Claims
- 1. A gas pressure driven fluid pump, said pump comprising:
a pump tank having a liquid inlet and a liquid outlet; a float assembly including a buoyant float carried within the interior of said pump tank, said float being operable to move between a low level position and a high level position; a compression spring having a first end and a second end, said first end being operatively connected to said float assembly; a pivot member operatively connected to said second end of said compression spring, said pivot member rotating to a first position when said float reaches said high level position and said pivot member rotating to a second position when said float reaches said low level position; and a valve assembly connected to said pivot member, said valve assembly being switchable between motive porting and exhaust porting in a snap over fashion due to rotation of said pivot member between said first position and said second position.
- 2. The pump as recited in claim 1, further comprising an anchor located at said second end of said compression spring, said anchor having a socket that is engaged by said pivot member.
- 3. The pump as recited in claim 2, wherein said pivot member has a tip portion engaging said socket of said anchor.
- 4. The pump as recited in claim 2, wherein at least one wall protrudes from the periphery of said socket so as to prevent lateral disengagement by said tip portion.
- 5. The pump as recited in claim 3, wherein said tip portion is formed from tungsten carbide.
- 6. The pump as recited in claim 1, wherein said float assembly includes a pair of float arms pivotally connected to a stationary support structure.
- 7. The pump as recited in claim 6, further comprising a support member extending from each of said float arms.
- 8. The pump as recited in claim 6, wherein said compression spring is positioned between said float arms.
- 9. The pump as recited in claim 1, further comprising a damper system operatively connected to said pivot member.
- 10. The pump as recited in claim 9, wherein said damper system comprises a plate attached to said pivot member.
- 11. The pump as recited in claim 1, further comprising a magnet located within said tank.
- 12. The pump as recited in claim 1, wherein said float is pressurized.
- 13. The pump as recited in claim 1, wherein said pivot member rotates between said first position and said second position about a fulcrum and said valve assembly has a push rod, said push rod being pivotally connected to said pivot member at a location offset from said fulcrum.
- 14. The pump as recited in claim 13, further comprising an anchor located at said second end of said compression spring, said pivot member having a tip portion engaging a socket of said anchor.
- 15. The pump as recited in claim 13, wherein said pivot member is dimensioned such that a first distance is defined between said fulcrum and a distal end of said tip portion of said pivot member is greater than a second distance defined between said fulcrum and the pivotal connection between said push rod and said pivot member.
- 16. The pump as recited in claim 13, wherein rotational movement of said pivot member causes movement of said push rod about its longitudinal axis.
- 17. The pump as recited in claim 13, further comprising a guide for controlling the path of said push rod.
- 18. The pump as recited in claim 1, wherein said valve assembly includes a motive valve connected between said pump tank and a source of motive gas and an exhaust valve connected between said tank and a sink, both said motive valve and said exhaust valve being operatively interconnected such that one will be open while the other is closed.
- 19. The pump as recited in claim 1, further comprising an upper stop for limiting upward movement of said float assembly from extending beyond said high level position.
- 20. The pump as recited in claim 1, further comprising a lower stop for limiting downward movement of said float assembly from extending beyond said low level position.
- 21. The pump as recited in claim 6, further comprising an anchor located at said first end of said compression spring, said anchor having a socket that is engaged by at least one of said float arms.
- 22. The pump as recited in claim 21, wherein at least one of said float arms has a tip portion that engages said socket.
- 23. The pump as recited in claim 22, wherein said tip portion has a radius in the range of approximately 0.030 inches to approximately 0.047 inches.
- 24. The pump as recited in claim 23, wherein said socket has a radius in the range of approximately 0.047 inches to approximately 0.063 inches.
- 25. The pump as recited in claim 1, wherein said valve assembly has a valve seat formed from a hardened metallic alloy.
- 26. A gas pressure driven fluid pump, said pump comprising:
a pump tank having a liquid inlet and a liquid outlet; a float assembly including a buoyant float carried within the interior of said pump tank, said float assembly being operable to move between a low level position and a high level position; a valve assembly operatively connected to said float, said valve assembly being switchable between motive porting and exhaust porting in a snap over fashion due to rotation of said float between said high level position and said low level position; and a damper system operatively connected to said valve assembly, said damper system slowing movement of said valve assembly to said motive porting and said exhaust porting.
- 27. The pump as recited in claim 26, wherein said damper system comprises a plate configured to create a drag through liquid in said tank.
- 28. The pump as recited in claim 26, further comprising a magnet located within said tank.
- 29. A gas pressure driven fluid pump, said pump comprising:
a pump tank having a liquid inlet and a liquid outlet; means for detecting a low liquid level within said pump tank and a high liquid level within said pump tank; a valve assembly operatively connected to detecting means, said valve assembly being switchable between motive porting and exhaust porting in a snap over fashion responsive to said detecting means; a damper system operatively connected to said valve assembly, said damper system slowing movement of said valve assembly to said motive porting and said exhaust porting; and said valve assembly moving to said motive porting when said detecting means detects a high liquid level within said pump tank and to exhaust porting when said detecting means detects a low liquid level within said pump said such that liquid will be alternately introduced into and discharged from said pump tank.
PRIORITY CLAIM
[0001] This application claims priority to Provisional Application No. 60/433,315, filed on Dec. 13, 2002, which is hereby incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60433315 |
Dec 2002 |
US |