Claims
- 1. A microfluidic system, comprising:
a first fluid path having a first inlet; a second fluid path in fluid contact with the first fluid path at a fluid contact point; and a switch for selectively controlling the passage of fluid between the first fluid path and the second fluid path at the fluid contact point; wherein at least one of the first fluid path and the second fluid path has a cross-sectional dimension of less than about 500 μm.
- 2. The microfluidic system of claim 1, wherein the switch comprises:
a switching region of the first fluid path proximate to the fluid contact point, the switching region including a first position corresponding to a first aspect ratio of the first fluid path and a second position corresponding to a second aspect ratio of the first fluid path.
- 3. The microfluidic system of claim 2, wherein the first aspect ratio is greater than the second aspect ratio.
- 4. The microfluidic system of claim 2, wherein the first aspect ratio is selected to inhibit transfer of fluid from the first fluid path to the second fluid path.
- 5. The microfluidic system of claim 2, wherein the second aspect ratio is selected to promote transfer of fluid from the first fluid path to the second fluid path.
- 6. The microfluidic system of claim 2, wherein the first aspect ratio of the first fluid path is greater than about 1.
- 7. The microfluidic system of claim 2, wherein the second aspect ratio of the first fluid path is less than about 1.
- 8. The microfluidic system of claim 2, wherein the switching region of the first fluid path is constructed of a flexible material.
- 9. The microfluidic system of claim 8, wherein the switching region of the first fluid path is constructed of an elastomer.
- 10. The microfluidic system of claim 1, wherein the switch comprises:
a second inlet and a third inlet to the first fluid path located on either side of the first inlet; a first fluid source connected to the first inlet; a second fluid source distinct from the first fluid source connected to the second inlet; a third fluid source distinct from the first fluid source connected to the third inlet; and a metering system for selectively supplying fluid to the first fluid path from the first fluid source and one of the second fluid source and the third fluid source.
- 11. The microfluidic system of claim 10, wherein the first fluid source is a source of a process fluid and the second fluid source and third fluid source are sources of a carrier fluid.
- 12. The microfluidic system of claim 1, wherein the first fluid path is substantially rectangular in cross-section.
- 13. The microfluidic system of claim 1, wherein the second fluid path crosses the first fluid path at the fluid contact point, defining a crossing angle.
- 14. The microfluidic system of claim 13, wherein the first fluid path and second fluid path partially overlap at the fluid contact point.
- 15. The microfluidic system of claim 14, wherein the first fluid flow path and the second flow path are tangential to one another at the fluid contact point.
- 16. The microfluidic system of claim 13, wherein the crossing angle is between about 5 and about 175 degrees.
- 17. The microfluidic system of claim 16, wherein the crossing angle is between about 30 and about 150 degrees.
- 18. The microfluidic system of claim 17, wherein the crossing angle is between about 45 and about 135 degrees.
- 19. The microfluidic system of claim 13, wherein the crossing angle is about 90 degrees.
- 20. The microfluidic system of claim 1, wherein at least one of the first fluid path and the second fluid path has a cross-sectional dimension of less than about 300 μm.
- 21. The microfluidic system of claim 20, wherein at least one of the first fluid path and the second fluid path has a cross-sectional dimension of less than about 100 μm.
- 22. The microfluidic system of claim 21, wherein at least one of the first fluid path and the second fluid path has a cross-sectional dimension of less than about 50 μm.
- 23. The microfluidic system of claim 1, wherein both the first fluid path and the second fluid path have a cross-sectional dimension of less than about 50 μm.
- 24. A fluidic system, comprising:
a first fluid path having a first inlet; a second fluid path in fluid contact with the first fluid path at a fluid contact point; and a switch for selectively controlling the passage of fluid between the first fluid path and the second fluid path at the fluid contact point; a fluid flowing in at least one of the first fluid path and the second fluid path under laminar flow conditions.
- 25. The fluidic system of claim 24, wherein the fluid is characterized by having a Reynolds number of less than or equal to about 10.
- 26. The fluidic system of claim 24, wherein the switch comprises:
a switching region of the first fluid path proximate to the fluid contact point, the switching region including a first position corresponding to a first aspect ratio of the first fluid path and a second position corresponding to a second aspect ratio of the first fluid path.
- 27. The fluidic system of claim 24, wherein the switch comprises:
a second inlet and a third inlet to the first fluid path located on either side of the first inlet; a first fluid source connected to the first inlet; a second fluid source distinct from the first fluid source connected to the second inlet; a third fluid source distinct from the first fluid source connected to the third inlet; and a metering system for selectively supplying fluid to the first fluid path from the first fluid source and one of the second fluid source and the third fluid source.
- 28. A method of controlling fluid flow in a fluidic system, comprising:
providing a fluidic system, including a first fluid path having a first inlet and a second fluid path in fluid contact with the first fluid path at a fluid contact point; flowing a fluid through the first fluid path; and changing an aspect ratio of the first fluid path at the fluid contact point to switch at least a portion of the fluid from the first fluid path to the second fluid path at the fluid contact point.
- 29. A method of controlling fluid flow in a fluidic system comprising:
providing a fluidic system, including a first fluid path having a first inlet, a second inlet and a third inlet, and a second fluid path in fluid contact with the first fluid path at a fluid contact point; supplying a process fluid to the first inlet of the first fluid path; supplying a carrier fluid to the second inlet of the first fluid path such that the carrier fluid forces the process fluid into a first portion of the first flow path, inhibiting switching of the process fluid to the second fluid path at the fluid contact point; ceasing supplying the carrier fluid to the second fluid path; and supplying the carrier fluid to the third inlet of the first fluid path such that the carrier fluid forces the process fluid into a second portion of the first flow path, facilitating switching of the process fluid to the second fluid path at the fluid contact point.
- 30. A method comprising:
allowing a first fluid to flow along a first fluid path; allowing a second fluid to flow along a second fluid path tangentially intersecting the first fluid path, the first and second fluid paths essentially free of the second and first fluids, respectively; and manipulating a valve associated with either fluid path, diverting the first fluid into the second path.
Parent Case Info
[0001] This patent application claims priority to U.S. Provisional Patent Application No. 60/286,476, filed Apr. 25, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60286476 |
Apr 2001 |
US |