A rapid charging circuit for a lithium ion battery. The battery charger in
accordance with the present invention compensates for the voltage drops
across the various resistance elements in the battery circuit by setting
the charging voltage to a level to compensate for the initial resistance
of the series resistances in the circuit and an additional resistance
selected to take into account the anticipated increase in resistance of
the various circuit elements over time. The battery charger in accordance
with the present invention periodically monitors the open-circuit voltage
of the battery cell and reduces the charging voltage to when the battery
cell voltage reaches the optimal value. Thus, during a constant current
charging mode, the battery cell is driven at a relatively optimal
charging current to reduce the charging time. As such, the system is able
to optimize the charging current supplied to a battery cell during a
constant current mode of operation while compensating for circuit
elements whose resistance may vary over time due to temperature or other
factors, such as corrosion, while at the same time avoiding exceeding the
maximum recommended voltage for the battery cell.