Claims
- 1. A pressure regulator comprising:
a main housing having an inlet and an outlet, a fluid flow path being defined between the inlet and the outlet; a throttling element moveable in the fluid flow path; and a throttling element position sensor including:
a magnet housing supported in fixed relation to the main housing and defining an inner surface; a magnet sized for insertion into the magnet housing and adapted for movement with the throttling element, the magnet having a north pole and a south pole, wherein the magnet generates a magnetic flux; a centering ring positioned between the magnet and the magnet housing, the centering ring including a biased wall acting to center the magnet in the magnet housing; and a magnetic field sensor positioned to detect the magnet flux.
- 2. The regulator of claim 1, in which the centering ring comprises a resilient member and a rigid member, the rigid member defining the biased wall.
- 3. The regulator of claim 2, in which the resilient member comprises a rubber O-ring.
- 4. The regulator of claim 2, in which the resilient member comprises an annular spring.
- 5. The regulator of claim 2, in which the rigid member comprises a plastic ring.
- 6. The regulator of claim 1, further comprising a flux-shaping pole piece on each of the north and south poles of the magnet.
- 7. The regulator of claim 1, in which the centering ring is supported for movement with the magnet, and in which the resilient member comprises an inner ring and the rigid member comprises an outer ring, the outer ring having an outer wall defining the biased wall, the outer wall being biased outwardly to engage the inner surface of the magnet housing.
- 8. The regulator of claim 7, further comprising a shuttle having a central bore sized to receive the magnet and an outer surface sized for insertion into the magnet housing, the outer surface defining a groove sized to receive an inner portion of the centering ring.
- 9. The regulator of claim 8, further comprising a flux-shaping pole piece on each of the north and south poles of the magnet, wherein the shuttle includes two end recesses sized to receive the flux-shaping pole pieces.
- 10. The regulator of claim 1, in which the centering ring is fixed relative to the magnet housing, wherein the resilient member comprises an outer ring and the rigid member comprises an inner ring, the inner ring having an inner wall defining the biased wall, wherein the outer ring inwardly biases the inner wall.
- 11. The regulator of claim 10, further comprising a shuttle having a central bore sized to receive the magnet and an outer surface sized for insertion into the magnet housing, the magnet housing inner surface defining a groove sized to receive an outer portion of the centering ring, wherein the inner wall engages the shuttle outer surface.
- 12. The regulator of claim 11, further comprising a flux-shaping pole piece on each of the north and south poles of the magnet, wherein the shuttle includes two end recesses sized to receive the flux-shaping pole pieces.
- 13. The regulator of claim 1, further comprising a second centering ring positioned between the magnet and the magnet housing, the second centering ring including a biased wall acting to center the magnet in the magnet housing.
- 14. The regulator of claim 1, further comprising a travel indicator connected at one end to the throttling element and at an opposite end to the magnet.
- 15. A magnet assembly for use with a magnetic flux sensor to provide a position sensor adapted to detect a position of a moveable member, the magnet assembly comprising:
a magnet housing defining an inner surface; a magnet sized for insertion into the magnet housing and adapted for movement with the moveable member, the magnet having a north pole and a south pole, wherein the magnet generates a magnetic flux; and a centering ring positioned between the magnet and the magnet housing, the centering ring including a biased wall acting to center the magnet in the magnet housing.
- 16. The magnet assembly of claim 15, in which the centering ring comprises a resilient member and a rigid member, the rigid member defining the biased wall.
- 17. The magnet assembly of claim 16, in which the resilient member comprises a rubber O-ring.
- 18. The magnet assembly of claim 16, in which the resilient member comprises an annular spring.
- 19. The magnet assembly of claim 16, in which the rigid member comprises a plastic ring.
- 20. The magnet assembly of claim 15, further comprising a flux-shaping pole piece on each of the north and south poles of the magnet.
- 21. The magnet assembly of claim 15, in which the centering ring is supported for movement with the magnet, and in which the resilient member comprises an inner ring and the rigid member comprises an outer ring, the outer ring having an outer wall defining the biased wall, the outer wall being biased outwardly to engage the inner surface of the magnet housing.
- 22. The magnet assembly of claim 21, further comprising a shuttle having a central bore sized to receive the magnet and an outer surface sized for insertion into the magnet housing, the outer surface defining a groove sized to receive an inner portion of the centering ring.
- 23. The magnet assembly of claim 22, further comprising a flux-shaping pole piece on each of the north and south poles of the magnet, wherein the shuttle includes two end recesses sized to receive the flux-shaping pole pieces.
- 24. The magnet assembly of claim 15, in which the centering ring is fixed relative to the magnet housing, and in which the resilient member comprises an outer ring and the rigid member comprises an inner ring, the inner ring having an inner wall defining the biased wall, wherein the outer ring inwardly biases the inner wall.
- 25. The magnet assembly of claim 24, further comprising a shuttle having a central bore sized to receive the magnet and an outer surface sized for insertion into the magnet housing, the magnet housing inner surface defining a groove sized to receive an outer portion of the centering ring, wherein the inner wall of the inner ring engages the shuttle outer surface.
- 26. The magnet assembly of claim 25, further comprising a flux-shaping pole piece on each of the north and south poles of the magnet, wherein the shuttle includes two end recesses sized to receive the flux-shaping pole pieces.
- 27. The magnet assembly of claim 15, further comprising a second centering ring positioned between the magnet and the magnet housing, the second centering ring including a biased wall acting to center the magnet in the magnet housing.
- 28. The magnet assembly of claim 15, in which the moveable member comprises a throttling member of a regulator, and in which a travel indicator is connected at one end to the throttling element and at an opposite end to the magnet.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This is a continuation-in-part of Application No. 09/603,474 which was filed on Jun. 23, 2000, which claims the benefit under 35 U.S.C. § 119(e) of U.S. provisional patent application Ser. No. 60/141,576 filed Jun. 29, 1999, the disclosures of which are incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
|
60141576 |
Jun 1999 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09603474 |
Jun 2000 |
US |
Child |
09761427 |
Jan 2001 |
US |