IP Library › Granted Patent US 10,535,776
Granted Patent B2
US 10,535,776 · App. 15/480,746 · Granted Jan 14, 2020

Semiconductor device and manufacturing method thereof

Inventors: Shunpei Yamazaki (Setagaya, JP); Masahiko Hayakawa (Atsugi, JP); Tatsuya Honda (Isehara, JP)
Assignee: Semiconductor Energy Laboratory Co., Ltd.
H01L29/78606H01L27/1225H01L27/14616H01L29/24H01L29/45H01L29/49H01L29/66742H01L29/66969H01L29/7869H01L29/78618H01L29/78696G02F1/1368G02F2203/01G02F2203/64H01L27/3262
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Quick Facts
Patent No.
US 10,535,776
App. No.
15/480,746
Granted
Jan 14, 2020
Kind
B2
Abstract

When a semiconductor device including a transistor in which a gate electrode layer, a gate insulating film, and an oxide semiconductor film are stacked and a source and drain electrode layers are provided in contact with the oxide semiconductor film is manufactured, after the formation of the gate electrode layer or the source and drain electrode layers by an etching step, a step of removing a residue remaining by the etching step and existing on a surface of the gate electrode layer or a surface of the oxide semiconductor film and in the vicinity of the surface is performed. The surface density of the residue on the surface of the oxide semiconductor film or the gate electrode layer can be 1×10 13 atoms/cm 2 or lower.

Claims (68)

1. A semiconductor device comprising:

a first insulating film;

an oxide semiconductor film comprising a channel formation region over the first insulating film; and

a second insulating film over the oxide semiconductor film,

wherein a concentration of an element of an etchant on a top surface of the oxide semiconductor film is 5×10 18 atoms/cm 3 or lower,

wherein the top surface of the oxide semiconductor film is in contact with the second insulating film, and

wherein a bottom surface of the oxide semiconductor film is in contact with the first insulating film.

2. The semiconductor device according to claim 1 , wherein the oxide semiconductor film comprises indium, gallium and zinc.

3. The semiconductor device according to claim 1 , wherein the oxide semiconductor film comprises a recessed portion on the top surface.

4. An electronic device comprising the semiconductor device according to claim 1 ,

wherein the electronic device is any one of a television set, a monitor, a camera, a digital photo frame, a mobile phone, a game machine, an audio reproducing device, and a portable information terminal.

5. A semiconductor device comprising:

a first insulating film;

an oxide semiconductor film comprising a channel formation region over the first insulating film; and

a second insulating film over the oxide semiconductor film,

wherein a concentration of an element of a resist mask on a top surface of the oxide semiconductor film is 5×10 18 atoms/cm 3 or lower,

wherein the top surface of the oxide semiconductor film is in contact with the second insulating film, and

wherein a bottom surface of the oxide semiconductor film is in contact with the first insulating film.

6. The semiconductor device according to claim 5 , wherein the oxide semiconductor film comprises indium, gallium and zinc.

7. The semiconductor device according to claim 5 , wherein the oxide semiconductor film comprises a recessed portion on the top surface.

8. An electronic device comprising the semiconductor device according to claim 5 ,

wherein the electronic device is any one of a television set, a monitor, a camera, a digital photo frame, a mobile phone, a game machine, an audio reproducing device, and a portable information terminal.

9. A semiconductor device comprising:

a first insulating film;

an oxide semiconductor film comprising a channel formation region over the first insulating film;

a source electrode over and electrically connected to the oxide semiconductor film, the source electrode comprising metal;

a drain electrode over and electrically connected to the oxide semiconductor film, the drain electrode comprising the metal; and

a second insulating film over the oxide semiconductor film, the source electrode, and the drain electrode, the second insulating film being in contact with a top surface of the oxide semiconductor film,

wherein a concentration of the metal on the top surface of the oxide semiconductor film is 5×10 18 atoms/cm 3 or lower, and

wherein a bottom surface of the oxide semiconductor film is in contact with the first insulating film.

10. The semiconductor device according to claim 9 , wherein the oxide semiconductor film comprises indium, gallium and zinc.

11. The semiconductor device according to claim 9 , wherein the oxide semiconductor film comprises a recessed portion between the source electrode and the drain electrode.

12. The semiconductor device according to claim 9 , wherein frequency of refresh operation of the semiconductor device is changeable.

13. The semiconductor device according to claim 9 , wherein frequency of refresh operation of the semiconductor device is able to be reduced.

14. The semiconductor device according to claim 9 , wherein the metal is Al.

15. The semiconductor device according to claim 9 , wherein the metal is Cr.

16. The semiconductor device according to claim 9 , wherein the metal is Cu.

17. The semiconductor device according to claim 9 , wherein the metal is Ta.

18. The semiconductor device according to claim 9 , wherein the metal is Ti.

19. The semiconductor device according to claim 9 , wherein the metal is Mo.

20. The semiconductor device according to claim 9 , wherein the metal is W.

21. An electronic device comprising the semiconductor device according to claim 9 ,

wherein the electronic device is any one of a television set, a monitor, a camera, a digital photo frame, a mobile phone, a game machine, an audio reproducing device, and a portable information terminal.

22. A semiconductor device comprising:

a substrate comprising an insulating surface;

a gate electrode layer over the insulating surface;

a gate insulating film over the gate electrode layer;

an oxide semiconductor film over and in direct contact with the gate insulating film;

a source electrode layer electrically connected to the oxide semiconductor film;

a drain electrode layer electrically connected to the oxide semiconductor film; and

an insulating film in direct contact with a top surface of the oxide semiconductor film,

wherein a concentration of boron on the top surface of the oxide semiconductor film is 5×10 18 atoms/cm 3 or lower,

wherein a concentration of boron on a top surface of the gate electrode layer is 5×10 18 atoms/cm 3 or lower, and wherein the oxide semiconductor film comprises indium, gallium and zinc.

23. The semiconductor device according to claim 22 , wherein the concentration of boron on the top surface of the oxide semiconductor film is 1×10 18 atoms/cm 3 or lower.

24. The semiconductor device according to claim 22 , wherein the concentration of boron on the top surface of the gate electrode layer is 1×10 18 atoms/cm 3 or lower.

25. A semiconductor device comprising:

a substrate comprising an insulating surface;

a gate electrode layer over the insulating surface;

a gate insulating film over the gate electrode layer;

an oxide semiconductor film over and in direct contact with the gate insulating film;

a source electrode layer electrically connected to the oxide semiconductor film;

a drain electrode layer electrically connected to the oxide semiconductor film; and

an insulating film in direct contact with a top surface of the oxide semiconductor film,

wherein a concentration of aluminum on the top surface of the oxide semiconductor film is 5×10 18 atoms/cm 3 or lower,

wherein a concentration of aluminum on a top surface of the gate electrode layer is 5×10 18 atoms/cm 3 or lower, and

wherein the oxide semiconductor film comprises indium, gallium and zinc.

26. The semiconductor device according to claim 25 , wherein the concentration of aluminum on the top surface of the oxide semiconductor film is 1×10 18 atoms/cm 3 or lower.

27. The semiconductor device according to claim 25 , wherein the concentration of aluminum on the top surface of the gate electrode layer is 1×10 18 atoms/cm 3 or lower.

Priority Claims (1)
JP 2011-230126 · Oct 19, 2011 · national
Continuity (3)
Continuation 14445462 · Jul 29, 2014
Continuation 13651911 · Oct 15, 2012
Related Publication 20170213914A1 · Jul 27, 2017
Cited By (3)
US 12,218,246 US 12,324,307 US 12,376,335