The bq2477x is high-efficiency, synchronous, NVDC-1 battery charge controllers, offering
low component count for space-constraint, multi-chemistry battery charging applications.
The power path management allows the system to be regulated at battery voltage but does
not drop below system minimum voltage (programmable). With this feature, the system keeps operating
even when the battery is completely discharged or removed. The power path management allows the
battery to provide supplement current to the system to keep the input supply from being overloaded.
The bq2477x provides drivers and power path management for N-channel ACFET and reverse
blocking FET. The devices provides driver to control NVDC operation of external P-channel battery
FET. It also drives high-side and low-side MOSFETs of the switching regulator.
The bq2477x monitors adapter current (IADP), battery charge/discharge current (IBAT) and
system power (PMON). The flexibly programmed PROCHOT output goes directly to
CPU for throttle back when needed.
The bq2477x is high-efficiency, synchronous, NVDC-1 battery charge controllers, offering
low component count for space-constraint, multi-chemistry battery charging applications.
The power path management allows the system to be regulated at battery voltage but does
not drop below system minimum voltage (programmable). With this feature, the system keeps operating
even when the battery is completely discharged or removed. The power path management allows the
battery to provide supplement current to the system to keep the input supply from being overloaded.
The bq2477x provides drivers and power path management for N-channel ACFET and reverse
blocking FET. The devices provides driver to control NVDC operation of external P-channel battery
FET. It also drives high-side and low-side MOSFETs of the switching regulator.
The bq2477x monitors adapter current (IADP), battery charge/discharge current (IBAT) and
system power (PMON). The flexibly programmed PROCHOT output goes directly to
CPU for throttle back when needed.