Thin film transistor and display panel including the same
The present disclosure relates to an organic light emitting display device, and more particularly, to a thin film transistor using an oxide semiconductor material for a plurality of thin film transistors constituting a circuit portion of a sub-pixel and a display panel including the thin film transistor. The plurality of thin film transistors includes a plurality of switching transistors and a driving transistor. Each of the plurality of switching transistors has a first dose, and the driving transistor has a second dose different from the first dose.
1 . A display panel, comprising:
a plurality of switching transistors, each of the plurality of switching transistors including:
a first semiconductor pattern including an oxide semiconductor, and having a first dose, and
a first gate electrode; and
a driving transistor, the driving transistor including:
a second semiconductor pattern including the oxide semiconductor, and
having a second dose different from the first dose, and
a second gate electrode,
wherein a first distance between the first semiconductor pattern and the first gate electrode is different from a second distance between the second semiconductor pattern and the second gate electrode.
2 . The display panel of claim 1 , wherein the second dose is larger than the first dose.
3 . The display panel of claim 1 , wherein the first distance is larger than the second distance.
4 . The display panel of claim 1 , wherein the first gate electrode and a channel region of the first semiconductor pattern have a same width as each other.
5 . The display panel of claim 1 , wherein the second gate electrode and a channel region of the second semiconductor pattern have a same width as each other.
6 . The display panel of claim 1 , wherein the first gate electrode and the second gate electrode have a same width as each other.
7 . The display panel of claim 1 , wherein the first semiconductor pattern and the second semiconductor pattern have channel regions having a same width as each other.
8 . The display panel of claim 1 , wherein a first distance between the first semiconductor pattern and the first gate electrode is equal to a second distance between the second semiconductor pattern and the second gate electrode.
9 . The display panel of claim 8 , wherein the first gate electrode and a channel region of the first semiconductor pattern have a same width,
wherein the first gate electrode and a channel region of the first semiconductor pattern have the same width,
wherein the first gate electrode and the second gate electrode have the same width, and
wherein the channel region of the first semiconductor pattern and the channel region of the second semiconductor pattern have the same width.
10 . The display panel of claim 1 , wherein the first semiconductor pattern and the second semiconductor pattern are formed in a same layer as each other, the first gate electrode and the second gate electrode are formed in the same layer as each other,
further comprising: a gate insulating layer disposed on the first semiconductor pattern and second semiconductor pattern.
11 . The display panel of claim 10 , wherein a height of the gate insulating layer at a switching transistor of the plurality of switching transistors is higher than a height of the gate insulating layer at the driving transistor.
12 . The display panel of claim 10 , further comprising:
an auxiliary interlayer insulating layer disposed between the first semiconductor pattern and the first gate electrode.
13 . A display panel, comprising:
a plurality of switching transistors, each of the plurality of switching transistors including:
a first semiconductor pattern including an oxide semiconductor; and having a first total dose, and
a first gate electrode; and
a driving transistor, the driving transistor including:
a second semiconductor pattern including the oxide semiconductor, and having a second total dose different from the first total dose, and
a second gate electrode,
wherein a channel region of the first semiconductor pattern has a width larger than a width of a channel region of the second semiconductor pattern.
14 . The display panel of claim 13 , wherein the first gate electrode has a width larger than a width of the second gate electrode.
15 . The display panel of claim 13 , wherein the first gate electrode has a width equal to a width of the second gate electrode,
wherein a channel region of the first semiconductor pattern has a width larger than a width of a channel region of the second semiconductor pattern, and
wherein the channel region of the second semiconductor pattern has a width equal to a width of the second gate electrode.
16 . The display panel of claim 13 , wherein the first gate electrode has a width equal to a width of the second gate electrode,
wherein a channel region of the first semiconductor pattern has a width larger than a width of a channel region of the second semiconductor pattern, and
wherein the channel region of the first semiconductor pattern has a width larger than a width of the first gate electrode.