IP Library Granted Patent US 11,604,226
Granted Patent B2
US 11,604,226 · App. 15/913,078 · Granted Mar 14, 2023

Voltage detecting circuit, abnormality detector, and battery system

Inventors: Fumihito Inukai (Kyoto, JP); Gorou Mori (Osaka, JP)
Assignee: NUVOTON TECHNOLOGY CORPORATION JAPAN
G01R31/3835G01R35/00G01R31/396G01R31/54
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Quick Facts
Patent No.
US 11,604,226
App. No.
15/913,078
Granted
Mar 14, 2023
Kind
B2
Abstract

A voltage detection circuit includes a first terminal for connecting to one end of a first voltage detection line through a first resistor, the first voltage detection line having another end connected to a cathode or an anode of a first individual battery; a second terminal for connecting to the one end of the first voltage detection line without the first resistor; a first current generating circuit connected to the first terminal; and a voltage detector which detects a voltage of the first terminal and a voltage of the second terminal. The voltage detector includes at least one first AD converter connected to the first terminal, and at least one second AD converter connected to the second terminal.

Claims (42)

1. A voltage detection circuit, comprising:

a first terminal for connecting to one end of a first voltage detection line through a first resistor, the first voltage detection line having another end connected to a cathode or an anode of a first individual battery;

a second terminal for connecting to the one end of the first voltage detection line without the first resistor;

a first current generating circuit connected to the first terminal; and

a voltage detector which detects a voltage of the first terminal and a voltage of the second terminal,

wherein the voltage detector includes at least one first AD converter connected to the first terminal, and at least one second AD converter connected to the second terminal,

the voltage detector substantially simultaneously performs (i) the detection of the voltage of the first terminal by the at least one first AD converter and (ii) the detection of the voltage of the second terminal by the at least one second AD converter,

the voltage detector performs the detection of the voltage of the first terminal by the at least one first AD converter to detect a voltage of the first individual battery, when the first current generating circuit is ON, and

the first current generating circuit includes a first constant current source which extracts current from the first terminal and a second constant current source which feeds current into the first terminal, and the first current generating circuit is connectable to the first voltage detection line via a switch which selectively switches between the first constant current source and the second constant current source.

2. The voltage detection circuit according to claim 1 , wherein the voltage detector outputs a voltage of the first AD converter and a voltage of the second AD converter.

3. The voltage detection circuit according to claim 2 , further comprising:

a third terminal for connecting to one end of a second voltage detection line through a second resistor, the second voltage detection line having another end connected to a cathode or an anode of a second individual battery connected in series to the cathode of the first individual battery; and

a fourth terminal for connecting to the one end of the second voltage detection line without the second resistor,

wherein the voltage detector detects a difference between a voltage of the third terminal and a voltage of the fourth terminal.

4. The voltage detection circuit according to claim 3 , further comprising:

a multiplexer which selectively transmits one of pairs of voltages to the voltage detector, the pairs of voltages being composed of a pair of the voltage of the first terminal and the voltage of the second terminal and a pair of the voltage of the third terminal and the voltage of the fourth terminal,

wherein the voltage detector detects the difference between the voltage of the third terminal and the voltage of the fourth terminal by detecting a difference between voltages in the one of pairs selectively transmitted by the multiplexer.

5. The voltage detection circuit according to claim 3 , further comprising:

a multiplexer which selectively transmits one of pairs of voltages to the voltage detector, the pairs of voltages including the pair of the voltage of the first terminal and the voltage of the second terminal and the pair of the voltage of the third terminal and the voltage of the fourth terminal,

wherein the voltage detector detects the difference between the voltage of the third terminal and the voltage of the fourth terminal by detecting a difference between voltages in the one of pairs selectively transmitted by the multiplexer.

6. The voltage detection circuit according to claim 1 , wherein the voltage detector converts the voltage of the first terminal and the voltage of the second terminal into digital values.

7. An abnormality detector, comprising:

the voltage detection circuit according to claim 1 ;

the first resistor;

a fifth terminal for connecting to the one end of the first voltage detection line;

a first connection path which connects the first terminal to the fifth terminal through the first resistor;

a second connection path which connects the second terminal to the fifth terminal without the first resistor, and

an abnormality determination circuit which detects connection abnormality of the first voltage detection line based on the voltage of the first terminal and the voltage of the second terminal.

8. The abnormality detector according to claim 7 , wherein the abnormality determination circuit detects a difference between the voltage of the first terminal and the voltage of the second terminal.

9. The abnormality detector according to claim 7 , wherein the abnormality determination circuit detects abnormality after a predetermined time until feed or draw of current is stopped and the voltage input into the abnormality detector is returned to a normal individual battery voltage value.

10. The abnormality detector according to claim 7 , wherein after measurement of abnormality of one individual battery, the abnormality determination circuit sequentially determines abnormality of other individual batteries, and determines the abnormality of the one individual battery after determination of the abnormality of all of the other individual batteries.

11. The abnormality detector according to claim 7 ,

wherein the voltage detection circuit includes a second voltage detection line having one end and another end, the another end being connected to a cathode or an anode of a second individual battery connected in series to the cathode of the first individual battery, and

the abnormality determination circuit simultaneously determines abnormality of the first voltage detection line and abnormality of the second voltage detection line.

12. The abnormality detector according to claim 7 , wherein the abnormality determination circuit determines abnormality after the current is drawn into the fifth terminal and then is feed from the fifth terminal.

13. A battery system, comprising:

the abnormality detector according to claim 7 ;

the first individual battery; and

the first voltage detection line,

wherein the another end of the first voltage detection line is connected to the cathode or the anode of the first individual battery, and

the one end of the first voltage detection line is connected to the fifth terminal.

14. The voltage detection circuit according to claim 1 , wherein the first current generating circuit feeds current into the first voltage detection line to detect abnormality of the first voltage detection line.

Assignments (3)
CHANGE OF NAME Recorded May 14, 2021
From: PANASONIC SEMICONDUCTOR SOLUTIONS CO., LTD.
To: NUVOTON TECHNOLOGY CORPORATION JAPAN
Reel/Frame 056245/0395 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2020
From: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
To: PANASONIC SEMICONDUCTOR SOLUTIONS CO., LTD.
Reel/Frame 052755/0870 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 13, 2018
From: INUKAI, FUMIHITO; MORI, GOROU
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 045791/0358 →