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    • 1. 发明申请
    • SCAN DRIVER AND ORGANIC LIGHT-EMITTING DISPLAY USING SAME
    • 扫描驱动器和有机发光显示器使用相同
    • US20160314745A1
    • 2016-10-27
    • US15108284
    • 2014-12-24
    • KUNSHAN NEW FLAT PANEL DISPLAY TECHNOLOGY CENTER CO., LTD.KUNSHAN GO-VISIONOX OPTO-ELECTRONICS CO., LTD.
    • Siming HUHui ZHUXiuqi HUANGXiaoyu GAO
    • G09G3/3266G09G3/3291
    • G09G3/3266G09G3/3291G09G2310/0283G09G2310/0286G09G2310/08G09G2320/0219G09G2330/021G11C19/28
    • The present invention provides a scanning driver and an organic light-emitting display using the same. The scanning driver comprises a plurality of cascaded structures receiving signals from a first timing clock line (CK1) and a second timing clock line (CK2) with opposite phases, the cascaded structures successively generating output signals (i.e., scanning signals), wherein each of the cascaded structures comprises: a first transistor, connected to a starting signal line or to a scanning output line of a previous cascaded structure; a second transistor, connected to the second timing clock line and to the scanning output line; a third transistor connected to a high-level power supply VGH; a fourth transistor, connected to a low-level power supply VGL and to an output terminal of the third transistor; a fifth transistor, connected to a high-level power supply VGH and to a scanning output line; and a first capacitor, connected between an output terminal of the first transistor and the scanning output line. Arranging a first capacitor C1 between the output terminal of M1 and the scanning output line prevents slight-ON of M2, thus reducing the reverse current at the scanning driver and reducing the power consumption.
    • 本发明提供一种扫描驱动器和使用其的有机发光显示器。 扫描驱动器包括从具有相反相位的第一定时时钟线(CK1)和第二定时时钟线(CK2)接收信号的多个级联结构,级联结构连续产生输出信号(即,扫描信号),其中每个 级联结构包括:连接到起始信号线或先前级联结构的扫描输出线的第一晶体管; 连接到第二定时时钟线和扫描输出线的第二晶体管; 连接到高电平电源VGH的第三晶体管; 第四晶体管,连接到低电平电源VGL和第三晶体管的输出端; 第五晶体管,连接到高电平电源VGH和扫描输出线; 以及连接在第一晶体管的输出端和扫描输出线之间的第一电容器。 在M1的输出端和扫描输出线之间布置第一电容器C1可以防止M2轻微的接通,从而减少扫描驱动器的反向电流并降低功耗。
    • 5. 发明申请
    • TOUCH CONTROL STRUCTURE OF AN AMOLED DISPLAY SCREEN
    • 触控显示屏幕的触控控制结构
    • US20160306479A1
    • 2016-10-20
    • US15102719
    • 2014-12-09
    • Kunshan New Flat Panel Display Technology Center Co., Ltd.KUNSHAN GO-VISIONOX OPTO-ELECTRONICS CO., LTD.
    • Shaopeng ZHUHideo HIRAYAMAXiuqi HUANG
    • G06F3/041H01L27/32G06F3/044
    • G06F3/0412G06F3/0416G06F3/044G06F2203/04102G06F2203/04103G09G2300/0426H01L27/323H01L27/3244
    • The present invention discloses a touch control structure of an active-matrix organic light-emitting diode display screen which is disposed on a display screen substrate, the touch control structure comprises a transmitting structure and a receiving structure that are mutually inductive, the transmitting structure further comprises a first encapsulation film, a first patterned electrode and a second encapsulation film, wherein the first encapsulation film is formed on an organic light-emitting diode device disposed on the display screen substrate, the first patterned electrode is formed on the first encapsulation film, and the second encapsulation film is formed upon the first patterned electrode; the receiving structure further comprises a flexible polymer foil sheet and a second patterned electrode formed on the flexible polymer foil sheet, wherein the flexible polymer foil sheet is adhered to the second encapsulation film, and the first patterned electrode and the second patterned electrode are oppositely disposed. By configuring the transmitting structure and the receiving structure that are mutually inductive, the present invention significantly simplifies the manufacture process, reduces the cost, and can also achieve flexible touch control.
    • 本发明公开了一种设置在显示屏幕基板上的有源矩阵有机发光二极管显示屏的触摸控制结构,该触摸控制结构包括相互感应的发送结构和接收结构,该发送结构进一步 包括第一封装膜,第一图案化电极和第二封装膜,其中第一封装膜形成在设置在显示屏基板上的有机发光二极管器件上,第一图案化电极形成在第一封装膜上, 并且第二封装膜形成在第一图案化电极上; 接收结构还包括柔性聚合物箔片和形成在柔性聚合物箔片上的第二图案化电极,其中柔性聚合物箔片粘附到第二包封膜,并且第一图案化电极和第二图案化电极相对布置 。 通过配置互感的传输结构和接收结构,本发明显着简化了制造过程,降低了成本,并且还实现了灵活的触摸控制。
    • 10. 发明申请
    • PRESSURE-SENSITIVE DISPLAY TOUCH UNIT, TOUCH SCREEN, AND MANUFACTURING METHOD THEREOF
    • 压敏显示触摸单元,触摸屏及其制造方法
    • US20160334919A1
    • 2016-11-17
    • US15103862
    • 2014-12-11
    • KUNSHAN NEW FLAT PANEL DISPLAY TECHNOLOGY CENTER CO., LTD.KUNSHAN GO-VISIONOX OPTO-ELECTRONICS CO., LTD.
    • Shaopeng ZHUYong QIUHong CHENXiuqi HUANG
    • G06F3/041G06F3/045G06F3/044
    • A pressure-sensitive display screen touch-control unit, a touch screen and a manufacturing method thereof. The touch-control unit mainly comprises a driving electrode, a lower electrode, and a dielectric layer sandwiched between the driving electrode and the lower electrode. When a pressure is applied between the driving electrode and the lower electrode, a tunnel current IT is formed, and a voltage VT exists between the driving electrode and the lower electrode. With the touch-control unit, an external pressure may be converted into a current signal to make pressure an information input mode; and the touch-control unit is combined with the existing capacitive touch screen or the resistive touch screen, such that the touch-control unit may be compatible with the existing multi-point touch function, and may also sense change in pressure sensitively. Functions of the existing touch screens may be enhanced to rich operations and applications of touch screens.
    • 压敏显示屏触摸控制单元,触摸屏及其制造方法。 触摸控制单元主要包括驱动电极,下电极和夹在驱动电极和下电极之间的电介质层。 当在驱动电极和下电极之间施加压力时,形成隧道电流IT,并且在驱动电极和下电极之间存在电压VT。 利用触摸控制单元,可以将外部压力转换为电流信号以使压力成为信息输入模式; 并且触摸控制单元与现有的电容式触摸屏或电阻式触摸屏组合,使得触摸控制单元可以与现有的多点触摸功能兼容,并且还可以灵敏地感测压力变化。 可以增强现有触摸屏的功能,以丰富触摸屏的操作和应用。