ISL6334ACRZR5368 Intersil, ISL6334ACRZR5368 Datasheet - Page 15

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ISL6334ACRZR5368

Manufacturer Part Number
ISL6334ACRZR5368
Description
IC CTRLR PWM 4PHASE BUCK 40QFN
Manufacturer
Intersil
Datasheet

Specifications of ISL6334ACRZR5368

Applications
Controller, Intel VR11.1
Voltage - Input
3 V ~ 12 V
Number Of Outputs
1
Voltage - Output
0.5 V ~ 1.6 V
Operating Temperature
0°C ~ 70°C
Mounting Type
*
Package / Case
*
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
pass through the DCR. Equation 4 shows the S-domain
equivalent voltage across the inductor V
A simple R-C network across the inductor extracts the DCR
voltage, as shown in Figure 4.
The voltage on the capacitor V
proportional to the channel current I
If the R-C network components are selected such that the
RC time constant (= R*C) matches the inductor time
constant (= L/DCR), the voltage across the capacitor V
equal to the voltage drop across the DCR, i.e., proportional
to the channel current.
With the internal low-offset current amplifier, the capacitor
voltage V
Therefore, the current out of ISEN+ pin, I
to the inductor current.
Because of the internal filter at ISEN- pin, one capacitor, C
is needed to match the time delay between the ISEN- and
ISEN+ signals. Select the proper C
constant of R
Equation 6 shows that the ratio of the channel current to the
sensed current, I
resistor and the DCR of the inductor.
V
V
ISL6334AR5368 INTERNAL CIRCUIT
L
C
s ( )
s ( )
CURRENT
=
=
SENSE
I
FIGURE 4. DCR SENSING CONFIGURATION
-------------------------------------------------------------------- -
L
C
s
I
n
I
SEN
is replicated across the sense resistor R
(
s L
-------------
DCR
ISL6596
ISEN
L
(
=
s RC
+
SEN
PWM(n)
+
I
DCR
and C
L
1
----------------- -
R
DCR
, is driven by the value of the sense
ISEN
+
(
)
DCR I
1
+
T
-
)
(R
V
IN
15
ISEN
L
C
)
, can be shown to be
ISEN-(n)
ISEN+(n)
x C
T
INDUCTOR
R
L
L
. See Equation 5.
to keep the time
I
T
L
) close to 27ns.
s ( )
V
L
SEN
L
V
.
DCR
C
-
C
(s)
, is proportional
-
R
C
ISEN(n)
T
C
ISEN
V
OUT
OUT
(EQ. 4)
ISL6334AR5368
(EQ. 5)
C
.
is
T
,
RESISTIVE SENSING
For accurate current sense, a dedicated current-sense resistor
R
current sense element (see Figure 5). This technique is more
accurate, but reduces overall converter efficiency due to the
additional power loss on the current sense element R
The same capacitor C
between ISEN- and ISEN+ signals. Select the proper C
keep the time constant of R
27ns.
Equation 7 shows the ratio of the channel current to the
sensed current I
The inductor DCR value will increase as the temperature
increases. Therefore, the sensed current will increase as the
temperature of the current sense element increases. In order
to compensate the temperature effect on the sensed current
signal, a Positive Temperature Coefficient (PTC) resistor can
be selected for the sense resistor R
temperature compensation function of ISL6334AR5368
should be utilized. The integrated temperature compensation
function is described in “External Temperature Compensation”
on page 24.
Channel-Current Balance
The sensed current I
together and divided by the number of active channels. The
resulting average current I
total load current. Channel current balance is achieved by
comparing the sensed current of each channel to the
average current to make an appropriate adjustment to the
PWM duty cycle of each channel with Intersil’s patented
current-balance method.
I
I
SEN
SEN
SENSE
ISL6334AR5368 INTERNAL CIRCUIT
FIGURE 5. SENSE RESISTOR IN SERIES WITH INDUCTORS
=
=
I
I
L
in series with each output inductor can serve as the
L
CURRENT
SENSE
I SEN
----------------- -
R
R
-----------------------
DCR
R
ISEN
SENSE
I
n
ISEN
=
SEN
I L
R SENSE
------------------------- -
.
n
R
T
ISEN
from each active channel is summed
is needed to match the time delay
+
-
AVG
ISEN
provides a measure of the
ISEN-(n)
ISEN+(n)
and C
L
ISEN
T
R
(R
, or the integrated
I
SENSE
L
ISEN
R
C
ISEN(n)
T
C
x C
September 7, 2010
V
OUT
OUT
T
SENSE
) close to
(EQ. 7)
FN6839.2
(EQ. 6)
T
to
.

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