IP Library › Granted Patent US 9,042,067
Granted Patent B2
US 9,042,067 · App. 13/927,005 · Granted May 26, 2015

Battery tester

Inventor: Songnan Fan (Shanghai, CN)
Assignee: Danaher (Shanghai) Industrial Instrumentation Technologies R&D Co., Ltd.
G01R31/3606G01R31/3624G01R31/3648G01R31/3662G01R31/3627H02H3/08H02H3/20
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 9,042,067
App. No.
13/927,005
Granted
May 26, 2015
Kind
B2
Abstract

A battery tester capable of measuring resistance and voltage of a battery using the same input channel. When measuring battery resistance, a testing signal circuit is electrically coupled to two electrodes of a subject battery to conduct a testing signal used in the battery resistance measurement. A response sensing circuit of the battery tester is also electrically coupled to the two electrodes of the subject battery to measure a response signal across the two electrodes of the subject battery. A resistance measuring module is electrically coupled to the response sensing circuit to measure the battery resistance based on the response signal detected by the response sensing circuit. A circuit breaker is capable of disconnecting the subject battery from the testing signal circuit, and disconnecting the resistance measuring module from the response sensing circuit. Moreover, the battery tester can also provide automatic protection for the battery resistance measuring module.

Claims (41)

1. A battery tester configured to measure resistance of a battery, comprising:

a testing signal circuit;

a response sensing circuit; and

a resistance measuring module, wherein:

the testing signal circuit is configured to conduct a testing signal between the battery tester and a subject battery;

the response sensing circuit is configured to detect a response signal from the subject battery; and

the resistance measuring module is electrically coupled to the response sensing circuit and is configured to obtain a measurement of the battery resistance based on the response signal detected by the response sensing circuit,

wherein the battery tester further comprises a circuit breaker that is in an off state when the battery tester is not used to measure the battery resistance so as to disconnect the testing signal circuit from the subject battery and to disconnect the resistance measuring module from the response sensing circuit.

2. The battery tester of claim 1 , wherein, prior to the measurement of the battery resistance, the response sensing circuit is configured to determine a level value of the response signal, and if the determined level value of the response signal exceeds a threshold level, the circuit breaker is in the off state, and if the determined level value of the response signal does not exceed the threshold level, the circuit breaker is in an on state so that the testing signal circuit is switched on and the resistance measuring module is electrically coupled to the response sensing circuit for measuring the battery resistance.

3. The battery tester of claim 2 , wherein the determined level value of the response signal is the voltage across the subject battery.

4. The battery tester of claim 1 , wherein the resistance measuring module measures the battery resistance using an AC injection method, and the testing signal circuit comprises an AC current source for inputting an alternating current signal into the subject battery via the testing signal circuit when measuring the battery resistance.

5. The battery tester of claim 1 , wherein the resistance measuring module measures the battery resistance using a DC discharging method and the testing signal circuit comprises a test load, and wherein when measuring the battery resistance, a discharging current output from the subject battery flows through the test load via the testing signal circuit.

6. The battery tester of claim 1 , wherein the circuit breaker is implemented by two relays coupled in the testing signal circuit and the response sensing circuit, respectively.

7. The battery tester of claim 1 , wherein the circuit breaker is implemented by a single-pole, double-throw relay that controls the on/off state of the testing signal circuit and the response sensing circuit simultaneously.

8. The battery tester of claim 4 , wherein the circuit breaker is implemented by a stopping capacitor in the testing signal circuit and a relay in the response sensing circuit.

9. The battery tester of claim 1 , further comprising an additional measuring module for measuring one or more battery parameters other than the battery resistance.

10. The battery tester of claim 9 , wherein the additional measuring module is a voltage measurement device configured to measure the voltage across the subject battery.

11. The battery tester of claim 9 , wherein the battery tester is usable as a multimeter.

12. The battery tester of claim 9 , wherein the circuit breaker is in an off state when the battery tester is used for measuring battery parameters other than battery resistance.

13. The battery tester of claim 1 , wherein a first over-voltage protection module is coupled in the testing signal circuit to protect the circuit breaker from over-voltage when the circuit breaker is in the off state.

14. The battery tester of claim 1 , wherein a first over-voltage protection module is coupled in the response sensing circuit to protect the circuit breaker from over-voltage when the circuit breaker is in the off state.

15. The battery tester of claim 1 , wherein a first over-voltage protection module is coupled in the testing signal circuit and the response sensing circuit, respectively, to protect the circuit breaker from over-voltage when the circuit breaker is in the off state.

16. The battery tester of claim 13 , wherein a rated value of the protection voltage of the first over-voltage protection module is 600V.

17. The battery tester of claim 13 , wherein the first over-voltage protection module is selected from the group consisting of: a gas discharge tube, a solid discharge tube, a transient voltage suppressor, a diode array, a voltage regulator, and a varistor.

18. The battery tester of claim 1 , wherein a first over-current protection module is coupled in the testing signal circuit to protect the circuit breaker from over-current when the circuit breaker is in the off state.

19. The battery tester of claim 1 , wherein a first over-current protection module is coupled in the response sensing circuit to protect the circuit breaker from over-current when the circuit breaker is in the off state.

20. The battery tester of claim 1 , wherein a first over-current protection module is coupled in the testing signal circuit and the response sensing circuit, respectively, to protect the circuit breaker from over-current when the circuit breaker is in the off state.

21. The battery tester of claim 18 , wherein the first over-current protection module is a positive temperature coefficient thermistor or a fuse.

22. The battery tester of claim 1 , wherein a second over-voltage protection module is coupled in the testing signal circuit to protect the testing signal circuit from over-voltage when the circuit breaker is in an on state.

23. The battery tester of claim 1 , wherein a second over-voltage protection module is coupled in the response sensing circuit to protect the resistance measuring module from over-voltage when the circuit breaker is in an on state.

24. The battery tester of claim 1 , wherein a second over-voltage protection module is coupled in the testing signal circuit and the response sensing circuit, respectively, to protect the testing signal circuit and the resistance measuring module from over-voltage when the circuit breaker is in an on state.

25. The battery tester of claim 22 , wherein a rated value of the protection voltage of the second over-voltage protection module is 70V.

26. The battery tester of claim 22 , wherein the second over-voltage protection module is selected from the group consisting of: a gas discharge tube, a solid discharge tube, a transient voltage suppressor, a diode array, a voltage regulator, and a varistor.

27. The battery tester of claim 1 , wherein a second over-current protection module is coupled in the testing signal circuit to protect the testing signal circuit from over-current when the circuit breaker is in an on state.

28. The battery tester of claim 1 , wherein a second over-current protection module is coupled in the response sensing circuit to protect the resistance measuring module from over-current when the circuit breaker is in an on state.

29. The battery tester of claim 1 , wherein a second over-current protection module is coupled in the testing signal circuit and the response sensing circuit, respectively, to protect the testing signal circuit and the resistance measuring module from over-current when the circuit breaker is in an on state.

30. The battery tester of claim 27 , wherein the second over-current protection module is a positive temperature coefficient thermistor or a fuse.

31. The battery tester of claim 1 , further comprising a load current measuring module electrically coupled to the response sensing circuit and configured to measure a load current.

32. The battery tester of claim 1 , further comprising a pair of test probes, wherein each of the test probes is electrically coupleable to the testing signal circuit and the response sensing circuit.

33. The battery tester of claim 1 , further comprising a display configured to display a level of the response signal detected by the response sensing circuit and/or a value measured by the battery tester.

34. The battery tester of claim 2 , wherein the battery tester is configured to give a warning signal if the determined level value of the response signal exceeds the threshold level.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2016
From: SHANGHAI SHILU INSTRUMENT CO., LTD.
To: FLUKE PRECISION MEASUREMENT LTD.
Reel/Frame 039741/0396 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2016
From: DANAHER (SHANGHAI) INDUSTRIAL INSTRUMENTATION TECHNOLOGIES R&D CO., LTD.
To: SHANGHAI SHILU INSTRUMENT CO., LTD.
Reel/Frame 038922/0820 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 18, 2016
From: DANAHER (SHANGHAI) INDUSTRIAL INSTRUMENTATION TECHNOLOGIES R&D CO., LTD.
To: SHANGHAI SHILU INSTRUMENTS CO., LTD.
Reel/Frame 038309/0566 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2013
From: FAN, SONGNAN
To: DANAHER (SHANGHAI) INDUSTRIAL INSTRUMENTATION TECHNOLOGIES R&D CO., LTD.
Reel/Frame 030685/0852 →
Priority Claims (1)
CN 2012 1 0377927 · Sep 29, 2012 · national
Continuity (1)
Related Publication 20140092512A1 · Apr 3, 2014