IP Library › Granted Patent US 9,435,718
Granted Patent B2
US 9,435,718 · App. 13/657,633 · Granted Sep 6, 2016

Automated pelletized sample decanting apparatus and methods

Inventors: Bradley Scott Thomas (Timonium, MD); Brian Austin Self (Monkton, MD); Andrew Leonard (Sykesville, MD); Bert Jungheim (Solingen, DE); Eric Schneider (Catonsville, MD); Franklin Regan (Baltimore, MD); Bowen Cui (Rockville, MD); Shubing Liu (Clarksville, MD); Sharon Fluss (Sikesville, MD)
Assignee: Qiagen Gaithersburg, Inc.
G01N1/28G01N1/2813G01N35/026G01N2001/282
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Quick Facts
Patent No.
US 9,435,718
App. No.
13/657,633
Granted
Sep 6, 2016
Kind
B2
Abstract

An automated sample tube decanting system having one or more decanting grippers, a decant waste receptacle, a transporter, and means for rotating the decanting gripper. Each decanting gripper has a respective holder configured to selectively mate with a respective interface on a tube strip. The one or more decanting grippers are rotatable between a first position in which the tube strip is upright and a second position in which the tube strip is inverted. The transporter is configured to move the one or more decanting grippers in a lateral direction from a starting location to a location above the decant waste receptacle.

Claims (34)

1. An automated sample tube decanting system comprising:

a tube strip;

a first decanting gripper having a first holder configured to mate with a first interface on a first side of the tube strip, and a second decanting gripper having a second holder configured to mate with a second interface on a second side of the tube strip, the first and second decanting grippers being rotatable between a first position in which the tube strip is upright and a second position in which the tube strip is inverted;

a decant waste receptacle;

a transporter comprising a pipettor channel operatively connected to the one or more decanting grippers and the decant waste receptacle and configured to move the one or more decanting grippers in a lateral direction from a starting location to a location above the decant waste receptacle; and

rotation means for selectively rotating the decanting grippers from the first position to the second position to pour supernatant from the tube strip;

wherein each decanting gripper comprises a base attached to the transporter and an arm rotatably mounted to the base, and the first holder and the second holder are located on the respective arm of the first decanting gripper and the second decanting gripper.

2. The automated sample tube decanting system of claim 1 , wherein the first interface and the second interface comprise respective channels formed on the tube strip, each channel being shaped to receive a respective holder.

3. The automated sample tube decanting system of claim 1 , wherein the tube strip comprises a single row of adjacent tubes that extends along a tube strip axis from the first interface to the second interface.

4. The automated sample tube decanting system of claim 1 , wherein the base is removably connected to the transporter.

5. The automated sample tube decanting system of claim 1 , wherein each decanting gripper further comprises a resilient holding mechanism to resiliently hold the arm in at least one predetermined orientation with respect to the base.

6. The automated sample tube decanting system of claim 1 , wherein the rotation means comprises an electric motor or a gear and rack system.

7. The automated sample tube decanting system of claim 1 , wherein the one or more decanting grippers are rotatable through 360°.

8. The automated sample tube decanting system of claim 1 , wherein the tube strip is oriented vertically when the decanting grippers are in the first position, and the tube strip is angled at 150° from vertical when the decanting grippers are in the second position.

9. An automated sample tube decanting system comprising:

a tube strip;

a first decanting gripper having a first holder configured to mate with a first interface on a first side of the tube strip, and a second decanting gripper having a second holder configured to mate with a second interface on a second side of the tube strip, the first and second decanting grippers being rotatable between a first position in which the tube strip is upright and a second position in which the tube strip is inverted;

a decant waste receptacle;

a transporter operatively connected to the one or more decanting grippers and the decant waste receptacle and configured to move the one or more decanting grippers in a lateral direction from a starting location to a location above the decant waste receptacle; and

rotation means for selectively rotating the decanting grippers from the first position to the second position to pour supernatant from the tube strip;

wherein each decanting gripper comprises a base attached to the transporter and an arm rotatably mounted to the base, and the first holder and the second holder are located on the respective arm of the first decanting gripper and the second decanting gripper; and

wherein each decanting gripper further comprises one or more magnets positioned to resiliently hold the arm in at least one predetermined orientation with respect to the base.

10. The automated sample tube decanting system of claim 9 , wherein the one or more magnets comprises at least a first magnet to resiliently hold the decanting gripper in the first position.

11. The automated sample tube decanting system of claim 10 , wherein the one or more magnets further comprises at least a second magnet to resiliently hold the decanting gripper in the second position.

12. An automated sample tube decanting system comprising:

a tube strip;

a first decanting gripper having a first holder configured to mate with a first interface on a first side of the tube strip, and a second decanting gripper having a second holder configured to mate with a second interface on a second side of the tube strip, the first and second decanting grippers being rotatable between a first position in which the tube strip is upright and a second position in which the tube strip is inverted;

a decant waste receptacle;

a transporter operatively connected to the one or more decanting grippers and the decant waste receptacle and configured to move the one or more decanting grippers in a lateral direction from a starting location to a location above the decant waste receptacle; and

rotation means for selectively rotating the decanting grippers from the first position to the second position to pour supernatant from the tube strip;

wherein each decanting gripper comprises a base attached to the transporter and an arm rotatably mounted to the base, and the first holder and the second holder are located on the respective arm of the first decanting gripper and the second decanting gripper; and

the rotation means comprises a gear rack separate from the transporter and decanting grippers and fixed at a location adjacent the decant waste receptacle, and a gear drivingly connected to the arm of the first decanting gripper, the gear being engageable with the gear rack such that translational motion of the first decanting gripper relative to the gear rack causes the gear to rotate the arm of the first decanting gripper.

13. The automated sample tube decanting system of claim 12 , wherein the gear rack comprises a toothed gear rack.

14. The automated sample tube decanting system of claim 12 , wherein the gear rack is resiliently mounted.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 22, 2013
From: THOMAS, BRADLEY SCOTT; SELF, BRIAN AUSTIN; LEONARD, ANDREW; JUNGHEIM, BERT; SCHNEIDER, ERIC; REGAN, FRANKLIN; CUI, BOWEN; LIU, SHUBING; FLUSS, SHARON
To: QIAGEN GAITHERSBURG, INC.
Reel/Frame 030464/0328 →
Continuity (1)
Related Publication 20140112843A1 · Apr 24, 2014