Device and method for charging a secondary battery

Electricity: battery or capacitor charging or discharging – Battery or cell discharging – With charging

Reexamination Certificate

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Reexamination Certificate

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06608469

ABSTRACT:

BACKGROUND OF THE INVENTION
1. Field of the Invention
The present invention relates to a device and method for charging a secondary battery and, particularly, to a device and method for charging a secondary battery for detecting that the secondary battery is abnormal when charging the secondary battery.
2. Description of the Related Art
A secondary battery is generally a battery which can store power and can supply a direct current to the outside, as necessary, after repeated charges and discharges, and is used as a memory backup for a portable electronics device or computer such as a laptop personal computer, etc. It is known to use, for example, a lithium-ion battery as a secondary battery. A conventional charging device for a secondary battery performs a preliminary charging before a boost charging, and determines that the battery is abnormal when the open-circuit voltage of the battery has not reached a threshold value within a predetermined time from the start of the charging, and then indicates that the battery is abnormal with a LED without performing the boost charging, and determines that the battery is normal when the open-circuit voltage of the battery has reached the threshold value or more within the predetermined time from the start of the charging, and then performs the boost charging. For this purpose, the charging device checks the open-circuit voltage of the battery, repeating the preliminary charging of the battery and the opening of the receiving end of the battery periodically within the predetermined time.
FIG. 4
is a flowchart of the current control of the conventional charging device. When the charging device charges a secondary battery (simply called a “battery” hereinafter), it controls the charging current so as to perform the preliminary charging at first, and then performs the boost charging after determining that the battery is not abnormal.
At step S
101
, when the AC power is supplied to the charging device, the preliminary charging is started, and a preliminary charging current of, for example, 100 mA is fed to the battery.
At step S
102
, it is determined whether a predetermined time of, for example, 10 seconds has passed since the preliminary charging started, and in case of YES the process goes to step S
103
, but in case of NO the process returns to step S
101
to continue the preliminary charging.
At step S
103
, the terminal of the battery is opened to stop the preliminary charging, and the open state terminal voltage of the battery is measured.
A step S
104
, it is determined whether the predetermined time of, for example, 1 second has passed since the preliminary charging stopped at step S
103
, and in case of YES the process goes to step S
105
, but in case of NO the process returns to step S
103
to continue to stop the preliminary charging.
At step S
105
, it is determined whether the open-circuit voltage measured at step S
104
is larger than a predetermined threshold value, and in case of YES the process goes to step S
108
, but in case of NO the process goes to step S
106
.
At step S
106
, it is determined whether the predetermined charging time of, for example, 1 hour has passed since the charging started, and in case of YES the process goes to step S
107
, but in case of NO the process returns to step S
101
to start the preliminary charging again.
At step S
107
, the LED is lit to indicate that the battery is abnormal, and the charging is finished.
At step S
108
, the boost charging is performed.
At step S
109
, it is determined whether the terminal voltage during the boost charging has reached the predetermined voltage, and in case of YES the charging is finished, but in case of NO the process returns to step S
108
to continue the boost charging.
However, there is a problem, with the conventional charging device for a secondary battery, in that the charging device checks the open-circuit voltage of the battery, when charging an abnormal secondary battery, repeating the preliminary charging of the battery and the opening of the circuit to the battery periodically within a predetermined time (for example, one hour), but it may happen that the charging device does not detect that the battery is abnormal because the open-circuit voltage does not exceed the threshold value during the predetermined time, and only after it has performed the preliminary charging for a long time over the predetermined time, can it detect the abnormal battery.
In addition, there is a problem, with the conventional device for charging a secondary battery, in that as an abnormal secondary battery may have an open circuit voltage which is over the threshold value, the charging device is not able to surely detect an abnormality of a secondary battery.
SUMMARY OF THE INVENTION
It is therefore an object of the present invention to provide a device for charging a secondary battery, which is able to detect an abnormality of a secondary battery exactly and surely in a short time.
In order to achieve the above object, a device for charging a secondary battery according to the present invention comprises: a voltage measuring circuit for measuring the terminal voltage of said secondary battery; a current control circuit for controlling a charging current fed through said secondary battery; and an abnormality determining portion which starts charging said secondary battery, finishes said charging when said terminal voltage has reached a first threshold value which is decided based on the normal-state upper limit of the internal resistance and the charging current of said secondary battery, measures the open-circuit voltage of said secondary battery after finishing said charging, and determines that said secondary battery is abnormal when said open-circuit voltage is less than a second threshold value.
In the above device for charging a secondary battery according to the present invention, said abnormality determining portion determines that said secondary battery is abnormal when said open-circuit voltage is larger than a third threshold value.
In the above device for charging a secondary battery according to the present invention, said abnormality determining portion obtains said internal resistance of said secondary battery based on a first terminal voltage of said secondary battery while being charged and a second terminal voltage of said secondary battery whose terminal is opened after finishing said charging, and determines that said secondary battery is abnormal when said internal resistance is out of an allowable range.
In the above device for charging a secondary battery according to the present invention, said current control circuit performs a boost charging of said secondary battery when said abnormality determining portion has determined that said secondary battery is normal.
In order to achieve the above object, a method for charging a secondary battery, using a voltage measuring circuit for measuring the terminal voltage of said secondary battery, a current control circuit for controlling a charging current fed through said secondary battery, and an abnormality determining portion, comprising steps of: starting the charging of said secondary battery; finishing said charging when said terminal voltage has reached to a first threshold value which is decided based on the normal-state upper limit of the internal resistance and the charging current of said secondary battery; measuring the open-circuit voltage of said secondary battery after finishing said charging; and determining that said secondary battery is abnormal when said open-circuit voltage is less than a second threshold value.
In the above method for charging a secondary battery according to the present invention, the method further comprises a step of determining that said secondary battery is abnormal when said open-circuit voltage is larger than a third threshold value.
In the above method for charging a secondary battery according to the present invention, the method further comprises a step at which said abnormality determining portion obtains said internal resistance of said secondary b

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