ISL6327 Intersil Corporation, ISL6327 Datasheet - Page 27

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ISL6327

Manufacturer Part Number
ISL6327
Description
Enhanced 6-Phase PWM Controller
Manufacturer
Intersil Corporation
Datasheet

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channel switching frequency. The values of the
compensation components depend on the relationships of f
to the L-C pole frequency and the ESR zero frequency. For
each of the three cases which follow, there are a separate
set of equations for the compensation components.
In Equation 35, L is the per-channel filter inductance divided
by the number of active channels; C is the sum total of all
output capacitors; ESR is the equivalent-series resistance of
the bulk output-filter capacitance; and V
peak sawtooth signal amplitude as described in Electrical
Specifications.
The optional capacitor C
noise away from the PWM comparator (see Figure 18). Keep
a position available for C
frequency capacitor of between 22pF and 150pF in case any
leading-edge jitter problem is noted.
Once selected, the compensation values in Equation 35
assure a stable converter with reasonable transient
performance. In most cases, transient performance can be
improved by making adjustments to R
value of R
oscilloscope until no further improvement is noted. Normally,
C
Equation 35 unless some performance issue is noted.
COMPENSATION WITHOUT LOAD-LINE REGULATION
The non load-line regulated converter is accurately modeled
as a voltage-mode regulator with two poles at the L-C
resonant frequency and a zero at the ESR frequency. A
Case 1:
Case 2:
Case 3:
C
will not need adjustment. Keep the value of C
C
while observing the transient performance on an
R
C
-------------------
2π LC
f
R
C
-------------------
2π LC
R
C
0
C
C
C
C
C
C
>
1
1
=
=
----------------------------- -
2πC ESR
=
=
=
=
R
------------------------------------------------------------ -
(
R
0.75V
------------------------------------------------ -
R
----------------------------------- -
2πV
2
2
2πV
>
FB
FB
, is sometimes needed to bypass
FB
, and be prepared to install a high-
(
1
0.75V
f
f
)
0
0
V
--------------------------------------------
2
PP
2πf
----------------------------------- -
----------------------------------------- -
0.75 V
27
PP
<
PP
f
IN
0
0.75V
----------------------------- -
2πC ESR
0.75V
R
2
2π f
0
)
R
0.75 V
(
(
IN
FB
V
ESR
V
FB
PP
pp
0
IN
(
f
1
0
)
V
f
IN
2
IN
0
R
(
pp
) C
IN
ESR
C
LC
f
FB
0
L
2
. Slowly increase the
L
PP
)
LC
LC
)
is the peak-to-
C
from
(EQ. 35)
0
ISL6327
type III controller, as shown in Figure 18, provides the
necessary compensation.
The first step is to choose the desired bandwidth, f
compensated system. Choose a frequency high enough to
assure adequate transient performance but not higher than
1/3 of the switching frequency. The type-III compensator has
an extra high-frequency pole, f
added noise rejection or to assure adequate attenuation at
the error-amplifier high-order pole and zero frequencies. A
good general rule is to choose f
higher if desired. Choosing f
cause problems with too much phase shift below the system
bandwidth.
In the solutions to the compensation equations, there is a
single degree of freedom. For the solutions presented in
Equation 36, R
compensation components are then selected according to
Equation 36.
In Equation 36, L is the per-channel filter inductance divided
by the number of active channels; C is the sum total of all
R
C
C
R
C
FIGURE 18. COMPENSATION CIRCUIT FOR ISL6327 BASED
1
1
2
C
C
=
=
=
=
=
C
R
R
---------------------------------------- -
------------------------------------------------------------------ -
(
-------------------------------------------------------------------- -
0.75 V
------------------------------------------------------------------ -
(
0.75V
1
1
LC C ESR
V
FB
PP
)
)
2
---------------------------------------- -
2
R
f
f
LC C ESR
0
IN
0
FB
IN
f
f
C ESR
CONVERTER WITHOUT LOAD-LINE
REGULATION
0.75V
HF
(
HF
FB
(
2πf
2πf
2
f
0
LCR
LCR
is selected arbitrarily. The remaining
(
HF
f
R
HF
IN
)
HF
FB
R
)
C
LCR
FB
LC 1
FB
LC 1
)
C
V
2
V
C
PP
FB
PP
C
HF
HF
to be lower than 10f
HF
IDROOP
. This pole can be used for
COMP
VDIFF
= 10f
FB
0
, but it can be
0
0
June 5, 2006
, of the
(EQ. 36)
can
FN9276.1

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