Semiconductor device
View Patent ↗To provide a semiconductor device which can be miniaturized or highly integrated. To obtain a semiconductor device including an oxide semiconductor, which has favorable electrical characteristics. To provide a highly reliable semiconductor device including an oxide semiconductor, by suppression of a change in its electrical characteristics. The semiconductor device includes an island-like oxide semiconductor layer over an insulating surface; an insulating layer surrounding a side surface of the oxide semiconductor layer; a source electrode layer and a drain electrode layer in contact with top surfaces of the oxide semiconductor layer and the insulating layer; a gate electrode layer overlapping with the oxide semiconductor layer; and a gate insulating layer between the oxide semiconductor layer and the gate electrode layer. The source electrode layer and the drain electrode layer are provided above the top surface of the oxide semiconductor layer. The top surface of the insulating layer is planarized.
1. A semiconductor device comprising:
a first oxide layer over an insulating surface;
an oxide semiconductor layer over the first oxide layer;
a second oxide layer over the oxide semiconductor layer;
an insulating layer surrounding a side surface of the oxide semiconductor layer;
a source electrode and a drain electrode in contact with a top surface of the insulating layer;
a gate electrode overlapping with the oxide semiconductor layer; and
a gate insulating layer between the oxide semiconductor layer and the gate electrode,
wherein the source electrode and the drain electrode are electrically connected to the oxide semiconductor layer,
wherein a side surface of the first oxide layer and the side surface of the oxide semiconductor layer are substantially perpendicular to the insulating surface, and
wherein the top surface of the insulating layer is planarized,
wherein the oxide semiconductor layer comprises a first region in electrical contact with the source electrode,
wherein the oxide semiconductor layer comprises a second region in electrical contact with the drain electrode,
wherein the oxide semiconductor layer comprises a third region comprising a channel,
wherein the third region is provided between the first region and the second region,
wherein a width of the first oxide layer in a channel length direction is greater than a width of the third region of the oxide semiconductor layer in the channel length direction,
wherein a width of the third region of the oxide semiconductor layer in the channel length direction is greater than a width of the second oxide layer in the channel length direction, and
wherein each of an end portion of the source electrode and an end portion of the drain electrode is interposed between the oxide semiconductor layer and the second oxide layer.
2. The semiconductor device according to claim 1 , further comprising an oxide layer between the oxide semiconductor layer and the insulating layer,
wherein the oxide layer is in contact with the side surface of the oxide semiconductor layer.
3. The semiconductor device according to claim 2 , wherein the oxide layer comprises one or more kinds of metal elements contained in the oxide semiconductor layer.
4. The semiconductor device according to claim 1 ,
wherein the source electrode comprises a first source electrode and a second source electrode over the first source electrode,
wherein the drain electrode comprises a first drain electrode and a second drain electrode over the first drain electrode,
wherein the first source electrode and the first drain electrode are in direct contact with the oxide semiconductor layer and the insulating layer, and
wherein the second source electrode and the second drain electrode are in direct contact with the oxide semiconductor layer.
5. A semiconductor device comprising:
a first oxide layer over an insulating surface,
an oxide semiconductor layer over the first oxide layer:
a second oxide layer over the oxide semiconductor layer;
an insulating layer surrounding a side surface of the oxide semiconductor layer;
an oxide layer between the oxide semiconductor layer and the insulating layer;
a source electrode and a drain electrode in contact with a top surface of the insulating layer;
a gate electrode overlapping with the oxide semiconductor layer; and
a gate insulating layer between the oxide semiconductor layer and the gate electrode,
wherein the source electrode and the drain electrode are electrically connected to the oxide semiconductor layer,
wherein a side surface of the first oxide layer and the side surface of the oxide semiconductor layer are substantially perpendicular to the insulating surface, and
wherein the oxide layer is in contact with the side surface of the oxide semiconductor layer,
wherein the oxide semiconductor layer comprises a first region in electrical contact with the source electrode,
wherein the oxide semiconductor layer comprises a second region in electrical contact with the drain electrode,
wherein the oxide semiconductor layer comprises a third region comprising a channel,
wherein the third region is provided between the first region and the second region,
wherein a width of the first oxide layer in a channel length direction is greater than a width of the third region of the oxide semiconductor layer in the channel length direction,
wherein a width of the third region of the oxide semiconductor layer in the channel length direction is greater than a width of the second oxide layer in the channel length direction, and
wherein each of an end portion of the source electrode and an end portion of the drain electrode is interposed between the oxide semiconductor layer and the second oxide layer.
6. The semiconductor device according to claim 5 , wherein the oxide layer comprises one or more kinds of metal elements contained in the oxide semiconductor layer.
7. The semiconductor device according to claim 5 ,
wherein the source electrode comprises a first source electrode and a second source electrode over the first source electrode,
wherein the drain electrode comprises a first drain electrode and a second drain electrode over the first drain electrode,
wherein the first source electrode and the first drain electrode are in direct contact with the oxide semiconductor layer and the insulating layer, and
wherein the second source electrode and the second drain electrode are in direct contact with the oxide semiconductor layer.
8. The semiconductor device according to claim 1 , wherein the second oxide layer is in contact with a top surface of the oxide semiconductor layer, a top surface of the source electrode, and a top surface of the drain electrode.
9. The semiconductor device according to claim 5 , wherein the second oxide layer is in contact with a top surface of the oxide semiconductor layer, a top surface of the source electrode, and a top surface of the drain electrode.
10. The semiconductor device according to claim 1 , wherein a thickness of the third region is thinner than a thickness of each of the first region and the second region.
11. The semiconductor device according to claim 5 , wherein a thickness of the third region is thinner than a thickness of each of the first region and the second region.