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    • 6. 发明申请
    • LIQUID CRYSTAL DISPLAY AND MANUFACTURING METHOD THEREOF
    • 液晶显示及其制造方法
    • US20160291411A1
    • 2016-10-06
    • US15059132
    • 2016-03-02
    • Samsung Display Co., Ltd
    • Kwang Soo BAEJung Suk BANGMin Jeong OHHae Ju YUN
    • G02F1/1337G02F1/1341G02F1/1333G02F1/1368G02F1/1343
    • G02F1/133788G02F1/133377G02F1/1362
    • The present invention relates to a liquid crystal display and a manufacturing method thereof. An exemplary embodiment of the present invention provides a manufacturing method of a liquid crystal display, comprising: forming a thin film transistor on a substrate; forming a passivation layer on the thin film transistor; forming a first electrode and a second electrode generating a horizontal electric field on the passivation layer; forming a sacrificial layer on the second electrode; forming a roof layer on the sacrificial layer; forming a plurality of microcavities in which a liquid crystal injection hole is formed by removing the sacrificial layer; injecting a photo-alignment material into the microcavity; irradiating the photo-alignment material with polarized light of a first wavelength and polarized light of a second wavelength; baking the photo-alignment material; and injecting a liquid crystal material into the plurality of microcavities.
    • 本发明涉及一种液晶显示器及其制造方法。 本发明的示例性实施例提供了一种液晶显示器的制造方法,包括:在基板上形成薄膜晶体管; 在薄膜晶体管上形成钝化层; 形成在所述钝化层上产生水平电场的第一电极和第二电极; 在所述第二电极上形成牺牲层; 在牺牲层上形成屋顶层; 通过去除牺牲层形成多个微腔,其中形成液晶注入孔; 将光取向材料注入微腔; 用第一波长的偏振光和第二波长的偏振光照射光取向材料; 焙烧光取向材料; 以及将液晶材料注入到所述多个微腔中。
    • 9. 发明申请
    • DISPLAY DEVICE
    • 显示设备
    • US20160209699A1
    • 2016-07-21
    • US14941393
    • 2015-11-13
    • Samsung Display Co., Ltd.
    • Hae Ju YUNYukinori ASAKAWAKwang Soo BAEMin Jeong OH
    • G02F1/1333G02F1/1335G02F1/1341G02F1/1368G02F1/1337
    • G02F1/133377G02F1/133345G02F1/1335G02F1/133526G02F1/1337G02F1/133788G02F1/1341G02F1/1368G02F2001/133738
    • Embodiments provide a display device including: a thin film transistor disposed on an insulation substrate including a plurality of pixels; a common electrode and a pixel electrode disposed on the thin film transistor to overlap each other while interposing an insulating layer therebetween; a liquid crystal layer filling microcavities differentiated by pixel electrodes, the pixel electrodes comprising the pixel electrode; and a roof layer that is disposed on a microcavity of the microcavities and includes an injection hole extending to the microcavity and a supporting member to support the microcavity; and an optical member disposed on the supporting member, wherein the injection hole is disposed between adjacent microcavities in a column direction, and the supporting member is disposed between adjacent microcavities in a row direction. Total reflection of light, had alignment, and light leakage which may occur in the display device may be prevented by the optical member.
    • 实施例提供了一种显示装置,包括:设置在包括多个像素的绝缘基板上的薄膜晶体管; 设置在所述薄膜晶体管上的公共电极和像素电极,以在其间插入绝缘层而彼此重叠; 填充由像素电极区分的微腔的液晶层,所述像素电极包括所述像素电极; 以及屋顶层,其设置在所述微腔的微腔上,并且包括延伸到所述微腔的喷射孔和支撑所述微腔的支撑构件; 以及设置在所述支撑构件上的光学构件,其中所述注入孔在列方向上设置在相邻的微腔之间,并且所述支撑构件在行方向上设置在相邻的微腔之间。 通过光学构件可以防止在显示装置中发生的光的全反射,对准和漏光。