IP Library › Granted Patent US 12,014,995
Granted Patent B2
US 12,014,995 · App. 17/369,936 · Granted Jun 18, 2024

Warpage-reducing semiconductor structure and fabricating method of the same

Inventors: Da-Jun Lin (Kaohsiung, TW); Chin-Chia Yang (Tainan, TW); Tai-Cheng Hou (Tainan, TW); Fu-Yu Tsai (Tainan, TW); Bin-Siang Tsai (Changhua County, TW)
Assignee: UNITED MICROELECTRONICS CORP.
H01L23/562H01L21/02164H01L21/0217H01L21/02348H01L23/5226H01L29/41725
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Quick Facts
Patent No.
US 12,014,995
App. No.
17/369,936
Granted
Jun 18, 2024
Kind
B2
Abstract

A warpage-reducing semiconductor structure includes a wafer. The wafer includes a front side and a back side. Numerous semiconductor elements are disposed at the front side. A silicon oxide layer is disposed at the back side. A UV-transparent silicon nitride layer covers and contacts the silicon oxide layer. The refractive index of the UV-transparent silicon nitride layer is between 1.55 and 2.10.

Claims (23)

1. A warpage-reducing semiconductor structure, comprising:

a wafer comprising a front side and a back side;

a plurality of semiconductor elements disposed at the front side, wherein the plurality of semiconductor elements comprise a plurality of first input/output (I/O) metal elements disposed at the front side, and the plurality of first I/O metal elements provide a first tensile stress to make the wafer bend toward the front side;

a silicon oxide layer directly contacting the back side;

a UV-transparent silicon nitride layer covering and contacting the silicon oxide layer, wherein a refractive index of the UV-transparent silicon nitride layer is between 1.55 and 2.10, and the silicon oxide layer is sandwiched between the back side and the UV-transparent silicon nitride layer; and

a plurality of second I/O metal elements disposed at the back side, wherein the plurality of second I/O metal elements provide a second tensile stress to make the wafer bend toward the back side, the second tensile stress is smaller than the first tensile stress, the silicon oxide layer and the UV-transparent silicon nitride layer are disposed between the plurality of second I/O metal elements and the back side, and the silicon oxide layer provides a third tensile stress to make the wafer bend to the back side.

2. The warpage-reducing semiconductor structure of claim 1 , wherein the first tensile stress is the same as a summation of the second tensile stress and the third tensile stress.

3. The warpage-reducing semiconductor structure of claim 1 , wherein the silicon oxide layer comprises tetraethyl orthosilicate (TEOS), silicon oxycarbide (SiCO) or silicon oxynitride (SiON).

4. A warpage-reducing semiconductor structure, comprising:

a wafer comprising a front side and a back side;

a plurality of metal lines disposed at the front side, wherein the metal lines comprise a plurality of first input/output (I/O) metal elements disposed at the front side, and the plurality of first I/O metal elements provide a first tensile stress to make the wafer bend toward the front side;

a stress layer directly contacting the back side, wherein the stress layer comprises tetraethyl orthosilicate (TEOS), nitrogen-doped silicon carbide (SiC:N), silicon oxycarbide (SiCO) or silicon oxynitride (SiON);

a silicon nitride layer covering the stress layer, wherein the stress layer is sandwiched between the back side and the silicon nitride layer; and

a plurality of second I/O metal elements disposed at the back side, wherein the plurality of second I/O metal elements provide a second tensile stress to make the wafer bend toward the back side, the second tensile stress is smaller than the first tensile stress, the stress layer is disposed between the plurality of second I/O metal elements and the back side, and the stress layer provides a third tensile stress to make the wafer bend toward the back side.

5. The warpage-reducing semiconductor structure of claim 4 , wherein the first tensile stress is the same as a summation of the second tensile stress and the third tensile stress.

6. A fabricating method of a warpage-reducing semiconductor structure, comprising:

providing a wafer comprising a front side and a back side, wherein a plurality of semiconductor elements are disposed at the front side, the plurality of semiconductor elements comprise a plurality of first input/output (I/O) metal elements disposed at the front side, and the plurality of first I/O metal elements provide a first tensile stress to make the wafer bend toward the front side;

forming a silicon oxide layer directly contacting the back side;

forming a silicon nitride layer covering and contacting the silicon oxide layer, wherein the silicon oxide layer is sandwiched between the back side and the silicon nitride layer;

performing a UV light curing process, wherein during the UV light curing process, the UV light penetrates the silicon nitride layer to irradiate the silicon oxide layer; and

forming a plurality of second I/O metal elements disposed at the back side, wherein the plurality of second I/O metal elements provide a second tensile stress to make the wafer bend toward the back side, the second tensile stress is smaller than the first tensile stress, the silicon oxide layer and the silicon nitride layer are disposed between the plurality of second I/O metal elements and the back side, and the silicon oxide layer provides a third tensile stress to make the wafer bend to the back side.

7. The fabricating method of a warpage-reducing semiconductor structure of claim 6 , wherein the silicon nitride layer is a UV-transparent silicon nitride layer, and a refractive index of the silicon nitride layer is between 1.55 and 2.10.

8. The fabricating method of a warpage-reducing semiconductor structure of claim 6 , wherein the silicon oxide layer comprises tetraethyl orthosilicate (TEOS), silicon oxycarbide (SiCO) or silicon oxynitride (SiON).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 7, 2021
From: LIN, DA-JUN; YANG, CHIN-CHIA; HOU, TAI-CHENG; TSAI, FU-YU; TSAI, BIN-SIANG
To: UNITED MICROELECTRONICS CORP.
Reel/Frame 056783/0183 →
Priority Claims (1)
CN 202110630599.7 · Jun 7, 2021 · national
Continuity (1)
Related Publication 20220392850A1 · Dec 8, 2022
Cited By (1)
US 12,300,633