IR3500VMTRPBF International Rectifier, IR3500VMTRPBF Datasheet - Page 26

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IR3500VMTRPBF

Manufacturer Part Number
IR3500VMTRPBF
Description
IC XPHASE3 CTLR VR11.1 32-MLPQ
Manufacturer
International Rectifier
Series
XPhase3™r
Datasheet

Specifications of IR3500VMTRPBF

Package / Case
32-MLPQ
Mounting Type
Surface Mount
Current - Supply
6.5mA
Voltage - Supply
4.75 V ~ 7.5 V
Operating Temperature
0°C ~ 100°C
Applications
Processor
Ic Function
Control IC
Supply Voltage Range
4.75V To 7.5V
Operating Temperature Range
0°C To +150°C
Digital Ic Case Style
MLPQ
No. Of Pins
32
Controller Type
XPhase
Filter Terminals
SMD
Rohs Compliant
Yes
Package
32-Lead MLPQ
Circuit
X-Phase Control IC
Switch Freq (khz)
250kHz to 1.5MHz
Pbf
PbF Option Available
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Where; I
No Load Output Voltage Setting Resistor R
A resistor between VSETPT pin and VDAC is used to create output voltage offset V
difference between V
I
VCCL Capacitor C
driven. The linear regulator supplies the bias and gate drive current of the phase ICs. A 4.7uF normally ensures
stable VCCL performance.
VCCL Programming Resistor R
Since VCCL voltage is proportional to the MOSFET gate driver loss and inversely proportional to the
MOSFET conduction loss, the optimum voltage should be chosen to maximize the converter efficiency. VCCL
linear regulator consists of an external NPN transistor, a ceramic capacitor and a programmable resistor
divider. Pre-select R
VCCL Regulator Drive Resistor R
minimum input voltage requirements. The following equation gives an estimate of the average load current of
the switching phase ICs.
Q
VCCL, the maximum R
Due to limited pull down capability of the VCCLDRV pin, make sure the following condition is satisfied.
VSETPT
The capacitor is selected based on the stability requirement of the linear regulator and the load current to be
The drive resistor is primarily dependent on the load current requirement of the linear regulator and the
gb
and Q
G
D=Vo/V
is the current flowing out of VSETPT pin as shown in Figure 23.
Page 26 of 34
LIMIT
CS
gt
=Over current limit, n=Number of phases, K
=Gain of the current sense amplifier, I
are the gate charge of the top and bottom FET. For a minimum input voltage and a maximum
I
, m=Maximum integer that doesn’t exceed (n*D)
VCCL
VCCLFB1
DAC
VCCLDRV
K
R
I
voltage and output voltage at no load condition. R
drive
OCSET
P
=
R
, and calculate R
_
R
VCCLDRV
avg
VCCLFB
V
required to use the full pull-down current of the VCCL driver is given by
I
=
VCCLFB1
=
[
D
(
I
I
[
LIMIT
LIMIT
VCCLDRV
(
2
1 (
n
Q
=
=
V
gb
/
D
R
I
n
VCCL
+
(min)
VCCLFB
)
)
R
and R
Q
L
R
L
n
VSETPT
_
gt
I
VCCLFB2
(
MAX
f
drive
VSETPT
)
D
sw
1
*
. 1
0
VCCLFB2
f
_
. 1
2
7 .
OCSET
19
sw
avg
m
n
=
19
1 (
D
)
+
V
VCCL
/
+
,
(
10
O
β
1 (
from (15).
I
m
K
= Determined by the ROSC and given by Figure 10,
VSETPT
P
_
min
n
=Ratio of the peak to average current for the inductor,
mA
P
+
NLOFST
)
D
1
(max)
+
)
]
V
D
CS
n
)
_
TOFST
]
G
CS
/
VSETPT
I
(15)
OCSET
(17)
(16)
is determined by (14), where
(13)
(12)
O_NLOFST,
(14)
July 28, 2008
IR3500V
which is the

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