Claims
- 1. A capacitive probe for measuring a level, in a vessel, of an electrically conducive fluid, comprising:
a tubular element made of an electrically insulating material with a first face in physical contact with the electrically conductive fluid, forming a first electrode, and an opposite face in physical contact with a second electrode, and a capacitance measuring device which measures capacitance variations of the capacitor formed by the electrodes; and wherein the second electrode is made of a fusible metal alloy having a melting temperature above a maximum temperature at which the capacitive probe is intended to operate and below a temperature used to form the tubular element, the fusible metal alloy being cast within at least a part of an inner volume of the tubular element.
- 2. A capacitive probe as claimed in claim 1, wherein:
the fusible metal alloy forming the second electrode is cast between the tubular element and a central solid rod.
- 3. A capacitive probe for measuring a level, in a vessel, of an electrically conducive fluid, comprising:
a first tubular element made of an electrically insulating material with a first face in physical contact with the electrically conductive fluid, forming a first electrode, and an opposite face in physical contact with a second electrode, and a device which measures capacitance variations of a capacitor formed by the electrodes; and wherein the second electrode is made of a fusible metal alloy having a melting temperature above a maximum temperature at which the capacitive probe is intended to operate and below a temperature used to form the tubular element, the fusible metal alloy being cast between the first tubular element and a conducting wall of the vessel.
- 4. A capacitive probe as claimed in claim 1, wherein the tubular element comprises:
a metal oxide.
- 5. A capacitive probe as claimed in claim 4, wherein:
the metal oxide comprises zirconia.
- 6. A capacitive probe as claimed in claim 4, wherein:
the metal oxide comprises alumina.
- 7. A capacitive probe as claimed in claim 2, wherein the tubular element comprises:
a metal oxide.
- 8. A capacitive probe as claimed in claim 7, wherein:
the metal oxide comprises zirconia.
- 9. A capacitive probe as claimed in claim 7, wherein:
the metal oxide comprises alumina.
- 10. A capacitive probe as claimed in claim 3, wherein the tubular element comprises:
a metal oxide.
- 11. A capacitive probe as claimed in claim 10, wherein:
the metal oxide comprises zirconia.
- 12. A capacitive probe as claimed in claim 10, wherein:
the metal oxide comprises alumina.
- 13. A capacitive probe for measuring the level, in a vessel, of an electrically conductive fluid, comprising:
a tubular element made of an electrically insulating material with a first face in physical contact with the electrically conductive fluid, forming a first electrode, and an opposite face in physical contact with a second electrode and a capacitance sensor which measures capacitance variations of a capacitor formed by the electrodes; and wherein the second electrode is made of a fusible metal alloy deposited on the opposite face of the tubular element made of the electrically insulating material, the alloy having a melting temperature above a maximum temperature at which the capacitive probe is intended to operate and below a temperature used to form the tubular element.
- 14. A capacitive probe as claimed in claim 13, wherein:
the second electrode is formed by filling the inner space of tubular element with a fusible alloy.
- 15. A capacitive probe as claimed in claim 13, wherein:
the second electrode is cast between the inner face of tubular element and a central core.
- 16. A capacitive probe as claimed in claim 15, wherein:
the central core comprises a solid rod.
- 17. A capacitive probe as claimed in claim 13, wherein:
the second tubular element is within the vessel and electrically insulates a wall of the vessel from the electrically conductive fluid contained therein.
- 18. A capacitive probe as claimed in claim 17, wherein:
the second electrode is made of a fusible alloy having a melting temperature above a maximum temperature within which the capacitive probe is intended to operate and below the temperature used to form the tubular elements.
- 19. A capacitive probe as claimed in claim 18, wherein:
the tubular elements are made from a heat-resisting material.
Priority Claims (1)
Number |
Date |
Country |
Kind |
99/08606 |
Jul 1999 |
FR |
|
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is a Divisional application of and claims the benefit of the filing date of U.S. patent application Ser. No. 09/608,152, filed Jun. 30, 2000, entitled “Capacitive Probe for Measuring the Level of an Electricity-Conducting Liquid in a Vessel and Method of Manufacturing Such a Probe”, which application is incorporated herein by reference in its entirety.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09608152 |
Jun 2000 |
US |
Child |
10396569 |
Mar 2003 |
US |