IP Library › Granted Patent US 11,191,860
Granted Patent B2
US 11,191,860 · App. 17/043,542 · Granted Dec 7, 2021

Sterilization system comprising independent pump module and sterilization method thereof

Inventors: Youbong Lim (Daejeon, KR); Seunghun Lee (Seoul, KR); Jungik Ko (Gyeongsangbuk-do, KR); Junyoung Kim (Hwaseong-si, KR)
Assignee: PLASMAPP CO., LTD.
A61L2/208A61L2/26A61L2/14A61L2202/122A61L2202/24
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Quick Facts
Patent No.
US 11,191,860
App. No.
17/043,542
Granted
Dec 7, 2021
Kind
B2
Abstract

A sterilization system comprises a chamber module and an independent pump module that is external to the chamber module in an independent form, is connected to the chamber module, and has a built-in pump, wherein the chamber module comprises a chamber built in the chamber module and storing a target object and a vaporizer built in the chamber module and connected to the chamber to supply a vaporized sterilant, wherein the chamber built in the chamber module is connected to the pump built in the independent pump module and exhausted.

Claims (29)

1. A sterilization system comprising:

a chamber module; and

an independent pump module that is external to the chamber module in an independent form, is connected to the chamber module, and has a built-in pump,

wherein the chamber module comprises:

a chamber built in the chamber module and configured to store a target object; and

a vaporizer built in the chamber module, placed outside of the chamber, and configured to supply a vaporized sterilant to the chamber,

wherein the chamber built in the chamber module is connected to the built-in pump such that the chamber is exhausted by the built-in pump,

wherein the chamber module is separated from the independent pump module by a chamber housing of the chamber module, and

wherein the chamber and the vaporizer are placed inside the chamber housing of the chamber module such that extracting a sterilant from a sterilant container and vaporizing the extracted sterilant are performed inside the chamber housing.

2. The sterilization system of claim 1 , wherein the chamber includes an impermeable wrapper in which the target object is stored,

the vaporizer is connected to the impermeable wrapper to supply air or a sterilant, and

the impermeable wrapper is connected to the independent pump module to exhaust air from the impermeable wrapper.

3. The sterilization system of claim 2 , wherein the volume of the impermeable wrapper is controlled by exhausting air in the chamber by the independent pump module.

4. The sterilization system of claim 1 , wherein an exhaust port through which air of the chamber module is exhausted or an inlet port of the independent pump module is connected to a plasma source or a catalyst.

5. The sterilization system of claim 3 , wherein, after the volume of the impermeable wrapper is expanded, the sterilant is vaporized through the vaporizer and injected into the impermeable wrapper,

the impermeable wrapper is exhausted through the independent pump module to exhaust the sterilant, and

the chamber and the impermeable wrapper are vented to atmospheric pressure.

6. The sterilization system of claim 1 , wherein the independent pump module is connected to a second chamber module to exhaust air of the second chamber module.

7. The sterilization system of claim 6 , wherein the independent pump module is connected to the chamber module and the second chamber module through a diverging tube.

8. The sterilization system of claim 7 , wherein the diverging tube or an exhaust line included in the chamber module includes a backflow prevention module.

9. The sterilization system of claim 6 , wherein the independent pump module includes a plurality of pumps, and each of the plurality of pumps is connected to a tube including a valve.

10. The sterilization system of claim 6 , wherein the chamber module has a combining structure on an upper surface or a side surface, and is combined with a combining structure on a lower surface or a side surface of the second chamber module, or is combined with a combining structure on a lower surface or a side surface of the independent pump module and fixed.

11. The sterilization system of claim 7 , wherein the chamber module obtains information about a sterilization process of the chamber module and information about a sterilization process of the second chamber module, and controls exhaust through the independent pump module to occur in at least one of the chamber module or the second chamber module.

12. The sterilization system of claim 11 , wherein the chamber module allows exhaust through the independent pump module to occur only in a target pump module by closing or opening a valve provided in at least one of the diverging tube, an exhaust port of the chamber module, and an exhaust port of the second chamber module.

13. The sterilization system of claim 11 , wherein the information about the sterilization process includes information about the size or the amount of remaining moisture of the target object, and

the chamber module derives an order and time required for the sterilization process of the chamber module, and an order and time required for the sterilization process of the second chamber module.

14. The sterilization system of claim 13 , wherein the chamber module delays one of the sterilization processes of the chamber module and the second chamber module to synchronize the sterilization process of the chamber module with the sterilization process of the second chamber module.

15. The sterilization system of claim 7 , further comprising:

a control circuit configured to control exhaust through the independent pump module to be performed in at least one of the chamber module and the second chamber module by obtaining information about a sterilization process of the chamber module and information about a sterilization process of the second chamber module.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 2, 2020
From: LIM, YOUBONG; LEE, SEUNGHUN; KO, JUNGIK; KIM, JUNYOUNG
To: PLASMAPP CO., LTD.
Reel/Frame 053959/0753 →
Priority Claims (3)
KR 10-2019-0010100 · Jan 25, 2019 · national
KR 10-2019-0072837 · Jun 19, 2019 · national
KR 10-2019-0144259 · Nov 12, 2019 · national
Continuity (1)
Related Publication 20210046203A1 · Feb 18, 2021
Cited By (3)
US 12,629,440 US 12,649,031 US 12,746,301