IP Library Granted Patent US 11,274,033
Granted Patent B2
US 11,274,033 · App. 15/698,917 · Granted Mar 15, 2022

MEMS actuation systems and methods

Inventors: Xiaolei Liu (South Pasadena, CA); Matthew Ng (Rosemead, CA); Guiqin Wang (Arcadia, CA)
Assignee: MEMS DRIVE (NANJING) CO., LTD.
B81B3/0021H04N5/2254B81B2203/0118
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Quick Facts
Patent No.
US 11,274,033
App. No.
15/698,917
Granted
Mar 15, 2022
Kind
B2
Abstract

A micro-electrical-mechanical system (MEMS) actuator includes a first set of actuation fingers, a second set of actuation fingers, and a first spanning structure configured to couple at least two fingers of the first set of actuation fingers while spanning at least one finger of the second set of actuation fingers.

Claims (34)

1. A micro-electrical-mechanical system (MEMS) actuator comprising:

a first set of actuation fingers;

a second set of actuation fingers;

a first spanning structure configured to couple at least two fingers of the first set of actuation fingers while overlapping at least one finger of the second set of actuation fingers; and

a second spanning structure configured to couple at least two fingers of the second set of actuation fingers while overlapping at least one finger of the first set of actuation fingers, wherein the second spanning structure is configured to span the at least one finger of the first set of actuation fingers at a distance configured to define a maximum level of first-axis in a second-direction deflection for the at least two fingers of the second set of actuation fingers.

2. The micro-electrical-mechanical system (MEMS) actuator of claim 1 wherein the first spanning structure is configured to span the at least one finger of the second set of actuation fingers at a distance configured to define a maximum level of first-axis in a first-direction deflection for the at least one finger of the second set of actuation fingers.

3. The micro-electrical-mechanical system (MEMS) actuator of claim 2 wherein the first spanning structure is configured to define a first gap between the first spanning structure and the at least one finger of the second set of actuation fingers, wherein this first gap is in a range of 0.1 μm and 5 μm.

4. The micro-electrical-mechanical system (MEMS) actuator of claim 1 wherein the second spanning structure is configured to define a second gap between the second spanning structure and the at least one finger of the second set of actuation fingers, wherein the second gap is in a range of 0.1 μm and 5 μm.

5. The micro-electrical-mechanical system (MEMS) actuator of claim 1 wherein the first set of actuation fingers is a set of fixed actuation fingers.

6. The micro-electrical-mechanical system (MEMS) actuator of claim 1 wherein the second set of actuation fingers is a set of moveable actuation fingers.

7. The micro-electrical-mechanical system (MEMS) actuator of claim 6 wherein the second set of actuation fingers is bidirectionally-displaceable in a second-axis and essentially non-displaceable in a third-axis.

8. The micro-electrical-mechanical system (MEMS) actuator of claim 1 wherein the first set of actuation fingers are constructed of silicon material.

9. The micro-electrical-mechanical system (MEMS) actuator of claim 1 wherein the second set of actuation fingers are constructed of silicon material.

10. The micro-electrical-mechanical system (MEMS) actuator of claim 1 wherein the first spanning structure is constructed of metallic material.

11. The micro-electrical-mechanical system (MEMS) actuator of claim 1 wherein the second spanning structure is constructed of metallic material.

12. A micro-electrical-mechanical system (MEMS) actuator comprising:

a first set of actuation fingers;

a second set of actuation fingers;

a first spanning structure configured to couple at least two fingers of the first set of actuation fingers while overlapping at least one finger of the second set of actuation fingers, wherein:

the first spanning structure is configured to span the at least one finger of the second set of actuation fingers at a distance configured to define a maximum level of first-axis in a first-direction deflection for the at least one finger of the second set of actuation fingers, and

the first spanning structure is configured to define a first gap between the first spanning structure and the at least one finger of the second set of actuation fingers, wherein the first gap is in a range of 0.1 μm and 5 μm; and

a second spanning structure configured to couple at least two fingers of the second set of actuation fingers while overlapping at least one finger of the first set of actuation fingers, wherein the second spanning structure is configured to span the at least one finger of the first set of actuation fingers at a distance configured to define a maximum level of first-axis in a second-direction deflection for the at least two fingers of the second set of actuation fingers.

13. The micro-electrical-mechanical system (MEMS) actuator of claim 12 wherein the second spanning structure is configured to define a second gap between the second spanning structure and the at least one finger of the second set of actuation fingers, wherein the second gap is in a range of 0.1 μm and 5 μm.

14. A micro-electrical-mechanical system (MEMS) actuator comprising:

a first set of actuation fingers;

a second set of actuation fingers;

a first spanning structure configured to couple at least two fingers of the first set of actuation fingers while overlapping at least one finger of the second set of actuation fingers, wherein:

the first spanning structure is configured to span the at least one finger of the second set of actuation fingers at a distance configured to define a maximum level of first-axis in a first-direction deflection for the at least one finger of the second set of actuation fingers, and

the first spanning structure is configured to define a first gap between the first spanning structure and the at least one finger of the second set of actuation fingers, wherein the first gap is in a range of 0.1 μm and 5 μm;

a second spanning structure configured to couple at least two fingers of the second set of actuation fingers while overlapping at least one finger of the first set of actuation fingers, wherein:

the second spanning structure is configured to span the at least one finger of the first set of actuation fingers at a distance configured to define a maximum level of first-axis in a second-direction deflection for the at least two fingers of the second set of actuation fingers, and

the second spanning structure is configured to define a second gap between the first spanning structure and the at least one finger of the second set of actuation fingers, wherein the second gap is in a range of 0.1 μm and 5 μm.

15. The micro-electrical-mechanical system (MEMS) actuator of claim 14 wherein the first set of actuation fingers is a set of fixed actuation fingers.

16. The micro-electrical-mechanical system (MEMS) actuator of claim 14 wherein the second set of actuation fingers is a set of moveable actuation fingers.

Assignments (2)
INTELLECTUAL PROPERTY AGREEMENT Recorded Mar 24, 2021
From: MEMS DRIVE INC.
To: MEMS DRIVE (NANJING) CO., LTD
Reel/Frame 055709/0399 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2017
From: LIU, XIAOLEI; WANG, GUIQIN; NG, MATTHEW
To: MEMS DRIVE, INC.
Reel/Frame 043625/0446 →
Continuity (6)
Provisional Application 62420960 · Nov 11, 2016
Provisional Application 62419814 · Nov 9, 2016
Provisional Application 62419117 · Nov 8, 2016
Provisional Application 62393436 · Sep 12, 2016
Provisional Application 62393419 · Sep 12, 2016
Related Publication 20180076737A1 · Mar 15, 2018