IP Library Granted Patent US 11,471,638
Granted Patent B2
US 11,471,638 · App. 16/684,629 · Granted Oct 18, 2022

Pressure support system valve

Inventors: Karl Appareti (Pittsburgh, PA); Christopher Allen Gorman (Pittsburgh, PA); Bin Zhang (Pittsburgh, PA)
Assignee: Koninklijke Philips N.V.
A61M16/0816A61M16/1095A61M16/122A61M16/16A61M16/208A61M16/0069A61M16/06A61M16/0875A61M16/101A61M16/205A61M2016/0027A61M2202/0208A62B9/02
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Quick Facts
Patent No.
US 11,471,638
App. No.
16/684,629
Granted
Oct 18, 2022
Kind
B2
Abstract

The present disclosure describes a pressure support therapy device valve that enables a subject to safely supplement therapy pressure support with low flow oxygen while using a heated (or non-heated) tube. The valve conducts a pressurized flow of breathable gas and the low flow oxygen to the heated tube. The valve includes electrical components configured to pass power from the pressure support therapy device to the heated tube, and a plunger biased to close a flow path from the pressure support therapy device when a pressurized flow of breathable gas is not provided (or is below a predetermined pressure threshold). Closing the flow path stops oxygen gas from flowing back through the valve toward the pressurized gas source.

Claims (28)

1. A valve configured for use in a pressure support therapy system, the pressure support therapy system comprising a pressurized gas source, a supplemental gas source, and a subject interface with a heated tube, the valve comprising:

(a) an inlet cap, the inlet cap comprising a first electrical connector and a first flow path both configured to removably couple with the pressurized gas source, the first flow path configured to receive a pressurized flow of breathable gas from the pressurized gas source, the first electrical connector configured to receive electrical power from the pressurized gas source;

(b) a body coupled to the inlet cap, the body comprising:

(1) a channel configured to receive the pressurized flow of breathable gas from the first flow path; and

(2) a plunger biased to close the first flow path in the inlet cap when the pressurized flow of breathable gas is not provided by the pressurized gas source or is provided at a pressure that is below a predetermined pressure threshold, wherein closing the first flow path stops supplemental therapy gas from flowing through the inlet cap toward the pressurized gas source when the inlet cap is coupled to the pressurized gas source;

(c) outlet cap coupled to the body, the outlet cap including:

(1) a side orifice configured to receive the supplemental therapy gas from the supplemental gas source, and

(2) a second electrical connector electrically coupled with the first electrical connector and a second flow path coupled with the channel, the outlet cap configured to removably couple with the heated tube such that the second flow path conducts the pressurized flow of breathable gas and the supplemental therapy gas from the channel to the heated tube and the second electrical connector conducts the electrical power from the pressurized gas source to the heated tube when the outlet cap is coupled to the heated tube; and

(d) a radial seal positioned in the inlet cap before the body, the radial seal configured to substantially seal a connection between the inlet cap and the pressurized gas source such that the pressurized flow of breathable gas and the supplemental therapy gas do not unintentionally leak out of the valve.

2. The valve of claim 1 , further comprising a cover configured to cover the body, at least a portion of the inlet cap, and at least a portion of the outlet cap.

3. The valve of claim 2 , wherein the cover comprises two pieces, the two pieces forming opposite sides of the valve.

4. The valve of claim 1 , further comprising one or more vents in the body, the vents configured to vent the channel to atmosphere to facilitate dispersion of the supplemental therapy gas to atmosphere and breathing of atmospheric air by a subject when the plunger has closed the first flow path in the inlet cap.

5. The valve of claim 4 , wherein the body comprises an outer cylinder and an inner cylinder, the outer cylinder forming the channel, the inner cylinder coupled to the plunger and the one or more vents, and in communication with the channel, such that the channel is vented to atmosphere when the plunger closes the first flow path in the inlet cap, and substantially sealed from atmosphere when the pressurized flow of breathable gas is provided by the pressurized gas source.

6. The valve of claim 1 , wherein the supplemental therapy gas is oxygen.

7. The valve of claim 1 , wherein the inlet cap, the body, and the outlet cap each have a generally cylindrical cross-sectional shape.

8. The valve of claim 1 , wherein the first and second electrical connectors are electrically coupled via a wire.

9. The valve of claim 1 , wherein the pressurized gas source comprises a pressure generator, a humidifier, or both.

10. The valve of claim 1 , wherein the body further comprises a spring coupled to the plunger, the spring configured to bias the plunger to close the first flow path in the inlet cap.

11. The valve of claim 10 , wherein a spring force of the spring is configured such that the plunger closes the first flow path in the inlet cap when a pressure of the pressurized flow of breathable provided by the pressurized gas source is less than the predetermined pressure threshold.

12. The valve of claim 1 , wherein the inlet cap is formed along an axis of the valve, the body is coupled to the inlet cap positioned along the axis of the valve, and the outlet cap is coupled to the body opposite the inlet cap along the axis of the valve.

13. The valve of claim 1 , wherein the radial seal is formed from silicone.

14. A method for controlling flow in a pressure support therapy system with a valve, the pressure support therapy system comprising a pressurized gas source, a supplemental gas source, and a subject interface with a heated tube, the valve comprising: an inlet cap, the inlet cap comprising a first electrical connector and a first flow path both configured to removably couple with a pressurized gas source, the first flow path configured to receive a pressurized flow of breathable gas from the pressurized gas source, the first electrical connector configured to receive electrical power from the pressurized gas source; a body coupled to the inlet cap, the body comprising: a channel configured to receive the pressurized flow of breathable gas from the first flow path; and a plunger biased to close the first flow path in the inlet cap when the pressurized flow of breathable gas is not provided by the pressurized gas source or is provided at a pressure that is below a predetermined pressure threshold, wherein closing the first flow path stops a supplemental therapy gas from the supplemental gas source from flowing through the inlet cap toward the pressurized gas source when the inlet cap is coupled to the pressurized gas source; an outlet cap coupled to the body, the outlet cap including: a side orifice configured to receive the supplemental therapy gas from the supplemental gas source; and a radial seal positioned in the inlet cap before the body, the radial seal configured to substantially seal a connection between the inlet cap and the pressurized gas source such that the pressurized flow of breathable gas and the supplemental therapy gas do not unintentionally leak out of the valve, the method comprising:

removably coupling the first electrical connector and the first flow path of the inlet cap with the pressurized gas source;

receiving the pressurized flow of breathable gas from the first flow path with the channel of the body;

receiving the supplemental therapy gas with the side orifice of the outlet cap;

closing, with the plunger of the body, the first flow path in the inlet cap when the pressurized flow of breathable gas is not provided by the pressurized gas source or is provided at a pressure that is below the predetermined pressure threshold, wherein closing the first flow path stops the supplemental therapy gas from flowing through the inlet cap toward the pressurized gas source when the inlet cap is coupled to the pressurized gas source; and

coupling a second electrical connector included in the outlet cap with the first electrical connector and a second flow path included in the outlet cap with the channel, wherein the outlet cap is configured to removably couple with the heated tube such that the second flow path conducts the pressurized flow of breathable gas and the supplemental therapy gas from the channel to the heated tube and the second electrical connector conducts the electrical power from the pressurized gas source to the heated tube when the outlet cap is coupled to the heated tube.

15. The method of claim 14 , further comprising venting with one or more vents of the body, the channel to atmosphere to facilitate dispersion of the supplemental therapy gas to atmosphere and breathing of atmospheric air by a subject when the plunger has closed the first flow path in the inlet cap, wherein the body comprises an outer cylinder and an inner cylinder, the outer cylinder forming the channel, the inner cylinder coupled to the plunger and the one or more vents, and in communication with the channel, such that the channel is vented to atmosphere when the plunger closes the first flow path in the inlet cap, and substantially sealed from atmosphere when the pressurized flow of breathable gas is provided by the pressurized gas source.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2019
From: ZHANG, BIN; GORMAN, CHRISTOPHER ALLEN; APPARETI, KARL
To: KONINKLIJKE PHILIPS N.V.
Reel/Frame 051015/0620 →
Continuity (2)
Provisional Application 62768164 · Nov 16, 2018
Related Publication 20200155876A1 · May 21, 2020