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    • 1. 发明授权
    • High resolution organic light emitting display with increased aperture ratio
    • 高分辨率有机发光显示屏,增加孔径比
    • US08445910B2
    • 2013-05-21
    • US13074142
    • 2011-03-29
    • Jong-Yun KimIl-Jeong LeeChoong-Youl Im
    • Jong-Yun KimIl-Jeong LeeChoong-Youl Im
    • H01L29/04
    • H01L27/3276H01L27/1255H01L27/3265
    • In an organic light emitting display, a conductive layer is formed on the bottom surface of a substrate, and the conductive layer is used as a wiring line for supplying a power source, and as the electrode of a capacitor. Therefore, it is possible to easily secure the aperture ratio of a pixel, to easily solve the problem of IR drops by controlling the area or thickness of the conductive layer, and to easily secure the electrostatic capacity of the capacitor. In particular, in the case of a front surface light emitting structure, since a capacitor of a metal/insulating layer/metal (MIM) structure may be formed in a light emitting region, enough aperture ratio and electrostatic capacity may be secured. Therefore, a high resolution organic light emitting display may be easily realized, and enough aperture ratio and electrostatic capacity are secured so as to realize high picture quality.
    • 在有机发光显示器中,在基板的底面上形成导电层,并且将导电层用作用于供电的布线和电容器的电极。 因此,可以容易地确保像素的开口率,通过控制导电层的面积或厚度容易地解决IR滴的问题,并且容易地确保电容器的静电容量。 特别地,在前面发光结构的情况下,由于可以在发光区域形成金属/绝缘层/金属(MIM)结构的电容器,因此可以确保足够的开口率和静电容量。 因此,可以容易地实现高分辨率有机发光显示器,并且确保足够的开口率和静电容量,以便实现高画质。
    • 2. 发明申请
    • Organic Light Emitting Display
    • 有机发光显示
    • US20110291091A1
    • 2011-12-01
    • US13074142
    • 2011-03-29
    • Jong-Yun KimIl-Jeong LeeChoong-Youl Im
    • Jong-Yun KimIl-Jeong LeeChoong-Youl Im
    • H01L51/52
    • H01L27/3276H01L27/1255H01L27/3265
    • In an organic light emitting display, a conductive layer is formed on the bottom surface of a substrate, and the conductive layer is used as a wiring line for supplying a power source, and as the electrode of a capacitor. Therefore, it is possible to easily secure the aperture ratio of a pixel, to easily solve the problem of IR drops by controlling the area or thickness of the conductive layer, and to easily secure the electrostatic capacity of the capacitor. In particular, in the case of a front surface light emitting structure, since a capacitor of a metal/insulating layer/metal (MIM) structure may be formed in a light emitting region, enough aperture ratio and electrostatic capacity may be secured. Therefore, a high resolution organic light emitting display may be easily realized, and enough aperture ratio and electrostatic capacity are secured so as to realize high picture quality.
    • 在有机发光显示器中,在基板的底面上形成导电层,并且将导电层用作用于供电的布线和电容器的电极。 因此,可以容易地确保像素的开口率,通过控制导电层的面积或厚度容易地解决IR滴的问题,并且容易地确保电容器的静电容量。 特别地,在前面发光结构的情况下,由于可以在发光区域形成金属/绝缘层/金属(MIM)结构的电容器,因此可以确保足够的开口率和静电容量。 因此,可以容易地实现高分辨率有机发光显示器,并且确保足够的开口率和静电容量,以便实现高画质。