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MCR03EZPFX1002 Datasheet(PDF) 19 Page - International Rectifier

Part # MCR03EZPFX1002
Description  HIGHLY EFFICIENT INTEGRATED SYNCHRONOUS BUCK REGULATOR FOR DDR APPLICATIONS
PDF  32 Pages
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Manufacturer  IRF [International Rectifier]
Direct Link  http://www.irf.com
Logo IRF - International Rectifier

MCR03EZPFX1002 Datasheet(HTML) 19 Page - International Rectifier

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Rev 6.0
19
PD-97508
IR3832WMPbF
(15)
.....
..........
..........
current
ripple
Inductor
I
ripple
voltage
Output
V
F
*
C
*
I
V
ESL
*
L
V
V
V
ESR
*
I
V
V
V
V
V
L
o
s
o
L
)
C
(
o
o
in
)
ESL
(
o
L
)
ESR
(
o
)
C
(
o
)
ESL
(
o
)
ESR
(
o
o
=
Δ
=
Δ
Δ
=
Δ
=
Δ
Δ
=
Δ
Δ
+
Δ
+
Δ
=
Δ
8
Since the output capacitor has a major role in the
overall performance of the converter and
determines the result of transient response,
selection of the capacitor is critical. The
IR3832W can perform well with all types of
capacitors.
As a rule, the capacitor must have low enough
ESR to meet output ripple and load transient
requirements.
The goal for this design is to meet the voltage
ripple requirement in the smallest possible
capacitor size. Therefore it is advisable to select
ceramic capacitors due to their low ESR and ESL
and small size. Six of the Panasonic ECJ-
2FB0J226ML (22uF, 6.3V, 3mOhm) capacitors is
a good choice.
Feedback Compensation
The IR3832W is a voltage mode controller. The
control loop is a single voltage feedback path
including error amplifier and error comparator. To
achieve fast transient response and accurate
output regulation, a compensation circuit is
necessary. The goal of the compensation
network is to provide a closed-loop transfer
function with the highest 0 dB crossing frequency
and adequate phase margin (greater than 45o).
The output LC filter introduces a double pole,
–40dB/decade gain slope above its corner
resonant frequency, and a total phase lag of 180o
(see figure 12). The resonant frequency of the LC
filter is expressed as follows:
Figure 12 shows gain and phase of the LC filter.
Since we already have 180o phase shift from the
output filter alone, the system runs the risk of
being unstable.
The IR3832W uses a voltage-type error amplifier
with high-gain (110dB) and wide-bandwidth. The
output of the error amplifier is available for DC
gain control and AC phase compensation.
The error amplifier can be compensated either in
type II or type III compensation.
Local feedback with Type II compensation is
shown in Fig. 13.
This method requires that the output capacitor
should have enough ESR to satisfy stability
requirements. In general the output capacitor’s
ESR generates a zero typically at 5kHz to 50kHz
which is essential for an acceptable phase
margin.
The ESR zero of the output capacitor is
expressed as follows:
(16)
..
..........
..........
..........
o
o
LC
C
L
F
=
π
2
1
Fig. 12. Gain and Phase of LC filter
(17)
.......
..........
..........
o
ESR
*ESR*C
F
π
=
2
1
Output Capacitor Selection
The voltage ripple and transient requirements
determine the output capacitors type and values.
The criteria is normally based on the value of the
Effective Series Resistance (ESR). However the :
actual capacitance value and the Equivalent Series
Inductance
(ESL)
are
other
contributing
components. These components can be described
as
Phase
00
F
LC
-1800
Frequency
Gain
F
LC
0 dB
Frequency
-40dB/decade



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