IP Library › Granted Patent US 12,249,631
Granted Patent B2
US 12,249,631 · App. 18/206,974 · Granted Mar 11, 2025

Gallium nitride device for high frequency and high power applications

Inventors: Puneet Srivastava (Wilmington, MA); James G. Fiorenza (Carlisle, MA)
Assignee: Analog Devices, Inc.
H01L29/404H01L21/0254H01L29/205H01L29/407H01L29/66462H01L29/778H01L29/7786H01L29/2003
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Quick Facts
Patent No.
US 12,249,631
App. No.
18/206,974
Granted
Mar 11, 2025
Kind
B2
Abstract

A semiconductor device includes a layer of a first semiconducting material, where the first semiconducting material is epitaxially grown to have a crystal structure of a first substrate. The semiconductor device further includes a layer of a second semiconducting material disposed adjacent to the layer of the first semiconducting material to form a heterojunction with the layer of the first semiconducting material. The semiconductor device further includes a first component that is electrically coupled to the heterojunction, and a second substrate that is bonded to the layer of the first semiconducting material.

Claims (46)

1. A semiconductor device, comprising:

a layer of a first semiconducting material, the first semiconducting material comprising a first crystal structure;

a layer of a second semiconducting material disposed adjacent to the layer of the first semiconducting material to form a heterojunction with the layer of the first semiconducting material;

a substrate directly bonded to the layer of the first semiconducting material without an intervening buffer layer material, the substrate comprising a second crystal structure, wherein the substrate has a thermal conductivity greater than that of the first semiconducting material;

a gate electrode;

a drain electrode; and

a backside field plate that is electrically coupled to the heterojunction, wherein the backside field plate includes a side in direct contact with the substrate, and wherein the backside field plate does not include a semiconductor material.

2. The semiconductor device of claim 1 , further comprising a high electron-mobility transistor (HEMT) comprising:

the layer of the first semiconducting material;

the layer of the second semiconducting material; and

the backside field plate.

3. The semiconductor device of claim 1 , wherein each of the first semiconducting material and the second semiconducting material comprises a compound of one or more elements in group 13 of the periodic table with one or more elements in group 15 of the periodic table.

4. The semiconductor device of claim 3 , wherein the first semiconducting material comprises gallium nitride and the second semiconducting material comprises aluminum gallium nitride, aluminum indium gallium nitride or aluminum nitride.

5. The semiconductor device of claim 1 , wherein the backside field plate comprises a metal material.

6. The semiconductor device of claim 1 , wherein the backside field plate is an electrical conductor.

7. The semiconductor device of claim 1 , further comprising:

a frontside field plate that is spaced apart from the drain electrode and is configured to spatially distribute an electric field between the gate electrode and the drain electrode.

8. The semiconductor device of claim 7 , wherein an edge of the backside field plate closest to the drain electrode is aligned with an edge of the frontside field plate closest to the drain electrode.

9. A semiconductor device, comprising:

a layer of a first semiconducting material, the first semiconducting material comprising a first crystal structure, wherein the first semiconducting material defines a cavity;

a layer of a second semiconducting material disposed adjacent to the layer of the first semiconducting material to form a heterojunction with the layer of the first semiconducting material;

a gate electrode;

a drain electrode;

means for depleting channel electrons and distributing an electric field, the means for depleting channel electrons and distributing the electric field positioned at least partially in the cavity formed by the first semiconducting material such that an edge of the means for depleting channel electrons and distributing the electric field closest to the drain electrode of the device is aligned with an edge of a frontside field plate closest to the drain electrode, wherein the means for depleting channel electrons and distributing the electric field does not include a semiconductor material; and

means for structurally supporting the heterojunction and the means for depleting channel electrons and distributing the electric field, wherein the means for depleting channel electrons and distributing the electric field includes a side in direct contact with the layer of the first semiconducting material.

10. The semiconductor device of claim 9 , further comprising means for aligning the means for depleting channel electrons and distributing the electric field from a front side of the semiconductor device.

11. The semiconductor device of claim 9 , wherein the means for depleting channel electrons and distributing the electric field includes a conductive material.

12. A semiconductor device, comprising:

a layer of a first semiconducting material, the first semiconducting material comprising a first crystal structure;

a layer of a second semiconducting material disposed adjacent to the layer of the first semiconducting material to form a heterojunction with the layer of the first semiconducting material;

a substrate directly bonded to the layer of the first semiconducting material without an intervening buffer layer material, the substrate comprising a second crystal structure, wherein the substrate has a thermal conductivity greater than that of the first semiconducting material;

a gate electrode;

a source electrode;

a drain electrode, wherein a distance D is defined by a distance between a left side of the drain electrode and a right side of the source electrode; and

a backside field plate that is electrically coupled to the heterojunction, wherein the backside field plate includes at least one side in direct contact with the first semiconducting material, wherein the backside field plate does not include a semiconductor material, and wherein a width of the backside field plate is less than the distance D.

13. The semiconductor device of claim 12 , further comprising a high electron-mobility transistor (HEMT) comprising:

the layer of the first semiconducting material;

the layer of the second semiconducting material; and

the backside field plate.

14. The semiconductor device of claim 12 , wherein each of the first semiconducting material and the second semiconducting material comprises a compound of one or more elements in group 13 of the periodic table with one or more elements in group 15 of the periodic table.

15. The semiconductor device of claim 14 , wherein the first semiconducting material comprises gallium nitride and the second semiconducting material comprises aluminum gallium nitride, aluminum indium gallium nitride or aluminum nitride.

16. The semiconductor device of claim 12 , further comprising:

a frontside field plate that is spaced apart from the drain electrode and is configured to spatially distribute an electric field between the gate electrode and the drain electrode.

17. The semiconductor device of claim 16 , wherein an edge of the backside field plate closest to the drain electrode is aligned with an edge of the frontside field plate closest to the drain electrode.

18. The semiconductor device of claim 12 , wherein the backside field plate comprises a metal material.

19. The semiconductor device of claim 12 , wherein the backside field plate is an electrical conductor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2023
From: SRIVASTAVA, PUNEET; FIORENZA, JAMES G.
To: ANALOG DEVICES, INC.
Reel/Frame 063962/0894 →
Continuity (4)
Continuation 18047914 · Oct 19, 2022
Division 15975917 · May 10, 2018
Provisional Application 62505586 · May 12, 2017
Related Publication 20230317801A1 · Oct 5, 2023
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