IP Library › Granted Patent US 12,009,415
Granted Patent B2
US 12,009,415 · App. 18/144,811 · Granted Jun 11, 2024

High electron mobility transistor and method for fabricating the same

Inventors: Kuo-Hsing Lee (Hsinchu County, TW); Sheng-Yuan Hsueh (Tainan, TW); Chien-Liang Wu (Tainan, TW); Kuo-Yu Liao (Kaohsiung, TW)
Assignee: UNITED MICROELECTRONICS CORP.
H01L29/778H01L27/0629H01L29/0649H01L29/2003H01L29/66462
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Quick Facts
Patent No.
US 12,009,415
App. No.
18/144,811
Granted
Jun 11, 2024
Kind
B2
Abstract

A semiconductor device includes a substrate having a high electron mobility transistor (HEMT) region and a capacitor region, a first mesa isolation on the HEMT region, a HEMT on the first mesa isolation, a second mesa isolation on the capacitor region, and a capacitor on the second mesa isolation. The semiconductor device further includes buffer layer between the substrate, the first mesa isolation, and the second mesa isolation, in which bottom surfaces of the first mesa isolation and the second mesa isolation are coplanar.

Claims (39)

1. A semiconductor device, comprising:

a substrate having a high electron mobility transistor (HEMT) region and a capacitor region;

a mesa isolation on the HEMT region;

a HEMT on the mesa isolation;

a capacitor on the capacitor region; and

a buffer layer between the mesa isolation, the capacitor, and the substrate, wherein a bottom electrode of the capacitor contacts the buffer layer directly.

2. The semiconductor device of claim 1 , wherein mesa isolation and the buffer layer comprise gallium nitride (GaN).

3. The semiconductor device of claim 1 , wherein the HEMT comprises:

a barrier layer on the mesa isolation;

a p-type semiconductor layer on the barrier layer;

a gate electrode on the p-type semiconductor layer;

a source electrode and a drain electrode adjacent to two sides of the gate electrode;

a source electrode extension on the source electrode; and

a drain electrode extension on the drain electrode.

4. The semiconductor device of claim 3 , further comprising a hard mask on the mesa isolation and around the source electrode and the drain electrode.

5. The semiconductor device of claim 4 , wherein the capacitor comprises:

the bottom electrode on the buffer layer;

a capacitor dielectric layer on the bottom electrode and extending to the hard mask on the HEMT region; and

a top electrode on the capacitor dielectric layer.

6. A semiconductor device, comprising:

a substrate having a high electron mobility transistor (HEMT) region and a capacitor region;

a mesa isolation on the HEMT region;

a HEMT on the mesa isolation;

a hard mask around the HEMT and extending to the capacitor region, wherein a top surface of the hard mask on the capacitor region is lower than a top surface of the hard mask on the HEMT region; and

a capacitor on the hard mask.

7. The semiconductor device of claim 6 , further comprising a buffer layer between the mesa isolation, the hard mask, and the substrate.

8. The semiconductor device of claim 7 , wherein mesa isolation and the buffer layer comprise gallium nitride (GaN).

9. The semiconductor device of claim 6 , wherein the HEMT comprises:

a barrier layer on the mesa isolation;

a p-type semiconductor layer on the barrier layer;

a gate electrode on the p-type semiconductor layer;

a source electrode and a drain electrode adjacent to two sides of the gate electrode;

a source electrode extension on the source electrode; and

a drain electrode extension on the drain electrode.

10. The semiconductor device of claim 9 , wherein the hard mask surrounds the p-type semiconductor layer, the gate electrode, the source electrode, and the drain electrode.

11. The semiconductor device of claim 6 , wherein the capacitor comprises:

a bottom electrode on the hard mask;

a capacitor dielectric layer on the bottom electrode and extending to the hard mask on the HEMT region; and

a top electrode on the capacitor dielectric layer.

Priority Claims (1)
CN 202010704978.1 · Jul 21, 2020 · national
Continuity (2)
Division 16994646 · Aug 16, 2020
Related Publication 20230275146A1 · Aug 31, 2023