IP Library › Granted Patent US 9,911,834
Granted Patent B2
US 9,911,834 · App. 15/356,979 · Granted Mar 6, 2018

Integrated strained stacked nanosheet FET

Inventors: Kangguo Cheng (Schenectady, NY); Ramachandra Divakaruni (Ossining, NY); Juntao Li (Cohoes, NY); Xin Miao (Guilderland, NY)
Assignee: International Business Machines Corporation
H01L29/6681H01L21/0217H01L21/02271H01L29/0673H01L29/42392H01L29/6653H01L29/66553H01L29/7843H01L29/7853H01L21/02274
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Quick Facts
Patent No.
US 9,911,834
App. No.
15/356,979
Granted
Mar 6, 2018
Kind
B2
Abstract

Transistors include multiple stress liners. One or more channel structures are suspended at opposite ends from the plurality of stress liners. The stress liners provide a stress on the one or more channel structures. A gate is formed over and around the one or more channel structures, defining a channel region of the one or more channel structures that is covered by the gate. A source and drain region are formed on opposite sides of the gate.

Claims (34)

1. A transistor, comprising:

a plurality of stress liners;

one or more semiconductor structures, suspended at opposite ends from the plurality of stress liners, wherein the stress liners provide a stress on the one or more semiconductor structures;

a gate formed over and around the one or more semiconductor structures, defining a channel region of the one or more semiconductor structures that is covered by the gate; and

a source and drain region formed on the one or more semiconductor structures on opposite sides of the gate, between the stress liners.

2. The transistor of claim 1 , wherein the plurality of stress liners provide a compressive stress on the one or more semiconductor structures.

3. The transistor of claim 1 , wherein the plurality of stress liners provide a tensile stress on the one or more semiconductor structures.

4. The transistor of claim 1 , wherein the semiconductor structures are stacked nanowires.

5. The transistor of claim 1 , wherein the semiconductor structures are stacked nanosheets.

6. The transistor of claim 1 , wherein the stress liners comprise silicon nitride.

7. The transistor of claim 1 , further comprising a plurality of gates formed over and around the one or more semiconductor structures.

8. The transistor of claim 1 , further comprising a dielectric liner formed between the gate and the source and drain regions.

9. The transistor of claim 1 , wherein the gate is a gate stack comprising a gate conductor and a gate dielectric.

10. A transistor, comprising:

a plurality of stress liners;

one or more semiconductor structures, suspended at opposite ends from the plurality of stress liners, wherein the stress liners provide a stress on the one or more semiconductor structures;

a plurality of gate stacks formed over and around the one or more semiconductor structures, defining a channel region of the one or more semiconductor structures that is covered by the gate;

a dielectric liner formed directly on the plurality of gates; and

a source and drain region formed on the one or more semiconductor structures on opposite sides of the plurality of gates, outside of the dielectric liner and between the stress liners.

11. The transistor of claim 10 , wherein the plurality of stress liners provide a compressive stress on the one or more semiconductor structures.

12. The transistor of claim 10 , wherein the plurality of stress liners provide a tensile stress on the one or more semiconductor structures.

13. The transistor of claim 10 , wherein the semiconductor are stacked nanowires.

14. The transistor of claim 10 , wherein the semiconductor structures are stacked nanosheets.

15. The transistor of claim 10 , wherein the stress liners comprise silicon nitride.

16. A transistor, comprising:

a plurality of silicon nitride stress liners;

one or more semiconductor structures, suspended at opposite ends from the plurality of stress liners, wherein the stress liners provide a stress on the one or more semiconductor structures;

a plurality of gates stacks formed over and around the one or more semiconductor structures, defining a channel region of the one or more semiconductor structures that is covered by the gate;

a dielectric liner formed directly on the plurality of gates; and

a source and drain region formed on opposite sides of the plurality of gates, outside of the dielectric liner.

17. The transistor of claim 16 , wherein the plurality of stress liners provide a compressive stress on the one or more semiconductor structures.

18. The transistor of claim 16 , wherein the plurality of stress liners provide a tensile stress on the one or more semiconductor structures.

19. The transistor of claim 16 , wherein the semiconductor structures are stacked nanowires.

20. The transistor of claim 16 , wherein the semiconductor structures are stacked nanosheets.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 21, 2016
From: CHENG, KANGGUO; DIVAKARUNI, RAMACHANDRA; LI, JUNTAO; MIAO, XIN
To: INTERNATIONAL BUSINESS MACHINES CORPORATION
Reel/Frame 040390/0752 →
Continuity (2)
Division 15148536 · May 6, 2016
Related Publication 20170323952A1 · Nov 9, 2017