IP Library › Granted Patent US 10,451,656
Granted Patent B2
US 10,451,656 · App. 15/522,962 · Granted Oct 22, 2019

Current sensor and measuring apparatus

Inventors: Osamu Yokota (Nagano, JP); Hidekazu Masuda (Nagano, JP)
Assignee: HIOKI DENKI KABUSHIKI KAISHA
G01R15/148G01R15/207
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Quick Facts
Patent No.
US 10,451,656
App. No.
15/522,962
Granted
Oct 22, 2019
Kind
B2
Abstract

There is provided a ring-shaped magnetic core that forms a closed magnetic circuit that encloses a measured electrical path, a magneto-electric converter that detects magnetic flux inside the magnetic core and outputs an electrical signal with an amplitude in keeping with a quantity of the magnetic flux, a coil that is formed on the magnetic core and is supplied with a negative feedback current generated based on the electrical signal, and an internal shield member disposed at least in a vicinity of the magneto-electric converter and the coil. A first gap that increases a magnetoresistance of a closed magnetic circuit, which is a closed magnetic circuit for leakage flux that leaks from the magnetic core and includes the internal shield member, a part of the magnetic core where the coil is formed, and the magneto-electric converter, is formed in the internal shield member.

Claims (29)

1. A current sensor comprising:

a ring-shaped magnetic core that forms a first closed magnetic circuit that encloses a measured electrical path;

a magneto-electric converter that detects magnetic flux inside the magnetic core and outputs an electrical signal with an amplitude in keeping with a quantity of the magnetic flux;

a coil that is formed on the magnetic core and is supplied with a negative feedback current generated based on the electrical signal; and

a shield that is formed separately from the magnetic core and is disposed in a vicinity of the magnetic core, the magneto-electric converter and the coil,

wherein a gap that increases a magnetoresistance of a second closed magnetic circuit, which is a closed magnetic circuit for magnetic flux that leaks from the magnetic core and includes the shield, a part of the magnetic core where the coil is formed, and the magneto-electric converter, is formed in the shield.

2. The current sensor according to claim 1 , wherein the shield is constructed in a shape that covers substantially all of the magnetic core, the magneto-electric converter, and the coil.

3. The current sensor according to claim 1 ,

wherein the shield includes an internal shield, which is constructed so as to cover substantially all of the magnetic core, the magneto-electric converter, and the coil, and an external shield, which covers substantially all of the internal shield without contacting the internal shield, and

the gap is formed in only the internal shield.

4. A measuring apparatus comprising:

the current sensor according to claim 1 ;

an amplifier that generates the negative feedback current based on the electrical signal and supplies the negative feedback current to one end of the coil; and

a current-to-voltage converter that is connected to another end of the coil and converts the negative feedback current to a voltage signal.

5. The current sensor according to claim 2 ,

wherein the shield includes an internal shield, which is constructed so as to cover substantially all of the magnetic core, the magneto-electric converter, and the coil, and an external shield, which covers substantially all of the internal shield without contacting the internal shield, and

the gap is formed in only the internal shield.

6. A measuring apparatus comprising:

the current sensor according to claim 2 ;

an amplifier that generates the negative feedback current based on the electrical signal and supplies the negative feedback current to one end of the coil; and

a current-to-voltage converter that is connected to another end of the coil and converts the negative feedback current to a voltage signal.

7. A measuring apparatus comprising:

the current sensor according to claim 3 ;

an amplifier that generates the negative feedback current based on the electrical signal and supplies the negative feedback current to one end of the coil; and

a current-to-voltage converter that is connected to another end of the coil and converts the negative feedback current to a voltage signal.

8. A measuring apparatus comprising:

the current sensor according to claim 5 ;

an amplifier that generates the negative feedback current based on the electrical signal and supplies the negative feedback current to one end of the coil; and

a current-to-voltage converter that is connected to another end of the coil and converts the negative feedback current to a voltage signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 28, 2017
From: YOKOTA, OSAMU; MASUDA, HIDEKAZU
To: HIOKI DENKI KABUSHIKI KAISHA
Reel/Frame 042178/0742 →
Priority Claims (1)
JP 2014-255212 · Dec 17, 2014 · national
Continuity (1)
Related Publication 20170336443A1 · Nov 23, 2017