IP Library › Granted Patent US 10,976,383
Granted Patent B2
US 10,976,383 · App. 16/587,299 · Granted Apr 13, 2021

Magnetic sensor device

Inventors: Kazuya Watanabe (Tokyo, JP); Yoshitaka Okutsu (Tokyo, JP); Masanori Yoshida (Tokyo, JP)
Assignees: TDK CORPORATION; ASAHI KASEI MICRODEVICES CORPORATION
G01R33/0206G01R33/07G01R33/098G01R33/0017
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Quick Facts
Patent No.
US 10,976,383
App. No.
16/587,299
Granted
Apr 13, 2021
Kind
B2
Abstract

A magnetic sensor device includes three magnetic sensors for detecting components of an external magnetic field that are in three directions, a magnetic field generation section, and a correction processor. The magnetic field generation section generates additional magnetic field components in three directions used for measurements of main- and cross-axis sensitivities of the three magnetic sensors. The correction processor corrects respective detection signals of the three magnetic sensors on the basis of the measurement results of the main- and cross-axis sensitivities of the magnetic sensors.

Claims (31)

1. A magnetic sensor device comprising:

a first magnetic sensor for generating a first detection signal having a correspondence with a first external magnetic field component, the first external magnetic field component being a component of an external magnetic field and being in a first sensing direction;

a second magnetic sensor for generating a second detection signal having a correspondence with a second external magnetic field component, the second external magnetic field component being a component of the external magnetic field and being in a second sensing direction;

a third magnetic sensor for generating a third detection signal having a correspondence with a third external magnetic field component, the third external magnetic field component being a component of the external magnetic field and being in a third sensing direction;

a first magnetic field generator capable of generating a first additional magnetic field;

a second magnetic field generator capable of generating a second additional magnetic field;

a third magnetic field generator capable of generating a third additional magnetic field; and

a correction processor for controlling the first to third magnetic field generators and correcting the first to third detection signals, wherein

the first to third magnetic sensors and the first to third magnetic field generators are integrated,

the first to third magnetic sensors are each configured to be subjected to:

a first additional magnetic field component when the first additional magnetic field is generated by the first magnetic field generator, the first additional magnetic field component being a component of the first additional magnetic field and being in a direction parallel to a first direction;

a second additional magnetic field component when the second additional magnetic field is generated by the second magnetic field generator, the second additional magnetic field component being a component of the second additional magnetic field and being in a direction parallel to a second direction; and

a third additional magnetic field component when the third additional magnetic field is generated by the third magnetic field generator, the third additional magnetic field component being a component of the third additional magnetic field and being in a direction parallel to a third direction,

the correction processor performs correction function determination processing to determine correction functions for correcting the first to third detection signals, and correction processing to correct the first to third detection signals by using the first to third detection signals and the correction functions, and

the correction function determination processing is processing to obtain: first to third data concerning respective changes in the first to third detection signals when the first magnetic field generator is controlled to change the first additional magnetic field; fourth to sixth data concerning respective changes in the first to third detection signals when the second magnetic field generator is controlled to change the second additional magnetic field; and seventh to ninth data concerning respective changes in the first to third detection signals when the third magnetic field generator is controlled to change the third additional magnetic field, and to determine the correction functions on the basis of the first to ninth data.

2. The magnetic sensor device according to claim 1 , wherein the first to third directions are orthogonal to each other.

3. The magnetic sensor device according to claim 1 , wherein the correction processor is integrated with the first to third magnetic sensors and the first to third magnetic field generators.

4. A magnetic sensor device comprising:

a first magnetic sensor for generating a first detection signal having a correspondence with a first external magnetic field component, the first external magnetic field component being a component of an external magnetic field and being in a first sensing direction;

a second magnetic sensor for generating a second detection signal having a correspondence with a second external magnetic field component, the second external magnetic field component being a component of the external magnetic field and being in a second sensing direction;

a first magnetic field generator capable of generating a first additional magnetic field;

a second magnetic field generator capable of generating a second additional magnetic field; and

a correction processor for controlling the first and second magnetic field generators and correcting the first and second detection signals, wherein

the first and second magnetic sensors and the first and second magnetic field generators are integrated,

the first and second magnetic sensors are each configured to be subjected to:

a first additional magnetic field component when the first additional magnetic field is generated by the first magnetic field generator, the first additional magnetic field component being a component of the first additional magnetic field and being in a direction parallel to a first direction; and

a second additional magnetic field component when the second additional magnetic field is generated by the second magnetic field generator, the second additional magnetic field component being a component of the second additional magnetic field and being in a direction parallel to a second direction,

the correction processor performs correction function determination processing to determine correction functions for correcting the first and second detection signals, and correction processing to correct the first and second detection signals by using the first and second detection signals and the correction functions, and

the correction function determination processing is processing to obtain: first and second data concerning respective changes in the first and second detection signals when the first magnetic field generator is controlled to change the first additional magnetic field; and third and fourth data concerning respective changes in the first and second detection signals when the second magnetic field generator is controlled to change the second additional magnetic field, and to determine the correction functions on the basis of the first to fourth data.

5. The magnetic sensor device according to claim 4 , wherein the first and second directions are orthogonal to each other.

6. The magnetic sensor device according to claim 4 , wherein the correction processor is integrated with the first and second magnetic sensors and the first and second magnetic field generators.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2019
From: WATANABE, KAZUYA
To: TDK CORPORATION
Reel/Frame 050561/0346 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2019
From: OKUTSU, YOSHITAKA; YOSHIDA, MASANORI
To: ASAHI KASEI MICRODEVICES CORPORATION
Reel/Frame 050582/0898 →
Priority Claims (1)
JP JP2018-192240 · Oct 11, 2018 · national
Continuity (1)
Related Publication 20200116801A1 · Apr 16, 2020