IP Library Granted Patent US 6,969,987
Granted Patent B2
US 6,969,987 · App. 10/688,285 · Granted Nov 29, 2005

Hybrid inductive sensor

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Quick Facts
Patent No.
US 6,969,987
App. No.
10/688,285
Granted
Nov 29, 2005
Kind
B2
Abstract

A hybrid speed and or proximity sensor may include a variable reluctance sensor with an added excitation circuit. Similarly, a hybrid speed and or proximity sensor may include a variable inductance proximity sensor having a magnet and a magnetically permeable pole piece added in the sensor. It is emphasized that this abstract is provided to comply with the rules requiring an abstract, which will allow a searcher or other reader to quickly ascertain the subject matter of the technical disclosure. It is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims.

Claims (56)

1. A hybrid device comprising:

a sensor having a permanent magnet adjacent to a permeable pole piece and a sensor coil coupled to the pole piece providing a sensor output, the permeable pole piece is fabricated as a cylinder, the permeable pole piece having a concentric axis;

a target for interacting with the sensor;

an excitation means for energizing the sensor coil; and

an output signal detector connected to the excitation means.

2. The hybrid device according to claim 1 wherein the sensor coil is a spiral coil surrounding the permeable pole piece along the concentric axis of the permeable pole piece.

3. A hybrid device comprising:

a sensor having a permanent magnet adjacent to a permeable pole piece and a sensor coil coupled to the pole piece providing a sensor output;

a target for interacting with the sensor;

an inductive bridge for energizing the sensor coil; and

an output signal detector connected to the excitation means.

4. The hybrid device according to claim 3 further comprising: a temperature compensation coil coupled across the inductive bridge.

5. A hybrid device comprising:

a sensor having a permanent magnet adjacent to a permeable pole piece and a sensor coil coupled to the pole piece providing a sensor output;

a target for interacting with the sensor;

a Colpitts Oscillator for energizing the sensor coil; and

an output signal detector connected to the excitation means.

6. A hybrid device comprising:

a sensor having a permanent magnet adjacent to a permeable pole piece and a sensor coil coupled to the pole piece providing a sensor output;

a target for interacting with the sensor;

an excitation means for energizing the sensor coil; and

an output signal detector connected to the excitation means, the output signal detector correlates the sensor output to a target surface velocity.

7. A hybrid device comprising:

a sensor having a permanent magnet adjacent to a permeable pole piece and a sensor coil coupled to the pole piece providing a sensor output;

a target for interacting with the sensor;

an excitation means for energizing the sensor coil; and

an output signal detector connected to the excitation means, the output signal detector correlates a sensor output to proximity between the target and the sensor.

8. A hybrid device comprising:

a sensor having a permanent magnet adjacent to a permeable pole piece and a sensor coil coupled to the pole piece providing a sensor output, the permeable pole piece is fabricated as a hollow cylinder having a concentric axis;

a target for interacting with the sensor;

an excitation means for energizing the sensor coil; and

an output signal detector connected to the excitation means.

9. The hybrid device according to claim 8 wherein the sensor coil is a spiral coil within the permeable pole piece, the spiral coil is wound along the concentric axis of the permeable pole piece.

10. The hybrid device according to claim 8 wherein the permeable pole piece is fabricated as a caliper, the permeable pole piece having a concentric axis.

11. A hybrid device comprising:

a sensor having a permeable pole piece with a sensor coil coupled to the permeable pole piece;

a target having at least one permanent magnet for interacting with the sensor;

an excitation apparatus connected to the sensor coil; and

an output signal detector connected to the excitation apparatus for determining sensor output.

12. The hybrid device according to claim 11 wherein the permeable pole piece is fabricated as a cylinder, the permeable pole piece having a concentric axis.

13. The hybrid device according to claim 11 wherein the sensor coil is a spiral coil surrounding the permeable pole piece along the concentric axis of the permeable pole piece.

14. The hybrid device according to claim 11 wherein the excitation means is an inductive bridge.

15. The hybrid device according to claim 13 further comprising:

a temperature compensation coil coupled across the inductive bridge.

16. The hybrid device according to claim 11 wherein the excitation apparatus is a Colpitts Oscillator.

17. The hybrid device according to claim 11 wherein the output signal detector correlates the sensor output to the velocity of the at least one permanent magnet.

18. The hybrid device according to claim 11 wherein the output signal detector correlates a sensor output to proximity between the at least one permanent magnet and the sensor.

19. The hybrid device according to claim 11 wherein the permeable pole piece is fabricated as a hollow cylinder having a concentric axis.

20. The hybrid device according to claim 19 wherein the sensor coil is a spiral coil within the permeable pole piece, the spiral coil is wound along the concentric axis of the permeable pole piece.

21. The hybrid device according to claim 11 wherein the permeable pole piece is fabricated as a caliper, the permeable pole piece having a concentric axis.

22. The hybrid device comprising:

a sensor having a permanent magnet adjacent to a permeable pole piece and a sensor coil coupled to the pole piece, the permeable pole piece is fabricated as a cylinder, the permeable pole piece having a concentric axis, the sensor coil is a spiral coil surrounding the permeable pole piece along the concentric axis of the permeable pole piece;

a target for interacting with the sensor;

an excitation apparatus connected to the sensor coil, the excitation apparatus is an inductive bridge;

a temperature compensation coil is coupled across the inductive bridge; and

an output signal detector connected to the excitation apparatus for determining sensor output, the output signal detector correlates the sensor output to a target surface velocity measurement.

Assignments (2)
LICENSE Recorded Aug 5, 2016
From: THE BOEING COMPANY AND BOEING MANAGEMENT COMPANY
To: AEROJET ROCKETDYNE OF DE, INC. (F/K/A PRATT & WHITNEY ROCKETDYNE, INC., F/K/A RPW ACQUISITION ENTERPRISES CO.)
Reel/Frame 039595/0189 →
RELEASE OF SECURITY INTEREST Recorded Aug 5, 2016
From: U.S. BANK NATIONAL ASSOCIATION
To: AEROJET ROCKETDYNE OF DE, INC. (F/K/A PRATT & WHITNEY ROCKETDYNE, INC.)
Reel/Frame 039597/0890 →