Touch Sensitive Display
    2.
    发明申请
    Touch Sensitive Display 审中-公开
    触摸敏感显示

    公开(公告)号:US20070222762A1

    公开(公告)日:2007-09-27

    申请号:US10599827

    申请日:2005-04-08

    IPC分类号: G06F3/033

    摘要: There is provided a touch sensitive display comprising a passive substrate, an active substrate, and a display material disposed between the passive and active substrates, wherein driving circuitry for driving a pixel of the display and touch sensing circuitry are arranged on the active substrate. The touch sensing circuitry comprises at least one component with a first and a second electrode, wherein the electrodes are arranged to displace with respect to each other in response to a touch input.

    摘要翻译: 提供了包括无源基板,有源基板和布置在无源和有源基板之间的显示材料的触敏显示器,其中用于驱动显示器和触摸感测电路的像素的驱动电路被布置在有源基板上。 触摸感测电路包括具有第一和第二电极的至少一个部件,其中电极被布置为响应于触摸输入而相对于彼此移位。

    Interactive display system
    3.
    发明申请
    Interactive display system 审中-公开
    互动显示系统

    公开(公告)号:US20060139334A1

    公开(公告)日:2006-06-29

    申请号:US10545328

    申请日:2004-01-29

    IPC分类号: G09G5/00

    摘要: TFTs (10) within a display device (1) are intentionally made sensitive to radiation from an external light source (12), for example by making a pin-hole (34) in the socalled black-matrix layer (33). The voltage across the pixel (8) or sensing this voltage drop just before refreshing the pixel content during 5 the next refresh cycle, it is possible to distinguish between an intentionally illuminated pixel (8) or pixel patterns (37, 38) and a non-illuminated pixel (8).

    摘要翻译: 显示装置(1)内的TFT(10)有意地对来自外部光源(12)的辐射敏感,例如通过在所谓的黑矩阵层(33)中形成针孔(34)。 像素(8)两端的电压或者在下一次刷新周期的5次之前感测到这个电压降,可以区分有意照亮的像素(8)或像素图案(37,38) 发光像素(8)。

    Organic electroluminescent device

    公开(公告)号:US20050162072A1

    公开(公告)日:2005-07-28

    申请号:US11080883

    申请日:2005-03-15

    IPC分类号: H01L21/66 H01L51/50 H01J1/62

    CPC分类号: H01L51/5012 G01R31/2642

    摘要: The invention provides a tool to select reliable organic LED devices, where the risk for failure before the end of its lifetime is low. This tool comprises the steps of: i) subjecting the device to a high electric field over the electroluminescent layer. This leads to a division of the devices into two, clearly separated, populations, namely one population with a low leakage current (current through the electroluminescent layer in reverse voltage operation) and one population with a high leakage current. In this step, the first population is selected in accordance with a current criterion. ii) detecting instabilities in the leakage current, referred to as noise. It has been established that these instabilities arise in particular at reverse driving voltages between 1 and 10 Volts. These instabilities are a measure of the occurrence of early failures during operation. In this step, the devices are selected in accordance with a noise criterion.