IP Library Granted Patent US 10,656,170
Granted Patent B2
US 10,656,170 · App. 15/982,268 · Granted May 19, 2020

Magnetic field sensors and output signal formats for a magnetic field sensor

Inventors: Hyungsok Lim (Seongnam-si, KR); Haeyoung Choi (Nashua, NH)
Assignee: Allegro MicroSystems, LLC
G01P3/487G01P21/02H01L43/06H01L43/10
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Quick Facts
Patent No.
US 10,656,170
App. No.
15/982,268
Granted
May 19, 2020
Kind
B2
Abstract

An apparatus and a method provide an output signal indicative of a speed of rotation and/or a direction of movement of a ferromagnetic object having ferromagnetic features and capable of moving. A variety of signal formats of the output signal are described, each of which have pulses at a rate faster than the ferromagnetic features pass by the magnetic field sensor. The magnetic field sensor includes a plurality of diagnostic circuits that detect a failure of the magnetic field sensor and output a diagnostic signal indicative of the failure. The controller can receive the diagnostic signals and generate a sensor output signal including a failure state to indicate the detected failure.

Claims (33)

1. A magnetic field sensor, comprising:

one or more magnetic field sensing elements operable to generate a respective one or more magnetic field signals proportional to a magnetic field associated with a ferromagnetic object capable of moving;

one or more circuit channels coupled to receive the one or more magnetic field signals, the one or more circuit channels configured to generate a respective one or more channel signals; and

an electronic circuit coupled to receive the one or more channel signals and operable to generate an output signal comprising a plurality of signal pulses having a plurality of state transitions, the plurality of signal pulses representative of at least a rate of movement of the ferromagnetic object, wherein the plurality of state transitions comprises at least one first state transition between a first level and a second level that is higher than the first level, at least one second state transition between the first level and a third level that is higher than the second level, and at least one third state transition to a fourth level that is lower than the first level, the second level, and the third level, wherein the fourth level is indicative of a failure state of the magnetic field sensor.

2. The magnetic field sensor of claim 1 , wherein each magnetic field signal has a plurality of magnetic field signal periods as the ferromagnetic object moves, wherein the plurality of signal pulses occurs within each one of the magnetic field signal periods, and wherein the plurality of state transitions comprises at least four state transitions.

3. The magnetic field sensor of claim 2 , wherein the plurality of signal pulses comprise a plurality of PWM pulses.

4. The magnetic field sensor of claim 3 , wherein the plurality of PWM pulses comprises a plurality of PWM pulses with pulse widths that change in relation to an amplitude of the magnetic field signals at times along the magnetic field signal.

5. The magnetic field sensor of claim 3 , wherein the plurality of PWM pulses comprises a linear plurality of PWM pulses with pulse widths that change linearly within each magnetic field signal period.

6. The magnetic field sensor of claim 5 , wherein the linear plurality of PWM pulses has first and second directions of pulse width changes with time, the first and second directions representative of first and second directions of motion of the ferromagnetic object.

7. The magnetic field sensor of claim 1 , wherein the failure state comprises a warning state when a pulse width of a signal pulse of the output signal at the fourth level is less than a first predetermined value, and wherein the failure state comprises a critical state when a pulse width of a signal pulse of the output signal at the fourth level is less than a second predetermined value.

8. The magnetic field sensor of claim 7 , wherein the first predetermined value is different from the second predetermined value.

9. The magnetic field sensor of claim 7 , wherein the first predetermined value is less than the second predetermined value.

10. The magnetic field sensor of claim 7 , wherein the first predetermined value is approximately 75 microseconds and the second predetermined value is approximately 5,000 microseconds.

11. The magnetic field sensor of claim 1 , wherein the magnetic field sensor is configured to attempt a recovery from the failure state after a predetermined period of time.

12. The magnetic field sensor of claim 1 , wherein at least one of the one or more circuit channels comprises a front-end amplifier and a front-end amplifier diagnostic circuit coupled to the front-end amplifier to monitor a voltage level associated with the front-end amplifier, wherein the fourth level of the output signal is indicative of a critical state for the failure state due to the voltage level falling outside of a desired range of operation.

13. The magnetic field sensor of claim 1 , further comprising a voltage regulator and a voltage regulator diagnostic circuit coupled to the voltage regulator to monitor an operating voltage of the voltage regulator, wherein the fourth level of the output signal is indicative of a critical state for the failure state due to the operating voltage being less than a predetermined threshold value.

14. The magnetic field sensor of claim 1 , further comprising a bias current source and a bias current diagnostic circuit coupled to measure a voltage across a resistor to determine a current generated by the bias current source, wherein the fourth level of the output signal is indicative of a critical state for the failure state due to the current generated by the bias current source being less than a predetermined threshold value.

15. The magnetic field sensor of claim 1 , further comprising a magnetic field sensing element drive circuit and a magnetic field sensing element diagnostic circuit coupled to the magnetic field sensing elements to monitor a voltage across a resistor to determine a current generated by the magnetic field sensing element drive circuit, wherein the fourth level of the output signal is indicative of a critical state for the failure state due to the current generated by the magnetic field sensing element drive circuit being less than a predetermined threshold value.

16. The magnetic field sensor of claim 1 , wherein the plurality of signal pulses of the output signal are current pulses, wherein the electronic circuit comprises an output current source to generate the plurality of signal pulses of the output signal, and wherein the electronic circuit comprises an output current source diagnostic circuit configured to monitor a level of the current pulses of the output signal and compare the level of the current pulses of the output signal to a desired current level, wherein the fourth level of the output signal is indicative of a critical state for the failure state due to the level of the current pulses of the output signal not being at a desired current level.

17. The magnetic field sensor of claim 1 , wherein the electronic circuit comprises a filter saturation diagnostic circuit coupled to the one or more circuit channels to monitor the one or more channel signals, wherein the fourth level of the output signal is indicative of a critical state for the failure state due to a filter associated with the magnetic field signal becoming saturated.

18. The magnetic field sensor of claim 1 , wherein the electronic circuit comprises a controller and an over-frequency diagnostic circuit coupled to the controller and to receive and determine a frequency of the one or more magnetic field signals, wherein the fourth level of the output signal is indicative of a warning state for the failure state due to the frequency of the one or more magnetic field signals exceeding a predetermined frequency for more than a predetermined number of pulses.

19. The magnetic field sensor of claim 1 , wherein the electronic circuit comprises a controller and an output collision diagnostic circuit coupled to the controller and configured to monitor an output of the controller, wherein the fourth level of the output signal is indicative of a warning state for the failure state when three consecutive collisions occur in the output of the controller.

20. A method of indicating a failure state of a magnetic field sensor, comprising:

generating one or more magnetic field signals proportional to a magnetic field associated with a ferromagnetic object;

generating one or more channel signals with a respective one or more circuit channels coupled to receive the one or more magnetic field signals; and

generating, with an electronic circuit coupled to the one or more circuit channels, an output signal comprising a plurality of signal pulses having a plurality of state transitions, the plurality of signal pulses representative of at least a rate of movement of the ferromagnetic object, wherein the plurality of state transitions comprises at least one first state transition between a first level and a second level that is higher than the first level, at least one second state transition between the first level and a third level that is higher than the second level, and at least one third state transition to a fourth level that is lower than the first level, the second level, and the third level, wherein the fourth level is indicative of a failure state of the magnetic field sensor.

21. The method of claim 20 , wherein each magnetic field signal has a plurality of magnetic field signal periods as the ferromagnetic object moves, wherein the plurality of signal pulses occurs within each one of the magnetic field signal periods, and wherein the plurality of state transitions comprises at least four state transitions.

22. The method of claim 21 , wherein the plurality of signal pulses comprise a plurality of PWM pulses.

23. The method of claim 20 , wherein the failure state comprises a warning state when a pulse width of a signal pulse of the output signal at the fourth level is less than a first predetermined value, and wherein the failure state comprises a critical state when a pulse width of a signal pulse of the output signal at the fourth level is less than a second predetermined value.

24. An apparatus comprising:

means for generating one or more magnetic field signals proportional to a magnetic field associated with a ferromagnetic object;

means for generating one or more channel signals with a respective one or more circuit channels coupled to receive the one or more magnetic field signals; and

means for generating, with an electronic circuit coupled to the one or more circuit channels, an output signal comprising a plurality of signal pulses having a plurality of state transitions, the plurality of signal pulses representative of at least a rate of movement of the ferromagnetic object, wherein the plurality of state transitions comprises at least one first state transition between a first level and a second level that is higher than the first level, at least one second state transition between the first level and a third level that is higher than the second level, and at least one third state transition to a fourth level that is lower than the first level, the second level, and the third level, wherein the fourth level is indicative of a failure state of the magnetic field sensor.

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 May 18, 2018
From: LIM, HYUNGSOK; CHOI, HAEYOUNG; ALLEGRO MICROSYSTEMS BUSINESS DEVELOPMENT, INC.
To: ALLEGRO MICROSYSTEMS, LLC
Reel/Frame 046198/0103 →
Continuity (1)
Related Publication 20190353677A1 · Nov 21, 2019
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