IP Library Granted Patent US 9,337,518
Granted Patent B2
US 9,337,518 · App. 14/103,898 · Granted May 10, 2016

Battery state monitoring device and battery module having the same

Inventor: Hideyasu Takatsuji (Tokyo, JP)
Assignee: MITSUBISHI HEAVY INDUSTRIES, LTD.
H01M10/486
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Quick Facts
Patent No.
US 9,337,518
App. No.
14/103,898
Granted
May 10, 2016
Kind
B2
Abstract

A battery state monitoring device includes a substrate in which a through-hole disposed to be opposite to a safety valve of a battery is formed, a sensor which includes a positive electrode end and a negative electrode end and which is provided on the substrate, a first interconnector which is connected to the positive electrode end of the sensor on the substrate and which is disposed to pass along a part of a periphery of the through-hole, and a second interconnector which is connected to the negative electrode end of the sensor on the substrate and which is disposed to pass along a part of the periphery of the through-hole. The first interconnector and the second interconnector are disposed to extend along each other at the periphery of the through-hole.

Claims (43)

1. A battery state monitoring device comprising:

a substrate which is formed with a positive side insertion hole, a negative side insertion hole and a through-hole, the positive side insertion hole through which a positive electrode terminal of a battery is inserted, the negative side insertion hole through which a negative electrode terminal the battery is inserted, and the through-hole disposed to be opposite to a safety valve of a battery and formed between the positive side insertion hole and the negative side insertion hole;

a sensor which includes a positive electrode end and a negative electrode end and which is provided on the substrate, the sensor which is positioned between the positive side insertion hole and the through-hole or between the negative side insertion hole and the insertion hole;

a first interconnector which is connected to the positive electrode end of the sensor on the substrate and which is disposed to pass along a part of a periphery of the through-hole; and

a second interconnector which is connected to the negative electrode end of the sensor on the substrate and which is disposed to pass along a part of the periphery of the through-hole, wherein

the first interconnector and the second interconnector are disposed to extend along each other at the periphery of the through-hole.

2. The battery state monitoring device according to claim 1 , wherein

the first interconnector, the second interconnector, and the sensor are provided on a surface on a battery side among front and rear surfaces of the substrate.

3. The battery state monitoring device according to claim 1 , further comprising:

a connector which is provided to the substrate on a side opposite to the sensor with the through-hole interposed between the connector and the sensor, wherein

a first end of the first interconnector is connected to the positive electrode end of the sensor, and a second end of the first interconnector is connected to the connector, and

a first end of the second interconnector is connected to the negative electrode end of the sensor, and a second end of the second interconnector is connected to the connector.

4. The battery state monitoring device according to claim 1 , wherein

the substrate includes a shield layer that is formed of an electrically conductive material.

5. The battery state monitoring device according to claim 1 , wherein

the sensor is a thermistor including a resistive element in which a resistance value varies in accordance with a temperature.

6. The battery state monitoring device according to claim 1 , wherein

the substrate has a tubular portion that extends from the periphery of the through-hole toward the opposite safety valve.

7. The battery state monitoring device according to claim 1 , wherein

a positive side fixing unit and a negative side fixing unit which are formed of a thermally conductive material are provided at the periphery of the positive side insertion hole or the negative side insertion hole, the positive side fixing unit comes into contact with the positive electrode terminal in a state in which the positive electrode terminal is inserted through the positive side insertion hole, and is attached the positive electrode terminal, the negative side fixing unit comes into contact with the negative electrode terminal in a state in which the negative electrode terminal is inserted through the negative side insertion hole, and is attached the negative electrode terminal, and

the sensor is fixed to the substrate and measures a temperature of the positive electrode terminal or the negative electrode terminal, via the positive side fixing unit or the negative side fixing unit.

8. A battery module comprising:

a battery state monitoring device comprising:

a substrate which is formed with a positive side insertion hole, a negative side insertion hole and a through-hole, the positive side insertion hole through which a positive electrode terminal of a battery is inserted, the negative side insertion hole through which a negative electrode terminal the battery is inserted, and the through-hole disposed to be opposite to a safety valve of a battery and formed between the positive side insertion hole and the negative side insertion hole;

a sensor which includes a positive electrode end and a negative electrode end and which is provided on the substrate, the sensor which is positioned between the positive side insertion hole and the through-hole or between the negative side insertion hole and the insertion hole;

a first interconnector which is connected to the positive electrode end of the sensor on the substrate and which is disposed to pass along a part of a periphery of the through-hole; and

a second interconnector which is connected to the negative electrode end of the sensor on the substrate and which is disposed to pass along a part of the periphery of the through-hole, wherein the first interconnector and the second interconnector are disposed to extend along each other at the periphery of the through-hole, and

a battery.

9. The battery module according to claim 8 , wherein

the first interconnector, the second interconnector, and the sensor are provided on a surface on a battery side among front and rear surfaces of the substrate.

10. The battery module according to claim 8 , further comprising:

a connector which is provided to the substrate on a side opposite to the sensor with the through-hole interposed between the connector and the sensor, wherein

a first end of the first interconnector is connected to the positive electrode end of the sensor, and a second end of the first interconnector is connected to the connector, and

a first end of the second interconnector is connected to the negative electrode end of the sensor, and a second end of the second interconnector is connected to the connector.

11. The battery module according to claim 8 , wherein

the substrate includes a shield layer that is formed of an electrically conductive material.

12. The battery module according to claim 8 , wherein

the sensor is a thermistor including a resistive element in which a resistance value varies in accordance with a temperature.

13. The battery module according to claim 8 , wherein

the substrate has a tubular portion that extends from the periphery of the through-hole toward the opposite safety valve.

14. The battery module according to claim 8 , wherein

a positive side fixing unit and a negative side fixing unit which are formed of a thermally conductive material are provided at the periphery of the positive side insertion hole or the negative side insertion hole, the positive side fixing unit comes into contact with the positive electrode terminal in a state in which the positive electrode terminal is inserted through the positive side insertion hole, and is attached the positive electrode terminal, and the negative side fixing unit comes into contact with the negative electrode terminal in a state in which the negative electrode terminal is inserted through the negative side insertion hole, and is attached the negative electrode terminal,

the sensor is fixed to the substrate and measures a temperature of the positive electrode terminal or the negative electrode terminal, via the positive side fixing unit or the negative side fixing unit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2013
From: TAKATSUJI, HIDEYASU
To: MITSUBISHI HEAVY INDUSTRIES, LTD.
Reel/Frame 031770/0263 →
Priority Claims (1)
JP 2012-280000 · Dec 21, 2012 · national
Continuity (1)
Related Publication 20140176141A1 · Jun 26, 2014