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    • 1. 发明授权
    • Electroluminescent display touch panel
    • 电致发光显示触摸屏
    • US08368656B2
    • 2013-02-05
    • US12324838
    • 2008-11-27
    • Chao-Chen WangYao-Jen HsiehHeng-Sheng ChouPang-Chiang ChiaYu-Cheng Tsai
    • Chao-Chen WangYao-Jen HsiehHeng-Sheng ChouPang-Chiang ChiaYu-Cheng Tsai
    • G06F3/041
    • G06F3/045
    • An electroluminescent display touch panel includes a base substrate and an encapsulating substrate. The base substrate includes a pixel switching device, a readout device, an electroluminescent device, and a sensing pad. The pixel switching device and the electroluminescent device are disposed in a display region. The readout device and the sensing pad are disposed in a non-display region. The encapsulating substrate includes a first spacer, a sensing spacer, and a conductive layer. The first spacer is disposed on the surface of the encapsulating substrate facing the base substrate, maintaining a cell gap between the base substrate and the encapsulating substrate. The sensing spacer is disposed on the surface of the encapsulating substrate facing the base substrate and corresponding to the sensing pad. The conductive layer is formed on the surface of the sensing spacer facing the sensing pad.
    • 电致发光显示触摸面板包括基底基板和封装基板。 基底基板包括像素切换装置,读出装置,电致发光装置和感测板。 像素开关器件和电致发光器件设置在显示区域中。 读出装置和感测板设置在非显示区域中。 封装基板包括第一间隔件,感测间隔件和导电层。 第一间隔物设置在封装衬底的面向基底衬底的表面上,保持基底衬底和封装衬底之间的单元间隙。 感测间隔件设置在封装衬底的面向基底衬底并对应于感测垫的表面上。 导电层形成在面对传感垫的感测隔片的表面上。
    • 3. 发明申请
    • Electroluminescent Display Touch Panel
    • 电致发光显示触摸屏
    • US20100001965A1
    • 2010-01-07
    • US12324838
    • 2008-11-27
    • Chao-Chen WangYao-Jen HsiehHeng-Sheng ChouPang-Chiang ChiaYu-Cheng Tsai
    • Chao-Chen WangYao-Jen HsiehHeng-Sheng ChouPang-Chiang ChiaYu-Cheng Tsai
    • G06F3/041
    • G06F3/045
    • An electroluminescent display touch panel includes a base substrate and an encapsulating substrate. The base substrate includes a pixel switching device, a readout device, an electroluminescent device, and a sensing pad. The pixel switching device and the electroluminescent device are disposed in a display region. The readout device and the sensing pad are disposed in a non-display region. The encapsulating substrate includes a first spacer, a sensing spacer, and a conductive layer. The first spacer is disposed on the surface of the encapsulating substrate facing the base substrate, maintaining a cell gap between the base substrate and the encapsulating substrate. The sensing spacer is disposed on the surface of the encapsulating substrate facing the base substrate and corresponding to the sensing pad. The conductive layer is formed on the surface of the sensing spacer facing the sensing pad.
    • 电致发光显示触摸面板包括基底基板和封装基板。 基底基板包括像素切换装置,读出装置,电致发光装置和感测板。 像素开关器件和电致发光器件设置在显示区域中。 读出装置和感测板设置在非显示区域中。 封装基板包括第一间隔件,感测间隔件和导电层。 第一间隔物设置在封装衬底的面向基底衬底的表面上,保持基底衬底和封装衬底之间的单元间隙。 感测间隔件设置在封装衬底的面向基底衬底并对应于感测垫的表面上。 导电层形成在面对传感垫的感测隔片的表面上。
    • 9. 发明申请
    • OVER-DRIVING DEVICE
    • 过驱动装置
    • US20090009461A1
    • 2009-01-08
    • US11836829
    • 2007-08-10
    • Pang-Chiang ChiaChun-Hung HuangYao-Jen HsiehHeng-Sheng Chou
    • Pang-Chiang ChiaChun-Hung HuangYao-Jen HsiehHeng-Sheng Chou
    • G09G3/36
    • G09G3/2092G09G3/3648G09G2320/0252G09G2340/02G09G2340/16G09G2360/18
    • An over-driving device is provided. In a first frame, a compression circuit compresses a first image signal to generate a first compression image signal, and a buffer temporarily stores the first compression image signal. In a following second frame, the compression circuit compresses a second image signal to generate a second compression image signal, and the buffer outputs the first compression image signal to serve as a first buffer image signal. A comparison circuit compares the second compression image signal and the first buffer image signal and generates an enable signal according comparison result. A decompression circuit decompresses the first buffer image signal to generate a previous image signal. An over-driving unit receives the second image signal to serve to a current image signal and receives the previous image signal and the enable signal. The over-driving unit over drives the display device or not according to the enable signal.
    • 提供过驱动装置。 在第一帧中,压缩电路压缩第一图像信号以产生第一压缩图像信号,并且缓冲器临时存储第一压缩图像信号。 在接下来的第二帧中,压缩电路压缩第二图像信号以产生第二压缩图像信号,并且缓冲器输出第一压缩图像信号以用作第一缓冲图像信号。 比较电路比较第二压缩图像信号和第一缓冲图像信号,并根据比较结果产生使能信号。 解压缩电路解压缩第一缓冲图像信号以产生先前的图像信号。 过驱动单元接收第二图像信号以用于当前图像信号并接收先前的图像信号和使能信号。 过驱动单元根据使能信号驱动显示设备。
    • 10. 发明授权
    • Over-driving device
    • 过驱动装置
    • US08125437B2
    • 2012-02-28
    • US11836829
    • 2007-08-10
    • Pang-Chiang ChiaChun-Hung HuangYao-Jen HsiehHeng-Sheng Chou
    • Pang-Chiang ChiaChun-Hung HuangYao-Jen HsiehHeng-Sheng Chou
    • G09G3/36
    • G09G3/2092G09G3/3648G09G2320/0252G09G2340/02G09G2340/16G09G2360/18
    • An over-driving device is provided. In a first frame, a compression circuit compresses a first image signal to generate a first compression image signal, and a buffer temporarily stores the first compression image signal. In a following second frame, the compression circuit compresses a second image signal to generate a second compression image signal, and the buffer outputs the first compression image signal to serve as a first buffer image signal. A comparison circuit compares the second compression image signal and the first buffer image signal and generates an enable signal according comparison result. A decompression circuit decompresses the first buffer image signal to generate a previous image signal. An over-driving unit receives the second image signal to serve to a current image signal and receives the previous image signal and the enable signal. The over-driving unit over drives the display device or not according to the enable signal.
    • 提供过驱动装置。 在第一帧中,压缩电路压缩第一图像信号以产生第一压缩图像信号,并且缓冲器临时存储第一压缩图像信号。 在接下来的第二帧中,压缩电路压缩第二图像信号以产生第二压缩图像信号,并且缓冲器输出第一压缩图像信号以用作第一缓冲图像信号。 比较电路比较第二压缩图像信号和第一缓冲图像信号,并根据比较结果产生使能信号。 解压缩电路解压缩第一缓冲图像信号以产生先前的图像信号。 过驱动单元接收第二图像信号以用于当前图像信号并接收先前的图像信号和使能信号。 过驱动单元根据使能信号驱动显示设备。