IP Library Granted Patent US 9,733,106
Granted Patent B2
US 9,733,106 · App. 14/830,098 · Granted Aug 15, 2017

Magnetic field sensor to detect a magnitude of a magnetic field in any direction

Inventors: Joseph James Judkins, III (Bedford, NH); Ryan Jon Metivier (Nashua, NH); Gerardo A. Monreal (Buenos Aires, AR); Bruno Luis Uberti (Ciudad de Buenos Aires, AR)
Assignee: ALLEGRO MICROSYSTEMS, LLC
G01D5/142G01B7/14G01D5/16G01R33/0023G01R33/0206G01R33/07
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Quick Facts
Patent No.
US 9,733,106
App. No.
14/830,098
Granted
Aug 15, 2017
Kind
B2
Abstract

In one aspect, a magnetic field sensor includes first and second magnetic field sensing elements having respective first and second maximum response axes. The first and second maximum response axes point along respective first and second different coordinate axes. In response to a magnetic field, the first and second magnetic field sensing elements are operable to generate first and second magnetic field signals. The magnetic field sensor includes an electronic circuit coupled to receive the first and the second magnetic field signals. The electronic circuit is configured to determine a magnitude of a vector sum of the first and the second magnetic field signals and provide one or more signals in response to the magnitude of the vector sum determined.

Claims (82)

1. A magnetic field sensor, comprising:

first and second magnetic field sensing elements having respective first and second maximum response axes, the first and second maximum response axes pointing along respective first and second different coordinate axes, wherein, in response to a magnetic field, the first and second magnetic field sensing elements are operable to generate first and second magnetic field signals; and

an electronic circuit coupled to receive the first and the second magnetic field signals,

wherein the electronic circuit is configured to:

determine a magnitude of a vector sum of the first and the second magnetic field signals; and

provide one or more signals in response to the magnitude of the vector sum determined,

wherein the electronic circuit configured to provide one or more signals in response to the magnitude of the vector sum determined comprises an electronic circuit configured to provide a warning signal if the vector sum of the magnetic field exceeds a threshold value, and

wherein the threshold varies as a function of a phase of the vector sum.

2. The magnetic field sensor of claim 1 , wherein the first and second coordinate axes represent orthogonal Cartesian coordinates.

3. The magnetic field sensor of claim 1 , wherein the first magnetic field sensing element comprises a planar Hall element and the second magnetic field sensing element comprises a first vertical Hall element.

4. The magnetic field sensor of claim 1 , wherein the first magnetic field sensing element comprises a first vertical Hall element and the second magnetic field sensing element comprises a second vertical Hall element.

5. The magnetic field sensor of claim 1 , wherein the first and the second magnetic field sensing elements are chopped, and

further comprising a common circuit channel comprising a switched capacitor notch filter having a first notch at a frequency selected to remove products of the chopping.

6. The magnetic field sensor of claim 1 , wherein the first magnetic field sensing element comprises a planar Hall element and the second magnetic field sensing element comprises a first magnetoresistance circuit.

7. The magnetic field sensor of claim 1 , wherein the first magnetic field sensing element comprises a first magnetoresistance circuit and the second magnetic field sensing element comprises a second magnetoresistance circuit.

8. The magnetic field sensor of claim 1 , wherein the first magnetic field sensing element is chopped with a chopping frequency of Fchop, and wherein the electronic circuit comprises a switched capacitor notch filter coupled to the first magnetic field sensing element and having a first notch at a frequency of Fchop.

9. The magnetic field sensor of claim 1 , wherein the electronic circuit configured to provide one or more signals in response to the magnitude of the vector sum determined comprises an electronic circuit further configured to provide a signal indicating the magnitude of the vector sum.

10. The magnetic field sensor of claim 1 , wherein the electronic circuit configured to provide one or more signals in response to the magnitude of the vector sum determined comprises an electronic circuit further configured to provide one or more signals in response to the magnitude of the vector sum determined exceeding an adjustable threshold.

11. The magnetic field sensor of claim 1 , wherein the electronic circuit configured to provide one or more signals in response to the magnitude of the vector sum determined comprises an electronic circuit configured to provide a signal indicating the magnitude of the vector sum.

12. A magnetic field sensor, comprising:

first, second, and third magnetic field sensing elements having respective first, second and third maximum response axes, the first, second and third maximum response axes pointing along respective first, second, and third different coordinate axes, wherein, in response to a magnetic field, the first, second, and third magnetic field sensing elements are operable to generate first, second, and third magnetic field signals; and

an electronic circuit coupled to receive the first, the second and the third magnetic field signals,

wherein the electronic circuit is configured to:

determine a magnitude of a vector sum of the first, the second and the third magnetic field signals; and

provide one or more signals in response to the magnitude of the vector sum determined,

wherein the electronic circuit configured to provide one or more signals in response to the magnitude of the vector sum determined comprises an electronic circuit configured to provide a warning signal if the vector sum of the magnetic field exceeds a threshold value, and

wherein the threshold varies as a function of a phase of the vector sum.

13. The magnetic field sensor of claim 12 , wherein the first, second, and third coordinate axes represent orthogonal Cartesian coordinates.

14. The magnetic field sensor of claim 12 , wherein the first magnetic field sensing element comprises a planar Hall element, the second magnetic field sensing element comprises a first vertical Hall element, and the third magnetic field sensing element comprises a second vertical Hall element.

15. The magnetic field sensor of claim 12 , wherein the first, second and third magnetic field sensing elements are chopped, and

further comprising a common circuit channel comprising a switched capacitor notch filter having a first notch at a frequency selected to remove products of the chopping.

16. The magnetic field sensor of claim 12 , wherein the first magnetic field sensing element comprises a planar Hall element, the second magnetic field sensing element comprises a first magnetoresistance circuit, and the third magnetic field sensing element comprises a second magnetoresistance circuit.

17. The magnetic field sensor of claim 15 , wherein the first magnetic field sensing element is chopped with a chopping frequency of Fchop, and wherein the electronic circuit comprises a switched capacitor notch filter coupled to the first magnetic field sensing element and having a first notch at a frequency of Fchop.

18. The magnetic field sensor of claim 12 , wherein the electronic circuit configured to provide one or more signals in response to the magnitude of the vector sum determined comprises an electronic circuit further configured to provide a signal indicating the magnitude of the vector sum.

19. The magnetic field sensor of claim 12 , wherein the electronic circuit configured to provide one or more signals in response to the magnitude of the vector sum determined comprises an electronic circuit further configured to provide one or more signals in response to the magnitude of the vector sum determined exceeding an adjustable threshold.

20. The magnetic field sensor of claim 12 , wherein the electronic circuit configured to provide one or more signals in response to the magnitude of the vector sum determined comprises an electronic circuit configured to provide a signal indicating the magnitude of the vector sum.

21. A method comprising:

receiving a first magnetic field signal from a first magnetic field sensing element;

receiving a second magnetic field signal from a second magnetic field sensing element, the first and second magnetic field sensing elements having respective first and second maximum response axes, the first second and second maximum response axes pointing along respective first and second different coordinate axes, wherein, in response to a magnetic field, the first and second magnetic field sensing elements are operable to generate the first and the second magnetic field signals;

determining a magnitude of a vector sum of the first and the second magnetic field signals; and

providing one or more signals in response to the magnitude of the vector sum determined,

wherein providing one or more signals in response to the magnitude of the vector sum determined comprises providing a warning signal if the vector sum of the magnetic field exceeds a threshold value,

wherein the threshold varies as a function of a phase of the vector sum.

22. The method of claim 21 , further comprising receiving a third magnetic field signal from a third magnetic field sensing element, wherein the third magnetic field sensing element having a third maximum response axis, the third maximum response axis pointing along respective the third different coordinate axis, wherein, in response to a magnetic field, the third magnetic field sensing element is operable to generate the third magnetic field signal,

wherein determining a magnitude of a vector sum of the first and the second magnetic field signals comprises determining a magnitude of a vector sum of the first, the second and the third magnetic field signals.

23. The method of claim 22 , wherein receiving the first magnetic field signal from the first magnetic field sensing element comprises receiving the first magnetic field signal from a planar Hall element,

wherein receiving the second magnetic field signal from the second magnetic field sensing element comprises receiving the second magnetic field signal from a first vertical Hall element, and

wherein receiving the third magnetic field signal from the third magnetic field sensing element comprises receiving the third magnetic field signal from a second vertical Hall element.

24. The method of claim 21 , wherein the threshold value is adjustable by a user.

25. The method of claim 21 , wherein providing one or more signals in response to the magnitude of the vector sum determined comprises providing a signal indicating the magnitude of the vector sum.

26. The method of claim 21 , wherein providing one or more signals in response to the magnitude of the vector sum determined comprises providing a signal indicating the magnitude of the vector sum.

27. A method comprising:

receiving a first magnetic field signal from a first magnetic field sensing element

receiving a second magnetic field signal from a second magnetic field sensing element, the first and second magnetic field sensing elements having respective first and second maximum response axes, the first second and second maximum response axes pointing along respective first and second different coordinate axes, wherein, in response to a magnetic field, the first and second magnetic field sensing elements are operable to generate the first and the second magnetic field signals;

determining a magnitude of a vector sum of the first and the second magnetic field signals; and

providing one or more signals in response to the magnitude of the vector sum determined,

wherein determining a magnitude of a vector sum of the first and the second magnetic field signals comprises:

converting the first and second magnetic field signals to digital values;

using the digital values to look up values in a table to determine if the vector is outside a circle.

28. A method comprising:

receiving a first magnetic field signal from a first magnetic field sensing element

receiving a second magnetic field signal from a second magnetic field sensing element, the first and second magnetic field sensing elements having respective first and second maximum response axes, the first second and second maximum response axes pointing along respective first and second different coordinate axes, wherein, in response to a magnetic field, the first and second magnetic field sensing elements are operable to generate the first and the second magnetic field signals;

determining a magnitude of a vector sum of the first and the second magnetic field signals; and

providing one or more signals in response to the magnitude of the vector sum determined,

wherein determining a magnitude of a vector sum of the first, the second and the third magnetic field signals comprises:

converting the first, second and third magnetic field signals to digital values;

using the digital values to look up values in a table to determine if the vector is outside a sphere.

29. The method of claim 21 , wherein determining a magnitude of a vector sum of the first, the second and the third magnetic field signals comprises:

converting the first, second and third magnetic field signals to digital values;

using the digital values to look up values in a table to determine if the vector exceeds a predetermined response.

30. The method of claim 27 , further comprising receiving a third magnetic field signal from a third magnetic field sensing element, wherein the third magnetic field sensing element having a third maximum response axis, the third maximum response axis pointing along respective the third different coordinate axis, wherein, in response to a magnetic field, the third magnetic field sensing element is operable to generate the third magnetic field signal,

wherein determining a magnitude of a vector sum of the first and the second magnetic field signals comprises determining a magnitude of a vector sum of the first, the second and the third magnetic field signals.

31. The method of claim 30 , wherein receiving the first magnetic field signal from the first magnetic field sensing element comprises receiving the first magnetic field signal from a planar Hall element,

wherein receiving the second magnetic field signal from the second magnetic field sensing element comprises receiving the second magnetic field signal from a first vertical Hall element, and

wherein receiving the third magnetic field signal from the third magnetic field sensing element comprises receiving the third magnetic field signal from a second vertical Hall element.

32. The method of claim 27 , wherein providing one or more signals in response to the magnitude of the vector sum determined comprises providing a signal indicating the magnitude of the vector sum.

33. The method of claim 28 , further comprising receiving a third magnetic field signal from a third magnetic field sensing element, wherein the third magnetic field sensing element having a third maximum response axis, the third maximum response axis pointing along respective the third different coordinate axis, wherein, in response to a magnetic field, the third magnetic field sensing element is operable to generate the third magnetic field signal,

wherein determining a magnitude of a vector sum of the first and the second magnetic field signals comprises determining a magnitude of a vector sum of the first, the second and the third magnetic field signals.

34. The method of claim 33 , wherein receiving the first magnetic field signal from the first magnetic field sensing element comprises receiving the first magnetic field signal from a planar Hall element,

wherein receiving the second magnetic field signal from the second magnetic field sensing element comprises receiving the second magnetic field signal from a first vertical Hall element, and

wherein receiving the third magnetic field signal from the third magnetic field sensing element comprises receiving the third magnetic field signal from a second vertical Hall element.

35. The method of claim 28 , wherein providing one or more signals in response to the magnitude of the vector sum determined comprises providing a signal indicating the magnitude of the vector sum.

Assignments (6)
RELEASE OF SECURITY INTEREST IN PATENTS AT REEL 053957/FRAME 0874 Recorded Nov 1, 2023
From: CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH, AS COLLATERAL AGENT
To: ALLEGRO MICROSYSTEMS, LLC
Reel/Frame 065420/0572 →
RELEASE OF SECURITY INTEREST IN PATENTS (R/F 053957/0620) Recorded Jun 22, 2023
From: MIZUHO BANK, LTD., AS COLLATERAL AGENT
To: ALLEGRO MICROSYSTEMS, LLC
Reel/Frame 064068/0360 →
PATENT SECURITY AGREEMENT Recorded Jun 22, 2023
From: ALLEGRO MICROSYSTEMS, LLC
To: MORGAN STANLEY SENIOR FUNDING, INC., AS THE COLLATERAL AGENT
Reel/Frame 064068/0459 →
PATENT SECURITY AGREEMENT Recorded Oct 1, 2020
From: ALLEGRO MICROSYSTEMS, LLC
To: MIZUHO BANK LTD., AS COLLATERAL AGENT
Reel/Frame 053957/0620 →
PATENT SECURITY AGREEMENT Recorded Oct 1, 2020
From: ALLEGRO MICROSYSTEMS, LLC
To: CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH, AS COLLATERAL AGENT
Reel/Frame 053957/0874 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2015
From: JUDKINS, JOSEPH JAMES, III; METIVIER, RYAN JON; MONREAL, GERARDO A.; UBERTI, BRUNO LUIS; ALLEGRO MICROSYSTEMS ARGENTINA S.A.
To: ALLEGRO MICROSYSTEMS, LLC
Reel/Frame 036511/0178 →
Continuity (3)
Continuation In Part 14277218 · May 14, 2014
Provisional Application 61827280 · May 24, 2013
Related Publication 20150354985A1 · Dec 10, 2015