IP Library › Granted Patent US 11,818,540
Granted Patent B1
US 11,818,540 · App. 17/647,209 · Granted Nov 14, 2023

Acoustic devices with edge corrugation

Inventors: You Qian (Singapore, SG); Rakesh Kumar (Singapore, SG); Guofeng Chen (Fremont, CA); Myeong Gweon Gu (Seoul, KR); Myung Hyun Park (Seongnam-si, KR); Jae Hyung Lee (Seoul, KR); Michael Jon Wurtz (Lake Oswego, OR)
Assignee: Skyworks Global Pte. Ltd.
H04R17/02B81B3/0021G10L19/00H04R19/04B81B2201/0257B81B2203/019B81B2203/0118B81B2203/04H04R2201/003
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Quick Facts
Patent No.
US 11,818,540
App. No.
17/647,209
Granted
Nov 14, 2023
Kind
B1
Abstract

An acoustic sensor (e.g., for use in a piezoelectric MEMS microphone) includes a substrate and a cantilever beam attached to the substrate. The cantilever beam has a proximal portion attached to the substrate and a distal portion that extends from the proximal portion to a free end of the beam, the beam extending generally linearly from the proximal portion toward the free end in a first direction. The beam has a wall portion at or proximate the free end that extends in a second direction generally transverse to the first direction and increases an acoustic resistance of the gap between sensors. An electrode is disposed on or in the proximal portion of the beam.

Claims (29)

1. A piezoelectric sensor for a piezoelectric microelectromechanical systems microphone, comprising:

a substrate;

a cantilever beam having a proximal portion attached to the substrate and a distal portion that extends from the proximal portion to a free end of the beam, the beam extending generally linearly from the proximal portion toward the free end in a first direction, the beam having a wall portion at or proximate the free end that extends in a second direction generally transverse to the first direction; and

an electrode disposed on or in the proximal portion of the beam.

2. The sensor of claim 1 wherein the wall portion extends perpendicular to the first direction.

3. The sensor of claim 1 wherein the wall portion extends downward relative to a bottom side of the beam.

4. The sensor of claim 1 wherein the wall portion extends upward relative to a top side of the beam.

5. The sensor of claim 4 wherein the wall portion extends downward relative to a bottom side of the beam.

6. The sensor of claim 1 wherein the wall portion is defined by a corrugated section proximate the free end of the beam, the corrugated section comprising one or more grooves extending in a third direction generally transverse to the first direction.

7. The sensor of claim 6 wherein a thickness of the beam between a top surface and a bottom surface is greater in the corrugated section than in the proximal portion of the beam.

8. A piezoelectric microelectromechanical systems microphone, comprising:

a substrate; and

a plurality of piezoelectric sensors movably coupled to the substrate, each of the piezoelectric sensors spaced apart from an adjacent piezoelectric sensor by a gap and including: a cantilever beam having a proximal portion attached to the substrate and a distal portion that extends from the proximal portion to a free end of the beam, the beam extending generally linearly from the proximal portion toward the free end in a first direction, the beam having a wall portion at or proximate the free end that extends in a second direction generally transverse to the first direction, and an electrode disposed on or in the proximal portion of the beam,

wherein the plurality of piezoelectric sensors are configured to deflect when subjected to sound pressure.

9. The microphone of claim 8 wherein the wall portion extends perpendicular to the first direction.

10. The microphone of claim 8 wherein the wall portion extends downward relative to a bottom side of the beam.

11. The microphone of claim 8 wherein the wall portion extends upward relative to a top side of the beam.

12. The microphone of claim 11 wherein the wall portion extends downward relative to a bottom side of the beam.

13. The microphone of claim 8 wherein the wall portion is defined by a corrugated section proximate the free end of the beam, the corrugated section comprising one or more grooves extending in a third direction generally transverse to the first direction.

14. The microphone of claim 13 wherein a thickness of the beam between a top surface and a bottom surface is greater in the corrugated section than in the proximal portion of the beam.

15. An audio subsystem, comprising:

an audio codec;

one or more piezoelectric microelectromechanical systems microphones in communication with the audio codec, each microphone including: a substrate and a plurality of piezoelectric sensors movably coupled to the substrate, each of the piezoelectric sensors spaced apart from an adjacent piezoelectric sensor by a gap and including a cantilever beam having a proximal portion attached to the substrate and a distal portion that extends from the proximal portion to a free end of the beam, the beam extending generally linearly from the proximal portion toward the free end in a first direction, the beam having a wall portion at or proximate the free end that extends in a second direction generally transverse to the first direction, and an electrode disposed on or in the proximal portion of the beam.

16. The audio subsystem of claim 15 wherein the wall portion extends perpendicular to the first direction.

17. The audio subsystem of claim 15 wherein the wall portion extends downward relative to a bottom side of the beam.

18. The audio subsystem of claim 15 wherein the wall portion extends upward relative to a top side of the beam.

19. The audio subsystem of claim 18 wherein the wall portion extends downward relative to a bottom side of the beam.

20. The audio subsystem of claim 15 wherein the wall portion is defined by a corrugated section proximate the free end of the beam, the corrugated section comprising one or more grooves extending in a third direction generally transverse to the first direction.

21. The audio subsystem of claim 20 wherein a thickness of the beam between a top surface and a bottom surface is greater in the corrugated section than in the proximal portion of the beam.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE APPLICATION NUMBER ON COVER SHEET AND NOTICE OF RECORDATION FROM 16/647209 TO 17/647209 PREVIOUSLY RECORDED AT REEL: 060003 FRAME: 0942. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jun 20, 2022
From: QIAN, YOU; KUMAR, RAKESH; CHEN, GUOFENG; GU, MYEONG GWEON; PARK, MYUNG HYUN; LEE, JAE HYUNG; WURTZ, MICHAEL JON
To: SKYWORKS GLOBAL PTE. LTD.
Reel/Frame 060650/0120 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2022
From: QIAN, YOU; KUMAR, RAKESH; CHEN, GUOFENG; GU, MYEONG GWEON; PARK, MYUNG HYUN; LEE, JAE HYUNG; WURTZ, MICHAEL JON
To: SKYWORKS GLOBAL PTE. LTD.
Reel/Frame 060003/0942 →
Continuity (2)
Provisional Application 63134866 · Jan 7, 2021
Provisional Application 63134762 · Jan 7, 2021
Cited By (4)
US 12,225,821 US 12,404,167 US 12,568,337 US 12,649,653