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    • 10. 发明授权
    • Field forming electrodes on high voltage spacers
    • 在高电压隔板上形成场
    • US5532548A
    • 1996-07-02
    • US317205
    • 1994-10-03
    • Christopher J. SpindtJohn E. FieldDavid L. MorrisChristopher J. Curtin
    • Christopher J. SpindtJohn E. FieldDavid L. MorrisChristopher J. Curtin
    • H01J9/18H01J9/24H01J17/49H01J29/02H01J29/08H01J29/46H01J29/86H01J31/12H01J61/30H01J19/42
    • H01J9/185H01J29/028H01J29/085H01J29/467H01J29/864H01J31/127H01J61/30H01J9/242H01J2329/863H01J2329/864H01J2329/8645H01J2329/8655
    • A flat panel display includes a faceplate and an opposing backplate. The two are sealed together and a sealed envelope is created that includes an active area of length L.sub.1. The active layer includes addressable pixels on the faceplate. Spacers are perpendicular to the faceplate and backplate. The length of a spacer is in a direction parallel to the plane of the faceplate. At least one spacer is positioned in the envelope and provides rigidity to the display. This is required because of the high vacuum which is maintained within the envelope. One or more electrodes are formed on an exterior surface of the spacer. The electrodes extend a length of L.sub.2 along a side of the spacer that is at least equal to L.sub.1. Voltages applied to the electrodes are controlled to achieve a desired voltage distribution between the backplate and the faceplate. The electrode is made of a material with a sheet resistance of less than about 10.sup.5 to 10.sup.7 .OMEGA./.quadrature.. The potential drop across the spacer between the faceplate and the backplate can be tailored by the selection of the position of the electrodes on the spacers, as well as the potentials applied to the electrodes. An additional way of tailoring the potential drop is selecting a desired thickness or conductivity of the spacer from top to bottom.
    • 平板显示器包括面板和相对的背板。 两者密封在一起,并且形成包括长度为L1的有效区域的密封外壳。 活动层包括面板上的可寻址像素。 垫片垂直于面板和背板。 间隔物的长度在平行于面板平面的方向上。 至少一个间隔件定位在外壳中并为显示器提供刚性。 这是因为保持在信封内的高真空是必需的。 一个或多个电极形成在间隔件的外表面上。 电极沿着至少等于L1的间隔物的一侧延伸L2的长度。 控制施加到电极的电压以在背板和面板之间实现期望的电压分布。 电极由薄层电阻小于约105至107欧姆/平方厘米的材料制成。 可以通过选择间隔物上的电极的位置以及施加到电极的电位来调整跨越面板和背板之间的间隔物的电位降。 一种额外的方法来调整潜在的下降是从顶部到底部选择间隔物的期望的厚度或导电性。