Claims
- 1. A filtration apparatus having a plurality of sample wells, said filtration apparatus comprising:
an upper plate comprising a plurality of upper wells; a lower plate comprising a plurality of lower wells disposed in flexible communication with each other, each of said lower wells having a base surface for receiving a corresponding upper well; and a ratcheting mechanism disposed at interfaces of said upper wells and said lower wells, said ratcheting mechanism being configured to retain said upper wells and said lower wells in a pre-defined coaxial relationship when said lower wells are received at said corresponding upper wells.
- 2. The filtration apparatus of claim 1, wherein said flexible communication between said lower wells is maintained via flexible members disposed between said lower wells.
- 3. The filtration apparatus of claim 1, wherein said ratcheting mechanism comprises first engagement surfaces disposed on inner walls of said lower wells and second engagement surfaces disposed on outer walls of said upper wells, said first and second engagement surfaces being circumferentially disposed on said respective walls.
- 4. The filtration apparatus of claim 3, wherein said engagement surfaces are triangular in cross sectional geometry.
- 5. The filtration apparatus of claim 1, further comprising a compression surface disposed at a rim edge of said upper well.
- 6. The filtration apparatus of claim 1, wherein said base surfaces of said lower wells comprise mesh structures.
- 7. The filtration apparatus of claim 6, further comprising a filter medium that may be capable of general filtration, microfiltration, ultrafiltration, or reverse osmosis disposed in each of said lower wells at said base structures.
- 8. The filtration apparatus of claim 7, wherein said filter mediums are maintained against said base surfaces by an interference fit effected by said ratcheting mechanism.
- 9. The filtration apparatus of claim 1, wherein said lower plate is fabricated from a non-rigid material.
- 10. The filtration apparatus of claim 9, wherein said non-rigid material is selected from the group consisting of polypropylenes, polyethylenes, polystyrenes, polystyrene elastomers, fluoropolymers, fluoroelastomers, variations and modified versions of the foregoing materials, combinations of the foregoing materials, and the like.
- 11. The filtration apparatus of claim 1, wherein said upper plate and said lower plate are fabricated from dissimilar materials such that cross talk between said upper wells and said lower wells is reduced.
- 12. A flexor, comprising: an element disposable between two structures, said element being integrally formed with said two structures and providing a flexible connection between said two structures.
- 13. The flexor of claim 12, said flexor having opposing ends, each of said ends being integrally disposed at said two structures.
- 14. The flexor of claim 13, said flexor being molded with said two structures.
- 15. A filtration apparatus plate, comprising:
a plurality of adjacently-positioned wells; and flexible members disposed between each of said adjacently-positioned wells, said flexible members providing for movement of each of said wells in the x, y, and z directions with respect to adjacent wells.
- 16. The filtration apparatus plate of claim 15, wherein said flexible members are arcuately formed.
- 17. A method for assembling a filtration apparatus comprising an upper plate of tubular upper wells and a lower plate of tubular lower wells, said method comprising:
supporting said lower plate; disposing a filter medium in said lower well; disposing said upper plate at said lower plate such that said lower wells substantially register with said upper wells; and compressing said upper plate onto said lower plate to form an interference fit between said lower well and said upper well, said interference fit being effected by a ratcheting mechanism disposed at engaging surfaces of said upper well and said lower well.
- 18. The method of claim 17, wherein said disposing said filter medium in said lower well comprises cutting said filter medium to a size and cross sectional geometry of said lower well such that said cut filter medium forms a tight seal between said lower well and said upper well when said upper well is inserted into said lower well.
- 19. A method for assembling a filtration apparatus, said method comprising:
molding a plurality of lower wells to define a lower plate; placing a filter medium in each of said lower wells; placing said lower plate with said filter mediums into a mold for an upper plate defined by a plurality of upper wells; molding said upper wells of said upper plate to corresponding lower wells of said lower plate, thereby trapping said filter mediums to obtain hermetic seal between said upper wells and said lower wells.
- 20. The method of claim 19, wherein said upper plate and said lower plate are molded from dissimilar materials.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of the filing date of U.S. Provisional Patent Application Serial No. 60/300,066 filed Jun. 25, 2001, the entire content of which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60300066 |
Jun 2001 |
US |