EP0346970A1

Circuit for measuring capacity of battery.

Abstract

The discharge capacity of a secondary battery, such as a Ni-Cd battery, takes the maximum value at around the room temperature and gradually decreases both with the increase and decrease of ambient temperature from the room temperature. The discharge capacity of such a secondary battery also decreases with the increase of the number of charging-and-discharging cycles of the battery. A circuit for measuring the remaining discharge capacity of the secondary battery 10 comprises a capacitor 23 whose temperature and aged-variation characteristics are very similar to those of the discharge capacity of the secondary battery. When the switch 11 is closed, the motor 13 is driven by the output of the battery 10, and the current flowing through the battery 10 is detected by a resistor 17 as a voltage. The voltage follower 20 amplifies the detected voltage and drives the resistor 24, so that the electric charge of the capacitor 23 is dis­charged at a rate determined by the magnitude of the current through the resistor 24. The voltage across the capacitor 23 is compared with a predetermined value by the hysteresis comparator 29 which controls the ON/OFF state of the transistor 21 in accordance with the comparison result. The output pulses of the hysteresis comparator 29, i.e., the charging-and-discharging cycles of the capacitor 23, are counted by the counter 31. Since the capacitance of the capacitor 23 varies correspondingly to the variation in discharge capacity of the battery 10 in accordance with the ambient temperature and also with the use time of same, the count value obtained at the counter 31 indicates the remaining capacity of the battery 10 very accurately.

EP0346970A1, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 8 June 2009, 17.3 years ago.

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9 claims: 3 independent, 6 dependent

  1. 1
    A circuit for measuring an energy capacity of a battery comprising detection means for detecting a current flowing through the battery and an integration circuit for integrating an output of the detection means, the measuring circuit measuring the capacity of the battery in accordance with an output of the integration circuit characterized in that a circuit element for determining an integration time constant of said integration circuit has a temperature characteristic which substant­ially compensates for a temperature characteristic in the capacity of said battery.
  2. 2
    A circuit for measuring an energy capacity of a battery comprising detection means for detecting a current flowing through the battery and an integration circuit for integrating an output of the detection means, the measuring circuit measuring the capacity of the battery in accordance with an output of the integration circuit characterized in that a circuit element for determining an integration time constant of said integration circuit has an age-variation characteristic which substantially compensates for an age-variation characteris­tic in the capacity of said battery.
  3. 3
    A circuit for measuring an energy capacity of a battery comprising detection means for detecting a current flowing through the battery and an integration circuit for integrating an output of the detection means, the measuring circuit measuring the capacity of the battery in accordance with an output of the integration circuit characterized in that a circuit element for determining an integration time constant of said integra­tion circuit has a temperature characteristic which substantially compensates for a temperature characteristic in capacity of said battery and an age-variation charac­teristic which substantially compensates for an aged-­variation characteristic in capacity of said battery.