Claims
- 1. A valve assembly for use in a ventilator, the valve assembly comprising a housing and a rotatable vane for directing the flow of air within the housing,
the housing having an inlet port for receiving a flow of pressurized air from a blower, an outlet port for delivering air to a patient interface and an exhaust port, the vane being rotatable between a first angular position and a second angular position without choking the blower, wherein:
(i) in the first angular position substantially all of the flow of air received at the inlet port is directed by the vane to the exhaust port, (ii) in the second angular position substantially all of the flow of air received at the inlet port is directed by the vane to the outlet port, (iii) in angular positions intermediate of the first and second angular positions, a fraction of the flow of air received at the inlet port is directed by the vane to the exhaust port and the complementary fraction of the flow of air received at the inlet port is directed by the vane to the outlet port.
- 2. The valve assembly of claim 1, wherein an arc through which the vane moves between the first and second angular positions is approximately 30 degrees.
- 3. The valve assembly of claim 1, wherein the vane forms a portion of a passageway between the inlet port and the outlet port when in the second angular position.
- 4. The valve assembly of claim 1, wherein the vane can selectively direct undiverted flow from the inlet port to at least one of the exhaust port and the outlet port when the vane is between the first angular position and the second angular position.
- 5. A ventilatory assistance apparatus, comprising:
a flow generator; and a flow diverter valve in communication with the flow generator, the flow diverter valve including a housing defining an inlet port, an outlet port and an exhaust port positioned between the inlet port and the outlet port and configured to exhaust at least one of flow from the inlet port and back flow from the outlet port, and a vane moveable between an open position and a closed position, wherein:
the vane can selectively protrude into the flow from the inlet port and thereby variably divert the flow from the inlet port to at least one of the exhaust port and the outlet port, and the vane forms a portion of a passage leading to the outlet port when in the closed position.
- 6. The apparatus of claim 5, wherein the housing includes a housing bend that extends towards the vane into the flow from the inlet port.
- 7. The apparatus of claim 6, wherein the housing bend defines a stop for the vane in the open position.
- 8. The apparatus of claim 5, wherein the housing includes at least one of a leading housing ledge and a trailing housing ledge that defines a stop for the vane in the closed position.
- 9. The apparatus of claim 5, wherein the housing has smooth tangentially curved inside surfaces with a low angle of incidence to the flow from the inlet port.
- 10. The apparatus of claim 5, further comprising a flow meter downstream of the flow diverter valve.
- 11. The apparatus of claim 5, further comprising an apparatus body including a side wall with an opening aligned with the exhaust port.
- 12. The apparatus of claim 5, wherein the flow generator includes a blower that remains substantially unchoked as the vane moves between the open position and the closed position.
- 13. A flow diverter valve, comprising:
a housing defining an inlet port and an outlet port; an exhaust port positioned between the inlet and outlet ports; and a vane moveable between an open position and a closed position, wherein:
the vane can selectively protrude into the flow from the inlet port and thereby variably divert the flow from the inlet port to at least one of the exhaust port and the outlet port, and the vane forms a portion of a passage leading to the outlet port when in the closed position.
- 14. The flow diverter valve of claim 13, wherein the housing includes at least one of a leading housing ledge and a trailing housing ledge that defines a stop for the vane in the closed position.
- 15. The flow diverter valve of claim 13, wherein the vane is pivotable between the open position and the closed position.
- 16. The flow diverter valve of claim 13, wherein the vane comprises a flexible material that can bend, the vane bendable between the open position and the closed position.
- 17. The flow diverter valve of claim 13, wherein the housing includes a straight inlet port flow path from the inlet port to the exhaust port directing a majority of undiverted flow from the inlet port to the exhaust port.
- 18. The flow diverter valve of claim 13, wherein the housing includes a straight inlet port flow path from the inlet port to the outlet port directing a majority of undiverted flow from the inlet port to the outlet port.
- 19. The flow diverter valve of claim 13, wherein the vane has a first side surface and a second side surface with a first radius of curvature and a second radius of curvature.
- 20. The flow diverter valve of claim 19, wherein the first radius of curvature is equal to the second radius of curvature.
- 21. The flow diverter valve of claim 19, wherein the first radius of curvature is greater than the second radius of curvature.
- 22. The flow diverter valve of claim 19, wherein the first radius of curvature is less than the second radius of curvature.
- 23. The flow diverter valve of claim 22, wherein the first radius of curvature is approximately 120 mm and the second radius of curvature is approximately 200 mm.
- 24. A CPAP apparatus, comprising:
a flow generator; and a flow diverter valve in communication with the flow generator, the flow diverter valve including a housing defining an inlet port, an outlet port and an exhaust port positioned between the inlet port and the outlet port and configured to exhaust at least one of flow from the inlet port and back flow from the outlet port, and a vane moveable between an open position and a closed position, wherein the vane can selectively admit undiverted flow from the inlet port to at least one of the exhaust port and the outlet port when the vane is in the open position.
- 25. The apparatus of claim 24, wherein the flow generator includes a blower that remains substantially unchoked as the vane moves between the open position and the closed position.
- 26. A flow diverter valve, comprising:
a housing defining an inlet port and an outlet port; an exhaust port positioned between the inlet and outlet ports; and a vane moveable between an open position and a closed position, wherein the vane can selectively admit undiverted flow from the inlet port to at least one of the exhaust port and the outlet port when the vane is in the open position.
- 27. The flow diverter valve of claim 26, wherein flow capacity of the housing downstream of the vane is at least substantially equal to flow capacity upstream of the vane, regardless of whether the vane is in the open position or the closed position.
RELATED ART
[0001] This application is related to pending U.S. patent application Ser. No. 09/598,053 filed on Jun. 21, 2001, describing a control member for a valve and method for determining fluid flow rate through a valve. This application is also related to U.S. patent application Ser. No. 09/642,824 filed on Aug. 22, 2000, describing pressure control in CPAP treatment or assisted respiration. International PCT Patent Application No. PCT/AU97/00631 describes varying pressure at a patient mask through the period of treatment during inspiration or expiration, and International PCT patent application No. PCT/AU96/00586 describes a flow diverting valve with a rotatable control member, both of which are related to this application. The contents of these U.S. and International PCT Patent Applications are incorporated herein by reference in their entireties. This application is also related to U.S. Pat. No. 4,944,310, which describes Continuous Positive Airway Pressure (CPAP) treatment, and U.S. Pat. No. 5,245,995 which describes automatically adjusting nasal CPAP treatment. The contents of these patents are incorporated herein by reference in their entireties.