IP Library › Granted Patent US 12,230,721
Granted Patent B2
US 12,230,721 · App. 18/369,582 · Granted Feb 18, 2025

Gate-all-around integrated circuit structures having asymmetric source and drain contact structures

Inventors: Biswajeet Guha (Hillsboro, OR); Mauro J. Kobrinsky (Portland, OR); Tahir Ghani (Portland, OR)
Assignee: Intel Corporation
H01L29/78696H01L21/823412H01L27/088H01L29/0673H01L29/42392H01L29/78651
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,230,721
App. No.
18/369,582
Granted
Feb 18, 2025
Kind
B2
Abstract

Gate-all-around integrated circuit structures having asymmetric source and drain contact structures, and methods of fabricating gate-all-around integrated circuit structures having asymmetric source and drain contact structures, are described. For example, an integrated circuit structure includes a vertical arrangement of nanowires above a fin. A gate stack is over the vertical arrangement of nanowires. A first epitaxial source or drain structure is at a first end of the vertical arrangement of nanowires. A second epitaxial source or drain structure is at a second end of the vertical arrangement of nanowires. A first conductive contact structure is coupled to the first epitaxial source or drain structure. A second conductive contact structure is coupled to the second epitaxial source or drain structure. The second conductive contact structure is deeper along the fin than the first conductive contact structure.

Claims (54)

1. An integrated circuit structure, comprising:

a vertical arrangement of nanowires above a fin;

a gate stack over and around the vertical arrangement of nanowires;

a first epitaxial source or drain structure at a first end of the vertical arrangement of nanowires, wherein the fin extends laterally beyond the first epitaxial source or drain structure;

a second epitaxial source or drain structure at a second end of the vertical arrangement of nanowires, wherein the fin does not extend laterally beyond the second epitaxial source or drain structure, wherein the first and second epitaxial source or drain structures are discrete first and second epitaxial source or drain structures;

a first conductive contact structure coupled to the first epitaxial source or drain structure; and

a second conductive contact structure coupled to the second epitaxial source or drain structure.

2. The integrated circuit structure of claim 1 , wherein the second conductive contact structure is deeper along the fin than the first conductive contact structure.

3. The integrated circuit structure of claim 2 , wherein the first conductive contact structure is not along the fin.

4. The integrated circuit structure of claim 2 , wherein the first conductive contact structure is partially along the fin.

5. The integrated circuit structure of claim 2 , wherein the second conductive contact structure is along an entirety of the fin.

6. The integrated circuit structure of claim 1 , wherein the second conductive contact structure has an exposed surface at a bottom of the fin.

7. The integrated circuit structure of claim 1 , wherein the gate stack comprises a high-k gate dielectric layer and a metal gate electrode.

8. A method of fabricating an integrated circuit structure, the method comprising:

forming a vertical arrangement of nanowires above a fin;

forming a gate stack over and around the vertical arrangement of nanowires;

forming a first epitaxial source or drain structure at a first end of the vertical arrangement of nanowires, wherein the fin extends laterally beyond the first epitaxial source or drain structure;

forming a second epitaxial source or drain structure at a second end of the vertical arrangement of nanowires, wherein the fin does not extend laterally beyond the second epitaxial source or drain structure, wherein the first and second epitaxial source or drain structures are discrete first and second epitaxial source or drain structures;

forming a first conductive contact structure coupled to the first epitaxial source or drain structure; and

forming a second conductive contact structure coupled to the second epitaxial source or drain structure.

9. The method of claim 8 , wherein the second conductive contact structure is deeper along the fin than the first conductive contact structure.

10. The method of claim 9 , wherein the first conductive contact structure is not along the fin.

11. The method of claim 9 , wherein the first conductive contact structure is partially along the fin.

12. The method of claim 9 , wherein the second conductive contact structure is along an entirety of the fin.

13. The method of claim 8 , wherein the second conductive contact structure has an exposed surface at a bottom of the fin.

14. The method of claim 8 , wherein the gate stack comprises a high-k gate dielectric layer and a metal gate electrode.

15. A computing device, comprising:

a board; and

a component coupled to the board, the component including an integrated circuit structure, comprising:

a vertical arrangement of nanowires above a fin;

a gate stack over and around the vertical arrangement of nanowires;

a first epitaxial source or drain structure at a first end of the vertical arrangement of nanowires, wherein the fin extends laterally beyond the first epitaxial source or drain structure;

a second epitaxial source or drain structure at a second end of the vertical arrangement of nanowires, wherein the fin does not extend laterally beyond the second epitaxial source or drain structure, wherein the first and second epitaxial source or drain structures are discrete first and second epitaxial source or drain structures;

a first conductive contact structure coupled to the first epitaxial source or drain structure; and

a second conductive contact structure coupled to the second epitaxial source or drain structure.

16. The computing device of claim 15 , further comprising:

a memory coupled to the board.

17. An integrated circuit structure, comprising:

a vertical arrangement of nanowires above a fin;

a gate stack over and around the vertical arrangement of nanowires;

a first epitaxial source or drain structure at a first end of the vertical arrangement of nanowires, wherein the fin extends laterally beyond the first epitaxial source or drain structure;

a second epitaxial source or drain structure at a second end of the vertical arrangement of nanowires, wherein the fin does not extend laterally beyond the second epitaxial source or drain structure;

a first conductive contact structure coupled to the first epitaxial source or drain structure; and

a second conductive contact structure coupled to the second epitaxial source or drain structure, wherein the second conductive contact structure is deeper along the fin than the first conductive contact structure.

18. The integrated circuit structure of claim 17 , wherein the first conductive contact structure is not along the fin.

19. The integrated circuit structure of claim 17 , wherein the first conductive contact structure is partially along the fin.

20. The integrated circuit structure of claim 17 , wherein the second conductive contact structure is along an entirety of the fin.

21. An integrated circuit structure, comprising:

a vertical arrangement of nanowires above a fin;

a gate stack over and around the vertical arrangement of nanowires;

a first epitaxial source or drain structure at a first end of the vertical arrangement of nanowires, wherein the fin extends laterally beyond the first epitaxial source or drain structure;

a second epitaxial source or drain structure at a second end of the vertical arrangement of nanowires, wherein the fin does not extend laterally beyond the second epitaxial source or drain structure;

a first conductive contact structure coupled to the first epitaxial source or drain structure; and

a second conductive contact structure coupled to the second epitaxial source or drain structure, wherein the second conductive contact structure has an exposed surface at a bottom of the fin.

Continuity (3)
Continuation 17737882 · May 5, 2022
Continuation 16134817 · Sep 18, 2018
Related Publication 20240006541A1 · Jan 4, 2024
References Cited (6)
US 9837414B1 · Balakrishnan et al. · 2017 [cited by applicant]
US 11367796B2 · Guha · 2022 [cited by applicant]
US 11799037B2 · Guha · 2023 [cited by examiner]
US 20160233298A1 · Webb · 2016 [cited by examiner]
US 20170229555A1 · Balakrishnan · 2017 [cited by examiner]
US 20190348498A1 · Cheng · 2019 [cited by applicant]