IP Library Granted Patent US 8,894,926
Granted Patent B2
US 8,894,926 · App. 13/645,200 · Granted Nov 25, 2014

Sterilization apparatus and sterilization method

Inventors: Yasushi Hanada (Chiba, JP); Takashi Koyama (Tokyo, JP)
Assignees: Canon Marketing Japan Kabushiki Kaisha; Elk Corporation; Kabushiki Kaisha Elquest
A61L2/16C01B13/0214A61L2202/11A61L2/208C01B15/013A61L2202/14
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Quick Facts
Patent No.
US 8,894,926
App. No.
13/645,200
Granted
Nov 25, 2014
Kind
B2
Abstract

It is to provide a mechanism where a sterilization process using a concentrated sterilizing agent and a sterilization process using a sterilizing agent that has not been concentrated can be switched without changing the sterilization process. In the case where the concentrated mode is received by receiving means the transfer of the sterilizing agent to the concentration chamber is controlled according to a first timing, and in the case where the non-concentrated mode is received by the receiving means, the transfer of the sterilizing agent to the concentration chamber is controlled according to a second timing, wherein the first timing is different from the second timing.

Claims (41)

1. A sterilization apparatus for sterilizing target objects using a sterilizing agent which is transferred to a sterilization chamber after transferring to a concentration chamber, comprising:

transfer means for transferring, from a container filled with a liquid sterilizing agent, the liquid sterilizing agent to the concentration chamber;

the concentration chamber for concentrating the liquid sterilizing agent transferred by the transfer means by applying heat to the transferred liquid sterilizing agent;

the sterilization chamber for sterilizing the target objects using sterilizing gas obtained by vaporizing the liquid sterilizing agent which has been concentrated by being heated by the concentration chamber without using gas generated as a result of vaporization performed by the heating by the concentration chamber; and

receiving means for receiving, from a user via an operation unit, selection of one mode from among a highly-concentrated mode in which sterilization by using a liquid sterilizing agent highly concentrated in the concentration chamber is performed and a low-concentrated mode

in which sterilization by using a liquid sterilizing agent not highly concentrated in the concentration chamber is performed, wherein

the liquid sterilizing agent transferred to the concentration chamber by the transfer means is heated by the concentration chamber during a period longer in a case where the selection of the highly-concentrated mode is received by the receiving means than in a case where the selection of the low-concentrated mode is received by the receiving means.

2. A sterilization apparatus according to claim 1 ,

wherein the transfer means, in the case where the selection of the low-concentrated mode is received by the receiving means, transfers the liquid sterilizing agent to the concentration chamber if a first predetermined condition for transferring the liquid sterilizing agent to the concentration chamber is satisfied.

3. A sterilization apparatus according to claim 2 ,

wherein, in a case where the selection of the highly-concentrated mode is received by the receiving means, the transfer means transfers the liquid sterilizing agent to the concentration chamber, regardless of whether or not the first predetermined condition is satisfied.

4. A sterilization apparatus according to claim 2 ,

wherein the first predetermined condition includes a condition that indicates whether the sterilization chamber has been depressurized to a first predetermined pressure; and

wherein in the case where the selection of the low-concentrated mode is received by the receiving means, the transfer means transfers, in a case where the sterilization chamber is depressurized to the first predetermined pressure, the liquid sterilizing agent to the concentration chamber.

5. A sterilization apparatus according to claim 4 , further comprising;

a sensor unit for measuring a pressure in the sterilization chamber; and

first determination means for determining whether the pressure in the sterilization chamber measured by the sensor has been depressurized to the first predetermined pressure,

wherein in the case where the selection of the low-concentrated mode is received by the receiving means, the transfer means transfers, in a case where it is determined by the first determination means that the pressure in the sterilization chamber measured by the sensor has been depressurized to the first predetermined pressure, the liquid sterilizing agent to the concentration chamber.

6. A sterilization apparatus according to claim 1 ,

wherein in the case where the selection of the highly-concentrated mode is received by the receiving means, the sterilization apparatus draws out the liquid sterilizing agent from the concentration chamber at a first timing, and

in the case where the selection of the low-concentrated mode is received by the receiving means, the sterilization apparatus draws out the liquid sterilizing agent from the concentration chamber at a second timing, and

wherein the first timing is different from the second timing.

7. A sterilization apparatus according to claim 1 , wherein in the case where the selection of the highly-concentrated mode is received by the receiving means, in a case where a second predetermined condition for drawing out the liquid sterilizing agent from the concentration chamber is satisfied, the sterilization apparatus draws out the liquid sterilizing agent from the concentration chamber to transfer the liquid sterilizing agent from the concentration chamber to the sterilization chamber.

8. A sterilization apparatus according to claim 7 , wherein in the case where the selection of the low-concentrated mode is received by the receiving means, the sterilization apparatus draws out the liquid sterilizing agent from the concentration chamber to transfer the liquid sterilizing agent to the sterilization chamber, regardless of whether or not the second predetermined condition is satisfied.

9. A sterilization apparatus according to claim 7 , wherein the second predetermined condition includes a condition that indicates whether the sterilization chamber has been depressurized to a second predetermined pressure; and

wherein, in the case where the selection of the highly-concentrated mode is received by the receiving means, the sterilization apparatus draws out the liquid sterilizing agent from the concentration chamber to transfer the liquid sterilizing agent to the sterilization chamber, in a case where the sterilization chamber is depressurized to the second predetermined pressure.

10. A sterilization apparatus according to claim 9 , further comprising:

second determination means for determining whether pressure in the sterilization chamber measured by the sensor has been depressurized to the second predetermined pressure; and

wherein, in the case where the selection of the highly-concentrated mode is received by the receiving means, the sterilization apparatus draws out the liquid sterilizing agent from the concentration chamber to transfer the liquid sterilizing agent to the sterilization chamber, in a case where it is determined by the second determination means that the pressure in the sterilization chamber measured by a sensor has been depressurized to the second predetermined pressure.

11. A sterilization apparatus according to claim 9 ,

wherein the second predetermined condition further includes a condition that indicates whether a predetermined time has elapsed from when the liquid sterilizing agent is transferred to the concentration chamber by the transfer means; and

wherein, in the case where the selection of the highly-concentrated mode is received by the receiving means, the sterilization apparatus draws out the liquid sterilizing agent from the concentration chamber to transfer the liquid sterilizing agent to the sterilization chamber, in a case where the pressure in the sterilization chamber is depressurized to the second predetermined pressure and the predetermined time has elapsed from when the sterilizing agent is transferred to the concentration chamber.

12. A sterilization apparatus according to claim 11 , wherein in the case where the selection of the highly-concentrated mode is received by the receiving means, the sterilization apparatus concentrates the liquid sterilizing agent transferred to the concentration chamber by the transfer means by heating the liquid sterilizing agent for a predetermined period in the concentration chamber, and transfers the concentrated sterilizing agent to a pipe which leads to the sterilization chamber in a case where the sterilization chamber has been depressurized to a predetermined air pressure.

13. A sterilization apparatus according to claim 1 , further comprising:

a conduit pipe for exhausting gas generated as a result of the vaporization performed by the heating by the concentration chamber; and

a vaporization furnace for vaporizing the liquid sterilizing agent concentrated by being heated by the concentration chamber,

wherein the sterilization chamber sterilizes the target objects using the sterilizing gas obtained by vaporizing the liquid sterilizing agent which has been concentrated by being heated by the concentration chamber while the gas generated as a result of the vaporization performed by the heating by the concentration chamber being exhausted to the conduit pipe.

14. A sterilization method for a sterilization apparatus comprising transfer means for transferring, from a container filled with a liquid sterilizing agent, the liquid sterilizing agent to a concentration chamber, the concentration chamber for concentrating the liquid sterilizing agent by applying heat to the liquid sterilizing agent transferred by the transfer means, and a sterilization chamber for sterilizing the target objects using sterilizing gas obtained by vaporizing the liquid sterilizing agent which has been concentrated by being heated by the concentration chamber without using gas generated as a result of vaporization performed by the heating by the concentration chamber, the method comprising:

receiving, from a user via an operation unit, a selection of one mode from among a highly-concentrated mode in which sterilization by using a liquid sterilizing agent highly concentrated in the concentration chamber is performed and a low-concentrated mode in which sterilization by using a liquid sterilizing agent not highly concentrated in the concentration chamber is performed,

wherein the liquid sterilizing agent transferred to the concentration chamber by the transfer means is heated by the concentration chamber during a period longer in a case where the selection of the highly-concentrated mode is received by the receiving means than in a case where the selection of the low-concentrated mode is received by the receiving means.

15. A computer program comprising processor executable instructions that upon execution by a processor causes the processor to control a sterilization apparatus so as to perform the method of claim 14 .

Assignments (5)
MERGER Recorded Dec 15, 2021
From: KABUSHIKI KAISHA ELQUEST
To: CANON LIFECARE SOLUTIONS KABUSHIKIKAISHA
Reel/Frame 058401/0302 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2021
From: CANON MARKETING JAPAN KABUSHIKI KAISHA
To: CANON MEDTECH SUPPLY CORPORATION
Reel/Frame 058401/0489 →
CHANGE OF NAME Recorded Dec 15, 2021
From: ELK CORPORATION
To: CANON LIFECARE SOLUTIONS KABUSHIKIKAISHA
Reel/Frame 058519/0680 →
CHANGE OF NAME Recorded Dec 15, 2021
From: CANON LIFECARE SOLUTIONS KABUSHIKIKAISHA
To: CANON MEDTECH SUPPLY CORPORATION
Reel/Frame 058520/0107 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 17, 2013
From: HANADA, YASUSHI; KOYAMA, TAKASHI
To: CANON MARKETING JAPAN KABUSHIKI KAISHA; ELK CORPORATION; KABUSHIKI KAISHA ELQUEST
Reel/Frame 029652/0519 →
Priority Claims (1)
JP 2011-222383 · Oct 6, 2011 · national
Continuity (1)
Related Publication 20130094992A1 · Apr 18, 2013