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L5970AD 查看數據表(PDF) - STMicroelectronics

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L5970AD Datasheet PDF : 11 Pages
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L5970AD
3.4 CURRENT PROTECTION
The L5970AD has two current limit protections, pulse by pulse and frequency fold back.
The schematic of the current limitation circuitry for the pulse by pulse protection is shown in figure 7.
The output power PDMOS transistor is split in two parallel PDMOS. The smallest one has a resistor in series,
RSENSE. The current is sensed through Rsense and if reaches the threshold, the mirror is unbalanced and the
PDMOS is switched off until the next falling edge of the internal clock pulse.
Due to this reduction of the ON time, the output voltage decreases.
Since the minimum switch ON time (necessary to avoid false overcurrent signal) is not enough to obtain a suf-
ficiently low duty cycle at 500KHz, the output current, in strong overcurrent or short circuit conditions, could in-
crease again. For this reason the switching frequency is also reduced, so keeping the inductor current under its
maximum threshold. The Frequency Shifter (see fig. 6) depends on the feedback voltage. As the feedback volt-
age decreases (due to the reduced duty cycle), the switching frequency decreases too.
Figure 7. Current Limitation Circuitry
VCC
IOFF
RSENSE
RTH
DRIVER
A1
A2
IL
OUT
A1/A2=95
PWM
I
I NOT
D00IN1134
3.5 ERROR AMPLIFIER
The voltage error amplifier is the core of the loop regulation. It is a transconductance operational amplifier whose
non inverting input is connected to the internal voltage reference (1.235V), while the inverting input (FB) is con-
nected to the external divider or directly to the output voltage. The output (COMP) is connected to the external
compensation network.
The uncompensated error amplifier has the following characteristics:
Transconductance
2300µS
Low frequency gain
65dB
Minimum sink/source voltage
1500µA/300µA
Output voltage swing
0.4V/3.65V
Input bias current
2.5µA
The error amplifier output is compared with the oscillator sawtooth to perform PWM control.
3.6 PWM COMPARATOR AND POWER STAGE
This block compares the oscillator sawtooth and the error amplifier output signals generating the PWM
signal for the driving stage.
The power stage is a very critical block cause it has to guarantee a correct turn on and turn off of the PD-
MOS.
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