IP Library › Granted Patent US 11,789,095
Granted Patent B2
US 11,789,095 · App. 17/847,694 · Granted Oct 17, 2023

Current sensor, magnetic sensor and circuit

Inventors: Yuta Saito (Tokyo, JP); Yoshihiro Kudo (Tokyo, JP); Daisuke Miyauchi (Tokyo, JP); Satoshi Abe (Tokyo, JP)
Assignee: TDK Corporation
G01R33/09G01R1/203G01R15/205
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,789,095
App. No.
17/847,694
Granted
Oct 17, 2023
Kind
B2
Abstract

The current sensor comprises: a magnetic detecting device that is arranged in the vicinity of a conductor, to which a magnetic field to be measured induced by a current flowing through the conductor is applied, and that changes an electrical resistance in response to a change in the magnetic field to be measured; two coils that generate a canceling magnetic field to cancel the magnetic field to be measured and that are arranged in the vicinity of the magnetic detecting device; a shunt resistor, that is connected in series between the two coils, for detecting a current flowing through the coils; a first differential amplifier that amplifies the output signal of the magnetic detecting device and that supplies the current to induce the canceling magnetic field to the coils; and a second differential amplifier that amplifies the voltage across the shunt resistor and that outputs a measured voltage proportional to the current flowing through the conductor.

Claims (30)

1. A current sensor comprising:

a magnetic detecting device that changes its electrical resistance in response to a change in a magnetic field to be measured;

a plurality of coils that are arranged in the vicinity of said magnetic detecting device and that are connected in series; and

a shunt resistor, that is connected in series between said plurality of coils, for detecting a current flowing through all of said plurality of coils.

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

a first electronic circuit that amplifies the output signal of said magnetic detecting device and that supplies the current to induce a canceling magnetic field generated by said coils for canceling said magnetic field to be measured; and

a second electronic circuit that amplifies a voltage across said shunt resistor and that outputs a measured voltage proportional to the current.

3. The current sensor according to claim 1 , wherein said magnetic detecting device, said plurality of coils and said shunt resistor are formed on one substrate.

4. The current sensor according to claim 1 , wherein said plurality of coils are respectively formed in a toroidal shape.

5. The current sensor according to claim 1 , wherein said magnetic detecting device comprises a magneto-resistance effect element, and said magneto-resistance effect element is a tunnel magneto-resistance effect element.

6. A magnetic sensor comprising:

a magnetic detecting device that changes its electrical resistance in response to a change in a magnetic field to be measured;

a plurality of coils that are arranged in the vicinity of said magnetic detecting device and that are connected in series; and

a shunt resistor, that is connected in series between said plurality of coils, for detecting a current flowing through all of said plurality of coils.

7. The magnetic sensor according to claim 6 , further comprising:

a first electronic circuit that amplifies the output signal of said magnetic detecting device and that supplies the current to induce a canceling magnetic field generated by said coils for canceling said magnetic field to be measured; and

a second electronic circuit that amplifies a voltage across said shunt resistor and that outputs a measured voltage proportional to the current.

8. The magnetic sensor according to claim 6 , wherein said magnetic detecting device, said plurality of coils and said shunt resistor are formed on one substrate.

9. The magnetic sensor according to claim 6 , wherein said plurality of coils are respectively formed in a toroidal shape.

10. The magnetic sensor according to claim 6 , wherein said magnetic detecting device comprises a magneto-resistance effect element, and said magneto-resistance effect element is a tunnel magneto-resistance effect element.

11. A circuit comprising:

a magnetic detecting device that changes its electrical resistance in response to a change in a magnetic field to be measured;

a plurality of coils that are arranged in the vicinity of said magnetic detecting device and that are connected in series; and

a shunt resistor, that is connected in series between said plurality of coils, for detecting a current flowing through all of said plurality of coils.

12. The circuit according to claim 11 , further comprising:

a first electronic circuit that amplifies the output signal of said magnetic detecting device and that supplies the current to induce a canceling magnetic field generated by said coils for canceling said magnetic field to be measured; and

a second electronic circuit that amplifies a voltage across said shunt resistor and that outputs a measured voltage proportional to the current.

13. The circuit according to claim 11 , wherein said magnetic detecting device, said plurality of coils and said shunt resistor are formed on one substrate.

14. The circuit according to claim 11 , wherein said plurality of coils are respectively formed in a toroidal shape.

15. The circuit according to claim 11 , wherein said magnetic detecting device comprises a magneto-resistance effect element, and said magneto-resistance effect element is a tunnel magneto-resistance effect element.

Priority Claims (1)
JP 2020-015443 · Jan 31, 2020 · national
Continuity (2)
Continuation 17155307 · Jan 22, 2021
Related Publication 20220317210A1 · Oct 6, 2022
Cited By (1)
US 12,436,177