IP Library › Granted Patent US 8,754,409
Granted Patent B2
US 8,754,409 · App. 13/428,008 · Granted Jun 17, 2014

Field-effect transistor, and memory and semiconductor circuit including the same

Inventors: Shunpei Yamazaki (Tokyo, JP); Hiromichi Godo (Kanagawa, JP); Yasuhiko Takemura (Kanagawa, JP)
Assignee: Semiconductor Energy Laboratory Co., Ltd.
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Quick Facts
Patent No.
US 8,754,409
App. No.
13/428,008
Granted
Jun 17, 2014
Kind
B2
Abstract

Provided is a field-effect transistor (FET) having small off-state current, which is used in a miniaturized semiconductor integrated circuit. The field-effect transistor includes a thin oxide semiconductor which is formed substantially perpendicular to an insulating surface and has a thickness of greater than or equal to 1 nm and less than or equal to 30 nm, a gate insulating film formed to cover the oxide semiconductor, and a strip-like gate which is formed to cover the gate insulating film and has a width of greater than or equal to 10 nm and less than or equal to 100 nm. In this structure, three surfaces of the thin oxide semiconductor are covered with the gate, so that electrons injected from a source or a drain can be effectively removed, and most of the space between the source and the drain can be a depletion region; thus, off-state current can be reduced.

Claims (36)

1. A semiconductor device comprising:

a circuit comprising a transistor, the transistor comprising:

an oxide semiconductor being substantially perpendicular to an insulating surface, wherein the oxide semiconductor has a thickness of greater than or equal to 1 nm and less than or equal to 30 nm, and has a height of greater than or equal to a minimum feature size used to form the circuit;

a gate insulating film covering the oxide semiconductor; and

a strip-like gate covering the gate insulating film and facing at least three surfaces of the oxide semiconductor, wherein the strip-like gate has a width of greater than or equal to 10 nm and less than or equal to 100 nm.

2. A semiconductor device comprising:

a circuit comprising a transistor, the transistor comprising:

an oxide semiconductor being substantially perpendicular to an insulating surface, wherein the oxide semiconductor has a thickness of greater than or equal to 1 nm and less than or equal to 30 nm, and has a height of greater than or equal to a minimum feature size used to form the circuit;

a gate insulating film covering the oxide semiconductor; and

a gate covering the gate insulating film and facing at least three surfaces of the oxide semiconductor.

3. A semiconductor device comprising:

a circuit comprising a transistor, the transistor comprising:

an oxide semiconductor being substantially perpendicular to an insulating surface, wherein the oxide semiconductor has a thickness of greater than or equal to 1 nm and less than or equal to 30 nm, and has a height of greater than or equal to a minimum feature size used to form the circuit;

two separated conductors, each covering the oxide semiconductor and facing at least three surfaces of the oxide semiconductor;

a gate insulating film covering the oxide semiconductor; and

a gate covering the gate insulating film and facing at least three surfaces of the oxide semiconductor.

4. The semiconductor device according to claim 1 , wherein the oxide semiconductor comprises any one of indium oxide, zinc oxide, tin oxide, an In—Zn-based oxide, a Sn—Zn-based oxide, an Al—Zn-based oxide, a Zn—Mg-based oxide, a Sn—Mg-based oxide, an In—Mg-based oxide, an In—Sn-based oxide, an In—Ga-based oxide, an In—Ga—Zn-based oxide, an In—Sn—Zn-based oxide, an In—Al—Zn-based oxide, a Sn—Ga—Zn-based oxide, an Al—Ga—Zn-based oxide, a Sn—Al—Zn-based oxide, and an In—Sn—Ga—Zn-based oxide.

5. The semiconductor device according to claim 2 , wherein the oxide semiconductor comprises any one of indium oxide, zinc oxide, tin oxide, an In—Zn-based oxide, a Sn—Zn-based oxide, an Al—Zn-based oxide, a Zn—Mg-based oxide, a Sn—Mg-based oxide, an In—Mg-based oxide, an In—Sn-based oxide, an In—Ga-based oxide, an In—Ga—Zn-based oxide, an In—Sn—Zn-based oxide, an In—Al—Zn-based oxide, a Sn—Ga—Zn-based oxide, an Al—Ga—Zn-based oxide, a Sn—Al—Zn-based oxide, and an In—Sn—Ga—Zn-based oxide.

6. The semiconductor device according to claim 3 , wherein the oxide semiconductor comprises any one of indium oxide, zinc oxide, tin oxide, an In—Zn-based oxide, a Sn—Zn-based oxide, an Al—Zn-based oxide, a Zn—Mg-based oxide, a Sn—Mg-based oxide, an In—Mg-based oxide, an In—Sn-based oxide, an In—Ga-based oxide, an In—Ga—Zn-based oxide, an In—Sn—Zn-based oxide, an In—Al—Zn-based oxide, a Sn—Ga—Zn-based oxide, an Al—Ga—Zn-based oxide, a Sn—Al—Zn-based oxide, and an In—Sn—Ga—Zn-based oxide.

7. The semiconductor device according to claim 1 , wherein the oxide semiconductor has crystallinity.

8. The semiconductor device according to claim 2 , wherein the oxide semiconductor has crystallinity.

9. The semiconductor device according to claim 3 , wherein the oxide semiconductor has crystallinity.

10. The semiconductor device according to claim 1 , wherein part of the oxide semiconductor comprises a region comprising nitrogen, boron, or phosphorus.

11. The semiconductor device according to claim 2 , wherein part of the oxide semiconductor comprises a region comprising nitrogen, boron, or phosphorus.

12. The semiconductor device according to claim 3 , wherein part of the oxide semiconductor comprises a region comprising nitrogen, boron, or phosphorus.

13. A random access memory comprising the transistor according to claim 1 as a cell transistor.

14. A random access memory comprising the transistor according to claim 2 as a cell transistor.

15. A random access memory comprising the transistor according to claim 3 as a cell transistor.

16. A memory comprising the transistor according to claim 1 as a writing transistor.

17. A memory comprising the transistor according to claim 2 as a writing transistor.

18. A memory comprising the transistor according to claim 3 as a writing transistor.

19. The semiconductor device according to claim 3 , wherein the gate does not overlap with the two separated conductors.

20. The semiconductor device according to claim 19 , further comprising a N-type region provided in a part of the oxide semiconductor, wherein the part of the oxide semiconductor is not overlapped with the gate or the two separated conductors.

21. The semiconductor device according to claim 1 , wherein a corner portion of the oxide semiconductor has a curved shape.

22. The semiconductor device according to claim 2 , wherein a corner portion of the oxide semiconductor has a curved shape.

23. The semiconductor device according to claim 3 , wherein a corner portion of the oxide semiconductor has a curved shape.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2012
From: YAMAZAKI, SHUNPEI; GODO, HIROMICHI; TAKEMURA, YASUHIKO
To: SEMICONDUCTOR ENERGY LABORATORY CO., LTD.
Reel/Frame 028002/0652 →
Priority Claims (1)
JP 2011-067213 · Mar 25, 2011 · national
Continuity (1)
Related Publication 20120241739A1 · Sep 27, 2012