mb3843pfv Fujitsu Microelectronics, Inc., mb3843pfv Datasheet - Page 15

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mb3843pfv

Manufacturer Part Number
mb3843pfv
Description
Lithium Ion Battery Charger Dc/dc Converter Ic High Precision With Constant-current Function
Manufacturer
Fujitsu Microelectronics, Inc.
Datasheet
1. Switching Regulator Block
(1) Reference voltage circuit (Ref)
(2) Triangular wave oscillator circuit (OSC)
(3) Error amplifier circuit (Error Amp.1)
(4) Current detector amplifier circuit (Current Amp.)
(5) Power supply control circuit (CTL)
(6) PWM comparator circuit (PMW Comp.)
(7) Output circuit (OUT)
FUNCTIONAL DESCRIPTION
The reference voltage circuit uses the voltage supply from the V
compensated, stable voltage ( 2.50 V) for use as the reference voltage for the internal circuits of the IC chip.
It is also possible to supply a reference voltage output of up to 1 mA to external circuits through the VREF
terminal (pin 9) .
By connecting the CT terminal (pin 13) and RT terminal (pin 12) respectively to a capacitance and resistance
for timing, a triangular oscillator waveform can be generated.
The triangular wave is input to the PWM comparator circuits on the IC. At the same time, it can also be supplied
to an external device from the CT terminal.
The error amplifier circuit is used to detect the output voltage from the switching regulator and produces the
PWM control signal. No external resistance is required at the error amplifier inversion input terminal, because
the output voltage setting resistance is connected within the IC. The output voltage settings are defined as :
MB3813A 12.6 V/12.3 V, MB3833A 8.4 V/8.2 V, MB3843 4.2 V/4.1 V, the optimum levels respectively for use
with 3-cell, 2-cell and 1-cell lithium-ion batteries.
Also, by connecting feedback resistance and capacitance between the error amplifier FB terminal (pin 6) and
to the system.
The CS terminal (pin 11) can be connected to a soft-start capacitor to prevent current surges at startup. The
soft-start is detected by the error amplifier, which provides a constant soft-start time independent of output load.
The current detector amplifier provides 25 amplification of the voltage drop between the two ends of the output
sensor resistor (RS) in the switching regulator, that occurs due to the flow of the charging current. This voltage
drop is compared to the voltage at the Vin2 terminal (pin 8) in the next stage error amplifier circuit (Error Amp.2) ,
An “L” level signal input to the CTL terminal (pin 7) places the IC in standby mode. In standby mode, all circuits
other than input detection circuits are switched off.
This is a voltage-pulse width conversion circuit that controls the output duty of the error amplifier circuits (Error
Amp.1, 2) according to the output voltage.
During intervals when the triangular waveform is lower than the eror amplifier output voltage, an external output
transistor is switched on.
The output circuit uses a totem-pole configuration and is capable of driving an external P-ch. MOS FET device.
and used to control the charging current.
IN1 terminal (pin 5) , it is possible to set the desired level of loop gain to provide stabilized phase compensation
MB3813A/MB3833A/MB3843
CC
terminal (pin 14) to generate a temperature
15

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