Integrated circuit monitor for storage battery voltage and temperature
First Claim
1. An apparatus for monitoring storage battery voltage as a function of storage battery temperature, comprising:
- means for sensing the storage battery voltage; and
comparator means, including band-gap reference cell means, having at least two transistors operated at different current densities, for sensing the storage battery temperature and for providing a reference voltage threshold that varies with variations in the storage battery temperature by combining a voltage that changes in a manner proportional to changes in temperature with a voltage that changes in a manner complementary to changes in temperature, for comparing the storage battery voltage sensed by the means for sensing with the reference voltage threshold.
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Abstract
An apparatus for monitoring voltage as a function of temperature of a storage battery and an apparatus for controlling the charging voltage of the battery based on battery temperature, voltage, and charging system loads. The battery monitoring apparatus includes a comparator for comparing, at any temperature in the working temperature range of the battery, the actual battery voltage with a reference battery voltage. The reference battery voltage is the voltage gassing curve for the storage battery. The comparator is given a temperature coefficient provided by a temperature-sensitive band-gap voltage reference. A plurality of the temperature-sensitive band-gap reference cells may be connected together in order to accurately track any differently sloped battery gassing voltage curve. An apparatus for controlling charging voltage of the storage battery is also provided, which includes a comparator for comparing, at any temperature in a predetermined range, the actual charging voltage with a reference charging voltage. The reference charging voltage curve is a function of charging system component temperatures and electrical system loads. A plurality of comparators may be connected together in order to approximate any desired charging voltage reference curve or combination of curves.
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Citations
35 Claims
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1. An apparatus for monitoring storage battery voltage as a function of storage battery temperature, comprising:
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means for sensing the storage battery voltage; and comparator means, including band-gap reference cell means, having at least two transistors operated at different current densities, for sensing the storage battery temperature and for providing a reference voltage threshold that varies with variations in the storage battery temperature by combining a voltage that changes in a manner proportional to changes in temperature with a voltage that changes in a manner complementary to changes in temperature, for comparing the storage battery voltage sensed by the means for sensing with the reference voltage threshold. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11)
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12. An apparatus for controlling a charging voltage provided to a storage battery by a charging device, comprising:
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means for sensing the charging voltage; and comparator means, including band-gap reference cell means, having at least two transistors operated at different current densities, for sensing charging device temperature and for providing a reference voltage threshold that varies with variations in the charging device temperature by combining a voltage that changes in a manner proportional to changes in temperature with a voltage that changes in a manner complementary to changes in temperature, for comparing the charging voltage provided by the charging device with the reference voltage threshold. - View Dependent Claims (13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28)
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29. A system for controlling a charging voltage provided to a storage battery by a charging device as a function of storage battery temperature, charging device temperature, and electrical load on the charging device and storage battery, comprising:
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means for sensing the storage battery voltage; first comparator means, including band-gap reference cell means, having at least two transistors operated at differing current densities, for sensing the storage battery temperature and for providing a first reference voltage threshold that varies with variations in the storage battery temperature by combining a voltage that changes in a manner proportional to changes in temperature with a voltage that changes in a manner complementary to changes in temperature, for comparing the storage battery voltage with the first reference voltage threshold; first signalling means, responsive to the first comparator means, for providing a first signal having a first state when the storage battery voltage sensed by the means for sensing is less than the fist reference voltage threshold and having a second state when the storage battery voltage sensed by the means for sensing is greater than the first reference voltage threshold, wherein the first state indicates that the storage battery should be charged and the second state indicates that the storage battery should not be charged. means for sensing the charging voltage; second comparator means, including band-gap reference cell means, having at least two transistors operated at differing current densities, for sensing the charging device temperature and for providing a second reference voltage threshold that varies with variations in the charging device temperature by combining a voltage that changes in a manner proportional to changes in temperature with a voltage that changes in a manner complementary to changes in temperature, for comparing the charging voltage provided by the charging device with the second reference voltage threshold; and second signalling means, responsive to the second comparator means, for providing a second signal to control the charging device, the second signal having a first state when the charging voltage sensed by the means for sensing is less than the second reference voltage threshold and having a second state when the charging voltage sensed by the means for sensing is greater than the second reference voltage threshold, the second signalling means being additionally responsive to the first signalling means so that charging of the storage battery occurs when the first signalling means provides the first signal having the first state and the second signalling means provides the second signal having the first state and charging of the storage battery is disabled when either the first signalling means provides the first signal having the second state or the second signalling means provides the second signal having the second state. - View Dependent Claims (30, 31, 32)
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33. An apparatus for monitoring storage battery voltage as a function of storage battery temperature, comprising:
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a sensor sensing the storage battery voltage; and a comparator, including band-gap reference cell, having at least two transistors operated at different current densities, the sensing storage battery temperature and providing a reference voltage threshold that varies with variations in the storage battery temperature by combining a voltage that changes in a manner proportional to changes in temperature with a voltage that changes in a manner complementary to changes in temperature, comparing the storage battery voltage sensed by the sensor with the reference voltage threshold.
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34. An apparatus for controlling a charging voltage provided to a storage battery by a charging device, comprising:
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a sensor for sensing the charging voltage; and a comparator, including a band-gap reference cell, having at least two transistors operated at different current densities, the sensing charging device temperature and providing a reference voltage threshold that varies with variations in the charging device temperature by combining a voltage that changes in a manner proportional to changes in temperature with a voltage that changes in a manner complementary to changes in temperature, comparing the charging voltage provided by the charging device with the reference voltage threshold.
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35. A system for controlling a charging voltage provided to a storage battery by a charging device as a function of storage battery temperature, charging device temperature, and electrical load on the charging device and storage battery, comprising:
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a sensor for sensing the storage battery voltage; a first comparator, including a band-gap reference cell, having at least two transistors operated at different current densities, for sensing the storage battery temperature and for providing a first reference voltage threshold that varies with variations in the storage battery temperature by combining a voltage that changes in a manner proportional to changes in temperature with a voltage that changes in a manner complementary to changes in temperature, comparing the storage battery voltage with the first reference voltage; a first signalling circuit, responsive to the first comparator, providing a first signal having a first state when the storage battery voltage sensed by the storage battery voltage sensor is less than the first reference voltage threshold and having a second state when the storage battery voltage sensed by the storage battery voltage sensor is greater than the first reference voltage threshold, wherein the first state indicates that the storage battery should be charged and the second state indicates that the storage battery should not be charged; a sensor sensing the charging voltage; a second comparator, including a band-gap reference cell, having at least two transistors operated at different current densities, sensing the charging device temperature and providing a second reference voltage threshold that varies with variations in the charging device temperature by combining a voltage that changes in a manner proportional to changes in temperature with a voltage that changes in a manner complementary to changes in temperature, comparing the charging voltage provided by the charging device with the second reference voltage threshold; and a second signalling circuit, responsive to the second comparator, providing a second signal to control the charging device, the second signal having a first state when the charging voltage sensed by the charging voltage sensor is less than the second reference voltage threshold and having a second state when the charging voltage sensed by the charging voltage sensor is greater than the second reference voltage threshold, the second signalling circuit being additionally responsive to the first signalling circuit so that charging of the storage battery occurs when the first signalling circuit provides the first signal having the first state and the second signalling circuit provides the second signal having the first state and charging of the storage battery is disabled when either the first signalling circuit provides the first signal having the second state or the second signalling circuit provides the second signal having the second state.
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Specification