Cryopump and control method for cryopump

US12060873B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12060873-B2
Application numberUS-202117204441-A
CountryUS
Kind codeB2
Filing dateMar 17, 2021
Priority dateMar 18, 2020
Publication dateAug 13, 2024
Grant dateAug 13, 2024

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A cryopump includes a cryopump container, a pressure sensor that measures a pressure in the cryopump container and generates time-series pressure data indicating the measured pressure, a vent valve that is provided on the cryopump container, is electrically operable to open and close, and is capable of being mechanically opened by a differential pressure between inside and outside the cryopump container, and a controller that, during cryopump regeneration, detects stabilization of the measured pressure based on the time-series pressure data from the pressure sensor and controls the vent valve to open upon detection of the stabilization of the measured pressure.

First claim

Opening claim text (preview).

What is claimed is: 1. A cryopump comprising: a cryopump container; a pressure sensor that is configured to consecutively measure a pressure in the cryopump container and generate time-series pressure data including at least two measured pressure values measured at time points different from each other; a vent valve that is provided on the cryopump container, is electrically operable to open and close, and is capable of being mechanically opened by a differential pressure between inside and outside the cryopump container; a purge valve that is provided on the cryopump container; and a controller configured to open the purge valve to supply a purge gas to the cryopump container, thereby increasing a temperature of the cryopump from a cryogenic temperature to a regeneration temperature, perform, responsive to the opening of the purge valve, iterative calculations of a changed amount of the at least two measured pressure values from the time-series pressure data measured, perform, responsive to the performing of the iterative calculations of the changed amount of the at least two measured pressure values, iterative comparisons of the changed amount of the at least two measured pressure values with a changed amount threshold, the iterative comparisons occurring in conjunction with the iterative calculations, and perform control of the vent valve to open when the iterative comparisons confirm that the changed amount of the at least two measured pressure values is less than the changed amount threshold. 2. The cryopump according to claim 1 , wherein the controller is configured to perform the iterative calculations, the iterative comparisons, and the control of the vent value during the temperature increase of the cryopump from the cryogenic temperature to the regeneration temperature. 3. The cryopump according to claim 1 , wherein the controller is further configured to responsive to the performing of the iterative calculations of the changed amount of the at least two measured pressure values, perform second iterative comparisons of one of the at least two measured pressure values with a sub-atmospheric threshold, and control the vent valve to open when the second iterative comparisons confirm that the one of the at least two measured pressure values exceed the sub-atmospheric threshold and the iterative comparisons confirm that the changed amount of the at least two measured pressure values is less than the changed amount threshold. 4. The cryopump according to claim 3 , wherein the sub-atmospheric threshold is selected from a range of 0.5 atmosphere (atm) to less than 1 atm. 5. The cryopump according to claim 1 , wherein the controller is further configured to determine a setting pressure based on a pressure value measured by the pressure sensor before and/or after the controlled opening of the vent valve, perform second iterative comparisons of one of the at least two measured pressure values with the setting pressure, and control the vent valve to open when the second iterative comparisons confirm that the one of the at least two measured pressure values exceeds the setting pressure. 6. A control method comprising: opening a purge valve of a cryopump to supply a purge gas to a cryopump container of a cryopump, thereby increasing a temperature of the cryopump from a cryogenic temperature to a regeneration temperature; consecutively measuring, with a controller and a pressure sensor, a pressure in the cryopump container during the supplying of the purge gas to the cryopump container to generate time-series pressure data including at least two measured pressure values that are measured at time points different from each other; responsive to the opening of the purge valve, iteratively calculating, with the controller, a changed amount of the at least two measured pressure values from the time-series pressure data; responsive to the iteratively calculating, iteratively comparing, with the controller, the changed amount of the at least two measured pressure values with a changed amount threshold; and controlling, with the controller, a vent valve of the cryopump to open when the iterative comparisons confirm that the changed amount of the at least two measured pressure values is less than the changed amount threshold. 7. The control method according to claim 6 , wherein the iteratively calculating, the iteratively comparing, and the controlling are performed during the temperature increase of the cryopump from the cryogenic temperature to the regeneration temperature. 8. The control method according to claim 6 , further comprising: responsive to the performing of the iterative calculations of the changed amount of the at least two measured pressure values, perform second iterative comparisons of one of the at least two measured pressure values with a sub-atmospheric threshold; and controlling the vent valve to open when the second iterative comparisons confirm that the one of the at least two measured pressure values exceed the sub-atmospheric threshold and the iterative comparisons confirm that the changed amount of the at least two measured pressure values is less than the changed amount threshold. 9. The control method according to claim 8 , wherein the sub-atmospheric threshold is selected from a range of 0.5 atmosphere (atm) to less than 1 atm. 10. The control method according to claim 6 , further comprising: determining a setting pressure based on a pressure value measured by the pressure sensor before and/or after the controlled opening of the vent valve; perform second iterative comparisons of one of the at least two measured pressure values with the setting pressure; and controlling the vent valve to open when the second iterative comparisons confirm that the one of the at least two measured pressure values exceeds the setting pressure. 11. A non-transitory computer-readable medium comprising instructions that, when executed by a controller, cause the controller to perform a set of operations comprising: opening a purge valve of a cryopump to supply a purge gas to a cryopump container of the cryopump, thereby increasing a temperature of the cryopump from a cryogenic temperature to a regeneration temperature; controlling a pressure sensor to consecutively measure a pressure in the cryopump container during supplying the purge gas to the cryopump container to generate time-series pressure data including at least two measured pressure values that are measured at time points different from each other; responsive to the opening of the purge valve, iteratively calculating a changed amount of the at least two measured pressure values from the time-series pressure data; responsive to the iteratively calculating, iteratively comparing the changed amount of the at least two measured pressure values with a changed amount threshold; and controlling a vent valve of the cryopump to open when the iterative comparisons confirm that the changed amount of the at least two measured pressure values is less than the changed amount threshold. 12. The non-transitory computer-readable medium according to claim 11 , wherein the iterative calculations start immediately after the opening of the purge valve. 13. The non-transitory computer-readable medium according to claim 11 , wherein the set of operations further include closing the purge valve when the temperature of the cryopump reaches the regeneration temperature, and wherein the iterative calculations start before the closing of the purge valve. 14. The cryopump according to claim 1 , wherein the iterative calculations start immediately after the

Assignees

Inventors

Classifications

  • F04B37/08Primary

    by condensing or freezing, e.g. cryogenic pumps · CPC title

  • gaseous, i.e. compressible · CPC title

  • by means of valves · CPC title

  • and making use of computers · CPC title

  • Pressure in the compression chamber · CPC title

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Frequently asked questions

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What does patent US12060873B2 cover?
A cryopump includes a cryopump container, a pressure sensor that measures a pressure in the cryopump container and generates time-series pressure data indicating the measured pressure, a vent valve that is provided on the cryopump container, is electrically operable to open and close, and is capable of being mechanically opened by a differential pressure between inside and outside the cryopump …
Who is the assignee on this patent?
Sumitomo Heavy Industries
What technology area does this patent fall under?
Primary CPC classification F04B37/08. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Aug 13 2024 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).