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SC198MLTRT Datasheet(PDF) 9 Page - Semtech Corporation

Part # SC198MLTRT
Description  Dual DC-DC Buck Converter with High Current Capability
PDF  16 Pages
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Manufacturer  SEMTECH [Semtech Corporation]
Direct Link  http://www.semtech.com
Logo SEMTECH - Semtech Corporation

SC198MLTRT Datasheet(HTML) 9 Page - Semtech Corporation

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Applications Information (Cont.)
9
© 2006 Semtech Corp.
www.semtech.com
SC198
POWER MANAGEMENT
Inductor Selection
The SC198 was designed for optimum performance when
using a 4.7μH inductor. The magnitude of the inductor
current ripple is dependent on the inductor value and can
be determined by the following equation:
V
OUT
V
OUT
ΔI
L = ———
(1+———)
L × f
OSC
V
IN
This equation demonstrates the relationship between in-
put voltage, output voltage, and inductor ripple current.
The inductor should also have a low DCR to minimize the
conduction losses and maximize efficiency. The minimum
DC current rating of the inductor should be equal to the
maximum load current plus half of the inductor current
ripple as shown by the following equation:
ΔI
L
I
L(PK) = IOUT(MAX) + ——
2
Final inductor selection will depend on various design con-
siderations such as efficiency, EMI, size and cost. Table B
lists some manufactuers of practical inductor options.
Capacitor Selection
Input Capacitor
The source input current to a buck converter is non-on-
tinuous. To prevent large input voltage ripple a low ESR
ceramic capacitor is required. A minimum value of 4.7μF
should be used for sufficient input voltage filtering and a
22μF MLCC may be used for optimum input voltage filter-
ing.
Output Capacitor
A 4.7μF ceramic capacitor is the minimum recommended
for the output filter capacitor. A capacitor value of at least
10μF is recommended if the part will be used in power-
save mode. Output voltage ripple is dominated by the fil-
ter capacitance ESR as shown in the following equation:
V
OUT(P-P) = ΔIL × ESRCOUT
Capacitors with X7R or X5R ceramic dielectric are strongly
recommended for their low ESR and superior temperature
and voltage characteristics. Y5V capacitors should not be
used as their temperature coefficients make them unsuit-
able for this application. Table C lists some manufactur-
ers of recommended capacitor options.



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