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    • 1. 发明授权
    • Integral spacer dots for touch screen
    • 触摸屏的积分间隔点
    • US07397466B2
    • 2008-07-08
    • US10987467
    • 2004-11-12
    • Robert P. BourdelaisCheryl J. BrickeyGerald T. HertzelRonald S. Cok
    • Robert P. BourdelaisCheryl J. BrickeyGerald T. HertzelRonald S. Cok
    • G06F3/041G06F3/045H01H1/10
    • G06F3/045
    • A touch screen comprising a flexible sheet comprising a substantially planar surface and integral compressible spacer dots formed thereon, where each spacer dot comprises a base cross section in the substantially planar surface of the flexible sheet defined by a first point or set of connected points intersecting an axis in the substantially planar surface, a second opposed point or set of connected points intersecting the axis, and first and second continuous edge segments connecting the first and second points or end points of the first and second sets of points on opposite sides of the axis, wherein the spacer dot has a variable height perpendicular to the substantially planar surface along the axis, and wherein the surface of the spacer dot extending above the base cross section is not equidistant from the mid-point of the axis between the intersections of the first and second points or sets of connected points and the axis.
    • 一种触摸屏,其包括柔性片,所述柔性片包括基本平坦的表面和形成在其上的整体的可压缩间隔点,其中每个间隔点包括在所述柔性片的基本上平坦的表面中的基本横截面,该第一点或一组连接点与 大致平坦的表面中的轴线,与轴线相交的第二相对点或一组连接点,以及连接第一和第二组点在轴线的相对侧上的第一和第二点或端点的第一和第二连续边缘段 ,其中所述间隔物点具有垂直于所述轴线的基本上平坦的表面的可变高度,并且其中在所述基本横截面上方延伸的所述间隔物点的表面与所述第一部分的所述交叉点之间的所述轴线的中点不等距 和连接点和轴的第二点或几组。
    • 2. 发明授权
    • Perforated vacuum transport drum and method of manufacture
    • 穿孔真空输送鼓及其制造方法
    • US5523544A
    • 1996-06-04
    • US43321
    • 1993-04-06
    • Gerald T. HertzelEugene G. Hill
    • Gerald T. HertzelEugene G. Hill
    • B23K26/38G03G15/16B23K26/00
    • B23K26/382B23K26/40B23K26/402G03G15/1685B23K2201/35B23K2203/172B23K2203/42B23K2203/50
    • A process for perforating a urethane anti-static filled coating of a metallic drum core with clean holes of substantially uniform size and shape. The process includes placing an electrically conducting absorbing tape between the urethane coating and the metallic core to absorb the urethane melt generated by the laser cutting process. The coated core after being placed in a fixture, is subjected to a laser beam generated by a pulsed CO2 gas laser that passes through a set of rotary optics capable of spinning the beam in circles as it passes through a gas jet/nozzle assembly before beam impact with the coating. Through the use of conductive tape a good ground may be maintained between the anti-static filled coating and the metallic core to prevent static build up on the outer surface of the drum.
    • 一种金属鼓芯的聚氨酯防静电填充涂层的穿孔方法,其具有基本均匀的尺寸和形状的清洁孔。 该方法包括在聚氨酯涂层和金属芯之间放置导电吸收带以吸收由激光切割工艺产生的聚氨酯熔体。 被涂覆的芯在被放置在固定装置中之后,经受脉冲CO 2气体激光产生的激光束,该激光束通过一组旋转光学器件,该组旋转光学器件能够在光束通过气体射流/喷嘴组件之前通过圆形旋转 与涂层冲击。 通过使用导电带,可以在防静电填充涂层和金属芯之间保持良好的接地,以防止在鼓的外表面上的静电积聚。