IP Library Granted Patent US 11,835,552
Granted Patent B2
US 11,835,552 · App. 17/927,075 · Granted Dec 5, 2023

Electric current detection device and electric current detection method

Inventors: Naoki Takigashira (Kanagawa, JP); Masanori Yamashita (Kanagawa, JP); Kouichi Matsuda (Kanagawa, JP)
Assignees: NISSAN MOTOR CO., LTD.; RENAULT S.A.S.
G01R19/0092G01R15/146
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Quick Facts
Patent No.
US 11,835,552
App. No.
17/927,075
Granted
Dec 5, 2023
Kind
B2
Abstract

A current detection device ( 100 ) includes a shunt resistor ( 1 ) connected in series to a path through which a current flows; a first circuit ( 2 ) that converts a voltage across the shunt resistor ( 1 ) into a predetermined differential voltage; a second circuit ( 3 ) to which the predetermined differential voltage is input from the first circuit ( 2 ) via a pair of wirings ( 55 ) and that amplifies the predetermined differential voltage; a constant current circuit ( 4 ) connected between the pair of wirings ( 55 ); and an arithmetic circuit ( 5 ) that operates the current flowing through the path based on the voltage amplified by the second circuit ( 3 ).

Claims (71)

1. A current detection device comprising:

a shunt resistor connected in series to a path through which a current flows;

a first circuit that converts a voltage across the shunt resistor into a predetermined differential voltage;

a second circuit to which the predetermined differential voltage is input from the first circuit via a pair of wirings, the second circuit amplifying the predetermined differential voltage;

a constant current circuit connected between the pair of wirings; and

an arithmetic circuit that operates the current flowing through the path based on the voltage amplified by the second circuit,

wherein the constant current circuit adjusts an output voltage range of the second circuit.

2. The current detection device according to claim 1 , wherein

the shunt resistor is disposed in a first substrate,

the first circuit is disposed in a second substrate, and

the second circuit, the constant current circuit, and the arithmetic circuit are disposed in a third substrate.

3. The current detection device according to claim 1 , wherein

the shunt resistor and the first circuit are disposed in a first substrate, and

the second circuit, the constant current circuit, and the arithmetic circuit are disposed in a second substrate.

4. The current detection device according to claim 1 , wherein

the constant current circuit is formed of a resistor connected between the pair of wirings.

5. The current detection device according to claim 1 , wherein

the first circuit includes a modulation unit and a demodulation unit,

the modulation unit is insulated from the demodulation unit,

the modulation unit generates a modulation signal produced by modulating the voltage across the shunt resistor, and

the demodulation unit demodulates the modulation signal to generate the predetermined differential voltage.

6. The current detection device according to claim 5 , wherein

the first circuit includes a capacitor,

the modulation unit is AC coupled to the demodulation unit by the capacitor,

the modulation unit transmits the modulation signal to the demodulation unit via the capacitor, and

the demodulation unit generates the predetermined differential voltage based on the modulation signal input via the capacitor.

7. The current detection device according to claim 5 , wherein

the first circuit includes an insulation transformer,

the modulation unit is configured of a primary side coil in the insulation transformer, and

the demodulation unit is configured of a secondary side coil in the insulation transformer.

8. The current detection device according to claim 5 , wherein

the first circuit includes a photocoupler,

the modulation unit is configured of a light-emitting element in the photocoupler, and

the demodulation unit is configured of a light-receiving element in the photocoupler.

9. A current detection method for detecting a current flowing through a path, the current detection method comprising:

converting a voltage across a shunt resistor connected in series to the path into a predetermined differential voltage in a first circuit;

flowing a current between a pair of wirings connected between the first circuit and a second circuit using a constant current circuit;

amplifying the differential voltage input from the first circuit via the pair of wirings in the second circuit;

operating the current flowing through the path based on the voltages amplified by the second circuit in an arithmetic circuit; and

adjusting an output voltage range of the second circuit by the constant current circuit.

10. A current detection device comprising:

a shunt resistor connected in series to a path through which a current flows;

a first circuit that converts a voltage across the shunt resistor into a predetermined differential voltage;

a second circuit to which the predetermined differential voltage is input from the first circuit via a pair of wirings, the second circuit amplifying the predetermined differential voltage;

a constant current circuit connected between the pair of wirings; and

an arithmetic circuit that operates the current flowing through the path based on the voltage amplified by the second circuit,

wherein the constant current circuit is formed of a resistor connected between the pair of wirings.

11. The current detection device according to claim 10 , wherein the resistor is a variable resistor.

12. The current detection device according to claim 10 , wherein the resistor is connected only to the pair of wirings.

13. A current detection device comprising:

a shunt resistor connected in series to a path through which a current flows;

a first circuit that converts a voltage across the shunt resistor into a predetermined differential voltage;

a second circuit to which the predetermined differential voltage is input from the first circuit via a pair of wirings, the second circuit amplifying the predetermined differential voltage;

a constant current circuit connected between the pair of wirings; and

an arithmetic circuit that operates the current flowing through the path based on the voltage amplified by the second circuit, wherein

the first circuit includes a modulation unit and a demodulation unit,

the modulation unit is insulated from the demodulation unit,

the modulation unit generates a modulation signal produced by modulating the voltage across the shunt resistor, and

the demodulation unit demodulates the modulation signal to generate the predetermined differential voltage.

14. The current detection device according to claim 13 , wherein

the first circuit includes a capacitor,

the modulation unit is AC coupled to the demodulation unit by the capacitor,

the modulation unit transmits the modulation signal to the demodulation unit via the capacitor, and

the demodulation unit generates the predetermined differential voltage based on the modulation signal input via the capacitor.

15. The current detection device according to claim 13 , wherein

the first circuit includes an insulation transformer,

the modulation unit is configured of a primary side coil in the insulation transformer, and

the demodulation unit is configured of a secondary side coil in the insulation transformer.

16. The current detection device according to claim 13 , wherein

the first circuit includes a photocoupler,

the modulation unit is configured of a light-emitting element in the photocoupler, and the demodulation unit is configured of a light-receiving element in the photocoupler.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2024
From: RENAULT S.A.S.
To: AMPERE S.A.S.
Reel/Frame 067526/0311 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 22, 2022
From: TAKIGASHIRA, NAOKI; YAMASHITA, MASANORI; MATSUDA, KOUICHI
To: NISSAN MOTOR CO., LTD.; RENAULT S.A.S.
Reel/Frame 061851/0811 →
Continuity (1)
Related Publication 20230204631A1 · Jun 29, 2023