IP Library Granted Patent US 9,579,656
Granted Patent B2
US 9,579,656 · App. 13/914,779 · Granted Feb 28, 2017

Rotation-limiting well plate assembly

Inventor: James G. Finneran (Vineland, NJ)
Assignee: J. G. Finneran Associates, Inc.
B01L9/06B01L3/50855B01L3/50825B01L2200/025B01L2300/04B01L2300/042B01L2300/0829B01L2300/12G01N2035/0405
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Quick Facts
Patent No.
US 9,579,656
App. No.
13/914,779
Granted
Feb 28, 2017
Kind
B2
Abstract

A well plate assembly including a base plate and vials. The well plate assembly includes a base plate having a bottom, a perimeter having opposing edges, and a plurality of protrusions extending from the bottom spaced apart from each other to form a plurality of compartments sized and configured for releasably holding vials. Each of the compartments includes a convoluted anti-rotation feature recessed into the bottom. The vials each have a bottom wall, a first side wall segment extending upwardly from the bottom wall, and a second side wall segment extending from the first side wall segment to an open top. The first side wall segment includes at least one spline designed to mate with the convoluted anti-rotation feature to prevent rotation of the vials when a torque is applied, for example, during capping or de-capping operations.

Claims (20)

1. A well plate assembly comprising:

a base plate having a bottom, a perimeter having opposing edges, and a plurality of protrusions extending from the bottom spaced apart from each other to form a plurality of compartments sized and configured for releasably holding vials, wherein each of the compartments includes a convoluted anti-rotation feature recessed into the bottom, the convoluted anti-rotation feature having at least one lobe; and

a plurality of glass vials each having a central axis, a bottom wall, a first side wall segment extending upwardly from the bottom wall, and a second side wall segment extending from the first side wall segment to an open top, wherein the first side wall segment includes at least one spline radially extending about the central axis, the at least one spline designed to mate with the at least one lobe of the convoluted anti-rotation feature to fix the glass vials in position and prevent rotation of the glass vials when a torque is applied, wherein the first side wall segment and the bottom wall are a mirror image of the convoluted anti-rotation feature recessed into the bottom of the base plate.

2. The well plate assembly of claim 1 , wherein the convoluted anti-rotation feature has a multi-lobed cross section selected from the group consisting of bi-lobed, trefoil, quatrefoil, cinquefoil, and sisefoil.

3. The well plate assembly of claim 2 , wherein the bottom wall and the first side wall segment of the glass vials include a multi-spline cross section selected from the group consisting of bi-lobed, trefoil, quatrefoil, cinquefoil, and sisefoil.

4. The well plate assembly of claim 1 , wherein the bottom wall of the glass vials has a substantially quatrefoil cross section.

5. The well plate assembly of claim 1 , wherein the first side wall segment of the glass vials has a substantially quatrefoil cross section.

6. The well plate assembly of claim 1 , wherein the second side wall segment of the glass vials has a substantially circular cross section.

7. The well plate assembly of claim 1 , wherein the vials are formed of class A, type one borosilicate glass.

8. The well plate assembly of claim 1 , wherein the glass vials further comprise an externally threaded neck.

9. The well plate assembly of claim 1 , wherein each of the protrusions is substantially diamond-shaped.

10. The well plate assembly of claim 1 , wherein the protrusions are unconnected to one another and each protrusion is a superellipse.

11. The well plate assembly of claim 1 , wherein the bottom of the base plate includes a plurality of openings centrally aligned with the plurality of compartments.

12. The well plate assembly of claim 1 , wherein the base plate is formed in a unitary one-piece construction.

13. The well plate assembly of claim 1 , wherein the glass vials further comprise a cap selected from the group consisting of crimp caps, snap caps, and threaded caps.

14. The well plate assembly of claim 1 , wherein the glass vials further comprise a propylene threaded closure with a polytetrafluoroethylene and silicon liner.

15. The well plate assembly of claim 1 , wherein the torque is applied to the glass vials during an automated capping or de-capping operation.

16. A well plate assembly comprising:

a base plate having a bottom, a perimeter having opposing edges, and an array of individual, substantially diamond-shaped protrusions extending from the bottom spaced apart from each other to form a plurality of compartments sized and configured for releasably holding tubular vials, wherein each of the compartments includes a convoluted anti-rotation feature recessed into the bottom, the convoluted anti-rotation feature defining a multi-lobed cross section having a plurality of lobes; and

a plurality of glass vials each having a central axis, a bottom wall, a first side wall segment extending upwardly from the bottom wall, and a second side wall segment extending from the first side wall segment to an externally threaded neck portion having an open top, wherein the first side wall segment includes splines radially extending about the central axis separated by recesses and defining the bottom wall to have a multi-spline cross section, the bottom wall and the splines designed to mate with the respective lobes of the recessed anti-rotation feature to fix the vials in position and prevent rotation of the vial when a torque is applied, wherein the first side wall segment and the bottom wall are a mirror image of the convoluted anti-rotation feature recessed into the bottom of the base plate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 11, 2013
From: FINNERAN, JAMES G.
To: J.G. FINNERAN ASSOCIATES, INC.
Reel/Frame 030586/0745 →
Continuity (1)
Related Publication 20140361022A1 · Dec 11, 2014