Claims
- 1. A cover for use in sealing a multi-well plate, said cover adapted for robotic gripper manipulation, comprising:a. a lid plate defining a planar expanse sufficient to cover said multi-well plate; b. a plurality of tabs protruding from said lid plate; c. a compressible layer attached to one side of said lid plate; d. a non-stick layer attached to said compressible layer; and e. at least one torsion spring member connected to said lid plate, said spring member adapted, when in use, to rotationally engage said multi-well plate to provide an upward force to hermetically seal said multi-well plate.
- 2. The cover of claim 1, wherein said lid plate is formed of a material chosen from the group consisting of polyethylene, polycarbonate, polypropylene, poly-styrene and metal.
- 3. The cover of claim 1, wherein said compressible layer is formed of a material chosen from the group consisting of silicone rubber, silicone foam, neoprene rubber and ployurethane foam.
- 4. The cover of claim 1, wherein said non-stick layer is formed of a material chosen from the group consisting of polypropylene, Teflon and Mylar.
- 5. The cover of claim 1, wherein said torsion spring member is a wire.
- 6. The cover of claim 5, wherein said wire is made of stainless steel.
- 7. The cover of claim 1 wherein said spring member, when not in use, retracts to minimize space requirements.
- 8. The cover of claim 1 further comprising clearance notches on said lid plate for the stacking of said covers.
- 9. A sealed multi-well plate, comprising:a. a multi-well plate having a principal surface and defining a plurality of containment wells opening at said principal surface; b. a non-stick layer disposed on and extending over the majority of said principal surface of said multi-well plate; c. a compressible layer attached to said non-stick layer; d. a lid plate disposed on said compressible layer having at least one torsion spring member, said spring member adapted to rotationally engage said multi-well plate thereby compressing said compressible layer and said non-stick layer onto said principal surface of said multi-well plate to hermetically seal said containment wells; and e. a plurality of tabs protruding from said lid plate to aid in robotic gripper manipulation.
- 10. The assembly of claim 9, wherein said lid plate is formed of a material chosen from the group consisting of polyethylene, polycarbonate, polypropylene, polystyrene and metal.
- 11. The assembly of claim 9, wherein said compressible layer is formed of a material chosen from the group consisting of silicone rubber, silicone foam, neoprene rubber and polyurethane foam.
- 12. The assembly of claim 9, wherein said non-stick layer is formed of a material chosen from the group consisting of polypropylene, Teflon and Mylar.
- 13. The assembly of claim 9, wherein said torsion spring member is a wire.
- 14. The assembly of claim 13, wherein said wire is made of stainless steel.
- 15. The assembly of claim 9, wherein said spring member, when not in use, retracts to minimize space requirements.
- 16. The assembly of claim 9, further comprising clearance notches on said lid plate.
- 17. A cover for use in sealing a multi-well plate, said cover adapted for robotic gripper manipulation, comprising:a. a lid plate defining a planar expanse sufficient to cover said multi-well plate; b. a plurality of tabs protruding from said lid plate; c. a compressible layer attached to one said of said lid plate; d. a non-stick layer attached to said compressible layer; and e. at least one locking member connected to said lid plate, said locking member adapted, when in use, to rotationally engage said multi-well plate to hermetically seal said multi-well plate.
RELATED APPLICATIONS
This application claims the benefit of the filing date of U.S. provisional application Ser. No. 60/121,025, filed Feb. 22, 1999.
US Referenced Citations (51)
Foreign Referenced Citations (2)
Number |
Date |
Country |
0311440 |
Oct 1988 |
EP |
0388159 |
Mar 1990 |
EP |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/121025 |
Feb 1999 |
US |