Light emitting display device
A light emitting display device includes a circuit layer including a thin film transistor (TFT) and an auxiliary power electrode disposed on a substrate, at least one protection layer covering the circuit layer, and a contact portion passing through the at least one protection layer to expose a portion of the auxiliary power electrode, wherein the TFT includes an active layer, and the auxiliary power electrode is disposed on the same layer as the active layer.
1 . A light emitting display device comprising:
a substrate;
a circuit layer including a thin film transistor (TFT) on the substrate;
an auxiliary power electrode disposed on the substrate;
at least one protection layer covering the circuit layer; and
a contact portion passing through the at least one protection layer to expose a portion of the auxiliary power electrode,
wherein the TFT comprises an active layer, and the auxiliary power electrode is disposed on a same layer as the active layer,
wherein the TFT comprises:
the active layer;
a gate electrode overlapping with a channel region of the active layer;
a first source electrode or a first drain electrode connected with a first region of the active layer; and
a second source electrode or a second drain electrode connected with a second region of the active layer, and
the gate electrode, the first source electrode or the first drain electrode, and the second source electrode or the second drain electrode comprise a same material, and
wherein the at least one protection layer comprises:
a first protection layer formed of an inorganic insulating material, on the auxiliary power electrode; and
a second protection layer formed of an organic insulating material, on the first protection layer.
2 . The light emitting display device of claim 1 , wherein the auxiliary power electrode comprises a same material as a material of the active layer.
3 . The light emitting display device of claim 1 , wherein the active layer comprises one or more layers.
4 . The light emitting display device of claim 3 , wherein the active layer comprises:
a first active layer;
a second active layer on the first active layer; and
a third active layer on the second active layer.
5 . The light emitting display device of claim 4 , wherein the first active layer comprises an oxide semiconductor layer, the oxide semiconductor layer including at least one of indium gallium zinc oxide (IGZO), zinc tin oxide (ZTO), or zinc indium oxide (ZIO),
the second active layer comprises a conductive oxide layer, the conductive oxide layer including at least one of indium tin oxide (ITO) or indium zinc oxide (IZO), and
the third active layer comprises a metal layer, the metal layer including at least one of molybdenum (Mo), titanium (Ti), or a Mo—Ti alloy (MoTi).
6 . The light emitting display device of claim 1 , wherein each of the gate electrode, the first source electrode or the first drain electrode, and the second source electrode or the second drain electrode comprises one or more layers.
7 . The light emitting display device of claim 6 , wherein each of the gate electrode, the first source electrode or the first drain electrode, and the second source electrode or the second drain electrode comprises:
a first metal layer; and
a second metal layer on the first metal layer, and
the second metal layer comprises a metal which is lower in resistivity than the first metal layer.
8 . The light emitting display device of claim 7 , wherein the first metal layer comprises at least one of molybdenum (Mo), titanium (Ti), or a Mo—Ti alloy (MoTi), and
the second metal layer comprises copper (Cu).
9 . The light emitting display device of claim 1 , wherein the circuit layer further comprises:
a light blocking layer disposed on the substrate to overlap the active layer of the TFT;
an auxiliary power line connected with the auxiliary power electrode; and
an auxiliary power connection pattern connected between the auxiliary power electrode and the auxiliary power line.
10 . The light emitting display device of claim 9 , wherein the auxiliary power line comprises a same material as a material of the light blocking layer and is disposed on a same layer as the light blocking layer.
11 . The light emitting display device of claim 9 , wherein the auxiliary power connection pattern comprises a same material as a material of each of the gate electrode, the first source electrode or the first drain electrode, and the second source electrode or the second drain electrode and is disposed on a same layer as the gate electrode, the first source electrode or the first drain electrode, and the second source electrode or the second drain electrode.
12 . The light emitting display device of claim 9 , wherein the circuit layer further comprises a storage capacitor, and
the storage capacitor comprises:
a first capacitor electrode formed of a same material as a material of the light blocking layer, on a same layer as the light blocking layer;
a second capacitor electrode formed of a same material as a material of the active layer, on a same layer as the active layer; and
a third capacitor electrode formed of a same material as a material of each of the gate electrode, the first source electrode or the first drain electrode, and the second source electrode or the second drain electrode, on the same layer as the gate electrode, the first source electrode or the first drain electrode, and the second source electrode or the second drain electrode.
13 . The light emitting display device of claim 1 , wherein an undercut region, exposing at least a portion of the auxiliary power electrode in the contact portion, is in the first protection layer and the second protection layer.
14 . The light emitting display device of claim 13 , further comprising:
a pixel electrode disposed on the second protection layer and connected to the TFT;
an emission layer on the pixel electrode; and
a common electrode on the emission layer,
wherein the common electrode directly contacts the auxiliary power electrode, in the undercut region.
15 . The light emitting display device of claim 14 , wherein the at least one protection layer further comprises a contact hole exposing the first source electrode or the first drain electrode, and the second source electrode or the second drain electrode of the TFT, and
the pixel electrode comprises:
a first pixel electrode on the contact hole; and
a second pixel electrode on the first pixel electrode.
16 . The light emitting display device of claim 15 , further comprising a pad electrode disposed in a pad area of the substrate,
wherein at least a portion of the pad electrode comprises a same material as a material of the first pixel electrode.
17 . The light emitting display device of claim 13 , wherein the first protection layer comprises a first opening portion exposing a portion of the auxiliary power electrode,
the second protection layer comprises a second opening portion, the second opening portion including a protrusion portion overlapping at least a portion of the first opening portion, and
the undercut region is under the protrusion portion of the second opening portion.
18 . The light emitting display device of claim 13 , further comprising an undercut structure formed of the same material as a material of the at least one protection layer, on a portion of the auxiliary power electrode in the contact portion,
wherein the undercut structure comprises:
a first pattern formed of the same material as a material of the first protection layer, on a portion of the auxiliary power electrode; and
a second pattern formed of the same material as a material of the second protection layer to protrude from the first pattern, on the first pattern, and
the undercut region is under the second pattern protruding from a lateral surface of the first pattern.
19 . The light emitting display device of claim 18 , wherein the undercut structure is formed as an island pattern on a portion of the auxiliary power electrode.