Claims
- 1. A control of an air mattress comprising:a housing having a supply chamber, an exhaust chamber, and a plenum; at least one supply port, one exhaust port and one outlet port on the housing and connected to the respective supply and exhaust chambers and the plenum; a supply valve and an exhaust valve in the housing and connecting respectively the supply and exhaust chambers to the plenum; and a supply and an exhaust solenoid connected to the supply and exhaust valves respectively; the solenoids including a core in a casing and the valves being connected to a first end of the core through a first aperture in the casing; and further comprising a resilient stop and spring between the casing and a second end of the core, the resilient stop and spring abutting the core.
- 2. A control according to claim 1, wherein the housing includes an exterior housing and a separate interior housing; and the valves are in and the solenoids are mounted to the interior housing and covered by the exterior housing.
- 3. A control according to claim 2, wherein the interior housing defines the chambers within the exterior housing.
- 4. A control according to claim 2, wherein the ports are on the exterior housing.
- 5. A control according to claim 2, wherein the interior housing is a metal block forming a heat sink for the solenoids.
- 6. A control according to claim 1, including at least one supply outlet connected to the supply chamber.
- 7. A control according to claim 1, wherein the core is hollow substantially along its length.
- 8. A control according to claim 2, including a resilient element between the solenoid and the interior housing.
- 9. The valve of claim 1, wherein the chamber includes a plurality of ports.
- 10. The patient support of claim 1, further comprising a controller coupled to the supply and exhaust valves, the controller being configured to control movement of the supply and exhaust valves to produce one of percussion and vibration air pressure pulses.
- 11. A control of an air mattress comprising:a housing having a supply chamber, an exhaust chamber, and a plenum; and at least one supply port, one exhaust port and one outlet port on the housing and connected to the respective supply and exhaust chambers and the plenum; a supply valve and an exhaust valve in the housing and connecting respectively the supply and exhaust chambers to the plenum; a supply and an exhaust solenoid connected to the supply and exhaust valves respectively; and a vibration dampening mount connected to the housing.
- 12. The valve of claim 11, further comprising a solenoid coupled to the supply valve.
- 13. The valve of claim 11, further comprising a solenoid coupled to the exhaust valve.
- 14. The valve of claim 11, further comprising a first solenoid coupled to the supply valve and a second solenoid coupled to the exhaust valve.
- 15. The valve of claim 11, wherein the plenum includes a plurality of ports.
- 16. The patient support of claim 11, further comprising a controller coupled to the supply and exhaust valves, the controller being configured to control movement of the supply and exhaust valves to produce one of percussion and vibration air pressure pulses.
- 17. The patient support of claim 15, further comprising an exterior housing and an interior housing, the plurality of ports of the plenum being on the exterior housing.
- 18. A valve for an air mattress, the valve comprising:an inlet, a first valve in communication with the inlet, a second valve, a chamber in communication with the first and second valves, the chamber including an outlet, a controller coupled to the first and second valves, the controller being configured to control movement of the first and second valves to produce one of percussion and vibration air pressure pulses, and a vibration dampening mount.
- 19. The valve of claim 18, wherein the chamber includes a plurality of ports.
- 20. The patient support of claim 19, further comprising an exterior housing and an interior housing, the plurality of ports of the chamber being on the exterior housing.
- 21. A valve for an air mattress, the valve comprising:an inlet, a first valve in communication with the inlet, a second valve, a chamber in communication with the first and second valves, the chamber including an outlet, a controller coupled to the first and second valves, the controller being configured to control movement of the first and second valves to produce one of percussion and vibration air pressure pulses, and a solenoid coupled to one of the first and second valves, the solenoid including a casing and a core, the core being coupled to the one of the first and second valves coupled to the solenoid, and the solenoid further comprising a resilient stop and spring abutting the core.
- 22. The valve of claim 21, wherein the chamber includes a plurality of ports.
- 23. The patient support of claim 22, further comprising an exterior housing and an interior housing, the plurality of ports of the chamber being on the exterior housing.
- 24. A patient support having a longitudinal axis, the patient support comprising:a plurality of bladders, a first valve having a first valve inlet and a first valve outlet, a second valve having a second valve inlet and a second valve outlet, a chamber including a plurality of ports, each of the plurality of ports being coupled to one of the plurality of bladders, the chamber defining the first valve outlet and the second valve inlet, and a vibration dampening mount.
- 25. The patient support of claim 24, further comprising a solenoid coupled to the first valve.
- 26. The patient support of claim 24, further comprising a solenoid coupled to the second valve.
- 27. The patient support of claim 24, further comprising a first solenoid coupled to the first valve and a second solenoid coupled to the second valve.
- 28. The patient support of claim 24, further comprising an exterior housing and an interior housing, the plurality of ports of the chamber being on the exterior housing.
- 29. A patient support having a longitudinal axis, the patient support comprising:a plurality of bladders, a first valve having a first valve inlet and a first valve outlet, a second valve having a second valve inlet and a second valve outlet, a chamber including a plurality of ports, each of the plurality of ports being coupled to one of the plurality of bladders, the chamber defining the first valve outlet and the second valve inlet, and a solenoid coupled to one of the first and second valves, the solenoid including a casing and a core, the core being coupled to the one of the first and second valves coupled to the solenoid, and the solenoid further comprising a resilient stop and spring abutting the core.
- 30. The patient support of claim 29, further comprising a controller coupled to the first and second valves, the controller being configured to control movement of the first and second valves to produce one of percussion and vibration air pressure pulses.
- 31. The patient support of claim 29, further comprising an exterior housing and an interior housing, the plurality of ports of the chamber being on the exterior housing.
- 32. The patient support of claim 31, wherein the first and second valves are positioned in the interior housing.
CROSS-REFERENCE
This application claims the benefit of U.S. Provisional Application Ser. No. 06/056,763 filed Aug. 25, 1997 with respect to common subject matter and the application is incorporated by reference herein.
US Referenced Citations (30)
Foreign Referenced Citations (4)
Number |
Date |
Country |
0 260 087 |
Mar 1988 |
EP |
0 606 126 |
Jul 1994 |
EP |
7309831 |
Jan 1974 |
NL |
WO 9602760 |
Feb 1996 |
WO |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/056763 |
Aug 1997 |
US |