Claims
- 1. A pressure sensor configured to sense an applied pressure, comprising:
a diaphragm support structure; a diaphragm coupled to the diaphragm support structure and configured to deflect in response to applied pressure; a moveable member coupled to the diaphragm and configured to move in response to deflection of the diaphragm; and an optical interference element coupled to the moveable member and configured to interfere with incident light, wherein the interference is a function of position of the moveable member.
- 2. The pressure sensor of claim 1 wherein the optical interference element is configured to interfere with light having a vector component perpendicular with a direction of movement of the moveable member.
- 3. The pressure sensor of claim 1 wherein the optical interference element comprises a grating.
- 4. The pressure sensor of claim 1 wherein the optical interference element comprises a reflective element.
- 5. The pressure sensor of claim 1 including a light source configured to direct light toward the optical interference element and a receiver configured to receive light from the light source which has been interfered with by the optical interference element.
- 6. The pressure sensor of claim 5 wherein the source is directed at the receiver.
- 7. The pressure sensor of claim 5 wherein the receiver receives light reflected by the optical interference element.
- 8. The pressure sensor of claim 5 wherein at least one of the source and receiver includes an optical fiber.
- 9. The pressure sensor of claim 1 wherein the applied pressure comprises a differential pressure.
- 10. The pressure sensor of claim 1 wherein the applied pressure comprises an absolute pressure.
- 11. The pressure sensor of claim 1 wherein the applied pressure comprises a gauge pressure.
- 12. The pressure sensor of claim 1 wherein the diaphragm support structure includes an outer periphery configured to receive the moveable member therein.
- 13. The pressure sensor of claim 12 wherein the outer periphery includes an annular circuitry configured to receive deflection of the diaphragm.
- 14. The pressure sensor of claim 1 including an opposed diaphragm coupled to the moveable member of the diaphragm support.
- 15. The pressure sensor of claim 14 wherein the diaphragm support includes first and second outer peripheries.
- 16. The pressure sensor of claim 1 wherein the diaphragm support is substantially transparent.
- 17. The pressure sensor of claim 1 wherein the diaphragm support comprises sapphire.
- 18. The pressure sensor of claim 1 including at least one direct fusion bond.
- 19. A process transmitter including a pressure sensor in accordance with claim 1.
- 20. The process transmitter of claim 19 including I/O circuitry configured to couple to a two-wire process loop.
- 21. The pressure sensor of claim 1 wherein the light comprises visible light.
- 22. The pressure sensor of claim 1 wherein the diaphragm and moveable member are integral.
- 23. The pressure sensor of claim 1 wherein the optical interference element is deposited on the diaphragm.
- 24. The pressure sensor of claim 1 wherein the optical interference element is integral with the diaphragm.
- 25. The pressure sensor of claim 1 wherein the diaphragm is in direct contact with a process fluid which provides the applied pressure.
- 26. The pressure sensor of claim 1 wherein the diaphragm is isolated from the process fluid by an isolation fluid.
- 27. The pressure sensor of claim 14 wherein the moveable member is coupled between the diaphragms.
- 28. The pressure sensor of claim 27 wherein each diaphragm includes opposed moveable members coupled therebtween.
- 29. The pressure sensor of claim 28 wherein the moveable members are integral with the diaphragms.
Parent Case Info
[0001] The present application is based on and claims the benefit of U.S. provisional patent application Ser. No. 60/181,866, filed Feb. 11, 2000, the content of which is hereby incorporated by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
|
60181866 |
Feb 2000 |
US |