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    • 102. 发明申请
    • HEAD MEMBER AND INK REPELLENCE TREATING METHOD AND TREATING DEVICE
    • 头部成员和墨水处理方法和处理装置
    • WO01089843A1
    • 2001-11-29
    • PCT/JP2001/004248
    • 2001-05-22
    • B41J2/14B41J2/16B41J2/135
    • B41J2/1632B41J2/14274B41J2/1433B41J2/1606B41J2/162B41J2/164
    • A head member having an ink-repellent film high in ink repellence, and an ink repellence treating method and treating device. A head member (15) provided with a plurality of ink jetting holes (14), wherein an ink repellent film (25), consisting of fluororesin formed by plasma-polymerizing on a surface opened with the jetting holes (14), is provided on the surface. A ink repellency treating method comprising the steps of disposing the head member (15) in a vacuumized chamber (31), introducing a gaseous straight-chain perfluorocarbon as an ink repellent film material into the chamber (31), and forming an ink repellent film (14) consisting of fluororesin formed by plasma-polymerizing the perfluorocarbon on the surface of the head material (15) to complete ink repellence treating.
    • 一种头部构件,其具有防墨水性高的拒油墨,以及拒墨处理方法和处理装置。 一种设置有多个喷墨孔(14)的头部构件(15),其中,在通过喷射孔(14)打开的表面上通过等离子体聚合形成的由氟树脂构成的防墨膜(25)设置在 表面。 一种防墨处理方法,包括以下步骤:将头部构件(15)设置在真空室(31)中,将气态直链全氟化碳作为拒油膜材料引入到室(31)中,并形成防油墨膜 (14),其由通过在头材料(15)的表面上等离子体聚合全氟化碳形成的氟树脂,以完成拒墨处理。
    • 108. 发明申请
    • OVERLAPPING PRINTHEAD MODULE ARRAY CONFIGURATION
    • 重叠打印机模块阵列配置
    • WO01064444A1
    • 2001-09-07
    • PCT/AU2001/000216
    • 2001-03-02
    • B41J2/16B41J2/145B41J2/155
    • B41J2/155B41J2002/14491B41J2202/20
    • A modular pagewidth printhead for a digital ink jet printer having a metal chassis (1) where modules (2) are arranged in an overlapping configuration to preserve continuity between the printing from adjacent replaceable modules (2). The printhead has an ink reservoir (4), a flexible PCB (10) and busbar (11). The printhead chips (3) such as MEMJET on each module (2) receive print data from TAB films (6). The TAB films (6) extend from the same side of each of the MEMJET chips (3) to allow for a relatively compact printhead design. The chips (3) are configured so that predominately all of the chips (3) in the array have, at most, one end obscured by the end of an adjacent chip (3). The configuration includes overlapping and inclining the printheads with respect to the support beam. This reduces the amount that the TAB films (6) need to narrow or "neck" in order to avoid the obscuring adjacent end.
    • 一种用于具有金属底盘(1)的数字喷墨打印机的模块化页宽打印头,其中模块(2)以重叠配置布置以保持来自相邻可更换模块(2)的打印之间的连续性。 打印头具有墨水容器(4),柔性PCB(10)和母线(11)。 每个模块(2)上的诸如MEMJET的打印头芯片(3)从TAB胶片(6)接收打印数据。 TAB膜(6)从每个MEMJET芯片(3)的相同侧延伸,以允许相对紧凑的打印头设计。 芯片(3)被配置成主要是阵列中的所有芯片(3)的至少一端被相邻芯片(3)的端部遮蔽。 该配置包括相对于支撑梁重叠和倾斜打印头。 这减少了TAB膜(6)需要缩小或“颈部”的量,以避免相邻端部的模糊。
    • 110. 发明申请
    • MICROMACHINED TWO-DIMENSIONAL ARRAY DROPLET EJECTORS
    • 微型二维阵列喷射器
    • WO01062394A2
    • 2001-08-30
    • PCT/US2001/005965
    • 2001-02-23
    • B06B1/06B41J2/04B41J2/045B41J2/055B41J2/16H01L41/09H02N2/00B05B
    • B41J2/04B41J2202/15
    • A droplet ejector (11) including a cylindrical reservoir (20) closed at one end with an elastic membrane (14) including at least one aperture (22). A bulk actuator (20) at the other end for actuating the fluid for ejection through the aperture (22). Also disclosed is a micromachined two-dimensional array droplet ejector (11). The ejector (11) includes a two-dimensional array of elastic membranes (14) having orifices (22) closing the ends of cylindrical fluid reservoirs (20). The fluid in the ejectors (11) is bulk actuated to set up pressure waves (28) in the fluid which cause fluid to form a meniscus at each orifice (22). Selective actuation of the membranes (14) ejects droplets. In an alternative mode of operation, the bulk pressure wave has sufficient amplitude to eject droplets while the individual membranes (14) are actuated to selectively prevent ejection of droplets.
    • 包括圆柱形容器(20)的液滴喷射器(11)在一端与包括至少一个孔(22)的弹性膜(14)封闭。 在另一端处的用于致动流体以通过孔(22)喷射的主体致动器(20)。 还公开了一种微机械二维阵列液滴喷射器(11)。 喷射器(11)包括具有封闭圆柱形流体储存器(20)的端部的孔口(22)的弹性膜(14)的二维阵列。 喷射器(11)中的流体被大量地致动以在流体中设置压力波(28),这导致流体在每个孔(22)处形成弯液面。 膜(14)的选择性致动喷射液滴。 在替代的操作模式中,主压力波具有足够的振幅来喷射液滴,同时单独的膜(14)被致动以选择性地防止液滴的喷射。