Claims
- 1. A breathing regulator comprising:
a housing; a diaphragm assembly disposed within the housing; and a non-linear positive pressure spring, operably connected between the diaphragm assembly and the housing and arranged to bias the diaphragm assembly in a closed or sealed position within the housing.
- 2. The breathing regulator of claim 1, wherein the non-linear positive pressure spring is arranged to maintain the diaphragm assembly in the closed or sealed position during the inhalation phase of a breathing cycle and to permit the diaphragm assembly to move to an open position when the air pressure achieved during the exhalation phase of the breathing cycle is sufficient to overcome the biasing force applied by the spring.
- 3. The breathing regulator of claim 2, wherein the amount of force required to maintain the diaphragm assembly in an open position is less than the amount of force required to move the diaphragm assembly to the open position.
- 4. The breathing regulator of claim 3, wherein the non-linear positive pressure spring is a coil spring arranged to collapse or buckle when a sufficient amount of force is applied thereto.
- 5. The breathing regulator of claim 4, wherein the housing includes a mounting post on which one end of the spring is retained.
- 6. The breathing regulator of claim 4, wherein movement of the sensing diaphragm from the closed or sealed position causes the spring to compress until a predetermined position is reached, at which point further movement of the sensing diaphragm causes the spring to collapse.
- 7. The breathing regulator of claim 6, wherein the point at which further movement of the sensing diaphragm causes the spring to collapse is reached when a central region of the spring is displaced relative to the ends of the spring by an amount sufficient to cause the spring to begin to fall out of compression.
- 8. The breathing regulator of claim 4, wherein the coil is connected between the diaphragm assembly and the housing and arranged such that the body of the coil includes a first bend near its interconnection with the housing and a second bend near its interconnection with the diaphragm assembly.
- 9. The breathing regulator of claim 2, further comprising an air saver lever interconnected between one end of the spring and the diaphragm assembly.
- 10. The breathing regulator of claim 2, wherein the housing includes a cover sub-assembly and a regulator body.
- 11. An air supplied respirator having a breathing regulator comprised of:
a housing; a diaphragm assembly disposed within the housing; and a non-linear positive pressure spring, operably connected between the diaphragm assembly and the housing and arranged to bias the diaphragm assembly in a closed or sealed position within the housing.
- 12. The air supplied respirator of claim 11, wherein the non-linear positive pressure spring is arranged to maintain the diaphragm assembly in the closed or sealed position during the inhalation phase of a breathing cycle and to permit the diaphragm assembly to move to an open position when the air pressure achieved during the exhalation phase of the breathing cycle is sufficient to overcome the biasing force applied by the spring.
- 13. The air supplied respirator of claim 12, wherein the amount of force required to maintain the diaphragm assembly in an open position is less than the amount of force required to move the diaphragm assembly to the open position.
- 14. The air supplied respirator of claim 13, wherein the non-linear positive pressure spring is a coil spring arranged to collapse or buckle when a sufficient amount of force is applied thereto.
- 15. The air supplied respirator of claim 14, wherein the housing includes a mounting post on which one end of the spring is retained.
- 16. The air supplied respirator of claim 14, wherein movement of the sensing diaphragm from the closed or sealed position causes the spring to compress until a predetermined position is reached, at which point further movement of the sensing diaphragm causes the spring to collapse.
- 17. The air supplied respirator of claim 16, wherein the point at which further movement of the sensing diaphragm causes the spring to collapse is reached when a central region of the spring is displaced relative to the ends of the spring by an amount sufficient to cause the spring to begin to fall out of compression.
- 18. The air supplied respirator of claim 14, wherein the coil is connected between the diaphragm assembly and the housing and arranged such that the body of the coil includes a first bend near its interconnection with the housing and a second bend near its interconnection with the diaphragm assembly.
- 19. The air supplied respirator of claim 12, further comprising an air saver lever interconnected between one end of the spring and the diaphragm assembly.
- 20. The air supplied respirator of claim 12, wherein the housing includes a cover sub-assembly and a regulator body.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is entitled to the benefit of, and claims priority to, provisional U.S. Patent Application Ser. No. 60/465,356 filed Apr. 25, 2003 and entitled “CBRN (CHEMICAL, BIOLOGICAL, RADIOLOGICAL AND NUCLEAR) REGULATOR,” the entirety of which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60465356 |
Apr 2003 |
US |