Display device and method for fabricating the same
Disclosed herein are a display device with a reduced bezel area and a method for fabricating the same. A wiring electrode disposed on a substrate is electrically connected to a connection electrode disposed on an inclined surface of a circuit board in contact with the substrate, and the connection electrode is electrically connected to a circuit wiring disposed on the circuit board. Therefore, an inactive area such as a pad portion for connecting the substrate with the circuit board is not required, such that the bezel area can be reduced.
1. A display device, comprising:
a substrate with light-emitting elements and wiring electrodes for supplying driving signals and current thereto;
a circuit board disposed on the substrate and covering a part of the wiring electrodes, a plurality of circuit wirings being disposed on a first surface of the circuit board, the circuit board including:
an inclined surface sloping down from the first surface, and
a side surface at an end of the inclined surface to form a step with respect to the substrate; and
a plurality of connection electrodes on the inclined surface of the circuit board and extending between the substrate and the first surface of the circuit board, and respectively connecting the wiring electrodes on the substrate to the circuit wirings on the first surface of the circuit board.
2. The display device of claim 1 , wherein the first surface of the circuit board is parallel to a surface of the substrate.
3. The display device of claim 1 , further comprising:
a buffer layer on the substrate at the side surface of the circuit board and under the connection electrodes for covering the step between the circuit board and the substrate.
4. The display device of claim 3 , wherein the buffer layer has a tapered shape with an inclined surface aligned with the inclined surface of the circuit board, and
wherein the connection electrodes are on the inclined surface of the of the buffer layer between the substrate and the inclined surface of the circuit board.
5. The display device of claim 1 , wherein a reflective layer is disposed between the circuit board and the substrate.
6. The display device of claim 1 , wherein the connection electrodes and/or at least one dummy electrode are on the inclined surface of the circuit board and extend from the substrate to the first surface of the circuit board.
7. The display device of claim 6 , wherein the dummy electrode and/or the connection electrodes have at least one of diamond, round, wave, and stripe shapes.
8. The display device of claim 1 , wherein at least one dummy electrode is disposed between adjacent connection electrodes.
9. The display device of claim 8 , wherein the dummy electrode is floating.
10. The display device of claim 1 , wherein the circuit board includes a flexible board and at least a part of the circuit board is attached to the substrate.
11. The display device of claim 1 , wherein the wiring electrodes include gate lines and/or data lines.
12. The display device of claim 1 , further comprising:
a planarization layer on the substrate and under the circuit board, the planarization layer having a side surface aligned with the side surface of the planarization layer; and
a buffer layer on the substrate at the side surface of the circuit board and the side surface of the planarization layer, and under the connection electrodes.
13. A method for fabricating a display device, the method comprising:
disposing wiring electrodes and light-emitting elements on a substrate;
disposing a circuit board on the substrate to cover a part of the wiring electrodes, the circuit board having a first surface, on which a plurality of circuit wirings is disposed, an inclined surface sloping down from the first surface, and a side surface at an end of the inclined surface, the side surface being at a steeper angle with respect to the substrate than the inclined surface; and
disposing connection electrodes on the inclined surface of the circuit board for respectively connecting the wiring electrodes on the substrate with the circuit wirings on the circuit board.
14. The method of claim 13 , wherein the disposing of the circuit board on the substrate further comprises:
bonding the substrate and the circuit board using an adhesive.
15. The method of claim 13 , wherein the connecting of the wiring electrodes on the substrate with the circuit wirings on the circuit board comprises:
applying a conductive material so that a part of the wiring electrodes is connected to the circuit wirings, respectively, and then patterning the connection electrodes using a laser.
16. The method of claim 13 , further comprising:
disposing a buffer layer on the substrate at the side surface of the circuit board, the buffer layer having a tapered shape with an inclined surface aligned with the inclined surface of the circuit board,
wherein the disposing of the connection electrodes includes disposing the connection electrodes on the inclined surface of the of the buffer layer and the inclined surface of the circuit board.
17. The method of claim 13 , further comprising:
disposing a planarization layer on the substrate,
wherein the disposing of the circuit board on the substrate includes disposing the circuit board on the planarization layer on the substrate.
18. A display device, comprising:
a substrate with light-emitting elements and wiring electrodes for supplying driving signals and current to the light-emitting elements;
a circuit board disposed on the substrate and covering a part of the wiring electrodes, a plurality of circuit wirings being disposed on a first surface of the circuit board; and
a plurality of connection electrodes respectively connecting the wiring electrodes to the circuit wirings,
wherein the circuit board has an inclined surface, and the connection electrodes extend on the inclined surface to the first surface of the circuit board,
wherein the connection electrodes are implemented in a pattern of fine electrodes and disposed on the inclined surface, and
wherein the pattern of fine electrodes comprises connection electrodes having a smaller width and a smaller separation distance between each other than the wiring electrodes or the circuit wirings.
19. The display device of claim 18 , wherein the inclined surface is disposed between the first surface and the substrate, or the first surface extends in parallel to the substrate.
20. The display device of claim 18 , further comprising:
a buffer layer at the inclined surface of the circuit board to compensate for a step difference between the circuit board and the substrate.