Claims
- 1. A microfluidic device comprising:
a plurality of stacked, substantially planar sheets of material including a first stencil sheet, a second stencil sheet, a spacer sheet disposed between the first stencil sheet and the second stencil sheet, an upper cover sheet, and a lower cover sheet, each sheet having an upper surface, an opposing lower surface, at least one edge, and a thickness, wherein each sheet of the plurality of sheets is joined to at least one other adjacent sheet such that the plane of the joint is substantially parallel to the upper and lower surfaces of each sheet; a first microfluidic inlet channel for supplying a first fluid, the first inlet channel being defined through the entire thickness of the first stencil sheet; a second microfluidic inlet channel for supplying a second fluid, the second inlet channel being defined through the entire thickness of the second stencil sheet; and a microfluidic outlet channel disposed downstream of the first inlet channel and the second inlet channel, the outlet channel having a width; wherein the spacer sheet defines an aperture having a width greater than the width of the outlet channel; and wherein at least a portion of the first inlet channel overlaps at least a portion of the second inlet channel at the aperture, thus permitting fluid communication between the first inlet channel, the second inlet channel, and the outlet channel.
- 2. The device of claim 1 wherein the outlet channel is a substantially continuous extension of the second inlet channel and is defined through the entire thickness of the second stencil sheet.
- 3. The device of claim 1, further comprising a third stencil sheet, wherein the outlet channel is defined through the entire thickness of the third stencil sheet.
- 4. The device of claim 3, wherein the third stencil sheet is disposed between the first stencil sheet and the second stencil sheet.
- 5. The device of claim 1 wherein the aperture is a slit oriented with its width being parallel to the width of the outlet channel, the aperture having a length that is substantially shorter than its width.
- 6. The device of claim 1 wherein at least one of the first inlet channel and the second inlet channel has a widened end adjacent to the aperture.
- 7. The device of claim 1 wherein at least one sheet of the plurality of sheets comprises a polymeric material.
- 8. The device of claim 1 wherein at least one sheet of the plurality of sheets comprises a polymeric material and is adhesivelessly joined to at least one other adjacent sheet.
- 9. The device of claim 1 wherein at least one sheet of the plurality of sheets is joined to at least one other adjacent sheet with an adhesive.
- 10. The device of claim 1 wherein at least one sheet of the plurality of sheets comprises a self-adhesive tape material having a carrier layer and an adhesive layer.
- 11. The device of claim 1 wherein at least one of the upper cover sheet and the lower cover sheet defines a first fluid inlet port in fluid communication with the first inlet channel and a second fluid inlet port in fluid communication with the second inlet channel.
- 12. The device of claim 1 wherein the first stencil sheet comprises a first material, the spacer sheet comprises a second material, and the first material is different from the second material.
- 13. A microfluidic device comprising:
a plurality of stacked, substantially planar sheets of material including a first stencil sheet, a second stencil sheet, an upper cover sheet, and a lower cover sheet, each sheet having an upper surface, an opposing lower surface, at least one edge, and a thickness, wherein each sheet of the plurality of sheets is joined to at least one other adjacent sheet such that the plane of the joint is substantially parallel to the upper and lower surfaces of each sheet; a first microfluidic inlet channel for supplying a first fluid, the first inlet channel being defined through the entire thickness of the first stencil sheet; a second microfluidic inlet channel for supplying a second fluid, the second inlet channel being defined through the entire thickness of the second stencil sheet; a microfluidic outlet channel disposed downstream of the first inlet channel and the second inlet channel; and a porous membrane disposed between the first stencil sheet and the second stencil sheet; wherein at least a portion of the first inlet channel overlaps at least a portion of the second inlet channel at an overlap region permitting fluid communication between the first inlet channel, the second inlet channel, and the outlet channel; and wherein a portion of the porous membrane is disposed within a flow path of the first fluid at the overlap region.
- 14. The device of claim 13, further comprising a first spacer sheet defining a first aperture and a second spacer sheet defining a second aperture;
wherein the porous membrane is disposed between the first spacer sheet and the second spacer sheet, the spacer sheets are disposed between the first stencil sheet and the second stencil sheet, and the flow path of the first fluid includes the first aperture and the second aperture.
- 15. The device of claim 14 wherein the porous membrane comprises a polymeric material and is adhesivelessly joined to the first spacer sheet and the second spacer sheet.
- 16. The device of claim 14 wherein the outlet channel has a width, the first aperture has a width, and the second aperture has a width, the width of at least one of the first aperture and the second aperture being greater than the width of the outlet channel.
- 17. The device of claim 13 wherein the porous membrane comprises a track etched membrane.
- 18. The device of claim 13 wherein the outlet channel is a substantially continuous extension of the second inlet channel and is defined through the entire thickness of the second stencil sheet.
- 19. The device of claim 13, further comprising a third stencil sheet, wherein the outlet channel is defined through the entire thickness of the third stencil sheet.
- 20. The device of claim 19 wherein the third stencil sheet is disposed between the first stencil sheet and the second stencil sheet.
- 21. The device of claim 13 wherein at least one of the first inlet channel and the second inlet channel has a widened end adjacent to the overlap region.
- 22. The device of claim 13 wherein at least one sheet of the plurality of sheets comprises a polymeric material.
- 23. The device of claim 13 wherein at least one sheet of the plurality of sheets comprises a polymeric material and is adhesivelessly joined to at least one other adjacent sheet.
- 24. The device of claim 13 wherein at least one sheet of the plurality of sheets is joined to at least one other adjacent sheet with an adhesive.
- 25. The device of claim 13 wherein at least one sheet of the plurality of sheets comprises a self-adhesive tape material having a carrier layer and an adhesive layer.
- 26. A microfluidic device comprising:
a plurality of stacked, substantially planar sheets of material including a first stencil sheet, a second stencil sheet, an upper cover sheet, and a lower cover sheet, each sheet having an upper surface, an opposing lower surface, at least one edge, and a thickness, wherein each sheet of the plurality of sheets is joined to at least one other adjacent sheet such that the plane of the joint is substantially parallel to the upper and lower surfaces of each sheet; a first microfluidic inlet channel for supplying a first fluid, the first inlet channel being defined through the entire thickness of the first stencil sheet; a second microfluidic inlet channel for supplying a second fluid, the second inlet channel being defined through the entire thickness of the second stencil sheet; a microfluidic outlet channel disposed downstream of the first inlet channel and the second inlet channel, the outlet channel having a width; wherein at least a portion of the first inlet channel overlaps at least a portion of the second inlet channel at an overlap region permitting fluid communication between the first inlet channel, the second inlet channel, and the outlet channel; and wherein the overlap region comprises an impedance element disposed in the flow path of the first fluid and that hinders flow of the first fluid, the impedance element being adapted to distribute the first fluid across the entire width of the outlet channel.
- 27. The device of claim 26 wherein the impedance element comprises a spacer sheet disposed between the first stencil sheet and the second stencil sheet, the spacer sheet defining an aperture at the overlap region, the aperture having a width greater than the width of the outlet channel.
- 28. The device of claim 27 wherein the aperture is a slit oriented with its width being parallel to the width of the outlet channel, the aperture having a length that is substantially shorter than its width.
- 29. The device of claim 26 wherein the impedance element comprises a spacer sheet disposed between the first stencil sheet and the second stencil sheet, the spacer sheet defining a plurality of staggered apertures at the overlap region, the plurality of staggered apertures being arranged in an uninterrupted fashion across an aggregate width greater than the width of the outlet channel.
- 30. The device of claim 26 wherein the impedance element comprises a porous membrane disposed between the first stencil sheet and the second stencil sheet.
- 31. The device of claim 30, further comprising a first spacer sheet defining a first aperture having a first width and a second spacer sheet defining a second aperture having a second width,
wherein the porous membrane is disposed between the first spacer sheet and the second spacer sheet, the spacer sheets are disposed between the first stencil sheet and the second stencil sheet, the first aperture and the second aperture are disposed at the overlap region, the and at least one of the first width and the second width is greater than the width of the outlet channel.
- 32. The device of claim 26 wherein at least one of the first inlet channel and the second inlet channel has a widened end adjacent to the aperture.
- 33. The device of claim 26 wherein at least one sheet of the plurality of sheets comprises a polymeric material.
- 34. The device of claim 26 wherein at least one sheet of the plurality of sheets comprises a polymeric material and is adhesivelessly joined to at least one other adjacent sheet.
- 35. The device of claim 26 wherein at least one sheet of the plurality of sheets is joined to at least one other adjacent sheet with an adhesive.
- 36. The device of claim 26 wherein at least one sheet of the plurality of sheets comprises a self-adhesive tape material having a carrier layer and an adhesive layer.
- 37. The device of claim 26 wherein at least one of the upper cover sheet and the lower cover sheet defines a first fluid inlet port in fluid communication with the first inlet channel and a second fluid inlet port in fluid communication with the second inlet channel.
- 38. The device of claim 26 wherein the first stencil sheet comprises a first material, the spacer sheet comprises a second material, and the first material is different from the second material.
STATEMENT OF RELATED APPLICATION(S)
[0001] The present application is a continuation-in-part of U.S. patent application Ser. No. 09/632,681, filed Aug. 7, 2000.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09632681 |
Aug 2000 |
US |
Child |
10444041 |
May 2003 |
US |