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    • 1. 发明授权
    • Electrophoretic display device and method of manufacturing and repairing the same
    • 电泳显示装置及其制造和修理方法
    • US08115205B2
    • 2012-02-14
    • US12640981
    • 2009-12-17
    • Jea Gu LeeSeung Chul Kang
    • Jea Gu LeeSeung Chul Kang
    • H01L29/10
    • G02F1/167G02F1/136259G02F2001/136263
    • Provided is an electrophoretic display device and a method of manufacturing and repairing the electrophoretic display device. The electrophoretic display device includes: a gate line, a gate electrode, and a common electrode, separated a predetermined distance from the gate line, which are formed on a substrate; a gate insulation layer formed on an overall surface of the substrate including the gate line; a data line configured to define a pixel area by crossing the gate line; a source electrode configured to extend from the data line; a drain electrode separated from a predetermined distance from the source electrode; a protection layer formed on an overall surface of the substrate including the data line, the source electrode, and the drain electrode; a pixel electrode formed on the protection layer and connected to the drain electrode; an electrophoretic film formed on the substrate including the pixel electrode; a common line formed on a boundary portion between the pixel areas and configured to connect the common electrodes formed in the respective pixel areas; and a repair hole formed by removing the protection layer corresponding to the common line to expose the gate insulation layer.
    • 本发明提供一种电泳显示装置及电泳显示装置的制造和修理方法。 电泳显示装置包括:栅极线,栅电极和公共电极,与形成在基板上的栅极线隔开预定距离; 形成在包括所述栅极线的所述基板的整个表面上的栅极绝缘层; 数据线,被配置为通过跨越所述栅极线来限定像素区域; 源极,被配置为从所述数据线延伸; 从源极与预定距离分离的漏电极; 保护层,形成在包括数据线,源电极和漏电极的基板的整个表面上; 形成在所述保护层上并连接到所述漏电极的像素电极; 形成在包括像素电极的基板上的电泳膜; 形成在所述像素区域之间的边界部分上并且被配置为连接形成在各个像素区域中的公共电极的公共线; 以及通过去除与公共线相对应的保护层而形成的修复孔,以露出栅极绝缘层。
    • 2. 发明申请
    • ELECTROPHORETIC DISPLAY DEVICE AND METHOD OF MANUFACTURING AND REPAIRING THE SAME
    • 电泳显示装置及其制造和修理方法
    • US20100155734A1
    • 2010-06-24
    • US12640981
    • 2009-12-17
    • Jae Gu LeeSeung Chul Kang
    • Jae Gu LeeSeung Chul Kang
    • H01L33/16H01L21/268
    • G02F1/167G02F1/136259G02F2001/136263
    • Provided is an electrophoretic display device and a method of manufacturing and repairing the electrophoretic display device. The electrophoretic display device includes: a gate line, a gate electrode, and a common electrode, separated a predetermined distance from the gate line, which are formed on a substrate; a gate insulation layer formed on an overall surface of the substrate including the gate line; a data line configured to define a pixel area by crossing the gate line; a source electrode configured to extend from the data line; a drain electrode separated from a predetermined distance from the source electrode; a protection layer formed on an overall surface of the substrate including the data line, the source electrode, and the drain electrode; a pixel electrode formed on the protection layer and connected to the drain electrode; an electrophoretic film formed on the substrate including the pixel electrode; a common line formed on a boundary portion between the pixel areas and configured to connect the common electrodes formed in the respective pixel areas; and a repair hole formed by removing the protection layer corresponding to the common line to expose the gate insulation layer.
    • 本发明提供一种电泳显示装置及电泳显示装置的制造和修理方法。 电泳显示装置包括:栅极线,栅电极和公共电极,与形成在基板上的栅极线隔开预定距离; 形成在包括所述栅极线的所述基板的整个表面上的栅极绝缘层; 数据线,被配置为通过跨越所述栅极线来限定像素区域; 源极,被配置为从所述数据线延伸; 从源极与预定距离分离的漏电极; 保护层,形成在包括数据线,源电极和漏电极的基板的整个表面上; 形成在所述保护层上并连接到所述漏电极的像素电极; 形成在包括像素电极的基板上的电泳膜; 形成在所述像素区域之间的边界部分上并且被配置为连接形成在各个像素区域中的公共电极的公共线; 以及通过去除与公共线相对应的保护层而形成的修复孔,以露出栅极绝缘层。
    • 3. 发明授权
    • Flexible display device and manufacturing method thereof
    • 柔性显示装置及其制造方法
    • US07968882B2
    • 2011-06-28
    • US12245188
    • 2008-10-03
    • Jae Gu LeeSeung Chul Kang
    • Jae Gu LeeSeung Chul Kang
    • H01L29/04H01L29/10H01L29/15
    • H01L29/78603H01L27/1248
    • A flexible display device adapted to prevent a disconnection of pad electrode and a line short-circuit is disclosed. The flexible display device and the manufacturing method thereof according to the present embodiments forms only the barrier film or no layer on the mother substrate in the vicinity of the cut line which divides the mother substrate into the TFT substrate. Even when the mother substrate is pressed using a press machine, cracks or lifts of layers are not generated in the TFT substrate unlike the conventional technology so that a disconnection is not generated in the gate pad electrode or the data pad electrode. Thus, line short-circuits generated as the layers are separated and attached to the TFT substrate can be prevented.
    • 公开了一种适于防止焊盘电极断开和线路短路的柔性显示装置。 根据本实施例的柔性显示装置及其制造方法仅在将母基板分割成TFT基板的切割线附近的母基板上形成阻挡膜或无层。 即使使用冲压机对母材进行挤压,也不会像现有技术那样在TFT基板上产生裂纹或层叠电极,因此在栅极焊盘电极或数据焊盘电极中不产生断线。 因此,可以防止作为层分离并附着到TFT基板而产生的线路短路。
    • 4. 发明申请
    • FLEXIBLE DISPLAY DEVICE AND MANUFACTURING METHOD THEREOF
    • 柔性显示装置及其制造方法
    • US20090289255A1
    • 2009-11-26
    • US12245188
    • 2008-10-03
    • Jae Gu LeeSeung Chul Kang
    • Jae Gu LeeSeung Chul Kang
    • H01L23/48H01L21/78
    • H01L29/78603H01L27/1248
    • A flexible display device adapted to prevent a disconnection of pad electrode and a line short-circuit is disclosed. The flexible display device and the manufacturing method thereof according to the present embodiments forms only the barrier film or no layer on the mother substrate in the vicinity of the cut line which divides the mother substrate into the TFT substrate. Even when the mother substrate is pressed using a press machine, cracks or lifts of layers are not generated in the TFT substrate unlike the conventional technology so that a disconnection is not generated in the gate pad electrode or the data pad electrode. Thus, line short-circuits generated as the layers are separated and attached to the TFT substrate can be prevented.
    • 公开了一种适于防止焊盘电极断开和线路短路的柔性显示装置。 根据本实施例的柔性显示装置及其制造方法仅在将母基板分割成TFT基板的切割线附近的母基板上形成阻挡膜或无层。 即使使用冲压机对母材进行挤压,也不会像现有技术那样在TFT基板上产生裂纹或层叠电极,因此在栅极焊盘电极或数据焊盘电极中不产生断线。 因此,可以防止作为层分离并附着到TFT基板而产生的线路短路。