IP Library Granted Patent US 8,640,556
Granted Patent B2
US 8,640,556 · App. 12/959,647 · Granted Feb 4, 2014

Automated aseptic sampling workstation and sample collection devices therefore

Inventor: Jan Hofman (Vlaardingen, NL)
Assignee: Alfa Wassermann
G01N1/14F16K11/22G01N1/2035G01N2001/205
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Quick Facts
Patent No.
US 8,640,556
App. No.
12/959,647
Granted
Feb 4, 2014
Kind
B2
Abstract

An automated sample collection workstation is provided. The workstation includes a processor, a peristaltic pump, a valve actuator, and an algorithm. The peristaltic pump and the valve actuator are in electrical communication with the processor. The valve actuator can move a plurality of valves, when disposed therein, among an off position, a flush position, and a sample position. The algorithm is resident on the processor and is configured to: move all of the valves to the off position and place the pump in an off state when no sampling or flushing is required, move all of the valves to the flush position and place the pump in an on state for a predetermined flush time period when flushing is required, and move a respective one of the valves to the sample position, move any of the valves upstream of the respective valve to the flush position, and place the pump to the on state for a predetermined sample time period when a sample is required.

Claims (28)

1. An automated sample collection workstation, comprising:

a processor;

a pump in communication with said processor;

a valve actuator in communication with said processor, said valve actuator configured to move a plurality of valves, when disposed therein, among an off position, a flush position, and a sample position; and

an algorithm resident on said processor, said algorithm configured to:

move all of said plurality of valves to the off position and place said pump in an off state when no sampling or flushing is required,

move all of said plurality of valves to the flush position and place said pump in an on state for a predetermined flush time period when flushing is required, and

move a respective one of said plurality of valves to said sample position, move any of said plurality of valves upstream of said respective one to said flush position, and place said pump to said on state for a predetermined sample time period when a sample is required.

2. The sample collection workstation of claim 1 , further comprising a bar code scanner in communication with said processor.

3. The sample collection workstation of claim 1 , further comprising a label printer in communication with said processor.

4. The sample collection workstation of claim 1 , further comprising a fluid edge detector in communication with said processor.

5. The sample collection workstation of claim 1 , further comprising a sensor in communication with said processor, said sensor being configured to detect an environmental condition.

6. The sample collection workstation of claim 1 , further comprising a base supported by a plurality of wheels, wherein said processor, said pump, and said valve actuator are disposed on said base.

7. The sample collection workstation of claim 6 , wherein said base further comprises a sample and waste bag holding area, which can maintain sample and waste bags in a desired position and/or in desired conditions suitable for the samples contained therein.

8. An automated sample collection system, comprising:

a processor;

a valve actuator controlled by said processor to move a plurality of valves, when disposed therein, among a first position, a second position, and a third position; and

an algorithm resident on said processor, said algorithm configured to:

move all of said plurality of valves to the second position for a predetermined flush time period when flushing is required, and

move a respective one of said plurality of valves to said third position, move any of said plurality of valves upstream of said respective one to said second position.

9. The sample collection system of claim 8 , further comprising a pump in communication with said processor.

10. The sample collection system of claim 9 , wherein said algorithm is configured to move all of said plurality of valves to the first position and place said pump in an off state when no sampling or flushing is required.

11. The sample collection system of claim 9 , wherein said algorithm is further configured, when the flushing is required, to place said pump in an on state for a predetermined flush time period.

12. The sample collection system of claim 9 , wherein said algorithm is further configured, when the sample is required, place said pump to said on state for a predetermined sample time period.

13. The sample collection system of claim 8 , further comprising a bar code scanner in communication with said processor, wherein one or more parameters of said algorithm are selected based on information collected by said bar code scanner.

14. The sample collection workstation of claim 8 , further comprising a label printer in communication with said processor.

15. The sample collection system of claim 8 , further comprising a fluid edge detector in communication with said processor.

16. The sample collection system of claim 8 , further comprising a sensor in communication with said processor, said sensor being configured to detect an environmental condition.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2011
From: HOFMAN, JAN
To: ALFA WASSERMANN, INC.
Reel/Frame 025842/0647 →
Continuity (1)
Related Publication 20120137793A1 · Jun 7, 2012