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    • 91. 发明申请
    • Touch Screen Border Regions
    • 触摸屏边框区域
    • US20110074705A1
    • 2011-03-31
    • US12636605
    • 2009-12-11
    • Marduke YOUSEFPORSteven Porter HotellingKevin J. WhiteShih Chang Chang
    • Marduke YOUSEFPORSteven Porter HotellingKevin J. WhiteShih Chang Chang
    • G06F3/041H01J9/00
    • G06F3/0412G02F1/13338G02F1/136286G06F1/16G06F3/041G06F3/0416G06F2203/04112G09G3/3677
    • Touch screens with more compact border regions can include an active area that includes touch sensing circuitry including drive lines, and a border region around the active area. The border region can include an area of sealant deposited on conductive lines, and transistor circuitry, such as gate drivers, between the active area and the sealant. The conductive lines can extend from the sealant to the active area without electrically connecting to the transistor circuitry. The conductive lines can have equal impedances and can connect the drive lines to a touch controller off of the touch screen. A set of drive signal characteristics for the drive lines can be obtained by determining a transfer function associated with each drive line, obtaining an inverse of each transfer function, and applying a set of individual sense signal characteristics to the inverse transfer functions to obtain the corresponding set of drive signal characteristics.
    • 具有更紧凑边框区域的触摸屏可以包括有源区域,其包括包括驱动线的触摸感测电路以及有效区域周围的边界区域。 边界区域可以包括沉积在导电线上的密封剂区域,以及在有源区域和密封剂之间的晶体管电路,例如栅极驱动器。 导电线可以从密封剂延伸到有源区,而不与晶体管电路电连接。 导线可以具有相等的阻抗,并且可以将驱动线连接到远离触摸屏的触摸控制器。 可以通过确定与每个驱动线相关联的传递函数,获得每个传递函数的逆,并将一组单独的感测信号特性应用于逆传递函数来获得用于驱动线的一组驱动信号特性,以获得相应的 一组驱动信号特性。
    • 92. 发明申请
    • INTEGRATED TOUCH SCREEN
    • 集成触摸屏
    • US20110050585A1
    • 2011-03-03
    • US12547410
    • 2009-08-25
    • Steven Porter HotellingMarduke YousefporShih Chang ChangJohn Z. Zhong
    • Steven Porter HotellingMarduke YousefporShih Chang ChangJohn Z. Zhong
    • G06F3/041
    • G06F3/044G06F3/0412
    • Displays with integrated touch sensing circuitry are provided. An integrated touch screen can include multi-function circuit elements that form part of the display circuitry of the display system that generates an image on the display, and also form part of the touch sensing circuitry of a touch sensing system that senses one or more touches on or near the display. The multi-function circuit elements can be, for example, capacitors in display pixels of an LCD that are configured to operate as display circuitry in the display system, and that may also be configured to operate as touch circuitry of the touch sensing system. For example, one or more circuit elements of the display pixel stackup can form a conductive portion of the touch sensing system, such as a charge collector, which can be operated with switches and conductive lines to sense touch.
    • 提供带集成触摸感应电路的显示器。 集成触摸屏可以包括形成显示系统的显示电路的一部分的多功能电路元件,其在显示器上产生图像,并且还形成感测一个或多个触摸的触摸感测系统的触摸感测电路的一部分 在显示器上或附近。 多功能电路元件可以是例如LCD的显示像素中的电容器,其被配置为作为显示系统中的显示电路工作,并且还可以被配置为作为触摸感测系统的触摸电路来操作。 例如,显示像素堆叠的一个或多个电路元件可以形成触摸感测系统的导电部分,例如电荷收集器,其可以用开关和导电线来操作以感测触摸。
    • 96. 发明申请
    • Common Bus Design for a TFT-LCD Display
    • TFT-LCD显示器的通用总线设计
    • US20100123866A1
    • 2010-05-20
    • US12340567
    • 2008-12-19
    • Shih Chang ChangJohn Z. Zhong
    • Shih Chang ChangJohn Z. Zhong
    • G02F1/1343
    • G02F1/136286G02F2001/134345G02F2001/134372G02F2201/40
    • Embodiments of the present invention provide for a FFS TFT LCD with a high refresh rate without limiting the aperture of individual pixels. More specifically, embodiments of the invention provide for the use of common bus lines to reduce the effective resistance of the common electrode and to therefore allow for higher refresh rates of the display. Furthermore, the common bus lines can be positioned in such a manner so that they do not further reduce the aperture of the display. More specifically, the common bus lines can be positioned above or below existing elements of the display that are already opaque. Thus, adding the common bus lines need not reduce the aperture. The above can be achieved by, for example, placing the common bus lines above or below existing non-transparent lines, such as gate lines or data lines.
    • 本发明的实施例提供了一种具有高刷新率的FFS TFT LCD,而不限制各个像素的孔径。 更具体地,本发明的实施例提供了使用公共总线线路来降低公共电极的有效电阻并因此允许显示器的更高刷新率。 此外,公共总线线路可以以这样的方式定位,使得它们不会进一步减小显示器的孔径。 更具体地,公共总线可以位于显示器的已经不透明的现有元件的上方或下方。 因此,添加公共总线不需要减小孔径。 上述可以通过例如将公共总线放置在现有的不透明线路之上或之下,例如栅极线或数据线来实现。