IP Library › Granted Patent US 12,249,623
Granted Patent B2
US 12,249,623 · App. 17/447,099 · Granted Mar 11, 2025

Semiconductor devices having parasitic channel structures

Inventors: Yu-Cheng Shen (Hsinchu, TW); Guan-Jie Shen (Hsinchu, TW)
Assignee: Taiwan Semiconductor Manufacturing Co., Ltd.
H01L29/0673H01L21/823468H01L29/42392H01L29/6656H01L29/66742H01L29/7848H01L29/78618H01L29/78696
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Quick Facts
Patent No.
US 12,249,623
App. No.
17/447,099
Granted
Mar 11, 2025
Kind
B2
Abstract

The present disclosure describes a semiconductor device and methods for forming the same. The semiconductor device includes nanostructures on a substrate and a source/drain region in contact with the nanostructures. The semiconductor device also includes a gate structure that includes first and second portions. The first portion is formed between each nanostructure of nanostructures. The second portion is formed under the bottom-most nanostructure of the plurality of nanostructures and extends under a top surface of the substrate.

Claims (36)

1. A semiconductor device, comprising:

a plurality of nanostructures on a substrate;

a source/drain region in contact with the plurality of nanostructures; and

a gate structure, comprising:

a first portion formed between each nanostructure of the plurality of nanostructures;

a plurality of inner spacers, wherein an inner spacer of the plurality of inner spacers is disposed between adjacent nanostructures of the plurality of nanostructures; and

a second portion formed under a bottom-most nanostructure of the plurality of nanostructures and extending under a top surface of the substrate, wherein the second portion extends laterally under a bottom-most inner spacer of the plurality of inner spacers and is in contact with a bottom surface of the bottom-most inner spacer.

2. The semiconductor device of claim 1 , wherein the second portion of the gate structure is in contact with an inner surface of the bottom-most inner spacer of the plurality of inner spacers.

3. The semiconductor device of claim 1 , wherein a ratio of a height of the second portion of the gate structure over a height of an inner spacer of the plurality of inner spacers is between about 1.01 and about 1.5.

4. The semiconductor device of claim 1 , wherein a cross-sectional area of the second portion of the gate structure comprises an oval shape.

5. The semiconductor device of claim 1 , wherein the substrate comprises a non-uniform atomic concentration of germanium that decreases from the top surface of the substrate to a bottom surface of the substrate.

6. The semiconductor device of claim 1 , wherein the substrate comprises silicon and the plurality of nanostructures comprises silicon germanium.

7. The semiconductor device of claim 1 , wherein the second portion of the gate structure is oval shaped.

8. The semiconductor device of claim 1 , wherein the second portion of the gate structure is in contact with a sidewall surface of the bottom-most inner spacer of the plurality of inner spacers.

9. The semiconductor device of claim 1 , wherein a substantially planar bottom surface of the second portion of the gate structure is in contact with the substrate.

10. A semiconductor device, comprising:

a plurality of nanostructures over a substrate;

a plurality of inner spacers, wherein each inner spacer is formed under a nanostructure of the plurality of nanostructures; and

a gate structure, comprising:

a first portion wrapped around each nanostructure of the plurality of nanostructures; and

a second portion formed under a bottom-most nanostructure of the plurality of nanostructures, wherein the second portion extends under a top surface of the substrate, and wherein the second portion extends laterally under a bottom-most inner spacer of the plurality of inner spacers.

11. The semiconductor device of claim 10 , wherein the second portion of the gate structure is in contact with a sidewall surface and a bottom surface of the bottom-most nanostructure of the plurality of nanostructures.

12. The semiconductor device of claim 10 , wherein a ratio of a height of the second portion of the gate structure over a height of an inner spacer of the plurality of spacers is between about 1.01 and about 1.5.

13. The semiconductor device of claim 10 , wherein the substrate comprises a non-uniform atomic concentration of germanium that decreases from the top surface of the substrate to a bottom surface of the substrate.

14. The semiconductor device of claim 10 , wherein the second portion of the gate structure is oval shaped.

15. A semiconductor device comprising:

a stack of alternating layers on a substrate comprising a first group of semiconductor layers and a second group of gate layers;

a plurality of spacers on sidewalls of each gate layer of the second group of gate layers;

a gate structure, comprising:

a first portion comprising the second group of gate layers wrapped around each semiconductor layer of the first group of semiconductor layers; and

a second portion under a top surface of the substrate and extending laterally under a bottom-most spacer of the plurality of spacers.

16. The semiconductor device of claim 15 , wherein the substrate comprises silicon.

17. The semiconductor device of claim 15 , wherein the second portion of the gate structure is in contact with a bottom surface of the bottom-most spacer of the plurality of spacers.

18. The semiconductor device of claim 15 , wherein the first group of semiconductor layers comprises silicon germanium layers.

19. The semiconductor device of claim 15 , wherein a cross-sectional profile of the second portion of the gate structure is an oval shape.

20. The semiconductor device of claim 15 , wherein the second portion of the gate structure comprises the second group of gate layers.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2021
From: SHEN, YU-CHENG; SHEN, GUAN-JIE
To: TAIWAN SEMICONDUCTOR MANUFACTURING CO., LTD.
Reel/Frame 057412/0403 →
Continuity (2)
Provisional Application 63175706 · Apr 16, 2021
Related Publication 20220336585A1 · Oct 20, 2022
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