Organic electroluminscent display device
An organic electroluminescent display device in which a wiring layer, an insulating layer 3 , first electrodes, an organic electroluminescent layer 5 , and second electrodes 6 are laminated on a substrate 1 , wherein the wiring layer sandwiched between a row of the first electrodes 4 and the substrate 1 comprises a plurality of feed wirings 2 extending in the row direction, and at least one first electrode 4 is connected to each feed wiring 2.
1 . An organic electroluminescent display device in which a wiring layer, an insulating layer, first electrodes, an organic electroluminescent layer, and second electrodes are laminated on a substrate, with luminescence in the organic electroluminescent layer being transmitted through the second electrodes, wherein the wiring layer sandwiched between a row of the first electrodes and the substrate comprises a plurality of feed wirings extending in the row direction, and at least one first electrode is connected to each feed wiring.
2 . An organic electroluminescent display device according to claim 1 , wherein a plurality of first electrodes is connected to each feed wiring, and the plurality of first electrodes is arranged adjacent to each other, thereby forming a continuous pixel row.
3 . An organic electroluminescent display device according to claim 2 , wherein the feed wiring corresponding to a pixel row within a screen passes through a region of the pixel row a little further to an outer periphery of the screen than the pixel row, and is drawn out to the outer periphery of the screen.
4 . An organic electroluminescent display device according to claim 3 , wherein a plurality of the second electrodes is connected to the feed wirings in a direction crossing the pixel row, to constitute a passive matrix driven pixel circuit in which the first electrodes side is designated as signal lines, and the second electrodes side is designated as scan lines.
5 . An organic electroluminescent display device according to claim 4 , wherein the pixel circuit comprises M×N pixels, a scan region is divided into S regions, and the number of signal lines in one scan region is M lines, and the number of scan lines is N/S lines.
6 . An organic electroluminescent display device according to claim 4 , wherein a connecting portion between the feed wiring and the first electrode is provided at a position where it does not overlap projectively on the second electrode.
7 . An organic electroluminescent display device according to claim 5 , wherein a connecting portion between the feed wiring and the first electrode is provided at a position where it does not overlap projectively on the second electrode 6 .
8 . An organic electroluminescent display device according to claim 4 , wherein the pixel circuit comprises M×N pixels, a scan region is divided into S regions, and the number of signal lines in one scan region is M lines, and the number of scan lines is N/S lines.
9 . An organic electroluminescent display device according to claim 5 , wherein the pixel circuit comprises M×N pixels, a scan region is divided into S regions, and the number of signal lines in one scan region is M lines, and the number of scan lines is N/S lines.
10 . An organic electroluminescent display device according to claim 6 , wherein the pixel circuit comprises M×N pixels, a scan region is divided into S regions, and the number of signal lines in one scan region is M lines, and the number of scan lines is N/S lines.
11 . An organic electroluminescent display device according to claim 7 , wherein the pixel circuit comprises M×N pixels, a scan region is divided into S regions, and the number of signal lines in one scan region is M lines, and the number of scan lines is N/S lines.