IP Library Granted Patent US 12669520
Granted Patent B2
US 12669520 · App. 18/016,210 · Granted Jun 30, 2026

System and method for disposing of a reaction vessel of a mass spectrometry system

Inventor: Aaron Stella (Concord, CA)
Assignee: DH Technologies Development Pte. Ltd.
G01N35/0099B01L3/5082G01N35/10H01J49/0413B01L2200/025B01L2200/18B01L2300/0858
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Quick Facts
Patent No.
US 12669520
App. No.
18/016,210
Granted
Jun 30, 2026
Kind
B2
Abstract

An analyzer and sample handling system suitable for retrieving and processing a sample housed within a suitably configured reaction vessel, and then discarding the used reaction vessel by vertically or axially pushing downward on the vessel supported in a suitably configured tray with a pressing member that forms part of an autosampler assembly are disclosed herein.

Claims (42)

1 . An analyzer and sample handling system, comprising

a sample tray including

a plurality of holes formed within a main body of the tray, wherein each respective hole of the plurality of holes has an opening having a first diameter, and

a resilient member respectively associated with each of the plurality of holes and an opening formed in the resilient member, wherein the resilient member is positioned so as to extend across at least a portion of a respective hole of the plurality of holes, wherein the opening of the resilient member has a second diameter that is less than the first diameter of the respective hole of the tray,

a reaction vessel having a main body forming an internal chamber and having one or more surface features extending outwardly from an outer surface of the main body of the reaction vessel, wherein the diameter of the one or more surface features is larger than the second diameter of the resilient member and smaller than the first diameter of the respective hole of the tray,

a sample handling and preparation station including

a transport unit for holding the reaction vessel and for transporting the reaction vessel to the tray, and

a dispensing unit for introducing a sample into the chamber of the reaction vessel, and

an analyzer station including an analyzer unit for analyzing the sample in the reaction vessel, wherein the analyzer unit includes an autosampler assembly having

a pump assembly for withdrawing a selected amount of the sample from the reaction vessel,

an analyzer in fluid communication with the pump assembly for analyzing the withdrawn sample,

a needle assembly in fluid communication with the pump assembly having a needle element movable between a first position where the needle is disposed outside of the chamber of the reaction vessel and a second position where the needle element is disposed within the chamber of the reaction vessel, and

a pressing assembly having a pressing member disposed about the needle element and being axially movable along an axis of the needle element,

wherein the tray is configured to be disposed beneath the analyzer unit and the reaction vessel is disposed within the respective hole of the tray by the transport unit such that the one or more surface features contacts the resilient member and is supported thereby within the hole, and

wherein the pressing member is axially movable so as to apply a downward force to the reaction vessel when positioned within the respective hole of the tray so as to push the one or more surface features past the resilient member such that the reaction vessel is no longer supported within the respective hole of the tray.

2 . The analyzer and sample handling system of claim 1 , wherein the transport unit comprises a robotic arm.

3 . The analyzer and sample handling system of claim 1 , wherein the analyzer comprises a mass spectrometer.

4 . The analyzer and sample handling system of claim 1 , wherein the resilient member is formed of rubber.

5 . The analyzer and sample handling system 1 , wherein the sample tray is formed of plastic.

6 . The analyzer and sample handling system of claim 1 , wherein each of the one or more surface features comprises a rib element.

7 . An analyzer and sample handling system, comprising

a tray including a plurality of holes formed within a main body of the tray,

a reaction vessel having a main body forming an internal chamber for holding a sample,

a sample handling and preparation station including

a transport unit for holding the reaction vessel and for transporting the reaction vessel to the tray, and

a dispensing unit for introducing a sample into the chamber of the reaction vessel, and

an analyzer station including an analyzer unit for analyzing the sample in the reaction vessel, wherein the analyzer unit includes an autosampler assembly having

a pump assembly for withdrawing a selected amount of the sample from the reaction vessel,

an analyzer in fluid communication with the pump assembly for analyzing the withdrawn sample,

a needle assembly in fluid communication with the pump assembly having a needle element movable between a first position where the needle is disposed outside of the chamber of the reaction vessel and a second position where the needle element is disposed within the chamber of the reaction vessel, and

a pressing assembly having a pressing member disposed about the needle element and being axially movable along an axis of the needle element,

wherein the tray is configured to be disposed beneath the analyzer unit and the reaction vessel is disposed within a hole of the plurality of holes of the tray by the transport unit, and

wherein the pressing member is axially movable so as to apply a sufficient downward force to the reaction vessel when positioned within the hole of the plurality of holes of the tray so as to push the reaction vessel such that the reaction vessel is no longer supported within the hole of the plurality of holes of the tray.

8 . The system of claim 7 , wherein each of the holes of the tray has an opening having a first diameter, and wherein the tray further comprises a resilient member associated with each of the plurality of holes and having an opening formed therein,

wherein the resilient member is positioned so as to extend across at least a portion of the hole, and wherein the opening of the resilient member has a second diameter that is less than the first diameter of the hole of the tray,

wherein the reaction vessel includes one or more surface features extending outwardly from an outer surface of the main body, wherein the diameter of the surface feature is larger than the second diameter of the resilient member and smaller than the first diameter of the hole of the tray, such that the surface feature contacts the resilient member and is supported thereby within the hole.

9 . The system of claim 8 , wherein the pressing member is configured to push the surface feature past the resilient member such that the reaction vessel is no longer supported within the hole of the tray.

10 . The analyzer and sample handling system of claim 7 , wherein the transport unit comprises a robotic arm.

11 . The analyzer and sample handling system of claim 7 , wherein the analyzer comprises a mass spectrometer.

12 . The analyzer and sample handling system of claim 8 , wherein the resilient member is formed of rubber.

13 . The analyzer and sample handling system 7 , wherein the tray is formed of plastic.

14 . The analyzer and sample handling system of claim 8 , wherein each of the one or more surface features comprises a rib element.