Claims
- 1. A sample carrier for use in holding and centering a plurality of sample tubes for access by a robotic pipetting device, the sample carrier comprising:
a top wall having a plurality of spaced-apart openings, each opening being dimensioned to receive one of a plurality of sample tubes therethrough and to accommodate a cap component fixed to an open end of a vessel component of the sample tube; a base defining a plurality of sample tube holding areas, each sample tube holding area corresponding to one of the openings and having one or more retaining walls extending upward from the base and opposed to the support wall for holding one of the sample tubes in a substantially fixed, vertical orientation below the corresponding opening; a support wall joining the top wall and the base; and a plurality of springs extending outward from the support wall, each spring being associated with one of the sample tube holding areas, wherein the springs are configured and arranged so that each spring biases one of the sample tubes against the one or more retaining walls of the associated sample tube holding area, wherein the top wall is configured and arranged so that the cap component of each sample tube is positioned within one of the openings when the vessel component is held in the corresponding sample tube holding area.
- 2. The sample carrier of claim 1, wherein the top wall includes a series of the openings aligned along both sides of the support wall.
- 3. The sample carrier of claim 1, wherein the openings are of the same or different sizes.
- 4. The sample carrier of claim 1 further comprising a plurality of sleeves, each sleeve depending from a bottom surface of the top wall and circumscribing one of the openings, and each sleeve having an inner surface dimensioned to receive one of the sample tubes and to be in touching contact with the cap component when the vessel component is held in the corresponding sample tube holding area.
- 5. The sample carrier of claim 4, wherein the openings are generally circular and the sleeves are generally cylindrical.
- 6. The sample carrier of claim 4, wherein each sleeve includes an opening configured and arranged to permit viewing of a label affixed to one of the sample tubes.
- 7. The sample carrier of claim 1, wherein the top wall has upwardly flared edges to facilitate handling of the sample carrier.
- 8. The sample carrier of claim 7, wherein the flared edges of the top wall include a plurality of recesses, each recess being adjacent one of the openings to provide finger access to sample tubes held by the sample carrier.
- 9. The sample carrier of claim 1 further comprising end walls extending upward from the base and a plurality of partitions, each partition extending radially or perpendicularly outward from the support wall and separating adjacent sample tube holding areas.
- 10. The sample carrier of claim 9, wherein each partition and a pair of retaining walls are joined to form a Y-shaped divider.
- 11. The sample carrier of claim 1, wherein each spring is a leaf spring.
- 12. The sample carrier of claim 11, wherein the springs are positioned between upper and lower portions of the support wall.
- 13. The sample carrier of claim 4, wherein the longitudinal axis of the cap component is within about 0.125 inches of the longitudinal axis of each opening when the vessel component is held in the corresponding sample tube holding area.
- 14. The sample carrier of claim 13 further comprising one or more of the sample tubes, wherein the vessel component of each sample tube is held in one of the sample tube holding areas, and wherein the cap component of each sample tube is a penetrable cap.
- 15. The sample carrier of claim 4, wherein the longitudinal axis of the cap component is within about 0.1 inches of the longitudinal axis of each opening when the vessel component is held in the corresponding sample tube holding area.
- 16. The sample carrier of claim 15 further comprising one or more of the sample tubes, wherein the vessel component of each sample tube is held in one of the sample tube holding areas, and wherein the cap component of each sample tube is a penetrable cap.
- 17. The sample carrier of claim 1, wherein the sample carrier has an arcuate shape.
- 18. A sample carrier for use in holding and centering a plurality of sample tubes for access by a robotic pipetting device, the sample carrier comprising:
a top wall having two sets of aligned, annular, spaced-apart openings, each opening being dimensioned to receive a sample tube therethrough; a plurality of cylindrical sleeves, each sleeve depending from a bottom surface of the top wall and circumscribing one of the openings, wherein each sleeve has an inner surface dimensioned to receive one of the sample tubes. a base defining a plurality of sample tube holding areas, each sample tube holding area corresponding to one of the openings and having one or more retaining walls extending upward from the base and opposed to the support wall for holding one of the sample tubes in a substantially fixed, vertical orientation below the corresponding opening; a support wall joining the top wall and the base, wherein the sets of openings are positioned on opposite sides of the support wall; and a plurality of leaf springs, each leaf spring having a pair of spring arms extending outward from opposite sides of the support wall, each spring arm being associated with one of the sample tube holding areas, wherein the leaf springs are configured and arranged so that each spring arm biases one of the sample tubes against the one or more retaining walls of the associated sample tube holding area.
- 19. The sample carrier of claim 18, wherein each sleeve includes an opening configured and arranged to permit viewing of a label affixed to one of the sample tubes.
- 20. The sample carrier of claim 18, wherein the top wall has upwardly flared edges to facilitate handling of the sample carrier.
- 21. The sample carrier of claim 20, wherein the flared edges of the top wall include a plurality of recesses, each recess being adjacent one of the openings to provide finger access to sample tubes held by the sample carrier.
- 22. The sample carrier of claim 18 further comprising lateral end walls extending upward from the base and a plurality of partitions, each partition extending radially or longitudinally outward from the support wall and separating adjacent sample tube holding areas.
- 23. The sample carrier of claim 22, wherein each partition and a pair of retaining walls are joined to form a Y-shaped divider.
- 24. The sample carrier of claim 18, wherein each opening and the corresponding sample tube holding area are configured and arranged so that a cap component of each sample tube is in touching contact with the inner surface of the corresponding sleeve and the longitudinal axis of the cap is within about 0.125 inches of the longitudinal axis of the opening when a vessel component of the sample tube is held by the sample tube holding area.
- 25. The sample carrier of claim 24 further comprising one or more of the sample tubes held by one or more of the sample tube holding areas, wherein the cap component of each sample tube is a penetrable cap.
- 26. The sample carrier of claim 18, wherein each opening and the corresponding sample tube holding area are configured and arranged so that a cap component of each sample tube is in touching contact with the inner surface of the corresponding sleeve and the longitudinal axis of the cap is within about 0.1 inches of the longitudinal axis of the opening when a vessel component of the sample tube is held by the sample tube holding area.
- 27. The sample carrier of claim 26 further comprising one or more of the sample tubes held by one or more of the sample tube holding areas, wherein the cap component of each sample tube is a penetrable cap.
- 28. The sample carrier of claim 18, wherein each leaf spring is positioned between upper and lower portions of the support wall.
- 29. The sample carrier of claim 18 wherein the sample carrier has an arcuate shape.
- 30. A drip shield for use in protecting the contents of sample tubes held by a sample carrier during an automated sampling procedure, the drip shield comprising:
a cover plate; one or more through-holes formed in the cover plate, each through-hole being configured and arranged to provide non-interfering, vertical passage of an aligned pipette tip therethrough and access to the contents of one of a series of sample tubes present in a sample carrier positioned beneath the cover plate; and a fin or series of aligned fins depending from a bottom surface of the cover plate, wherein the fin or fins are configured and arranged to limit vertical movement of a sample carrier positioned beneath the drip shield.
- 31. The drip shield of claim 30, wherein the fin or fins are substantially longitudinally or arcuately centered on a bottom surface of the cover plate.
- 32. The drip shield of claim 31, wherein at least two through-holes are formed in the cover plate, and wherein at least one through-hole is located on each side of the fin or fins.
- 33. The drip shield of claim 30, wherein the fin or at least two of the fins have tapered ends.
- 34. The drip shield of claim 30, wherein a top surface of the cover plate is chamfered about the periphery of each through-hole.
- 35. The drip shield of claim 30, wherein a rim is provided about the periphery of each through-hole on a top surface of the cover plate.
- 36. The drip shield of claim 30, wherein the drip shield is constructed of a substantially non-conductive material.
- 37. An automated sampling system comprising a sample carrier conveying means, the sample carrier of claim 2 positioned on the sample carrier conveying means, and a drip shield fixed to a stationary surface and positioned above the sample carrier conveying means, wherein the drip shield comprises:
a cover plate; a fin depending from and substantially longitudinally or arcuately centered on a bottom surface of the cover plate, wherein the fin is configured and arranged to limit vertical movement of the sample carrier when it is positioned beneath the drip shield; and one or more through-holes formed in the cover plate on each side of the fin, each through-hole being configured and arranged to provide non-interfering, vertical passage of an aligned pipette tip therethrough and access to the contents of one of a series of sample tubes present in the sample carrier when the sample carrier is positioned beneath the cover plate.
- 38. The automated sampling system of claim 37, wherein a top surface of the top wall of the sample carrier is no more than about 0.125 inches beneath a bottom surface of the fin when the sample carrier is conveyed beneath the drip shield.
- 39. The automated sampling system of claim 37, wherein the diameter of each through-hole in the cover plate is dimensioned to be the same as or less than the greatest diameter of any sample tube held by the sample carrier.
- 40. The automated sampling system of claim 37, wherein the sample carrier and the drip shield have corresponding arcuate shapes.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/307,047, filed Jul. 20, 2001, the contents of which are hereby incorporated by reference herein.
Provisional Applications (1)
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Number |
Date |
Country |
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60307047 |
Jul 2001 |
US |