Gas sensor module with enhanced flow
Patent Information
- Application Number
- HK62026127353
- Authority / Receiving Office
- HK · HK
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-04-13
- Filing Date
- 2026-08-11
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2044-04-08
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Abstract
Description
Abstract: A gas sensor module (600) for a therapeutic gas delivery device is provided. The gas sensor module includes a sample inlet (119) and a sample chamber (140), the sample chamber (140) forming a flow channel (144) fluidly connected to the sample inlet and operable to receive sample gas. The sample chamber includes a plurality of sensor chambers (600, 602, 630) in communication with one or more corresponding sensors (118, 122), operable to measure at least one property of the sample gas. The flow channel guides the sample gas through the gas sensor module and includes one or more bends (604, 606, 608, 610, 612) before each of the plurality of sensor chambers, each bend having an angle operable to facilitate mixing of the sample gas and to facilitate diffusion of the sample gas onto each of the plurality of sensors.
Claims
CLAIMSWhat is claimed is:1 . A gas sensor module for a therapeutic gas delivery device, the gas sensor module comprising: a sample inlet operable to receive a sample gas comprising a mixture of a breathing gas and a therapeutic gas from a sample line connected to an inspiratory line of the therapeutic gas delivery device; and a sample chamber forming a flow passage fluidly connected with the sample inlet and operable to receive the sample gas, the sample chamber includes a plurality of sensor chambers operable to be in communication with one or more corresponding sensors operable to measure at least one property of the sample gas, wherein the flow passage is operable to direct a flow of the sample gas from the sample inlet to the plurality of sensor chambers, between each of the plurality of sensor chambers, and from the plurality of sensor chambers to an outlet, and wherein the flow passage comprises one or more turns prior to each of the plurality of sensor chambers, each turn having an angle operable to promote mixing of the sample gas and promote diffusion of the sample gas onto each of the one or more corresponding sensors.
2. The gas sensor module of claim 1 , wherein the mixing of the sample gas is such that a concentration of the breathing gas and the therapeutic gas in the sample gas flowing over the plurality of sensor chambers is substantially the same as the concentration of the breathing gas and the therapeutic gas in the inspiratory line.
3. The gas sensor module of claim 1 or 2, wherein the flow passage reduces or prevents rotating eddies and dead zones in the sample gas flow through the sample chamber.
4. The gas sensor module of any one of claims 1-3, wherein the flow passage creates a low back pressure or resistance to flow through the sample chamber.
5. The gas sensor module of any one of claims 1 -4, wherein the mixing of the sample gas provides a turbulent delivery of the sample gas to a surface of each of the one or more corresponding sensors.
6. The gas sensor module of any one of claims 1-5, wherein a volume of sample gas in the sample chamber is less than a volume of sample gas that would be needed in a sample chamber without mixing.
7. The gas sensor module of any one of claims 1 -6, wherein the angle of the one or more turns is about 90 degrees.
8. The gas sensor module of any one of claims 1-7, wherein the one or more turns are operable to change direction of the flow passage within the sample chamber.
9. The gas sensor module of any one of claims 1-8, wherein the sample chamber comprises an inner housing having an upper portion, a lower portion, a vertical axis, and a horizontal axis transverse to the vertical axis, wherein at least one of the one or more turns is along the vertical axis and / or the horizontal axis.
10. The gas sensor module of claim 9, wherein the one or more turns are about 90 degrees along the vertical axis and / or the horizontal axis of the sample chamber.11 . The gas sensor module of claim 9 or 10, wherein at least one of the plurality of sensor chambers is located in the lower portion of the sample chamber and the sample inlet is located in the upper portion of the sample chamber.
12. The gas sensor module of claim 11 , wherein the plurality of sensor chambers includes a first sensor chamber comprising a first sensor in the lower portion of the sample chamber, and wherein the flow passage includes about one to about four turns, each having angles of about 90 degrees, between the sample inlet in the upper portion of the sample chamber and an inlet of the first sensor chamber.
13. The gas sensor module of claim 12, wherein the flow passage between the sample inlet and the first sensor chamber includes a first vertical turn along the vertical axis, a second vertical turn along the horizontal axis, a first horizontal turn along thehorizontal axis subsequent to the second vertical turn, and a third vertical turn along the vertical axis.
14. The gas sensor module of claim 12 or 13, wherein the first sensor chamber is a nitrogen dioxide sensor chamber and the first sensor is a nitrogen dioxide sensor.
15. The gas sensor module of any one of claims 12-14, wherein the plurality of sensor chambers includes a second sensor chamber comprising a second sensor in the lower portion of the sample chamber, and wherein the flow passage includes about one to about four turns, each having angles of about 90 degrees, between an outlet of the first sensor chamber and an inlet of the second sensor chamber.
16. The gas sensor module of claim 15, wherein the flow passage between the outlet of the first sensor chamber and the inlet of the second sensor chamber includes a fourth vertical turn along the horizontal axis and a fifth vertical turn along the vertical axis subsequent to the fourth vertical turn.
17. The gas sensor module of claim 15 or 16, wherein the second sensor chamber is a nitric oxide sensor chamber and the second sensor is a nitric oxide sensor.
18. The gas sensor module of any one of claims 15-17, wherein the plurality of sensor chambers includes a third sensor chamber comprising a third sensor in the upper portion of the sample chamber, and wherein the flow passage includes about one to about four turns, each having angles of about 90 degrees, between an outlet of the second sensor chamber and an opening of the third sensor chamber.
19. The gas sensor module of claim 18, wherein the flow passage between the outlet of the second sensor chamber and opening of the third sensor chamber includes a sixth vertical turn along the horizontal axis, a second horizontal turn along the horizontal axis, and a seventh vertical turn along the vertical axis subsequent to the second horizontal turn.
20. The gas sensor module of claim 18 or 19, wherein the third sensor chamber is a humidity and / or temperature sensor chamber and third sensor is a humidity and / or temperature sensor.21 . The gas sensor module of claim 20, wherein the flow passage directs the sample gas directly into the opening of the humidity and / or temperature sensor chamber such that the sample gas exits the humidity and / or temperature sensor chamber through the opening.
22. The gas sensor module of claim 21 , wherein the flow passage directs the sample gas directly into the opening from a vertical portion along a vertical axis of the sample chamber.