Claims
- 1. A multi-layer microfluidic device comprising:
a plurality of device layers defining
a microfluidic inlet channel; a microfluidic outlet channel having a first height; a separating device layer disposed between the inlet channel and the outlet channel, the device layer defining an aperture; and a filter element having a second height and disposed in the microfluidic outlet channel below the aperture; wherein the second height is greater than the first height.
- 2. The multi-layer microfluidic device of claim 1 wherein each device layer of the plurality of device layers and the separating device layer is fabricated with a polymeric material.
- 3. The multi-layer microfluidic device of claim 1 wherein any of the device layers of the plurality of device layers and the separating device layer is fabricated with a polymeric material.
- 4. The multi-layer microfluidic device of claim 1 wherein any of the device layers of the plurality of device layers and the separating device layer is a stencil.
- 5. The multi-layer microfluidic device of claim 1 wherein the separating device layer of is flexible.
- 6. The multi-layer microfluidic device of claim 1 wherein any of the device layers of the plurality of device layers and the separating device layer is fabricated with self-adhesive tape.
- 7. The multi-layer microfluidic device of claim 1 wherein the filter element is fabricated with a material selected from the group consisting of: papers, polymers, and glass fibers.
- 8. The multi-layer microfluidic device of claim 1, further comprising a coating applied to the filter element.
- 9. The multi-layer microfluidic device of claim 1 wherein the filter element is multi-directional.
- 10. A multi-layer microfluidic device comprising:
a first device layer defining a microfluidic inlet channel; a second device layer defining a microfluidic outlet channel, the second device layer having a first thickness; a third device layer disposed between the first device layer and the second device layer, the third device layer defining an aperture; and a filter element disposed substantially within the second device layer below the aperture, the filter element having a second thickness; wherein the second thickness is greater than the first thickness.
- 11. The multi-layer microfluidic device of claim 10 wherein the first device layer, the second device layer, and the third device layer are fabricated with a polymeric material.
- 12. The multi-layer microfluidic device of claim 10 wherein any of the first device layer, the second device layer, and the third device layer is fabricated with a polymeric material.
- 13. The multi-layer microfluidic device of claim 10 wherein any of the first device layer, the second device layer, and the third device layer is fabricated with self-adhesive tape.
- 14. The multi-layer microfluidic device of claim 10 wherein any of the first device layer, the second device layer, and the third device layer is a stencil.
- 15. The multi-layer microfluidic device of claim 10 wherein the third device layer is flexible.
- 16. The multi-layer microfluidic device of claim 10 wherein the filter element is fabricated with a material selected from the group consisting of: papers, polymers, and glass fibers.
- 17. The multi-layer microfluidic device of claim 10, further comprising a coating applied to the filter element.
- 18. The multi-layer microfluidic device of claim 10 wherein the filter element is multi-directional.
- 19. A multi-layer microfluidic device comprising:
a first device layer defining a first channel; a second device layer defining a second channel; and a filter element compressively fixed between the first channel and the second channel; wherein the first channel, the second channel and the filter element are in fluid communication to define a fluid flow path for the passage of a fluid through the device; wherein substantially all of the fluid within the fluid flow path traverses the filter element.
- 20. The multi-layer microfluidic device of claim 19 wherein the first device layer and the second device layer are fabricated with a polymeric material.
- 21. The multi-layer microfluidic device of claim 19 wherein any of the first device layer and the second device layer is fabricated with a polymeric material.
- 22. The multi-layer microfluidic device of claim 19 wherein any of the first device layer and the second device layer is fabricated with self-adhesive tape.
- 23. The multi-layer microfluidic device of claim 19 wherein any of the first device layer and the second device layer is a stencil.
- 24. The multi-layer microfluidic device of claim 19 wherein the filter element is fabricated with a material selected from the group consisting of: papers, polymers, and glass fibers.
- 25. The multi-layer microfluidic device of claim 19, further comprising a coating applied to the filter element.
- 26. The multi-layer microfluidic device of claim 19 wherein the filter element is multi-directional.
STATEMENT OF RELATED APPLICATION(S)
[0001] This application claims priority to two U.S. Provisional Patent Application Serial No. 60/296,882, filed Jun. 7, 2001 and currently pending; and Serial No. 60/296,897, filed Jun. 7, 2001 and currently pending.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60296882 |
Jun 2001 |
US |
|
60296897 |
Jun 2001 |
US |