IP Library Granted Patent US 8,058,865
Granted Patent B2
US 8,058,865 · App. 11/996,867 · Granted Nov 15, 2011

Sensor device, sensor arrangement, and method of measuring a property of an object

Assignee: NCTEngineering GmbH
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Quick Facts
Patent No.
US 8,058,865
App. No.
11/996,867
Granted
Nov 15, 2011
Kind
B2
Abstract

A sensor device measures a property of an object. The sensor device comprises a magnetic field generator adapted to generate a magnetic field in at least a part of the object, and at least one magnetic field detector adapted to detect at least one detection signal in response to the magnetic field generated in at least a part of the object. The at least one detection signal is indicative of the property of the object. A direct current or a direct voltage is applicable to the magnetic field generator to generate the magnetic field in at least a part of the object.

Claims (50)

1. A sensor device for measuring a property of an object, comprising:

a magnetic field generator generating a magnetic field in at least a part of the object; and

at least one magnetic field detector detecting at least one detection signal in response to the magnetic field generated in at least a part of the object, the at least one detection signal being indicative of the property of the object,

wherein one of a direct current and a direct voltage is applicable to the magnetic field generator to generate the magnetic field in at least a part of the object,

wherein one of the direct current and the direct voltage has a first value applied to the magnetic field generator for a first time interval and a second value applied for a second time interval to the magnetic field generator,

wherein the first value and the second value have different amplitudes, and

wherein the first value and the second value have opposite signs.

2. The sensor device of claim 1 , wherein one of the direct current and the direct voltage is adapted in such a manner that, after switching off one of the direct current and the direct voltage, the object is substantially free of a remaining magnetization.

3. The sensor device of claim 1 , wherein one of the direct current and the direct voltage is applicable to the magnetic field generator to generate the magnetic field in at least a part of the object with an amplitude of less or equal 30 Gauss.

4. The sensor device of claim 1 , wherein the direct current applicable to the magnetic field generator has an amplitude of less or equal 500 mA.

5. The sensor device claim 1 , wherein one of the direct current and the direct voltage has a constant value over at least an interval of time.

6. The sensor device of claim 1 , further comprising:

a determination unit determining at least one parameter indicative of the property of the object based on the at least one detection signal.

7. The sensor device of claim 1 , wherein the magnetic field generator is a magnetic field generator coil.

8. The sensor device of claim 1 , wherein the magnetic field generator has a reception for receiving the object.

9. The sensor device of claim 8 , wherein the reception is a central opening provided in the magnetic field generator.

10. The sensor device of claim 1 , wherein at least one of the first time interval and the second time interval is between 1 ms and 500 ms.

11. The sensor device of claim 1 , wherein at least one of the first time interval and the second time interval is between 20 ms and 100 ms.

12. The sensor device of claim 1 , wherein the at least one magnetic field detector in arranged on the magnetic field generator.

13. The sensor device of claim 1 , wherein the at least one magnetic field detector in integrated in the magnetic field generator.

14. The sensor device of claim 1 , further comprising:

two magnetic field detectors arranged symmetrically on the magnetic field generator.

15. The sensor device of claim 1 , further comprising:

a plurality of magnetic field detectors.

16. The sensor device of claim 1 , wherein the at least one magnetic field detector includes at least one of the group consisting of: a coil having a coil axis oriented substantially parallel to an extension of the object; a coil having a coil axis oriented essentially perpendicular to an extension of the object; a Hall-effect probe; a Giant Magnetic Resonance magnetic field sensor; and a Magnetic Resonance magnetic field sensor.

17. The sensor device of claim 1 , wherein the property of the object is selected from the group consisting of an angular position of the object when rotating, a position of the object when reciprocating, a torque applied to the object, a force applied to the object, a shear force applied to the object, a velocity of the object, an acceleration of the object, and a power of the object.

18. The sensor device of claim 1 , wherein the property of the object is an external influence exerted on the object.

19. The sensor device of claim 1 , wherein the sensor is a portable sensor device.

20. The sensor device of claim 1 , further comprising:

a plurality of magnetic field generators.

21. The sensor device of claim 20 , wherein the plurality of magnetic field generators are arranged along an extension of the object.

22. The sensor device of claim 1 , wherein the at least one magnetic field detector is movable along an extension of the object.

23. The sensor device of claim 1 , wherein the magnetic field generator generates the magnetic field one of temporarily and permanently in at least a part of the object.

24. The sensor device of claim 1 , wherein the object is one of a movable object and a static object.

25. The sensor device of claim 1 , wherein the object is made of one of a magnetic material and a magnetizable material.

26. An arrangement, comprising:

an object; and

a sensor device including (a) a magnetic field generator generating a magnetic field in at least a part of the object; and at least one magnetic field detector detecting at least one detection signal in response to the magnetic field generated in at least a part of the object, the at least one detection signal being indicative of the property of the object,

wherein one of a direct current and a direct voltage is applicable to the magnetic field generator to generate the magnetic field in at least a part of the object,

wherein one of the direct current and the direct voltage has a first value applied to the magnetic field generator for a first time interval and a second value applied for a second time interval to the magnetic field generator,

wherein the first value and the second value have different amplitudes, and

wherein the first value and the second value have opposite signs.

27. The arrangement of claim 26 , wherein the object is at least one of the group consisting of a shaft, a tube, a disk, a ring, and a none-round object.

28. The arrangement of claim 26 , wherein the object is one of the group consisting of an engine shaft, a reciprocable work cylinder, and a push-pull-rod.

29. A method for measuring a property of an object, comprising

generating a magnetic field in at least a part of the object by applying one of a direct current and a direct voltage to a magnetic field generator; and

detecting at least one detection signal in response to the magnetic field generated in at least a part of the object, the at least one detection signal being indicative of the property of the object,

wherein one of the direct current and the direct voltage has a first value applied to the magnetic field generator for a first time interval and a second value applied for a second time interval to the magnetic field generator,

wherein the first value and the second value have different amplitudes, and

wherein the first value and the second value have opposite signs.

Assignments (2)
MERGER Recorded Jul 25, 2017
From: NCT ENGINEERING GMBH
To: NCTE AG
Reel/Frame 043088/0949 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 1, 2008
From: MAY, LUTZ
To: NCT ENGINEERING GMBH
Reel/Frame 021338/0097 →
Priority Claims (1)
EP 05018794 · Aug 30, 2005 · regional
Continuity (2)
Provisional Application 60712926 · Aug 30, 2005
Related Publication 20080315870A1 · Dec 25, 2008