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MCR03EZPFX1002 Datasheet(PDF) 17 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) 17 Page - International Rectifier

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Rev 16.0
17
PD-97660
IR3831WMPbF
IR3831W
Vin
When an external resistor divider is connected to
the output as shown in figure 10.
Equation (5) can be rewritten as:
For low voltage applications, such as this
design, it is often advisable to eliminate the bias
resistor R9 from Fb to ground. For the calculated
value of R8 see feedback compensation section.
Further, the tracking reference Vp may be itself
derived from some master reference by means
of a resistive divider as shown in Fig. 9. This is
common in active bus termination circuits such
as Voltage Tracking Termination (VTT) where
the tracking reference Vp may be obtained as
half of the master reference VDDQ which forms
the input to one or more memory banks.
In this design,
VDDQ=1.5V
R
p1=Rp2=1.5 kΩ
Vp=0.75V
It is desirable to use a small capacitor such as
10nF in parallel with R
p2
to bypass high
frequency noise on Vp pin.
Soft-Start Programming
The soft-start timing can be programmed by
selecting the soft-start capacitance value. From
(1), for a desired start-up time of the converter,
the soft start capacitor can be calculated by
using:
Where T
start is the desired start-up time (ms).
For tracking applications the output is generally
required to track Vp even at start-up. Hence, it is
necessary to ensure that the SS pin is already
up to 3 V before the tracking reference signal is
applied to the Vp pin. This can be done by
choosing a small value for the soft-start
capacitor to ensure that the voltage at the SS pin
rises to 3 V quickly. A 0.022 uF capacitor is
chosen for this purpose.
Application Information
Design Example:
The following example is a typical application for
IR3831W. The application circuit is shown on
page 22.
Enabling the IR3831W
As explained earlier, the precise threshold of
the Enable lends itself well to implementation of
a UVLO for the Bus Voltage.
For a typical Enable threshold of V
EN = 1.2 V
For a V
in (min)=10.2V, R1=49.9K and R2=7.5kΩ is
a good choice.
Programming the frequency
For F
s = 400 kHz, select Rt = 35.7 kΩ, using
Table. 1.
Output Voltage Programming
Output voltage is programmed by the tracking
reference voltage at Vp and external voltage
divider. The divider is ratioed such that the
voltage at the Fb pin is equal to the voltage at the
Vp pin pin when the output is at its desired value.
The output voltage is defined by using the
following equation:
kHz
400
=
22.5mV
A
8
=
V
0.75
=
max)
13.2V
(
V
12
=
s
o
o
o
in
F
ΔV
I
V
V
.....(7)
..........
..........
..........
⎟⎟
⎜⎜
+
=
9
8
1
R
R
V
V
p
o
Fig. 10. Typical application of the IR3831W for
programming the output voltage
(8)
....
..........
..........
..........
V
V
V
R
R
p
o
p
=
8
9
T
C
start
SS
(9)
..........
0.02857
)
ms
(
)
μF
(
×
=
Enable
R2
R
1
V
R
R
R
V
EN
in
(5)
..........
1.2
*
(min)
=
=
+
2
1
2
V
V
V
R
R
EN
)
in(
EN
(6)
..........
min
=
1
2
IR3831W
Vo
VDDQ
R8
R9
Rp1
Rp2
Fb
Vp



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