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    • 2. 发明授权
    • Electro-optical device and method for fabricating the same, and projection display device
    • 电光装置及其制造方法以及投影显示装置
    • US06970212B1
    • 2005-11-29
    • US09347523
    • 1999-07-06
    • Yoshiyuki Gomi
    • Yoshiyuki Gomi
    • G02F1/1335G02B3/00G02F1/1333G02F1/1339G02F1/136G02F1/1368
    • G02F1/1339G02F1/133526
    • An electro-optical device is disclosed in which dimensional accuracy in a space between an opposite substrate and an electro-optical device substrate is increased, and thus, display quality is enhanced by improving the structure in which a lens array substrate and a sheet covering the lens array substrate are adhered to each other on the side of the opposite substrate. In a liquid crystal apparatus, an opposite substrate includes a lens array substrate provided with a step portion equal in height to microlenses in the region overlapping the region in which a sealing material is formed, and a glass sheet adhered to the lens array substrate by an adhesive. In the region overlapping the region in which the sealing material is formed, since the lens array substrate and the glass sheet are adhered to each other with a thin layer of the adhesive, the opposite substrate and a liquid crystal apparatus substrate can be adhered to each other with a space therebetween having high dimensional accuracy without any problem.
    • 公开了一种电光装置,其中相对基板和电光器件基板之间的空间中的尺寸精度增加,因此通过改进透镜阵列基板和覆盖 透镜阵列基板在相对基板的一侧彼此粘合。 在液晶装置中,相对基板包括透镜阵列基板,该透镜阵列基板在与形成有密封材料的区域重叠的区域中设置有与微透镜高度相等的台阶部,以及透镜阵列基板 胶粘剂。 在与形成密封材料的区域重叠的区域中,由于透镜阵列基板和玻璃板用粘合剂薄层彼此粘合,所以可以将相对基板和液晶装置基板粘附到每个 另一个在其间具有高尺寸精度的空间而没有任何问题。