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L6732 데이터시트(PDF) 24 Page - STMicroelectronics

부품명 L6732
상세설명  Adjustable step-down controller with synchronous rectification
PDF  37 Pages
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제조업체  STMICROELECTRONICS [STMicroelectronics]
홈페이지  http://www.st.com
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L6732 데이터시트(HTML) 24 Page - STMicroelectronics

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Application details
L6732
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Where D is the duty cycle. The equation reaches its maximum value, IOUT /2 with D = 0.5.
The losses in worst case are:
Equation 12
6.4
Compensation network
The loop is based on a voltage mode control (Figure 18.). The output voltage is regulated to
the internal/external reference voltage and scaled by the external resistor divider. The error
amplifier output VCOMP is then compared with the oscillator triangular wave to provide a
pulse-width modulated (PWM) with an amplitude of VIN at the PHASE node. This waveform
is filtered by the output filter. The modulator transfer function is the small signal transfer
function of VOUT/VCOMP. This function has a double pole at frequency FLC depending on the
L-COUT resonance and a zero at FESR depending on the output capacitor's ESR. The DC
Gain of the modulator is simply the input voltage VIN divided by the peak-to-peak oscillator
voltage: VOSC.
The compensation network consists in the internal error amplifier, the impedance networks
ZIN (R3, R4 and C20) and ZFB (R5, C18 and C19). The compensation network has to
provide a closed loop transfer function with the highest 0dB crossing frequency to have
fastest transient response (but always lower than fsw/10) and the highest gain in DC
conditions to minimize the load regulation error. A stable control loop has a gain crossing the
0dB axis with -20dB/decade slope and a phase margin greater than 45 °. To locate poles
and zeroes of the compensation networks, the following suggestions may be used:
Modulator singularity frequencies:
Equation 13
2
)
5
.
0
(
Iout
ESR
P
=
Figure 18.
Compensation network
Cout
L
LC
=
1
ω



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