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    • 1. 发明授权
    • Display with dummy edge electrode
    • 显示带虚拟边缘电极
    • US06897491B2
    • 2005-05-24
    • US10501829
    • 2002-12-23
    • Boudewijn Johannes Catharinus Jacobs
    • Boudewijn Johannes Catharinus Jacobs
    • H05B33/26H01L27/32H01L51/50H05B33/06H05B33/08H01L29/22H01L29/227
    • H01L27/3288H01L27/3223
    • In an electroluminescent display device comprising layers of anode electrodes (102), cathode electrodes (104), and an electroluminescent layer (105), a dummy electrode (103) is arranged along the edge of te anode electrode layer. The dummy electrode is unconnected to the electrical control means (106,107) that control the voltage of the electrodes of the active area of the display. The unconnected state of the dummy electrode results in a situation where the dummy electrode attains a floating electric potential owing to the lateral electric field produced by neighboring electrodes. This leads to a reduction in the strength of the lateral electric field between the dummy electrode and the adjacent electrodes, thus alleviating the negative effects of electrochemical oxidation of the electrodes at the edge of the active area.
    • 在包含阳极电极(102),阴极电极(104)和电致发光层(105)的电致发光显示装置中,沿着阳极电极层的边缘设置虚拟电极(103)。 虚拟电极未连接到控制显示器的有效区域的电极的电压的电气控制装置(106,107)。 虚拟电极的未连接状态导致由于相邻电极产生的横向电场而使虚设电极达到浮置电位的情况。 这导致虚拟电极和相邻电极之间的横向电场的强度降低,从而减轻了在有源区域的边缘处的电极的电化学氧化的负面影响。
    • 3. 发明申请
    • Display with dummy edge electrode
    • 显示带虚拟边缘电极
    • US20050040391A1
    • 2005-02-24
    • US10501829
    • 2002-12-23
    • Boudewijn Johannes Catharinus Jacobs
    • Boudewijn Johannes Catharinus Jacobs
    • H05B33/26H01L27/32H01L51/50H05B33/06H05B33/08H01L35/24
    • H01L27/3288H01L27/3223
    • In an electroluminescent display device comprising layers of anode electrodes (102), cathode electrodes (104), and an electroluminescent layer (105), a dummy electrode (103) is arranged along the edge of the anode electrode layer. The dummy electrode is unconnected to the electrical control means (106, 107) that control the voltage of the electrodes of the active area of the display. The unconnected state of the dummy electrode results in a situation where the dummy electrode attains a floating electric potential owing to the lateral electric field produced by neighboring electrodes. This leads to a reduction in the strength of the lateral electric field between the dummy electrode and the adjacent electrodes, thus alleviating the negative effects of electrochemical oxidation of the electrodes at the edge of the active area.
    • 在包括阳极电极(102),阴极电极(104)和电致发光层(105)的电致发光显示装置中,沿着阳极电极层的边缘设置虚拟电极(103)。 虚拟电极未连接到控制显示器的有效区域的电极的电压的电气控制装置(106,107)。 虚拟电极的未连接状态导致由于相邻电极产生的横向电场而使虚设电极达到浮置电位的情况。 这导致虚拟电极和相邻电极之间的横向电场的强度降低,从而减轻了在有源区域的边缘处的电极的电化学氧化的负面影响。