Organic light emitting display device and method of manufacturing the same
Disclosed are an organic light emitting display device and a method of manufacturing the same. In the organic light emitting display, an anode connected to a thin film transistor and a bank disposed along the edge of the anode are simultaneously formed through one mask process, and a partition is formed to cover the side surface of the anode, thereby preventing damage to a pad cover electrode by an etching solution or etching gas of the anode without any separate pad protective film.
1. An organic light emitting display device comprising:
thin film transistors disposed on a substrate;
organic light emitting elements connected to the thin film transistors, each of the organic light emitting elements comprising a first layer of an organic light emitting material, the first layer of the organic light emitting material configured to emit light when current is provided through a corresponding thin film transistor;
an auxiliary connection electrode connected to a cathode of each of the organic light emitting elements;
a first bank disposed along an edge of an anode of each of the organic light emitting elements;
a second bank disposed along an edge of the auxiliary connection electrode;
a partition with a reverse tapered shape disposed to cover a side surface of the anode,
wherein the partition is between the anode and the auxiliary connection electrode,
wherein a portion of the cathode separates the first layer of the organic light emitting material from the partition,
wherein an upper surface of the partition is wider than a lower surface of the partition, and
wherein a side surface of the first bank protrudes more than the side surface of the anode, the anode disposed under the first bank;
a side surface of the second bank protrudes more than a side surface of the auxiliary connection electrode, the auxiliary connection electrode disposed under the second bank; and
the cathode directly contacts an upper surface and the side surface of the auxiliary connection electrode; and
a second layer of the organic light emitting material at least partially on the upper surface of the partition and separated from the first layer of the organic light emitting material.
2. The organic light emitting display device according to claim 1 , wherein:
the partition is disposed to cover the side surface of the anode.
3. The organic light emitting display device according to claim 1 , wherein:
at least one of the anode and the auxiliary connection electrode is formed by sequentially stacking a lower conductive film and an upper conductive film having a multilayer structure;
the lower conductive film is formed of one selected from the group consisting of MoTi, Ti, Ta and combinations thereof; and
the upper conductive film includes a transparent conductive film formed of ITO and an opaque conductive film formed of Ag or an Ag alloy.
4. The organic light emitting display device according to claim 3 , wherein the side surface of the first bank and a side surface of the lower conductive film protrude more than a side surface of the upper conductive film.
5. The organic light emitting display device according to claim 3 , further comprising:
pad electrodes disposed in a pad area of the substrate; and
a pad cover electrode connected to a corresponding one of the pad electrodes and including the lower conductive film.
6. The organic light emitting display device according to claim 3 , further comprising a storage capacitor formed by overlapping a storage lower electrode and a storage upper electrode,
wherein the storage lower electrode is formed of a same material as a gate electrode of each of the thin film transistors, and
wherein the storage upper electrode is formed of the same material as a source electrode of each of the thin film transistors and disposed coplanar with the source electrode.
7. The organic light emitting display device according to claim 1 , further comprising:
a third bank, a second partition, and a third layer of the organic light emitting material sequentially stacked on the auxiliary connection electrode.