Touch display device
A touch display device for preventing the occurrence of a short circuit between routing lines is disclosed. The touch display device includes a dam forming a boundary with an encapsulation unit covering a light-emitting element, and the dam is formed such that the height thereof in a region that overlaps routing lines, which are connected to touch electrodes disposed on the encapsulation unit, and the height thereof in a region that does not overlap the routing lines are different from each other, thereby preventing the occurrence of a short circuit between the routing lines.
1. A touch display device, comprising:
a light-emitting element disposed on a substrate;
an encapsulation unit disposed on the light-emitting element;
a plurality of touch electrodes disposed on the encapsulation unit;
routing lines connected to the plurality of touch electrodes;
a first dam disposed adjacent to an active area in which the light-emitting element is disposed; and
a second dam spaced apart from the first dam and disposed farther from the active area than the first dam,
wherein a first distance between the first dam and the second dam in a region that the first dam and the second dam overlap the routing lines is longer than a second distance between the first dam and the second dam in a region that the first dam and the second dam do not overlap the routing lines,
wherein each of the first and second dams includes at least first and second sub-dams which are sequentially stacked, and
wherein the second sub-dam is disposed on side and top surfaces of the first sub-dam so as to cover the side and top surfaces of the first sub-dam.
2. The touch display device according to claim 1 , further comprising:
a thin-film transistor connected to the light-emitting element;
a pixel planarization layer disposed on the thin-film transistor;
a bank disposed on the pixel planarization layer; and
a spacer disposed on the bank.
3. The touch display device according to claim 2 , wherein the first dam and the second dam are formed of same materials as at least two of the pixel planarization layer, the bank, and the spacer.
4. The touch display device according to claim 1 , wherein at least one of the routing lines is disposed along a side surface of the encapsulation unit.
5. The touch display device according to claim 1 , wherein the encapsulation unit comprises a plurality of inorganic encapsulation layers and at least one organic encapsulation layer.
6. The touch display device according to claim 5 , further comprising:
a touch pad electrically connected to at least one of the routing lines.
7. The touch display device according to claim 6 , wherein at least one of the plurality of inorganic encapsulation layers extends more toward the touch pad than the at least one organic encapsulation layer.
8. The touch display device according to claim 6 , wherein the touch pad is disposed on one side of the substrate, and a distance between the first dam and the second dam is the same on the other side where the touch pad is not disposed.
9. The touch display device according to claim 1 , further comprising:
an auxiliary electrode disposed between the active area and the first dam.
10. The touch display device according to claim 9 , wherein the auxiliary electrode is disposed on the first sub-dam of the first dam.
11. The touch display device according to claim 1 , further comprising:
a black matrix disposed on the plurality of touch electrodes.
12. The touch display device according to claim 11 , wherein the black matrix is disposed so as to overlap the routing lines.