IP Library › Granted Patent US 12,722,968
Granted Patent B2
US 12,722,968 · App. 17/978,998 · Granted Sep 1, 2026

Micro-electro-mechanical system device

Inventor: Jia Jie Xia (Singapore, SG)
Assignee: Vanguard International Semiconductor Corporation
B81B3/0021B81B3/0013B81B3/0072B81B2203/0127H04R7/08
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Quick Facts
Patent No.
US 12,722,968
App. No.
17/978,998
Granted
Sep 1, 2026
Kind
B2
Abstract

A MEMS device includes a substrate having a cavity, and a MEMS structure disposed over the cavity and attached to the substrate. The MEMS structure includes a plurality of cantilever portions, where each cantilever portions includes a free end and an anchor end. The MEMS device further includes a membrane disposed over the MEMS structure and includes a plurality of protruding portions respectively connected to the free ends of the cantilever portions. In addition, the MEMS device includes a gap between the MEMS structure and the membrane, where the gap surrounds the protruding portions.

Claims (25)

1 . A micro-electro-mechanical system (MEMS) device, comprising:

a substrate having a cavity;

a MEMS structure disposed over the cavity and attached to the substrate, wherein the MEMS structure comprises a plurality of cantilever portions, and each of the plurality of cantilever portions comprises a free end and an anchor end;

a membrane disposed over the MEMS structure, wherein the membrane comprises a plurality of protruding portions respectively connected to the free ends of the plurality of cantilever portions; and

a gap disposed between the MEMS structure and the membrane, wherein the gap surrounds the plurality of protruding portions,

wherein two anchor ends of two of the plurality of cantilever portions are attached to a portion of the substrate, and an interrupted portion penetrating the MEMS structure is disposed directly above the portion of the substrate.

2 . The MEMS device of claim 1 , wherein the plurality of cantilever portions are arranged in an array, and each of the plurality of cantilever portions comprises a triangle, a rectangle or an interdigitated shape.

3 . The MEMS device of claim 1 , wherein the anchor end of each of the plurality of cantilever portion is attached to the substrate.

4 . The MEMS device of claim 1 , wherein the cavity comprises a plurality of sub-cavities, and the plurality of sub-cavities are separated from each other by the portion of the substrate.

5 . The MEMS device of claim 4 , wherein the substrate comprises a first surface adjacent to the MEMS structure and a second surface opposite to the first surface, and the plurality of sub-cavities are extended from the first surface to a position in the height of the substrate.

6 . The MEMS device of claim 5 , wherein the cavity further comprises a common cavity extended from the second surface to the position in the height of the substrate and connected to the plurality of sub-cavities.

7 . The MEMS device of claim 1 , wherein the substrate comprises a first surface adjacent to the MEMS structure and a second surface opposite to the first surface, the cavity is extended from the first surface to a position in the height of the substrate, and a bottom surface of the cavity is in the substrate.

8 . The MEMS device of claim 7 , further comprising a sacrificial layer disposed between the substrate and the MEMS structure, wherein the sacrificial layer has an opening connected to the cavity, and a portion of the sacrificial layer is disposed along a sidewall of the cavity and another portion of the sacrificial layer is extended into the substrate.

9 . The MEMS device of claim 1 , further comprising a sacrificial layer disposed between the substrate and the MEMS structure, wherein the sacrificial layer has an opening connected to the cavity.

10 . The MEMS device of claim 1 , wherein the MEMS structure comprises a first electrode layer, a second electrode layer and a sensing material layer disposed between the first electrode layer and the second electrode layer, portions of the first electrode layer in the plurality of cantilever portions are electrically connected in series, and portions of the second electrode layer in the plurality of cantilever portions are electrically connected in series.

11 . The MEMS device of claim 10 , wherein the sensing material layer comprises a piezoelectric material or a piezoresistive material.

12 . The MEMS device of claim 1 , wherein the composition of the membrane comprises a semiconductor material, a metal material or a polymer material.

13 . The MEMS device of claim 1 , wherein the membrane further comprises an anti-stiction stopper protruding towards the MEMS structure and separated from the MEMS structure.

14 . The MEMS device of claim 13 , wherein the anti-stiction stopper is disposed at an edge of the membrane.

15 . The MEMS device of claim 1 , wherein when viewed from a top view, edges of the membrane are extended outwards beyond edges of the cavity.

16 . The MEMS device of claim 1 , wherein the plurality of cantilever portions are separated from each other by the interrupted portion penetrating the MEMS structure.

17 . The MEMS device of claim 1 , wherein the plurality of protruding portions are laterally separated from each other by the gap.

18 . The MEMS device of claim 1 , wherein each of the plurality of protruding portions is in a columnar shape.

19 . The MEMS device of claim 1 , wherein the membrane further comprises a suspended portion vertically separated from the MEMS structure.

20 . The MEMS device of claim 1 , further comprising a sacrificial layer disposed between the substrate and the MEMS structure, wherein the sacrificial layer has an opening to expose a portion of a front surface of the substrate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 2, 2022
From: XIA, JIA JIE
To: VANGUARD INTERNATIONAL SEMICONDUCTOR CORPORATION
Reel/Frame 061622/0438 →
Continuity (1)
Related Publication 20240140781A1 · May 2, 2024
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