Electrostatic design for hop & flue plates

W. Taylor, R. A. Tuck, H. Bishop, R. Riggs
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Abstract

The problems of limiting the voltage applied to the anode and the charging of the insulating spacers that causes surface flashover in field emission displays (FED) are solved using resistive coatings to bleed any generated charge. Low secondary electron emission coatings are also used on discrete insulating spacer components. The use of hop plate in conjunction with flue plate are adopted resulting to hop/flue structure that can act as a spacer within the FED. Hop plate dramatically improves intrapixel uniformity and pixel definition. It also screens the cathode from the anode field and places it in a low field, low stored-energy environment. Optical activity, correlated with the pre-breakdown electric currents that flowed across the surface of the insulators, is found to be related to a localised cathode triple junction. Modelling the structures describe the appearance of doughnut shaped emission patterns at the anode which disappear at higher anode voltages.
酒桶和烟道板的静电设计
在场发射显示器(FED)中,限制施加在阳极上的电压和绝缘间隔片的充电会导致表面闪络的问题,采用电阻性涂层来排出任何产生的电荷,从而解决了这个问题。低二次电子发射涂层也用于离散绝缘间隔元件。酒花板与烟道板结合使用,形成酒花/烟道结构,可以在FED内起到间隔器的作用。酒花板显著提高了像素内均匀性和像素清晰度。它还屏蔽了阴极和阳极磁场,并将其置于低磁场、低存储能量的环境中。光学活性与穿过绝缘体表面的预击穿电流相关,发现与局部阴极三重结有关。该结构的建模描述了在阳极处出现的甜甜圈状发射图案,这种图案在较高的阳极电压下消失。
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