IP Library Granted Patent US 8,104,515
Granted Patent B2
US 8,104,515 · App. 12/540,994 · Granted Jan 31, 2012

Microfabricated elastomeric valve and pump systems

Assignee: California Institute of Technology
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Quick Facts
Patent No.
US 8,104,515
App. No.
12/540,994
Granted
Jan 31, 2012
Kind
B2
Abstract

A method of fabricating an elastomeric structure, comprising: forming a first elastomeric layer on top of a first micromachined mold, the first micromachined mold having a first raised protrusion which forms a first recess extending along a bottom surface of the first elastomeric layer; forming a second elastomeric layer on top of a second micromachined mold, the second micromachined mold having a second raised protrusion which forms a second recess extending along a bottom surface of the second elastomeric layer; bonding the bottom surface of the second elastomeric layer onto a top surface of the first elastomeric layer such that a control channel forms in the second recess between the first and second elastomeric layers; and positioning the first elastomeric layer on top of a planar substrate such that a flow channel forms in the first recess between the first elastomeric layer and the planar substrate.

Claims (46)

1. A microfabricated elastomeric device comprising:

a planar substrate;

a first elastomeric layer having a top surface and a bottom surface, the bottom surface comprising a first recess, wherein the bottom surface of the first elastomeric layer is bonded to the planar substrate such that the first recess forms a first flow channel; and

a second elastomeric layer having a top surface and a bottom surface, the bottom surface comprising a second recess, wherein the bottom surface of the second elastomeric layer is bonded to the top surface of the first elastomeric layer such that the second recess forms a second flow channel, wherein the first and second elastomeric layers form an elastomeric structure,

wherein the second flow channel extends across and above the first flow channel such that a fluid flow within the second flow channel is directed from before a first side of the first flow channel to beyond a second side of the first flow channel, and wherein a portion of the first elastomeric layer is a deflectable portion and is deflectable into the first flow channel upon pressurization of the second flow channel to form a planar sealing surface between the planar substrate and the deflectable portion of the first elastomeric layer.

2. The microfabricated elastomeric device of claim 1 , wherein the first and second flow channels both pass through the elastomeric structure.

3. The microfabricated elastomeric device of claim 1 , wherein the second flow channel passes through the elastomeric structure and the first flow channel passes along a surface of the elastomeric structure.

4. The microfabricated elastomeric device of claim 1 wherein the first and second flow channels have a depth between 0.2 and 250 microns.

5. The microfabricated elastomeric device of claim 1 , wherein the deflectable portion is made from the same material as the first elastomeric layer.

6. The microfabricated elastomeric device of claim 1 , wherein the first elastomeric layer and the second elastomeric layer are both made form an elastomeric material having a Young's modulus of between about 20 Pa-1 GPa.

7. The microfabricated elastomeric device of claim 1 wherein the deflectable portion is characterized by a dead volume wherein the dead volume is 100 aL to 100 nL.

8. The microfabricated elastomeric device of claim 1 wherein the deflectable portion is characterized by a dead volume wherein the dead volume is 1 fL to 10 nL.

9. The microfabricated elastomeric device of claim 1 wherein the deflectable portion is characterized by a dead volume wherein the dead volume is 100 fL to 1 nL.

10. The microfabricated elastomeric device of claim 1 wherein the deflectable portion is characterized by a dead volume wherein the dead volume is 1 pL to 100 pL.

11. The microfabricated elastomeric device of claim 1 wherein the deflectable portion is characterized by a dead volume wherein the dead volume is 1 aL to 1 μL.

12. A microfabricated elastomeric device comprising:

a planar substrate,

a first elastomeric layer having a top surface and a bottom surface, the bottom surface comprising a first recess, wherein the bottom surface of the first elastomeric layer is bonded to the planar substrate such that the first recess forms a first flow channel;

a second elastomeric layer having a top surface and a bottom surface, the bottom surface comprising a second recess, wherein the bottom surface of the second elastomeric layer is bonded to the top surface of the first elastomeric layer such that the second recess forms a second flow channel, and wherein the second flow channel extends across and above the first flow channel such that a fluid flow within the second flow channel is directed from before a first side of the first flow channel to beyond a second side of the first flow channel; and

an elastomeric membrane bonded between the first and the second elastomeric layers, separating the first flow channel and the second flow channel, wherein the membrane is deflectable into the first flow channel upon pressurization of the second flow channel to form a planar sealing surface between the planar substrate and the deflectable portion of the first elastomeric layer.

13. The microfabricated elastomeric device of claim 12 , wherein the first flow channel experiences a reduced pressure which causes the membrane to deflect into the first flow channel.

14. The microfabricated elastomeric device of claim 12 , wherein the first and second elastomeric layers comprise a material selected from the group consisting of:

polyisoprene, polybutadiene, polychloroprene, polyisobutylene, poly(styrene-butatdiene-styrene), the polyurethanes, and silicones.

15. The microfabricated elastomeric device of claim 12 , wherein the first and second elastomeric layers comprise a material selected from the group consisting of:

poly(bis(fluoroalkoxy)phosphazene), poly(carborane-siloxanes), poly(1-butene), poly(chlorotrifluoroethylene-vinyldene fluoride) copolymers, poly(ethyl vinyl ether), poly(vinylidene fluoride), poly(vinylidene fluoride-hexafluoropropylene) copolymer.

16. The microfabricated elastomeric device of claim 12 , wherein the first and second elastomeric layers comprise a material selected from the group consisting of:

elastomer compositions of polyvinylchloride, polysulfone, polycarbonate, polymethylmethacrylate, or polytertrafluoroethylene.

17. The microfabricated elastomeric device of claim 12 , wherein the membrane is composed of an elastomeric material different than that forming the first or the second elastomeric layers.

18. The microfabricated elastomeric device of claim 12 , wherein the membrane is composed of an elastomeric material the same as that forming the first or the second elastomeric layers.

19. The microfabricated elastomeric device of claim 12 wherein the membrane is characterized by a dead volume wherein the dead volume is 100 aL to 100 nL.

20. The microfabricated elastomeric device of claim 12 wherein the membrane is characterized by a dead volume wherein the dead volume is 1 fL to 10 nL.

21. The microfabricated elastomeric device of claim 12 wherein the membrane is characterized by a dead volume wherein the dead volume is 100 fL to 1 nL.

22. The microfabricated elastomeric device of claim 12 wherein the membrane is characterized by a dead volume wherein the dead volume is 1 pL to 100 pL.

23. The microfabricated elastomeric device of claim 12 wherein the membrane is characterized by a dead volume wherein the dead volume is 1 aL to 1 μL.

24. The microfabricated elastomeric device of claim 12 wherein the first and second flow channels have a depth between 0.2 and 250 microns.

25. A microfabricated elastomeric device comprising:

a planar substrate;

a first elastomeric layer having a top surface and a bottom surface, the bottom surface comprising a first recess, wherein the bottom surface of the first elastomeric layer is bonded to the planar substrate such that the first recess forms a first flow channel with a top and a bottom wherein the top of the first flow channel has a curved surface; and

a second elastomeric layer having a top surface and a bottom surface, the bottom surface comprising a second recess, wherein the bottom surface of the second elastomeric layer is bonded to the top surface of the first elastomeric layer such that the second recess forms a second flow channel,

wherein the second flow channel extends across and above the first flow channel such that a fluid flow within the second flow channel is directed from before a first side of the first flow channel to beyond a second side of the first flow channel, and wherein a portion of the first elastomeric layer is a deflectable portion and is deflectable into the first flow channel upon pressurization of the second flow channel to form a planar sealing surface between the planar substrate and the deflectable portion of the first elastomeric layer.

26. The microfabricated elastomeric device of claim 25 wherein the deflectable portion is characterized by a dead volume wherein the dead volume is 100 aL to 100 nL.

27. The microfabricated elastomeric device of claim 25 wherein the deflectable portion is characterized by a dead volume wherein the dead volume is 1 fL to 10 nL.

28. The microfabricated elastomeric device of claim 25 wherein the deflectable portion is characterized by a dead volume wherein the dead volume is 100 fL to 1 nL.

29. The microfabricated elastomeric device of claim 25 wherein the deflectable portion is characterized by a dead volume wherein the dead volume is 1 pL to 100 pL.

30. The microfabricated elastomeric device of claim 25 wherein the deflectable portion is characterized by a dead volume wherein the dead volume is 1 aL to 1 μL.

31. The microfabricated elastomeric device of claim 25 wherein the first and second flow channels have a depth between 0.2 and 250 microns.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jan 4, 2011
From: CALIFORNIA INSTITUTE OF TECHNOLOGY
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 025576/0758 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2010
From: UNGER, MARC A.; CHOU, HOU-PU; THORSEN, TODD A.; SCHERER, AXEL; QUAKE, STEPHEN R.
To: CALIFORNIA INSTITUTE OF TECHNOLOGY
Reel/Frame 024163/0493 →
Continuity (6)
Continuation 09724967 · Nov 28, 2000
Continuation In Part 09605520 · Jun 27, 2000
Provisional Application 60141503 · Jun 28, 1999
Provisional Application 60147199 · Aug 3, 1999
Provisional Application 60186856 · Mar 3, 2000
Related Publication 20100175767A1 · Jul 15, 2010