IP Library › Granted Patent US 11,823,958
Granted Patent B2
US 11,823,958 · App. 17/379,469 · Granted Nov 21, 2023

Semiconductor device and method

Inventors: Shiang-Bau Wang (Pingzchen, TW); Li-Wei Yin (Hsinchu, TW); Chen-Huang Huang (Hsinchu, TW); Ming-Jhe Sie (Taipei, TW); Ryan Chia-Jen Chen (Hsinchu, TW)
Assignee: TAIWAN SEMICONDUCTOR MANUFACTURING COMPANY, LTD.
H01L21/823821H01L21/3065H01L21/76829H01L21/823828H01L21/823864H01L21/823871H01L27/0924H01L29/6653H01L29/66545H01L29/66795H01L29/785
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Quick Facts
Patent No.
US 11,823,958
App. No.
17/379,469
Granted
Nov 21, 2023
Kind
B2
Abstract

In an embodiment, a device includes: a first fin extending from a substrate; a gate stack disposed on the first fin; a source/drain region disposed in the first fin; a contact etch stop layer (CESL) disposed over the source/drain region; a gate spacer extending along a side of the gate stack; and a dielectric plug disposed between the CESL and the gate spacer, where the dielectric plug, the CESL, the gate spacer, and the source/drain region collectively define a void physically separating the gate stack from the source/drain region.

Claims (53)

1. A device comprising:

an isolation region on a substrate;

a first fin protruding above and from between neighboring portions of the isolation region;

a gate stack disposed on the first fin;

a source/drain region disposed in the first fin;

a contact etch stop layer (CESL) disposed over the source/drain region;

a gate spacer extending along a side of the gate stack; and

a dielectric plug disposed between the CESL and the gate spacer,

wherein the dielectric plug, the CESL, the gate spacer, and the source/drain region collectively define a void physically separating the gate stack from the source/drain region, the void having a vertical portion disposed between the gate spacer and the CESL and having a horizontal portion disposed between the source/drain region and the isolation region.

2. The device of claim 1 , further comprising:

a second fin protruding above and from between neighboring portions of the isolation region, the source/drain region being further disposed in the second fin,

wherein the horizontal portion of the void extends under portions of the source/drain region disposed between the first fin and the second fin.

3. The device of claim 2 , wherein the gate spacer also extends along a portion of the isolation region between the first fin and the second fin.

4. The device of claim 1 , further comprising:

a contact extending through the CESL, the contact connected to the source/drain region, the vertical portion of the void disposed between the contact and the gate stack.

5. The device of claim 1 , wherein the gate spacer and the source/drain region each comprise an n-type impurity.

6. The device of claim 1 , wherein the gate spacer and the source/drain region each comprise a p-type impurity.

7. A device comprising:

an isolation region on a substrate;

a gate stack on a top surface of the isolation region;

a gate spacer having a vertical portion on a sidewall of the gate stack and having a horizontal portion on the top surface of the isolation region;

a source/drain region above the horizontal portion of the gate spacer, the vertical portion of the gate spacer disposed between the source/drain region and the gate stack;

a contact etch stop layer (CESL) on the source/drain region; and

a dielectric plug between the CESL and the vertical portion of the gate spacer,

wherein the dielectric plug, the CESL, the gate spacer, and the source/drain region collectively define a void physically separating the gate stack from the source/drain region.

8. The device of claim 7 , further comprising:

a first fin protruding above the isolation region; and

a second fin protruding above the isolation region, the source/drain region adjacent channel regions of the first fin and the second fin, the gate stack disposed on the channel regions of the first fin and the second fin.

9. The device of claim 7 , wherein the void has a horizontal portion and a vertical portion, the horizontal portion of the void disposed between the source/drain region and the horizontal portion of the gate spacer, the vertical portion of the void disposed between the source/drain region and the vertical portion of the gate spacer.

10. The device of claim 9 , further comprising:

a contact extending through the CESL, the contact connected to the source/drain region, the vertical portion of the void disposed between the contact and the gate stack.

11. The device of claim 7 , wherein the gate spacer and the source/drain region each comprise an n-type impurity.

12. The device of claim 7 , wherein the gate spacer and the source/drain region each comprise a p-type impurity.

13. A device comprising:

an isolation region on a substrate;

a first fin protruding above the isolation region;

a second fin protruding above the isolation region;

a source/drain region adjacent channel regions of the first fin and the second fin, a portion of the isolation region disposed beneath the source/drain region;

a gate stack on the channel regions of the first fin and the second fin;

a gate spacer having a vertical portion between the gate stack and the source/drain region and having a horizontal portion between the portion of the isolation region and the source/drain region; and

a void between the source/drain region and each of the vertical portion and the horizontal portion of the gate spacer.

14. The device of claim 13 , further comprising:

a contact etch stop layer (CESL) on the source/drain region;

an inter-layer dielectric (ILD) on the CESL; and

a contact extending through the ILD and the CESL, the contact connected to the source/drain region, the void disposed between the contact and the gate stack.

15. The device of claim 14 , further comprising:

a dielectric plug between the CESL and the vertical portion of the gate spacer, top surfaces of the dielectric plug, the ILD, and the gate spacer being level.

16. The device of claim 15 , wherein the void is defined by the dielectric plug, the CESL, the gate spacer, and the source/drain region.

17. The device of claim 14 , further comprising:

a dielectric layer on the ILD and the gate stack, a portion of the dielectric layer disposed between the CESL and the vertical portion of the gate spacer.

18. The device of claim 17 , wherein the void is defined by the portion of the dielectric layer, the CESL, the gate spacer, and the source/drain region.

19. The device of claim 13 , wherein the gate spacer and the source/drain region each comprise an n-type impurity.

20. The device of claim 13 , wherein the gate spacer and the source/drain region each comprise a p-type impurity.

Continuity (3)
Division 16429270 · Jun 3, 2019
Provisional Application 62747831 · Oct 19, 2018
Related Publication 20210351084A1 · Nov 11, 2021