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PCDC1008-R215EMO Datasheet(PDF) 29 Page - International Rectifier

Part # PCDC1008-R215EMO
Description  25A Highly Integrated SupIRBuck Single-Input Voltage, Synchronous Buck Regulator
PDF  51 Pages
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Manufacturer  IRF [International Rectifier]
Direct Link  http://www.irf.com
Logo IRF - International Rectifier

PCDC1008-R215EMO Datasheet(HTML) 29 Page - International Rectifier

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IR3447
29
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© 2013 International Rectifier
July 17, 2013
VOUT
VREF
R6
R5
C
PO LE
C3
R3
Ve
FZ
F
PO LE
E/A
Z f
Frequency
Gain(dB )
H(s) dB
Fb
Com p
Z IN
Figure 26: Type II compensation network and its
asymptotic gain plot
The transfer function (Ve/Vout) is given by:
3
5
3
3
1
)
(
C
sR
C
sR
Z
Z
s
H
V
V
IN
f
out
e
(22)
The (s) indicates that the transfer function varies as a
function of frequency. This configuration introduces a
gain and zero, expressed by:
5
3
)
(
R
R
s
H
(23)
3
3
2
1
C
R
F
z
(24)
First select the desired zero-crossover frequency (Fo):
ESR
o
F
F
and
s
o
F
F
)
10
/
1
~
5
/
1
(
(25)
Use the following equation to calculate R3:
2
5
3
LC
in
ESR
o
ramp
F
V
R
F
F
V
R
(26)
Where:
Vin = Maximum Input Voltage
Vosc = Amplitude of the oscillator Ramp Voltage
Fo = Crossover Frequency
FESR = Zero Frequency of the Output Capacitor
FLC = Resonant Frequency of the Output Filter
β
= (RS+ - RS-) / Vo
R5 = Feedback Resistor
To cancel one of the LC filter poles, place the zero
before the LC filter resonant frequency pole:
LC
Z
F
F
 %
75
o
o
Z
C
L
F
2
1
75
.
0
(27)
Use equation (24), (25) and (26) to calculate C3.
One more capacitor is sometimes added in parallel
with C3 and R3. This introduces one more pole which
is mainly used to suppress the switching noise.
The additional pole is given by:
POLE
POLE
p
C
C
C
C
F
3
3
2
1
(28)
The pole sets to one half of the switching frequency
which results in the capacitor CPOLE:
S
S
POLE
F
R
C
F
R
C
3
3
3
1
1
1
(29)
For a general unconditional stable solution for any
type of output capacitors with a wide range of ESR
values, we use a local feedback with a type III
compensation
network.
The
typically
used
compensation network for voltage-mode controller is
shown in Figure 27.



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