IP Library Granted Patent US 12681050
Granted Patent B2
US 12681050 · App. 18/601,455 · Granted Jul 14, 2026

Current sensor

Inventor: Toshiaki Fukuhara (Shizuoka, JP)
Assignee: YAZAKI CORPORATION
G01R15/207
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Quick Facts
Patent No.
US 12681050
App. No.
18/601,455
Granted
Jul 14, 2026
Kind
B2
Abstract

A current sensor includes a busbar, a first magnetic sensor, and a first coil, and where a longitudinal direction of the busbar is defined as an X axis direction, and a width direction of the busbar is defined as a Y axis direction, the first magnetic sensor measures a magnetic field in the Y axis direction, the first coil is arranged such that an axis of the first coil is parallel to the Y axis direction, and the first magnetic sensor is arranged inside the first coil.

Claims (46)

1 . A current sensor comprising:

a busbar;

a first magnetic sensor;

a first coil;

a first shield member; and

a second shield member,

wherein a longitudinal direction of the busbar is defined as an X axis direction, and a width direction of the busbar is defined as a Y axis direction,

the first magnetic sensor measures a magnetic field in the Y axis direction,

the first coil is arranged such that an axis of the first coil is parallel to the Y axis direction, and

the first magnetic sensor is arranged inside the first coil,

wherein the first shield member includes a first portion, a second portion, and a third portion,

wherein a direction perpendicular to the X axis direction and the Y axis direction is defined as a Z axis direction,

the first portion and the second portion of the first shield member extend in the X axis direction and the Z axis direction,

the third portion of the first shield member extends in the X axis direction and the Y axis direction,

the first portion of the first shield member is connected to one end, in the Y axis direction, of the third portion of the first shield member,

the second portion of the first shield member is connected to the other end, in the Y axis direction, of the third portion of the first shield member,

the second shield member includes a first portion, a second portion, and a third portion,

the first portion and the second portion of the second shield member extend in the X axis direction and the Z axis direction,

the third portion of the second shield member extends in the X axis direction and the Y axis direction,

the first portion of the second shield member is connected to one end, in the Y axis direction, of the third portion of the second shield member,

the second portion of the second shield member is connected to the other end, in the Y axis direction, of the third portion of the second shield member,

a length, in the Y axis direction, of the first shield member is the same as a length, in the Y axis direction, of the second shield member,

the first shield member and the second shield member are arranged such that an end portion of the first portion of the first shield member and an end portion of the first portion of the second shield member face each other, and an end portion of the second portion of the first shield member and an end portion of the second portion of the second shield member face each other, and

the busbar, the first magnetic sensor, and the first coil are arranged inside an area surrounded by the first shield member and second shield member,

wherein a position, in the Y axis direction, of the first magnetic sensor is out of a plane formed of: a line passing through a center, in the Y axis direction, of the third portion of the first shield member and a center, in the Y axis direction, of the third portion of the second shield member; and a line parallel to the X axis direction, and

wherein one surface, on a side of the first magnetic sensor, of two surfaces of the first portion of the first shield member extending in the X axis direction and the Z axis direction is defined as an inner surface of the first portion of the first shield member,

one surface, on a side of the first magnetic sensor, of two surfaces of the third portion of the first shield member extending in the X axis direction and the Y axis direction is defined as an inner surface of the third portion of the first shield member,

a plane formed of a line parallel to the X axis direction and a line parallel to the Y axis direction is defined as a horizontal plane, and

a distance between the end portion of the first portion of the first shield member and the horizontal plane containing the inner surface of the third portion of the first shield member is defined as a first distance,

in a plane perpendicular to the X axis direction, the first magnetic sensor is situated at the first distance from the inner surface of the first portion of the first shield member.

2 . The current sensor according to claim 1 , wherein one of two surfaces, on a side of the first magnetic sensor, of the third portion of the second shield member extending in the X axis direction and the Y axis direction is defined as an inner surface of the third portion of the second shield member,

the distance between the end portion of the first portion of the first shield member and the horizontal plane containing the inner surface of the third portion of the first shield member is the same as a distance between the end portion of the second portion of the first shield member and the horizontal plane containing the inner surface of the third portion of the first shield member, and

a distance between the end portion of the first portion of the second shield member and a horizontal plane containing the inner surface of the third portion of the second shield member is the same as a distance between the end portion of the second portion of the second shield member and the horizontal plane containing the inner surface of the third portion of the second shield member.

3 . The current sensor according to claim 2 , wherein a distance between the first magnetic sensor and a horizontal plane containing a center between the end portion of the first portion of the first shield member and the end portion of the first portion of the second shield member and a center between the end portion of the second portion of the first shield member and the end portion of the second portion of the second shield member is equal to or more than a second value.

4 . The current sensor according to claim 2 , wherein the distance between the end portion of the first portion of the first shield member and the horizontal plane containing the inner surface of the third portion of the first shield member is equal to or more than the distance between the end portion of the first portion of the second shield member and the horizontal plane containing the inner surface of the third portion of the second shield member.

5 . The current sensor according to claim 1 , further comprising:

a second magnetic sensor configured to measure a magnetic field in the Y axis direction,

a second coil,

wherein

the second coil is arranged such that an axis of the second coil is parallel to the Y axis direction, and

the second magnetic sensor is arranged inside the second coil.

6 . The current sensor according to claim 5 , wherein one surface, on a side of the first magnetic sensor, of two surfaces of the second portion of the first shield member extending in the X axis direction and the Z axis direction is defined as an inner surface of the second portion of the first shield member, a distance between the second magnetic sensor and a plane situated away by the first distance from the inner surface of the second portion of the first shield member is equal to or less than a third value.

7 . The current sensor according to claim 6 , wherein one surface, on a side of the first magnetic sensor, of two surfaces of the third portion of the second shield member extending in the X axis direction and the Y axis direction is defined as an inner surface of the third portion of the second shield member,

the distance between the end portion of the first portion of the first shield member and the horizontal plane containing the inner surface of the third portion of the first shield member is the same as a distance between the end portion of the second portion of the first shield member and the horizontal plane containing the inner surface of the third portion of the first shield member,

a distance between the end portion of the first portion of the second shield member and the horizontal plane containing the inner surface of the third portion of the second shield member is the same as a distance between the end portion of the second portion of the second shield member and the horizontal plane containing the inner surface of the third portion of the second shield member, and

a distance between the second magnetic sensor and a horizontal plane containing a center between the end portion of the first portion of the first shield member and the end portion of the first portion of the second shield member and a center between the end portion of the second portion of the first shield member and the end portion of the second portion of the second shield member is equal to or more than a fourth value.