Claims
- 1. A battery service system comprising:
connectors configured to couple to a battery; a signal source coupled to the connectors for generating signals with time variant components configured to apply the signals to the battery continuously during a battery test; a processor coupled to the connectors and configured to receive signals representing a battery response to the applied signals, and to generate a battery parameter based on the battery response to the applied signals with time variant components; and an output device for generating an output representing the battery parameter.
- 2. The battery service system of claim 1 further comprising a memory device coupled to the processor for recording the battery parameter; wherein
the memory is configured to store a history of the battery parameter; and the output device is configured to generate an output representing the history of the battery parameter.
- 3. The battery service system of claim 1, wherein the battery parameter is impedance, conductance, or resistance of the battery.
- 4. A battery service system for conducting a service comprising:
connectors configured to couple to a battery; an input device; a processor coupled to the connectors and the input device for executing control codes to carry out the service; and a memory device coupled to the processor for storing the control codes; wherein the control codes, when executed by the processor, control the battery service system to perform the steps of:
aborting the service in response to a first specific event; and reinstating the aborted service in response to a second specific event.
- 5. The battery service system of claim 4, wherein the first specific event is a first user input received from the input device, and the second specific event is a second user input received from the input device.
- 6. The battery service system of claim 4, wherein the first specific event is an indication of an improper connection between the battery service system and the battery, and the second specific event is an indication of a proper connection being restored between the battery service system and the battery.
- 7. The battery service system of claim 4, wherein the first specific event is an indication of system power low, and the second specific event is an indication of power of the battery service system being restored.
- 8. The battery service system of claim 4, wherein the processor generates a report providing information obtained up to the point where the service was terminated.
- 9. A battery service system for obtaining a testing condition of a battery, comprising:
connectors configured to connect to the battery for receiving input signals; a memory device for storing control codes and a first reference parameter; and a processor coupled to the connectors and the memory device; wherein the control codes, when executed by the processor, control the battery service system to perform the machine-implemented steps of:
obtaining multiple battery parameters by determining a battery parameter based on the input signals multiple times; and determining the testing condition based on the first reference parameter, the multiple battery parameters, and a determination rule.
- 10. The battery service system of claim 9, wherein
the first reference parameter is a specific range; and the determination rule requires that the variations of the multiple battery parameters fall within the specific range.
- 11. The battery service system of claim 10, wherein the processor determines the battery as stable if the changes of the multiple battery parameters fall within the specific range.
- 12. The battery service system of claim 10, wherein, in response to the battery being stable, the processor is configured to further perform the machine-implemented step of comparing the multiple battery parameters and a second reference parameter.
- 13. The battery service system of claim 12, wherein the processor is configured to carry out the following machine-implemented steps in response to the multiple battery parameters being larger than the second reference parameter:
measuring an open circuit parameter of the battery based on the input signals; determining a battery response to a reference load coupled to the battery; decoupling the reference load from the battery; measuring a change in the battery response; and determining a test noise status based on the battery response.
- 14. The battery service system of claim 13, wherein the battery service system determines that test noise is acceptable based on the change in the battery response and a third reference parameter.
- 15. A battery service system for conducting a process on a battery, comprising:
connectors configured to connect to the battery to receive input signals; a memory device for storing control codes and a reference threshold based on the battery response to a reference load; and a processor coupled to the connectors and the memory device for processing data; wherein the control codes, when executed by the processor, control the battery service system to carry out the machine-implemented steps of:
determining a battery parameter based on the input signals; comparing the battery parameter and the reference parameter based on a determination rule; and initiating the process based on a result of the comparing step.
- 16. A method for activating a service automatically comprising the machine-implemented steps of:
detecting a signal received from a battery; detecting a change in the signal received from the battery; determining whether the change in the signal received from the battery is a valid event to activate the service; and activating the service in response to the change in the signal received from the battery being a valid event.
- 17. The method of claim 16, wherein whether the change in the signal received from the battery being a valid event is determined by comparing the change in the signal received from the battery with a reference threshold based on a determination rule.
- 18. A battery service system for conducting a service comprising:
connectors configured to couple to a battery; an input device for receiving control signals; a processor for executing control codes to carry out the service; and a memory device configured for storing the control codes; wherein the control codes, when executed by the processor, control the battery service system to perform the steps of:
monitoring the operation of the service; saving parameters obtained during the service; terminating the service in response to a first specific event; recording an interruption point of the service; accessing information related to the interruption point in response to a second specific event; and resuming the service from the interruption point.
- 19. The battery service system of claim 18, wherein the first specific event is a first user input received from the input device, and the second specific event is a second user input received from the input device.
- 20. The battery service system of claim 18, wherein the first specific event is an indication of an improper connection between the battery service system and the battery, and the second specific event is an indication of a proper connection between the battery service system and the battery being restored.
- 21. The battery service system of claim 18, wherein the first specific event is an indication of system power low, and the second specific event is an indication of power of the battery service system being restored.
- 22. The battery service system of claim 18, wherein the processor generates a report providing information obtained up to the point where the service was terminated.
- 23. A method for conducting a service comprising the machine-implemented steps of:
monitoring the operation of the service; saving parameters obtained during the service; terminating the service in response to a first specific event; recording an interruption point of the battery process; accessing information related to the interruption point in response to a second specific event; and resuming the service from the interruption point.
- 24. The battery service system of claim 23, wherein the first specific event is a first user input received from the input device, and the second specific event is a second user input received from the input device.
- 25. The battery service system of claim 23, wherein the first specific event is an indication of an improper connection between the battery service system and the battery, and the second specific event is an indication of a proper connection between the battery service system and the battery being restored.
- 26. The battery service system of claim 23, wherein the first specific event is an indication of system power low, and the second specific event is an indication of power of the battery service system being restored.
- 27. The battery service system of claim 23, wherein the processor generates a report providing information obtained up to the point where the battery service was terminated.
- 28. A method for conducting a service comprising the machine-implemented steps of:
monitoring operation of the service; saving parameters obtained during the service; terminating the service in response to a first control signal received from the input device; and providing information related to the service conducted before the service being terminated.
- 29. A battery service system for conducting a service, the battery service system comprising:
connectors configured to couple to a battery; an input device for receiving control signals; a processor for executing control codes to carry out the service; a memory device configured for storing the control codes; a fan for dissipating heat; and a monitor circuit coupled to the fan and the processor for generating an indication signal indicating the operation status of the fan.
- 30. The battery service system of claim 29, wherein the processor generates a warning signal in response to the indication signal indicating the fan is operating abnormally.
- 31. A battery service system comprising:
connectors configured to couple to a battery for receiving input signals; a processor coupled to the connectors; a memory device coupled to the processor for storing data and control codes; wherein the control codes, when executed by the processor, control the battery service system to perform at least one of a battery test, a starter test, an alternator test and a battery charge service.
- 32. The battery service system of claim 31, wherein the control codes, upon execution of by the processor, control the battery service system to perform the at least one of a battery test, a starter test, an alternator test and a battery charge service in a predetermined sequence.
- 33. The battery service system of claim 31, wherein the control codes, upon execution of by the processor, control the battery service system to sequentially perform a battery test, a starter test, an alternator test and a battery charge service.
- 34. A method for controlling a charge signal for charging a battery comprising the steps of:
detecting a current battery output level; accessing a target charge level; comparing the current battery output level and the target charge level; and altering the charge signal based on a result of the comparing step.
- 35. The method of claim 34 wherein the altering step increases the level of the charge signal in response to the current battery output level being lower than the target charge level.
- 36. The method of claim 34 wherein the altering step decreases the level of the charge signal in response to the current battery output level being higher than the target charge level.
- 37. A battery service system comprising:
a charger for generating a charge signal to charge a battery; connectors configured to couple to the battery; a processor coupled to the connectors and the charger; an input device coupled to the processor; a memory device coupled to the input device and the processor for storing data and control codes; wherein the control codes, when executed by the processor, control the battery service system to perform the steps of:
detecting a current battery output level; receiving a target charge level from the input device; comparing the current battery output level and the target charge level; and generating a control signal to alter the charge signal based on a result of the comparing step.
- 38. The battery service system of claim 37, wherein the control signal controls the charger to increase the level of the charge signal in response to the current battery output level being lower than the target charge level.
- 39. The battery service system of claim 37, wherein the control signal controls the charger to decrease the level of the charge signal in response to the current battery output level being higher than the target charge level.
RELATED APPLICATION
[0001] This application claims the benefit of priority from U.S. Provisional Patent Application Serial No. 60/387,912, entitled “MULTI-FUNCTION BATTERY SERVICE SYSTEM,” filed Jun. 13, 2002, which is incorporated herein by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60387912 |
Jun 2002 |
US |