Safety system for a breathing apparatus for delivering an anesthetic agent

US10406313B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10406313-B2
Application numberUS-201514790746-A
CountryUS
Kind codeB2
Filing dateJul 2, 2015
Priority dateJun 13, 2007
Publication dateSep 10, 2019
Grant dateSep 10, 2019

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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 safety system for a breathing apparatus for delivery of an anesthetic agent having an anesthetic agent vaporizer having a reservoir for containing a liquid anesthetic agent has a reservoir for containing a liquid medical agent, a port for filling the reservoir with the liquid anesthetic agent, and a sensor device for sensing a filling action of the port. A change of position of a lid covering the port is can be detected, or insertion of a fill vessel into said the port is can be detected. Thus safety of said the equipment is improved by being able to de-pressurize the reservoir before opening a filling valve for communication of the port with the interior of the reservoir.

First claim

Opening claim text (preview).

I claim as my invention: 1. An anesthetic injection vaporizer for delivery of pressurized anesthetic agent to a breathing apparatus comprising: a reservoir containing an anesthetic agent in liquid form in an interior of said reservoir, said anesthetic agent being pressurized to an overpressure in said interior of said reservoir; said reservoir comprising a refilling port shaped to receive a filling vessel during a refilling action that refills the reservoir with said anesthetic agent in liquid form; said refilling port comprising a normally closed valve that, if opened while said overpressure exists in said interior of said reservoir, would allow a fluid comprising said anesthetic agent to escape from said interior of said reservoir, said refilling action comprising opening of said valve by inserting the filling vessel in said refilling port; a filling sensor situated at said reservoir so as to detect another part of said refilling action that occurs before opening said valve, and thereupon emit a first output signal, a control processor that receives said first output signal and upon receiving said first output signal is configured to automatically relieve said overpressure in said reservoir before said valve is opened, said filling sensor also detecting when the filling action at the port is terminated and thereupon emitting a second output signal, and said control processor also receiving said second output signal, and upon receiving said second output signal, allowing pressurization of said reservoir. 2. The anesthetic injection vaporizer of claim 1 , wherein said port further comprises a protection member that normally closes said port, and wherein said filling sensor detects a displacement of said protection member as said another part of said filling action. 3. The anesthetic injection vaporizer of claim 2 , wherein said protection member, when closing said port, is located in a home position, and wherein said filling sensor detects displacement of said protection member from said home position. 4. The anesthetic injection vaporizer of claim 3 , wherein said filling sensor is configured to emit said first output signal as long as said protection member is in said home position and to cease to emit said output signal when said protection member is displaced from said home position. 5. The anesthetic injection vaporizer of claim 2 , wherein said filling sensor is configured to emit said first output signal when said protection member is located in a position that opens said refill port. 6. The anesthetic injection vaporizer of claim 5 , wherein said protection member is a lid that is movable to open said port by executing a movement selected from the group consisting of a linear movement, a rotational movement and a pivoting movement. 7. The anesthetic injection vaporizer of claim 1 , wherein said filling sensor is configured to detect insertion of said portion of the filling vessel into said refill port. 8. The anesthetic injection vaporizer of claim 7 , wherein said filling sensor comprises an emitter located at a side of said port that emits an emitter signal, and a detector located at an opposite side of said port that detects said emitter signal, and wherein said filling sensor is configured to emit said first output signal when said portion of the filling vessel blocks said emitter signal from being detected by said detector. 9. The anesthetic injection vaporizer of claim 8 , wherein said filling sensor is configured to employ radiation as said emitted signal selected from the group consisting of electromagnetic radiation, ultraviolet radiation, visible light radiation, and infrared radiation. 10. The anesthetic injection vaporizer of claim 7 , wherein said filling sensor comprises a detectable item carried by said filling vessel and a detector located at said refilling port that detects said detectable item when said portion of the filling vessel is inserted into said refill port. 11. The anesthetic injection vaporizer of claim 1 , wherein said filling sensor comprises a device selected from the group consisting of a mechanical sensor device, an electronic sensor device, a capacitive sensor device, a thermal sensor device, a magnetic sensor device, a pneumatic sensor device, a hydraulic sensor device, and combinations thereof. 12. The anesthetic injection vaporizer of claim 1 , wherein said control processor is configured to emit a warning signal if a time duration after receipt of said first output signal exceeds a predetermined time duration without said second output signal being received. 13. The anesthetic injection vaporizer according to claim 1 further comprising a level sensor that measures a current filling level of the reservoir with liquid. 14. A method for operating an anesthetic injection vaporizer, said anesthetic injection vaporizer comprising a reservoir containing an anesthetic agent in liquid form in an interior of said reservoir, said anesthetic agent being pressurized to an overpressure in said interior of said reservoir, said reservoir comprising a refilling port and a normally closed valve that, if opened while said overpressure exists in said interior of said reservoir, would allow a fluid comprising said anesthetic agent to escape from said interior of said reservoir, said method comprising: executing a refilling action that refills the reservoir with said liquid anesthetic agent said refilling action comprising inserting a portion of a refilling vessel into said refilling port so as to open said valve as part of said refilling action; with a filling sensor, detecting another part of said refilling action that occurs before opening said valve, and thereupon emitting a first output signal from said filling sensor; providing a control processor with said first output signal and upon receiving said first output signal, said processor automatically relieving said overpressure in said reservoir before said valve is opened, with said filling sensor, also detecting when the filling action at the port is terminated and thereupon emitting a second output signal from said filling sensor, and also providing said control processor with said second output signal and, upon receiving said second output signal, said processor allowing pressurization of said reservoir.

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What does patent US10406313B2 cover?
A safety system for a breathing apparatus for delivery of an anesthetic agent having an anesthetic agent vaporizer having a reservoir for containing a liquid anesthetic agent has a reservoir for containing a liquid medical agent, a port for filling the reservoir with the liquid anesthetic agent, and a sensor device for sensing a filling action of the port. A change of position of a lid covering…
Who is the assignee on this patent?
Maquet Critical Care Ab
What technology area does this patent fall under?
Primary CPC classification A61M16/183. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Tue Sep 10 2019 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 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).