IP Library Granted Patent US 10,861,981
Granted Patent B2
US 10,861,981 · App. 16/384,069 · Granted Dec 8, 2020

Semiconductor device comprising an oxide semiconductor

Inventors: Junichi Koezuka (Tochigi, JP); Masami Jintyou (Shimotsuga, JP); Yukinori Shima (Tatebayashi, JP)
Assignee: Semiconductor Energy Laboratory Co., Ltd.
H01L29/7869H01L21/0214H01L21/0217H01L21/0262H01L21/02164H01L21/02274H01L21/02554H01L21/02565H01L21/02631H01L21/465H01L21/477H01L21/47573H01L27/1225H01L27/1259H01L29/045H01L29/24H01L29/41733H01L29/42384H01L29/4908H01L29/4966H01L29/66969H01L29/78618H01L29/78648H01L29/78696H01L27/3262H01L2227/323
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Quick Facts
Patent No.
US 10,861,981
App. No.
16/384,069
Granted
Dec 8, 2020
Kind
B2
Abstract

The reliability of a transistor including an oxide semiconductor can be improved by suppressing a change in electrical characteristics. A transistor included in a semiconductor device includes a first oxide semiconductor film over a first insulating film, a gate insulating film over the first oxide semiconductor film, a second oxide semiconductor film over the gate insulating film, and a second insulating film over the first oxide semiconductor film and the second oxide semiconductor film. The first oxide semiconductor film includes a channel region in contact with the gate insulating film, a source region in contact with the second insulating film, and a drain region in contact with the second insulating film. The second oxide semiconductor film has a higher carrier density than the first oxide semiconductor film.

Claims (87)

1. A semiconductor device comprising:

a first conductive film;

a first insulating film over the first conductive film;

an oxide semiconductor film over the first insulating film, the oxide semiconductor film including a channel region;

a gate insulating film over the oxide semiconductor film;

an oxide conductor over the gate insulating film;

a second conductive film over the oxide conductor; and

a second insulating film over the second conductive film,

wherein the oxide conductor and the second conductive film overlap the channel region,

wherein the oxide conductor includes In—Zn oxide,

wherein the oxide conductor has higher carrier density than the oxide semiconductor film,

wherein, in a channel length direction, a first length of the gate insulating film is longer than a second length of the oxide conductor, and

wherein the second insulating film is in contact with a top surface of the oxide semiconductor film, a side surface of the gate insulating film, and a side surface of the oxide conductor.

2. The semiconductor device according to claim 1 ,

wherein the first conductive film serves as a first gate electrode, and

wherein the oxide conductor and the second conductive film serve as a second gate electrode.

3. The semiconductor device according to claim 1 ,

wherein, in the channel length direction, a third length of the first conductive film is longer than the second length of the oxide conductor.

4. The semiconductor device according to claim 1 , further comprising a third insulating film over the second insulating film.

5. The semiconductor device according to claim 4 ,

wherein the second insulating film includes silicon nitride, and

wherein the third insulating film includes silicon oxynitride.

6. The semiconductor device according to claim 1 ,

wherein the first insulating film includes a lower layer and an upper layer.

7. The semiconductor device according to claim 6 ,

wherein the lower layer includes silicon nitride, and

wherein the upper layer includes silicon oxynitride.

8. The semiconductor device according to claim 1 ,

wherein the second conductive film has a top surface with a fourth length in the channel length direction, and

wherein the second length is longer than the fourth length.

9. A semiconductor device comprising:

a conductive film;

a first insulating film over the conductive film;

an oxide semiconductor film over the first insulating film, the oxide semiconductor film including a channel region;

a gate insulating film over the oxide semiconductor film;

an oxide conductor over the gate insulating film;

a second insulating film over the oxide conductor;

a third insulating film over the second insulating film; and

a fourth insulating film over the third insulating film,

wherein the oxide conductor overlaps the channel region,

wherein the oxide conductor includes In—Zn oxide,

wherein the oxide conductor has higher carrier density than the oxide semiconductor film,

wherein, in a channel length direction, a first length of the gate insulating film is longer than a second length of the oxide conductor, and

wherein the second insulating film is in contact with a top surface of the oxide semiconductor film, a side surface of the gate insulating film, and a side surface of the oxide conductor.

10. The semiconductor device according to claim 9 ,

wherein the first insulating film and the gate insulating film include an opening, and

wherein the oxide conductor is electrically connected to the conductive film through the opening.

11. The semiconductor device according to claim 9 ,

wherein, in the channel length direction, a third length of the conductive film is longer than the second length of the oxide conductor.

12. The semiconductor device according to claim 9 ,

wherein the second insulating film includes silicon nitride,

wherein the third insulating film includes silicon oxynitride, and

wherein the fourth insulating film includes an organic material.

13. The semiconductor device according to claim 9 ,

wherein the first insulating film includes a lower layer and an upper layer.

14. The semiconductor device according to claim 13 ,

wherein the lower layer includes silicon nitride, and

wherein the upper layer includes silicon oxynitride.

15. A semiconductor device comprising:

a first conductive film;

a first insulating film over the first conductive film;

an oxide semiconductor film over the first insulating film, the oxide semiconductor film including a channel region;

a gate insulating film over the oxide semiconductor film;

an oxide conductor over the gate insulating film;

a second insulating film over the oxide conductor;

a third insulating film over the second insulating film; and

a second conductive film over the third insulating film,

wherein the oxide conductor overlaps the channel region,

wherein the oxide conductor includes In—Zn oxide,

wherein the oxide conductor has higher carrier density than the oxide semiconductor film,

wherein the second insulating film and the third insulating film include a first opening,

wherein the second conductive film is electrically connected to the oxide semiconductor film through the first opening,

wherein, in a channel length direction, a first length of the gate insulating film is longer than a second length of the oxide conductor, and

wherein the second insulating film is in contact with a top surface of the oxide semiconductor film, a side surface of the gate insulating film, and a side surface of the oxide conductor.

16. The semiconductor device according to claim 15 ,

wherein the first insulating film and the gate insulating film include a second opening, and

wherein the oxide conductor is electrically connected to the first conductive film through the second opening.

17. The semiconductor device according to claim 15 ,

wherein, in the channel length direction, a third length of the first conductive film is longer than the second length of the oxide conductor.

18. The semiconductor device according to claim 15 ,

wherein the second insulating film includes silicon nitride, and

wherein the third insulating film includes silicon oxynitride.

19. The semiconductor device according to claim 15 ,

wherein the first insulating film includes a lower layer and an upper layer.

20. The semiconductor device according to claim 19 ,

wherein the lower layer includes silicon nitride, and

wherein the upper layer includes silicon oxynitride.

Priority Claims (2)
JP 2015-104502 · May 22, 2015 · national
JP 2015-150231 · Jul 30, 2015 · national
Continuity (3)
Continuation 15819008 · Nov 21, 2017
Continuation 15150755 · May 10, 2016
Related Publication 20190245091A1 · Aug 8, 2019
Cited By (3)
US 12,261,119 US 12,317,544 US 12,402,363