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MPQ2490 Datasheet(PDF) 9 Page - Monolithic Power Systems

No. de pieza MPQ2490
Descripción Electrónicos  Industrial Grade, 1.5A, 36V, 700kHz Step-Down Converter with Programmable Output Current Limit
PDF  11 Pages
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Fabricante Electrónico  MPS [Monolithic Power Systems]
Página de inicio  http://www.monolithicpower.com
Logo MPS - Monolithic Power Systems

MPQ2490 Datasheet(HTML) 9 Page - Monolithic Power Systems

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MPQ2490
–INDUSTRIALGRADE,1.5A,36V,700kHzSTEP-DOWNWITHPROGRAMMABLEOUTPUTCURRENTLIMIT
MPQ2490 Rev. 1.02
www.MonolithicPower.com
9
7/26/2013
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2013 MPS. All Rights Reserved.
APPLICATION INFORMATION
Setting the Output Voltage
The external resistor divider is used to set the
output voltage (see the schematic on front
page). The feedback resistor R1 also sets the
feedback loop bandwidth with the internal
compensation capacitor (see Figure 1). Choose
R1 to be around 301k
Ω for optimal transient
response. R2 is then given by:
1
V
8
.
0
V
1
R
2
R
OUT
Table 1
—Resistor Selection for Common
Output Voltages
VOUT (V)
R1 (k
Ω)
R2 (k
Ω)
1.8
301(1%)
243 (1%)
2.5
301 (1%)
140 (1%)
3.3
301 (1%)
95.3 (1%)
5
301 (1%)
57.6 (1%)
Selecting the Inductor
A 1µH to 15µH inductor with a DC current rating
of at least 25% percent higher than the
maximum load current is recommended for
most applications. For highest efficiency, the
inductor DC resistance should be as low as
possible, i.e. 150m
Ω or less. For most designs,
the inductance value can be derived from the
following equation.
SW
L
IN
OUT
IN
OUT
f
I
V
)
V
V
(
V
L
Where
ΔI
L is the inductor ripple current.
Choose
inductor
current
ripple
to
be
approximately 30%
of the maximum
load
current. The maximum inductor peak current is:
2
I
I
I
L
LOAD
)
MAX
(
L
Under light load conditions below 100mA, larger
inductance
is
recommended
for
improved
efficiency.
Selecting the Input Capacitor
The input capacitor reduces the surge current
drawn from the input and also the switching
noise from the device. The input capacitor
impedance at the switching frequency should
be less than the input source impedance to
prevent high frequency switching current from
pass to the input. Ceramic capacitors with X5R
or X7R dielectrics are highly recommended
because
of
their
low
ESR
and
small
temperature coefficients. For most applications,
a 4.7µF capacitor is sufficient.
Selecting the Output Capacitor
The output capacitor keeps output voltage small
and ensures regulation loop stability. The
output capacitor impedance should be low at
the switching frequency. Ceramic capacitors
with X5R or X7R dielectrics are recommended.
PC Board Layout
The high current paths (GND, IN and SW)
should be placed very close to the device with
short,
direct
and
wide
traces.
The
input
capacitor needs to be as close as possible to
the IN and GND pins. The external feedback
resistors should be placed next to the FB pin.
Keep the switching node SW short and away
from the feedback network. ISN, ISP are
sensitive nodes. Put the sensing components
as close to the device as possible and keep
them away from the high current and noisy
paths such as GND, IN, SW). Match the trace
and components on ISN, ISP paths as good as
possible.



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