IP Library Granted Patent US 10,816,613
Granted Patent B2
US 10,816,613 · App. 16/032,352 · Granted Oct 27, 2020

Magnetic sensor circuit

Inventor: Masao Iriguchi (Chiba, JP)
Assignee: ABLIC Inc.
G01R33/07G01R33/0041G01R33/072G01R33/09G01R33/091H01L43/06H03F3/45071H03F3/45183H03K17/0822H03K17/90H03K17/9517
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Quick Facts
Patent No.
US 10,816,613
App. No.
16/032,352
Granted
Oct 27, 2020
Kind
B2
Abstract

A magnetic sensor circuit includes a first type electromagnetic conversion element which supplies antiphase signals corresponding to the intensity of a magnetic field in a first direction, a second type electromagnetic conversion element which supplies antiphase signals corresponding to the intensity of a magnetic field in a second direction, a switch circuit which controls a current supplied from a current source to the first and the second type electromagnetic conversion elements, and a common mode feedback circuit which determines a midpoint voltage between the first and the second type electromagnetic conversion elements. The common mode feedback circuit performs a feedback operation to thereby set an output common voltage of the first type electromagnetic conversion element higher than the preset reference voltage and set an output common voltage of the second type electromagnetic conversion element lower than the preset reference voltage.

Claims (22)

1. A magnetic sensor circuit, comprising:

a first type electromagnetic conversion element configured to supply signals antiphase to each other corresponding to the intensity of a magnetic field in a first direction;

a second type electromagnetic conversion element configured to supply signals antiphase to each other corresponding to the intensity of a magnetic field in a second direction perpendicular to the first direction;

a power supply terminal;

a ground terminal;

a switch circuit configured to control flow of a current supplied from a current source to the first type electromagnetic conversion element and the second type electromagnetic conversion element; and

a common mode feedback circuit configured to operate on a basis of a preset reference voltage to determine a midpoint voltage between the first type electromagnetic conversion element and the second type electromagnetic conversion element, the common mode feedback circuit performing a feedback operation based on the midpoint voltage and the preset reference voltage to thereby set an output common voltage of the first type electromagnetic conversion element higher than the preset reference voltage and set an output common voltage of the second type electromagnetic conversion element lower than the preset reference voltage.

2. The magnetic sensor circuit according to claim 1 , further comprising:

a second switch circuit configured to acquire a plurality of signals supplied from the first type electromagnetic conversion element and the second type electromagnetic conversion element; and

a third switch circuit configured to acquire the midpoint voltage.

3. The magnetic sensor circuit according to claim 1 , further comprising a signal amplifier having a P-channel MOS transistor input stage and an N-channel MOS transistor input stage,

wherein the signals supplied from the first type electromagnetic conversion element are supplied to the N-channel MOS transistor input stage, and

wherein the signals supplied from the second type electromagnetic conversion element are supplied to the P-channel MOS transistor input stage.

4. The magnetic sensor circuit according to claim 1 , wherein the first type electromagnetic conversion element is a vertical Hall element configured to detect a magnetic field parallel to a substrate surface formed with the magnetic sensor circuit, and

wherein the second type electromagnetic conversion element is a horizontal Hall element configured to detect a magnetic field perpendicular to the substrate surface.

5. The magnetic sensor circuit according to claim 2 , further comprising a signal amplifier having a P-channel MOS transistor input stage and an N-channel MOS transistor input stage,

wherein the signals supplied from the first type electromagnetic conversion element are supplied to the N-channel MOS transistor input stage, and

wherein the signals supplied from the second type electromagnetic conversion element are supplied to the P-channel MOS transistor input stage.

6. The magnetic sensor circuit according to claim 2 , wherein the first type electromagnetic conversion element is a vertical Hall element configured to detect a magnetic field parallel to a substrate surface formed with the magnetic sensor circuit, and

wherein the second type electromagnetic conversion element is a horizontal Hall element configured to detect a magnetic field perpendicular to the substrate surface.

7. The magnetic sensor circuit according to claim 3 , wherein the first type electromagnetic conversion element is a vertical Hall element configured to detect a magnetic field parallel to a substrate surface formed with the magnetic sensor circuit, and

wherein the second type electromagnetic conversion element is a horizontal Hall element configured to detect a magnetic field perpendicular to the substrate surface.

Assignments (2)
CHANGE OF ADDRESS Recorded Jun 8, 2023
From: ABLIC INC.
To: ABLIC INC.
Reel/Frame 064021/0575 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2018
From: IRIGUCHI, MASAO
To: ABLIC INC.
Reel/Frame 046320/0270 →