IRDC3822A International Rectifier, IRDC3822A Datasheet - Page 14

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IRDC3822A

Manufacturer Part Number
IRDC3822A
Description
BOARD EVAL SYNC BUCK CONVERTER
Manufacturer
International Rectifier
Datasheets
11/04/08
To cancel one of the LC filter poles, place the
zero before the LC filter resonant frequency pole:
Use equations (15) and (16) to calculate C4.
One more capacitor is sometimes added in
parallel with C4 and R3. This introduces one
more pole which is mainly used to suppress the
switching noise.
The additional pole is given by:
The pole sets to one half of switching frequency
which results in the capacitor C
For a general solution for unconditional stability
for any type of output capacitors, in a wide range
of ESR values we should implement local
feedback with a compensation network (type III).
The typically used compensation network for
voltage-mode controller is shown in figure 15.
In such a configuration, the transfer function is
given by:
The error amplifier gain is independent of the
transconductance under the following condition:
By replacing Z
transformer function can be expressed as:
H
(
g
s
)
m
=
*
sR
Z
C
For
f
F
F
8
z
z
POLE
>>
(
C
=
=
1
4
F
75
0
1
F
P
=
+
.
in
P
75
%
<<
and
C
π
V
V
=
and Z
F
3
*
e
o
2
*
LC
)
F
2
π
2
R
*
=
s
π
3
*
1
(
1
g
R
*
1
f
1
1
L
according to figure 15, the
+
1
m
F
3
+
+
o
s
*
*
sR
*
sR
1
g
C
g
C
C
Z
m
3
4
4
C
o
m
in
3
1
⎜ ⎜
Z
+
C
*
Z
4
C
C
>>
C
C
IN
4
f
4
-
* )
4
POLE
POLE
POLE
- -
+
*
1
π
[
C
1
C
(17)
*
3
+
3
:
R
⎟ ⎟
1
sC
-
3
- -
( *
*
7
F
(
1
(18)
R
s
+
8
sR
+
R
10
10
C
)
7
]
)
H(s) dB
As known, a transconductance amplifier has high
impedance (current source) output, therefore,
consideration should be taken when loading the
error amplifier output. It may exceed its
source/sink output current capability, so that the
amplifier will not be able to swing its output
voltage over the necessary range.
The compensation network has three poles and
two zeros and they are expressed as follows:
Cross over frequency is expressed as:
F
F
F
F
F
Fig.15: Compensation network with local
Z
P
P
P
1 z
z
2
1
2
3
IN
Gain(dB)
=
=
=
=
=
F
R
feedback and its asymptotic gain plot
0
2
2
2
2
o
C
10
π
π
π
π
=
7
*
*
F
R
*
*
R
V
C
Z
1
R
R
3
1
1
OUT
3
7
*
10
3
⎜ ⎜
*
( *
C
R
1
R
1
*
C
C
C
7
8
9
C
R
4
*
4
4
7
8
V
+
*
V
+
osc
V
C
in
IR3822AMPbF
C
Fb
REF
F
R
3
3
*
Z
10
⎟ ⎟
2
2
)
π
*
2
R
1
L
2
π
3
F
o
E/A
π
P
*
*
2
C
*
R
1
C
o
1
C
3
7
*
3
*
C
PD-60345
R
F
3
C
8
P
Comp
3
4
Frequency
Z
Ve
f
14

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