Abstract:
An organic EL display device that is adaptive for improving luminous brightness and reducing power consumption, and a fabricating method thereof are disclosed.An organic EL display device according to the present invention includes a plurality of anode electrodes; and a conductive light shielding film which has conductivity and is formed on the anode electrode in a separate pattern so that the anode electrodes are insulated from one another.
Abstract:
An organic electroluminescent device including a transparent substrate; transparent electrodes extended in one direction on the substrate; connecting electrodes for current supply formed in a crossing direction of the transparent electrodes, not to overlap the transparent electrodes, on one side of the substrate; scan-electrodes formed on the connecting electrodes; an insulation layer formed to cover a predetermined area of the substrate, the transparent electrodes, the connecting electrodes, and the scan-connecting electrodes except the emission parts of the transparent electrodes and the contact parts of the scan-connecting electrodes, wherein the area (AE) of the emission part, the number (N) of the emission parts formed on a scan line, and the area (AC) of the contact part are determined under the formula of [(AE×N)/100 ≦AC]; an organic layer formed on the emission parts of the transparent electrodes; and a scan electrode layer.
Abstract translation:一种有机电致发光器件,包括透明衬底; 在基板上沿一个方向延伸的透明电极; 连接在透明电极的交叉方向上形成的电流的电极,不与透明电极重叠; 形成在连接电极上的扫描电极; 形成为覆盖基板的预定区域,透明电极,连接电极以及除了透明电极的发射部分和扫描连接电极的接触部分之外的扫描连接电极的绝缘层,其中, 确定在发射部分上的发射部分的数量(N)和形成在扫描线上的发射部分的数量(N)和接触部分的面积(A SUB C&lt;&gt;) 在[(A u> x N)/ 100 <= A C C]的式中, 形成在透明电极的发射部分上的有机层; 和扫描电极层。
Abstract:
The present invention relates to the organic electroluminescent device forming a contact part contacting with a scan electrode layer on a scan-connecting electrode, and supplying electric current to an emission part through the contact part. The organic electroluminescent device according to one embodiment of the present invention includes a transparent substrate; a plurality of transparent electrodes for the anode, extended in one direction on the substrate; a plurality of connecting electrodes for current supply formed in the crossing direction to the extended direction of the transparent electrodes, not to overlap the transparent electrodes, on one side of the substrate; a plurality of scan-connecting electrodes formed on the connecting electrodes; an insulation layer formed to cover a predetermined area of the substrate, the transparent electrodes, the connecting electrodes, and the scan-connecting electrodes except the emission parts of the transparent electrodes and the contact parts of the scan-connecting electrodes, wherein the area (AE) of the emission part, the number (N) of the emission parts formed on a scan line, and the area (AC) of the contact part are determined under the formula of [(AE×N)/100≦AC]; an organic layer formed on the emission parts of the transparent electrodes; and a scan electrode layer formed to cover the contact parts, the emission parts, and the insulation layer.
Abstract:
There are disclosed an organic electro luminescence display device that is adaptive for preventing its light emitting efficiency and picture quality from being deteriorated, and a fabricating method thereof.An organic electro luminescence display device according to an embodiment of the present invention includes an organic electro luminescence array having first and second electrodes formed on a substrate with an organic light emitting layer therebetween, and a barrier rib in parallel to any one of the first and second electrodes; a protective barrier rib formed to be connected to each of the barrier ribs and to enclose the organic electro luminescence array; and at least one dummy barrier rib located at a corner area of the protective barrier rib and connected to the barrier rib and the protective barrier rib.
Abstract:
There is disclosed an organic electro luminescence display device that is adaptive for preventing the deterioration of its light emitting efficiency and picture quality, and a fabricating method thereof.An organic electro luminescence display device that is adaptive for preventing the deterioration of its light emitting efficiency and picture quality, and a fabricating method thereof are provided. The organic electro luminescence display device as embodied includes an organic electro luminescence array having first and second electrodes formed on a substrate with an organic light emitting layer therebetween, and a barrier rib in parallel to any one of the first and second electrodes; a protective barrier rib formed to enclose the organic electro luminescence array; and at least one dummy barrier rib located inside a corner area of the protective barrier rib and formed to be bent along the protective barrier rib.