IP Library › Granted Patent US 12,154,898
Granted Patent B2
US 12,154,898 · App. 17/133,024 · Granted Nov 26, 2024

Substrate-less vertical diode integrated circuit structures

Inventors: Avyaya Jayanthinarasimham (Hillsboro, OR); Brian Greene (Portland, OR); Suresh Vishwanath (Portland, OR)
Assignee: Intel Corporation
H01L27/0727H01L27/0886H01L29/0649H01L29/785H01L29/861
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Quick Facts
Patent No.
US 12,154,898
App. No.
17/133,024
Granted
Nov 26, 2024
Kind
B2
Abstract

Substrate-less vertical diode integrated circuit structures, and methods of fabricating substrate-less vertical diode integrated circuit structures, are described. For example, a substrate-less integrated circuit structure includes a semiconductor fin in a dielectric layer, the semiconductor fin having a top and a bottom, and the dielectric layer having a top surface and a bottom surface. A first epitaxial semiconductor structure is on the top of the semiconductor fin. A second epitaxial semiconductor structure is on the bottom of the semiconductor fin. A first conductive contact is on the first epitaxial semiconductor structure. A second conductive contact is on the second epitaxial semiconductor structure.

Claims (48)

1. A substrate-less integrated circuit structure, comprising:

a semiconductor fin in a dielectric layer, the semiconductor fin having a top and a bottom, and the dielectric layer having a top surface and a bottom surface;

a first epitaxial semiconductor structure on the top of the semiconductor fin;

a second epitaxial semiconductor structure on the bottom of the semiconductor fin;

a first conductive contact on the first epitaxial semiconductor structure; and

a second conductive contact on the second epitaxial semiconductor structure, wherein the second conductive contact has an uppermost surface above a bottommost surface of the second epitaxial semiconductor structure.

2. The substrate-less integrated circuit structure of claim 1 , wherein the first epitaxial semiconductor structure has a bottom below the top surface of the dielectric layer, and wherein the second epitaxial semiconductor structure has a top above the bottom surface of the dielectric layer.

3. The substrate-less integrated circuit structure of claim 1 , wherein the fin comprises silicon, and the first and second epitaxial semiconductor structures comprise silicon and germanium.

4. The substrate-less integrated circuit structure of claim 1 , wherein the first and second epitaxial semiconductor structures are faceted.

5. The substrate-less integrated circuit structure of claim 1 , wherein the integrated circuit structure is a vertical diode.

6. A computing device, comprising:

a board; and

a component coupled to the board, the component including a substrate-less integrated circuit structure, comprising:

a semiconductor fin in a dielectric layer, the semiconductor fin having a top and a bottom, and the dielectric layer having a top surface and a bottom surface;

a first epitaxial semiconductor structure on the top of the semiconductor fin;

a second epitaxial semiconductor structure on the bottom of the semiconductor fin;

a first conductive contact on the first epitaxial semiconductor structure; and

a second conductive contact on the second epitaxial semiconductor structure, wherein the second conductive contact has an uppermost surface above a bottommost surface of the second epitaxial semiconductor structure.

7. The computing device of claim 6 , further comprising:

a memory coupled to the board.

8. The computing device of claim 6 , further comprising:

a communication chip coupled to the board.

9. The computing device of claim 6 , wherein the component is a packaged integrated circuit die.

10. The computing device of claim 6 , wherein the component is selected from the group consisting of a processor, a communications chip, and a digital signal processor.

11. A substrate-less integrated circuit structure, comprising:

a plurality of fins in a dielectric layer;

a plurality of N-type epitaxial structures on a top of the plurality of fins;

a plurality of P-type epitaxial structures on a bottom of the plurality of fins;

a first conductive contact on the plurality of N-type epitaxial structures; and

a second conductive contact on the plurality of P-type epitaxial structures, wherein the second conductive contact has an uppermost surface above a bottommost surface of the plurality of P-type epitaxial structures.

12. The substrate-less integrated circuit structure of claim 11 , wherein the plurality of fins is a plurality of N-type fins.

13. The substrate-less integrated circuit structure of claim 11 , wherein the plurality of fins is a plurality of P-type fins.

14. The substrate-less integrated circuit structure of claim 11 , wherein the plurality of fins comprises silicon, the plurality of N-type epitaxial structures comprises silicon and germanium, and the plurality of P-type epitaxial structures comprises silicon and germanium.

15. The substrate-less integrated circuit structure of claim 11 , wherein the integrated circuit structure is a vertical diode.

16. A computing device, comprising:

a board; and

a component coupled to the board, the component including a substrate-less integrated circuit structure, comprising:

a plurality of fins in a dielectric layer;

a plurality of N-type epitaxial structures on a top of the plurality of fins;

a plurality of P-type epitaxial structures on a bottom of the plurality of fins;

a first conductive contact on the plurality of N-type epitaxial structures; and

a second conductive contact on the plurality of P-type epitaxial structures, wherein the second conductive contact has an uppermost surface above a bottommost surface of the plurality of P-type epitaxial structures.

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

a memory coupled to the board.

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

a communication chip coupled to the board.

19. The computing device of claim 16 , wherein the component is a packaged integrated circuit die.

20. The computing device of claim 16 , wherein the component is selected from the group consisting of a processor, a communications chip, and a digital signal processor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2021
From: JAYANTHINARASIMHAM, AVYAYA; GREENE, BRIAN; VISHWANATH, SURESH
To: INTEL CORPORATION
Reel/Frame 057510/0137 →
Continuity (1)
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