Light emitting diode display device
The present disclosure relates to an LED display device, and more particularly, to an LED display device including a repair structure for a deteriorated pixel. In the present disclosure, a sub LED electrically coupled to first and second connecting electrodes for applying a voltage to a LED is disposed on a deteriorated LED. Thus, deterioration of a display quality due to a deteriorated pixel is prevented. Since it is not required to remove a deteriorated LED, a fabrication cost is reduced and a process efficiency is improved.
1. An LED display device, comprising:
first and second thin film transistors on a substrate;
a first LED electrically coupled to the first thin film transistor;
a second LED electrically coupled to the second thin film transistor; and
a sub LED on the first LED, the sub LED electrically coupled to the first thin film transistor and including a reflecting layer reflecting a light toward a direction opposite to the first LED,
wherein the second LED and the sub LED are configured to emit light when a signal is applied to the first and second thin film transistors.
2. The LED display device according to claim 1 , wherein the first LED includes a first n-type electrode electrically coupled to a drain electrode of the thin film transistor through a first connecting electrode, and a first p-type electrode electrically coupled to a common line through a second connecting electrode, and
wherein the sub LED includes a second n-type electrode electrically coupled to the first connecting electrode, and a second p-type electrode electrically coupled to the second connecting electrode.
3. The LED display device according to claim 2 , further comprising first-first and first-second semiconductor layers and a first active layer between the first n-type electrode and the first p-type electrode, and second-first and second-second semiconductor layers and a second active layer between the second n-type electrode and the second p-type electrode.
4. The LED display device according to claim 3 , wherein the reflecting layer is disposed between the second-second semiconductor layer and the second p-type electrode.
5. The LED display device according to claim 3 , wherein the reflecting layer is disposed between the second-first semiconductor layer and the second n-type electrode.
6. The LED display device according to claim 2 , wherein the second p-type electrode is electrically coupled to the second connecting electrode through a third connecting electrode.
7. The LED display device according to claim 2 , wherein the second p-type electrode is electrically coupled to an auxiliary electrode extending from the second connecting electrode.
8. The LED display device according to claim 7 , wherein the first n-type electrode and the first p-type electrode of the first LED are disposed along a first direction, and
wherein the second n-type electrode and the second p-type electrode of the sub LED are disposed along the first direction.
9. The LED display device according to claim 7 , wherein the first n-type electrode and the first p-type electrode of the first LED are disposed along a first direction, and
wherein the second n-type electrode and the second p-type electrode of the sub LED are disposed along a second direction different from the first direction.
10. The LED display device according to claim 2 , further comprising a first bump between the first connecting electrode and the second n-type electrode, and a second bump between the second connecting electrode and the second p-type electrode.