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    • 54. 发明授权
    • Array substrate and manufacturing method thereof, and display device
    • 阵列基板及其制造方法以及显示装置
    • US09559690B2
    • 2017-01-31
    • US14443280
    • 2014-10-01
    • BOE TECHNOLOGY GROUP CO., LTD.BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.
    • Shengji YangXue DongHaisheng WangHailin XueYingming LiuWeijie ZhaoHongjuan LiuXiaoliang Ding
    • H01L29/00H03K17/96H01L27/12H01L23/31G06F3/041G06F3/044
    • H03K17/962G06F3/0412G06F3/0416G06F3/044G06F2203/04103H01L23/3171H01L27/12H01L27/124H01L27/1255H03K2217/960755
    • An array substrate and a manufacturing method thereof, and a display device are provided. The array substrate comprises: a gate electrode (11) and a gate line (12) located on a base substrate (00); an active layer (20) located on a film layer where the gate electrode (11) and the gate line (12) are located; a drain electrode (31), a source electrode (32) and a data line (33) located on the active layer (20); a pixel electrode (40) located on a film layer where the drain electrode (31), the drain electrode (32) and the data line (33) are located and connected to the drain electrode (31) through a first via hole (100); and a common electrode layer (50) located on a film layer where the pixel electrode (40) is located and insulated from the pixel electrode (40); wherein, the common electrode layer (50) includes a plurality of self-capacitive electrodes (51) disposed on a same layer and mutually insulated; the array substrate further comprises: a plurality of conducting lines (60), located on the film layer where the drain electrode (31), the source electrode (32) and the data line (33) are located, and insulated from the drain electrode (31), the source drain (32), the data line (33) and the pixel electrode (40); and, disposed on a layer different from the common electrode layer (50), and each of the conducting lines (60) being electrically connected to a corresponding self-capacitive electrode (51) through a second via hole (200).
    • 提供阵列基板及其制造方法以及显示装置。 阵列基板包括:位于基底(00)上的栅电极(11)和栅线(12); 位于栅极(11)和栅极线(12)所在的膜层上的有源层(20) 位于有源层(20)上的漏电极(31),源电极(32)和数据线(33)。 位于薄膜层上的像素电极(40),其中漏电极(31),漏电极(32)和数据线(33)通过第一通孔(100)位于并连接到漏电极 ); 以及位于像素电极(40)位于并与像素电极(40)绝缘的膜层上的公共电极层(50); 其特征在于,所述公共电极层(50)具有设置在同一层上且相互绝缘的多个自身电容电极(51) 阵列基板还包括:位于薄膜层上的多个导线(60),其中漏电极(31),源电极(32)和数据线(33)所在,并且与漏极绝缘 (31),源极漏极(32),数据线(33)和像素电极(40); 并且配置在与公共电极层(50)不同的层上,并且每个导线(60)通过第二通孔(200)与相应的自身电容电极(51)电连接。
    • 55. 发明申请
    • ELECTROCHROMIC GRATING, MANUFACTURING METHOD THEREOF, DISPLAY PANEL AND DISPLAY DEVICE
    • 电光刻,其制造方法,显示面板和显示装置
    • US20160370679A1
    • 2016-12-22
    • US14906484
    • 2015-08-12
    • BOE TECHNOLOGY GROUP CO., LTD.BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.
    • Changfeng LIXue DongHaisheng WangHailin XueYingming LiuShengji YangWeiqing ZhaoMubing LI
    • G02F1/155G02F1/157G02B27/22G02F1/1343
    • The embodiments of the present invention disclose an electrochromic grating, a manufacturing method thereof, a display panel and a display device. The method of manufacturing the electrochromic grating comprises: forming a first transparent electrode layer on a first substrate; forming a resin layer on the first transparent electrode layer and forming a plurality of grooves in the resin layer; forming a second transparent electrode layer on a second substrate; perfusing at least one of solution type or gel type electrochromic material into the plurality of grooves; and then, encapsulating the first substrate and the second substrate. In this way, by using the at least one of solution type or gel type electrochromic material filled in the grooves, the conversion speed of the electrochromic grating between the transparent state and the colored state can be increased, the conversion response speed of the display panel between 2D picture and 3D picture can be further increased, so as to realize a higher contrast, thereby improving the display effect.
    • 本发明的实施例公开了电致变色光栅,其制造方法,显示面板和显示装置。 制造电致变色光栅的方法包括:在第一衬底上形成第一透明电极层; 在所述第一透明电极层上形成树脂层,并在所述树脂层中形成多个槽; 在第二基板上形成第二透明电极层; 将溶液型或凝胶型电致变色材料中的至少一种灌注到所述多个槽中; 然后封装第一基板和第二基板。 以这种方式,通过使用填充在槽中的溶液型或凝胶型电致变色材料中的至少一种,可以提高电致变色光栅在透明状态和着色状态之间的转换速度,显示面板的转换响应速度 可以进一步提高2D图像和3D图像之间的距离,从而实现较高的对比度,从而提高显示效果。