IP Library › Granted Patent US 11,488,968
Granted Patent B2
US 11,488,968 · App. 17/373,675 · Granted Nov 1, 2022

Integrated circuit and static random access memory thereof

Inventor: Jhon-Jhy Liaw (Hsinchu County, TW)
Assignee: TAIWAN SEMICONDUCTOR MANUFACTURING CO., LTD.
H01L27/1104G11C11/419H01L21/32133H01L21/82385H01L21/823821H01L21/823842H01L21/823871H01L27/0207H01L27/0922H01L27/0924H01L29/161H01L29/42372H01L29/495H01L29/4966G11C11/412H01L21/823807H01L27/0928
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Quick Facts
Patent No.
US 11,488,968
App. No.
17/373,675
Granted
Nov 1, 2022
Kind
B2
Abstract

An IC structure comprises a substrate, a first SRAM cell, and a second SRAM cell. The first SRAM cell is formed over the substrate and comprises a first N-type transistor. The second SRAM cell is formed over the substrate and comprises a second N-type transistor. A gate structure of first N-type transistor of the first SRAM cell has a different work function metal composition than a gate structure of the second N-type transistor of the second SRAM cell.

Claims (30)

1. An integrated circuit (IC) structure comprising:

a substrate;

a first static random access memory (SRAM) cell formed over the substrate, the first SRAM cell comprising a first N-type transistor; and

a second SRAM cell formed over the substrate, the second SRAM cell comprising a second N-type transistor, wherein a gate structure of the first N-type transistor of the first SRAM cell has a different work function metal composition than a gate structure of the second N-type transistor of the second SRAM cell, wherein a threshold voltage of the first N-type transistor is different than a threshold voltage of the second N-type transistor by at least 40 mV.

2. The IC structure of claim 1 , wherein the first N-type transistor is a pull-down transistor.

3. The IC structure of claim 2 , wherein the second N-type transistor is a pull-down transistor.

4. The IC structure of claim 1 , wherein the first N-type transistor is a pass-gate transistor.

5. The IC structure of claim 4 , wherein the second N-type transistor is a pass-gate transistor.

6. The IC structure of claim 1 , wherein the first SRAM cell further comprises a third N-type transistor, wherein a gate structure of the third N-type transistor of the first SRAM cell has a same work function metal composition as the gate structure of the first N-type transistor of the first SRAM cell.

7. The IC structure of claim 6 , wherein the second SRAM cell further comprises a fourth N-type transistor, wherein a gate structure of the fourth N-type transistor of the second SRAM cell has a same work function metal composition as the gate structure of the second N-type transistor of the second SRAM cell.

8. The IC structure of claim 1 , wherein the first SRAM cell and the second SRAM cell substantially have a same cell size.

9. An IC structure comprising:

a substrate;

a first SRAM cell formed over the substrate, the first SRAM cell comprising a first P-type transistor; and

a second SRAM cell formed over the substrate, the second SRAM cell comprising a second P-type transistor, wherein a gate structure of the first P-type transistor of the first SRAM cell has a different work function metal composition than a gate structure of the second P-type transistor of the second SRAM cell, wherein a threshold voltage of the first P-type transistor is different than a threshold voltage of the second P-type transistor by at least 40 mV.

10. The IC structure of claim 9 , wherein the first P-type transistor is a pull-up transistor.

11. The IC structure of claim 10 , wherein the second P-type transistor is a pull-up transistor.

12. The IC structure of claim 9 , wherein the first SRAM cell and the second SRAM cell substantially have a same cell size.

13. An IC structure comprising:

a substrate;

a first SRAM cell formed over the substrate, the first SRAM cell comprising a first P-type transistor having a first gate structure, the first gate structure having a first work function metal layer; and

a second SRAM cell formed over the substrate, the second SRAM cell comprising a second P-type transistor having a second gate structure, the second gate structure having a second work function metal layer, the second work function metal layer having a different thickness than the first work function metal layer,

wherein the first work function metal layer is a stacked film of a first layer and a second layer, the second work function metal layer is a stacked film of a third layer and a fourth layer, the first layer of the first work function metal layer is thinner than the third layer of the second work function metal layer, and the second layer of the first work function metal layer has a thickness substantially the same as a thickness of the fourth layer of the second work function metal layer.

14. The IC structure of claim 13 , wherein the first P-type transistor is a pull-up transistor.

15. The IC structure of claim 14 , wherein the second P-type transistor is a pull-up transistor.

16. The IC structure of claim 13 , wherein the first SRAM cell and the second SRAM cell substantially have a same cell size.

17. The IC structure of claim 13 , wherein a threshold voltage of the first P-type transistor is different than a threshold voltage of the second P-type transistor by at least 40 mV.

18. The IC structure of claim 1 , wherein the gate structure of the first N-type transistor of the first SRAM cell has a first work function layer, the gate structure of the second N-type transistor of the second SRAM cell has a second work function layer, and the second work function layer has a different thickness than the first work function layer.

19. The IC structure of claim 9 , wherein the gate structure of the first P-type transistor of the first SRAM cell has a first work function layer, the gate structure of the second P-type transistor of the second SRAM cell has a second work function layer, and the second work function layer has a different thickness than the first work function layer.

20. The IC structure of claim 13 , the first layer of the stacked film of the first work function metal layer is TiAl, and the second layer of the stacked film of the first work function metal layer is TiN.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2021
From: LIAW, JHON-JHY
To: TAIWAN SEMICONDUCTOR MANUFACTURING CO., LTD.
Reel/Frame 056841/0110 →
Continuity (4)
Continuation 16940255 · Jul 27, 2020
Continuation 16396292 · Apr 26, 2019
Division 15799464 · Oct 31, 2017
Related Publication 20210343725A1 · Nov 4, 2021