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    • 6. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US4431272A
    • 1984-02-14
    • US260612
    • 1981-05-05
    • Satoru YazawaShunji BandaKenichi Endo
    • Satoru YazawaShunji BandaKenichi Endo
    • G02F1/1335G02F1/1343G02F1/1362G02F1/13
    • G02F1/13439G02F1/133553G02F1/1362G02F2203/02
    • A liquid crystal display device including an opaque reflective electrode on the lower plate of the device is provided. The surface of the electrode is a rugged surface wherein the average angle of inclination of an inclined plane passing through the inclined regions of the rugged surface is 30 degrees or less with respect to a horizontal plane coinciding with the surface of the lower plate. The area where the angle of inclination of the rugged portions is greater than 40 degrees occupies 30% or less of the surface area of the electrode. The average pitch of the rugged regions of the electrode surface is greater than 3 .mu.m and the depth of the rugged region is about 0.2 .mu.m on the average, but less than 5 .mu.m.The opaque electrode is formed from a metal having a reflectance of 80% or more with respect to incident light entering from a direction substantially vertical to the lower plate. The electrode is preferably an aluminum electrode and the rugged surface is obtained by first depositing an insulating layer of SiO.sub.2 by CVD and selectively etching the layer of SiO.sub.2 at an angle of between 0 degrees and 30 degrees to form a rugged surface. Alternatively, the SiO.sub.2 layer is treated by plasma spray and a resist is applied thereto. A widened viewing angle for a display utilizing a polarizer and a guest-host liquid crystal or a colored liquid crystal is obtained by utilizing the rugged electrode in accordance with the invention.
    • 提供了一种液晶显示装置,其在装置的下板上包括不透明反射电极。 电极的表面是凹凸表面,其中穿过凹凸表面的倾斜区域的倾斜平面的平均倾角相对于与下板的表面重合的水平面为30度或更小。 凹凸部的倾斜角度大于40度的区域占电极表面积的30%以下。 电极表面粗糙区域的平均间距大于3μm,粗糙区域的平均深度平均约为0.2μm,但小于5μm。 不透明电极由相对于从基板垂直于下板的方向入射的入射光的反射率为80%以上的金属形成。 电极优选为铝电极,并且通过首先通过CVD沉积SiO 2绝缘层并且以0度和30度之间的角度选择性地蚀刻SiO 2层以形成粗糙表面来获得粗糙表面。 或者,通过等离子体喷涂处理SiO 2层,并向其施加抗蚀剂。 通过利用根据本发明的粗糙电极,可以获得利用偏振器和客体主体液晶或彩色液晶的显示器的加宽视角。