spaced further away from the printing first position; (c) a maintenance apparatus movably supported for movement along an maintenance path interposed between the imaging surface and the printhead assembly; (d) a second moving device for moving the maintenance apparatus for contacting and maintaining the printhead assembly, and along the maintenance path from the at least first home position to a resting position adjacent a second side and opposite the first side of the four sides of the operating zone; and (e) a third moving device for moving the printhead assembly back from the maintaining second position to the printing first position.
    • 提供一种打印头插入维护方法和装置,用于将打印头组件保持在图像生成机器的相对紧密的空间内。 用于该方法的打印头插入维护装置包括:(a)至少第一起始位置,邻近图像生成机器中的打印头组件和成像表面之间的操作区域的四边的第一侧; (b)第一移动装置,用于将打印头组件从邻近成像表面的打印第一位置移动到距印刷第一位置更远的保持第二位置; (c)可移动地支撑的维护装置,用于沿着插入在所述成像表面和所述打印头组件之间的维护路径移动; (d)第二移动装置,用于移动用于接触和保持打印头组件的维护装置,并且沿着维护路径从至少第一起始位置到邻近第二侧的相对于第四侧的第二侧的第二侧的静止位置 操作区; 和(e)第三移动装置,用于将打印头组件从维持第二位置移动到打印第一位置。
    • 7. 发明授权
    • Alignment of pagewidth bars
    • 页宽栏的对齐方式
    • US5192959A
    • 1993-03-09
    • US709255
    • 1991-06-03
    • Donald J. DrakeIvan RezankaFredrick A. Warner
    • Donald J. DrakeIvan RezankaFredrick A. Warner
    • B41J2/01B41J2/155
    • B41J2/155B41J2202/20
    • A mechanism for accurately mounting a large area semiconductive device within a larger system is disclosed. The semiconductive device, formed by the linear abutment of semiconductive sub-units divided from a larger semiconductive wafer must be accurately positioned to enable the operation of which it was intended. In one embodiment, the sub-units are thermal ink jet arrays which are abutted to form a pagewidth printhead. The semiconductive device includes a reference plate or substrate having a generally planar surface for mounting an array of functional sub-units thereon. The semiconductive device further includes two or more individual sub-units which are also affixed to the planar surface, thereby forming alignment pads for the assembled semiconductive device. When incorporated into the system, the alignment pads are received by frame members or alignment points to provide positive alignment of the reference plate, and the attached array of sub-units, within the system.
    • 公开了一种用于在较大系统内精确地安装大面积半导体装置的机构。 通过由较大的半导体晶片划分的半导体子单元的线性邻接形成的半导体器件必须被精确地定位以使其能够被操作。 在一个实施例中,子单元是热喷墨阵列,其被邻接以形成页宽打印头。 半导体器件包括具有大致平坦表面的参考板或衬底,用于在其上安装功能子单元阵列。 半导体器件还包括两个或多个单独的子单元,其也固定到平面表面,由此形成用于组装的半导体器件的对准焊盘。 当结合到系统中时,对准焊盘由框架构件或对准点接收,以在系统内提供参考板和附接的子单元阵列的正对准。
    • 8. 发明授权
    • Ink jet printhead having integral filter
    • 具有整体式过滤器的喷墨打印头
    • US5124717A
    • 1992-06-23
    • US624390
    • 1990-12-06
    • Michael R. CampanelliWilliam G. HawkinsDonald J. DrakeJames F. O'Neill
    • Michael R. CampanelliWilliam G. HawkinsDonald J. DrakeJames F. O'Neill
    • B41J2/05B41J2/16
    • B41J2/1604B41J2/1623B41J2/1628B41J2/1629B41J2/1631B41J2/1632B41J2/1635B41J2/1642B41J2002/14403
    • An ink jet printhead having an integral membrane filter fabricated over the surface of the printhead containing the ink inlet is disclosed. The individual printheads are obtained by a sectioning operation which cuts aligned and bonded channel and heater wafers. The mated wafers contain a plurality of printheads and must be separated. The integral membrane filter is formed on the channel wafer after it is anisotropically etched incorporating the etch resistant mask layer and prior to mating with the heater wafer. A patternable layer is deposited over the etch resistant masking layer and exposed, patterned and developed to establish the mesh filter. In one embodiment, the side of the channel wafer not patterned and etched is heavily doped to form an etch stop which increases the robustness of the membrane filter by ensuring that the masking layer remains intact during subsequent fabricating steps. This doped region beneath the patternable layer is then etched using the membrane filter as a mask to open the filter pores through the doped layer of the channel wafer, thereby increasing the filter thickness and its overall strength.
    • 公开了一种在包含墨水入口的打印头的表面上制造的具有整体膜过滤器的喷墨打印头。 单个打印头通过切割对准和粘合的通道和加热器晶片的切片操作获得。 配对的晶片包含多个打印头,必须分开。 整体膜过滤器在其各向异性蚀刻之后形成在通道晶片上,其包含耐蚀刻掩模层并且在与加热器晶片配合之前。 将可图案层沉积在抗蚀刻掩模层上,并进行曝光,图案化和显影以建立网状过滤器。 在一个实施例中,未图案化和蚀刻的沟道晶片的侧面被重掺杂以形成蚀刻停止件,其通过确保掩模层在随后的制造步骤期间保持完整而增加了膜过滤器的鲁棒性。 然后使用膜过滤器作为掩模蚀刻可图案层下面的该掺杂区域,以通过通道晶片的掺杂层打开过滤器孔,从而增加过滤器厚度及其整体强度。
    • 9. 发明授权
    • Thermal ink jet printhead with increased drop generation rate
    • 热喷墨打印头具有增加的液滴产生率
    • US4835553A
    • 1989-05-30
    • US236430
    • 1988-08-25
    • Peter A. TorpeyIvan RezankaNarayan V. DeshpandeDonald J. Drake
    • Peter A. TorpeyIvan RezankaNarayan V. DeshpandeDonald J. Drake
    • B41J2/05B41J2/14
    • B41J2/1404B41J2002/14379
    • An improved ink jet printhead comprising upper and lower substrates that are mated and bonded together with a thick film insulative layer sandwiched therebetween. One surface of the upper substrate has etched therein one or more grooves and a recess which when mated with the lower substrate will serve as capillary filled ink channels and ink supply manifold, respectively. The grooves are open at one end and closed at the other. The open ends serve as nozzles. The manifold recess is adjacent the grooved closed ends. Each channel has a heating element located upstream of the nozzle. The heating elements are selectively addressable by input signals representing digitized data signals to produce ink vapor bubbles. The growth and collapse of the bubbles expel ink droplets from the nozzles and propel them to a recording medium. A recess patterned in the thick layer provides a flow path for the ink from the manifold to the channels by enabling the ink to flow around the closed ends of the channels and increase the flow area to the heating elements. Thus, the heating elements lie at the distal end of the recesses so that a vertical wall of elongated recess prevents air ingestion while it increases the ink channel flow area and increases refill time, resulting in an increase in bubble generation rate.
    • 一种改进的喷墨打印头,其包括上下基板,其与夹在其间的厚膜绝缘层配合并结合在一起。 上基板的一个表面在其中蚀刻有一个或多个凹槽和与下基板配合的凹槽,分别用作毛细管填充的墨水通道和墨水供应歧管。 槽在一端敞开,另一端封闭。 开口端作为喷嘴。 歧管凹槽与凹槽的封闭端相邻。 每个通道具有位于喷嘴上游的加热元件。 加热元件可以通过表示数字化数据信号的输入信号来选择寻址,以产生油墨蒸气泡。 气泡的生长和坍塌从喷嘴中排出墨滴并推动它们到记录介质上。 在厚层中图案化的凹槽通过使墨水能够围绕通道的封闭端流动并且增加到加热元件的流动面积而提供用于从歧管到通道的墨水的流动路径。 因此,加热元件位于凹部的远端,使得细长凹槽的垂直壁防止空气摄取,同时增加墨通道流动面积并增加再填充时间,导致气泡产生速率的增加。