IP Library › Granted Patent US 9,618,140
Granted Patent B2
US 9,618,140 · App. 14/805,500 · Granted Apr 11, 2017

Microvalve having improved actuator

Inventors: Parthiban Arunasalam (Austin, TX); E. Nelson Fuller (Manchester, MI); Joe A. Ojeda, Sr. (Austin, TX); Gengxun K. Gurley (Hutto, TX); Chen Yang (Austin, TX)
Assignee: DunAn Microstaq, Inc.
F16K99/0044F16K99/0011F16K99/0028
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Quick Facts
Patent No.
US 9,618,140
App. No.
14/805,500
Granted
Apr 11, 2017
Kind
B2
Abstract

A microvalve includes a first plate having a surface defining an actuator cavity. A second plate has a surface that abuts the surface of the first plate and includes a displaceable member that is disposed within the actuator cavity for movement between a closed position, wherein the displaceable member prevents fluid communication through the microvalve, and an opened position, wherein the displaceable member does not prevent fluid communication through the microvalve. An actuator is connected to the displaceable member and has only one or two pairs of actuator ribs.

Claims (27)

1. A microvalve comprising:

a first plate including a surface having an actuator cavity provided therein;

a second plate having a surface that abuts the surface of the first plate and includes a displaceable member that is disposed within the actuator cavity for movement between a closed position, wherein the displaceable member prevents fluid communication through the microvalve, and an opened position, wherein the displaceable member does not prevent fluid communication through the microvalve; and

an actuator connected to the displaceable member, the actuator having only one or two pairs of actuator ribs;

wherein each actuator rib includes an aperture formed therethrough.

2. The microvalve defined in claim 1 , wherein the one or two pairs of actuator ribs are formed integrally with the second plate for moving the displaceable member between the closed and opened positions.

3. The microvalve defined in claim 1 , wherein the actuator is connected to a source of electricity such that an electrical current is passed through the actuator ribs of the actuator, wherein the electrical current causes thermal expansion of the actuator ribs.

4. The microvalve defined in claim 3 , wherein the aperture formed through each of the actuator ribs in the actuator is configured such that electrical resistance is increased relative to an identical actuator rib without the aperture.

5. The microvalve defined in claim 4 , wherein the aperture is a plurality of apertures.

6. The microvalve defined in claim 4 , wherein a width of each actuator rib is within the range of about 184 μm to about 191 μm.

7. The microvalve defined in claim 4 , wherein a width of the aperture is within the range of about 59 μm to about 66 μm.

8. The microvalve defined in claim 1 , wherein the actuator is configured such that the actuator requires within the range of about 4.5 watts to about 7.0 watts of power to operate.

9. A microvalve comprising:

a base plate including a surface, a recessed area provided within the surface, and first and second fluid ports provided within the recessed area;

a cover plate including a surface, a recessed area provided within the surface;

an intermediate plate having a first surface that abuts the surface of the base plate and a second surface that abuts the surface of the cover plate, the intermediate plate including a displaceable member is positioned to prevent fluid communication between the first and second fluid ports, and an opened position, wherein the displaceable member is positioned to permit fluid communication between the first and second fluid ports; and

an actuator connected to the displaceable member, the actuator having only one or two pairs of actuator ribs;

wherein each actuator rib includes an aperture formed therethrough.

10. The microvalve defined in claim 9 , wherein the intermediate plate defines a plane, and wherein the displaceable member moves parallel to the plane when moved between the closed and opened positions.

11. The microvalve defined in claim 9 , wherein the one or two pairs of actuator ribs are formed integrally with the intermediate plate for moving the displaceable member between the closed and opened positions.

12. The microvalve defined in claim 9 , wherein the actuator is connected to a source of electricity such that an electrical current is passed through the actuator ribs of the actuator, wherein the electrical current causes thermal expansion of the actuator ribs.

13. The microvalve defined in claim 12 , wherein the aperture formed through each of the actuator ribs in the actuator is configured such that electrical resistance is increased relative to an identical actuator rib without the aperture.

14. The microvalve defined in claim 13 , wherein the aperture is a plurality of apertures.

15. The microvalve defined in claim 13 , wherein a width of each actuator rib is within the range of about 184 μm to about 191 μm.

16. The microvalve defined in claim 13 , wherein a width of the aperture is within the range of about 59 μm to about 66 μm.

17. The microvalve defined in claim 13 , wherein the actuator ribs are connected through a central spine to an elongated arm portion of the displaceable member for moving the displaceable member between the closed and opened positions.

18. The microvalve defined in claim 9 , wherein the actuator is configured such that the actuator requires within the range of about 4.5 watts to about 7.0 watts of power to operate.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2026
From: DUNAN MICROSTAQ, INC.
To: DUNAN PRECISION, INC.
Reel/Frame 076014/0181 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 8, 2017
From: ARUNASALAM, PARTHIBAN; FULLER, EDWARD N.; OJEDA, JOE A., SR.; GURLEY, GENGXUN KARA; YANG, CHEN
To: DUNAN MICROSTAQ, INC.
Reel/Frame 041507/0539 →
Continuity (2)
Substitution 62079892 · Nov 14, 2014
Related Publication 20160138733A1 · May 19, 2016