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SC2544 データシートの表示(PDF) - Semtech Corporation

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SC2544 Datasheet PDF : 24 Pages
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SC2544
POWER MANAGEMENT
Applications Information (Cont.)
General Design Procedure for a Step-down Power
Converter
IL,rms = Io
1
+
δ2
12
.
Selection criterias and design procedures for the fol-
lowing parameters are described:
1) Output inductor (L) type and value
2) Output capacitor (Co) type and value
3) Input capacitor (C ) type and value
in
4) Power MOSFETs
5) Current sensing and limiting circuit
6) Voltage sensing circuit
7) Loop compensation network
The following step-down converter specifications are
needed:
Input voltage range: V and V
in,min
in,max
Input voltage ripple (peak-to-peak): DVin
Output voltage: V
o
Output voltage accuracy: e
Output voltage ripple (peak-to-peak): DV
o
Nominal output (load) current: Io
Maximum output current limit: I
o,max
Output (load) current transient slew rate: dIo (A/ s)
Circuit efficiency: η
Inductor (L) and Ripple Current
Both step-down controllers in the SC2544 operate in
synchronous continuous-conduction mode (CCM)
regardless of the output load level. The output
inductor selection/design is based on the output DC
and transient requirements. Both output current and
voltage ripples are reduced with larger inductance
but it takes longer to change the inductor current
during load transients. Conversely smaller inductance
results in lower DC copper losses but the AC core
losses (flux swing) and the winding AC resistance losses
are higher. A compromise is to choose the inductance
such that peak-to-peak inductor ripple-current is 20%
to 30% of the rated output load current.
Assuming that the inductor current ripple (peak-to-
peak) value is δ
*I , the inductance value will then
o
be
L
=
Vo (1D) .
δIo fs
The peak current in the inductor becomes
The followings are to be considered when choosing
inductors.
a) Inductor core material: For higher efficiency
applications above 300 KHz, ferrite, Kool-Mu and
polypermalloy materials should be used. Low-cost
powdered iron cores can be used for cost sensitive-
applications below 300 KHz but with attendant higher
core losses.
b) Select inductance value: Sometimes the calculated
inductance value is not available off-the-shelf. The
designer can choose the adjacent (larger) standard
inductance value. The inductance varies with
temperature and DC current. It is a good engineering
practice to re-evaluate the resultant current ripple
at the rated DC output current.
c) Current rating: The saturation current of the
inductor should be at least 1.5 times of the peak
inductor current under all conditions.
Output Capacitor (Co) and Vout Ripple
The output capacitor provides output current filtering
in steady state and serves as a reservoir during load
transient. The output capacitor can be modeled as
an ideal capacitor in series with its parasitic ESR and
ESL as shown in Figure 4.
Co
Lesl
Resr
Figure 4. An equivalent circuit of output.
If the current through the branch is ib(t), the voltage
across the terminals will then be
vo(t) =
Vo
1
+ Co
t
ib(t)dt + Lesl
0
dib(t)
dt
+ Resrib(t).
(1+ δ /2)*Io
This basic equation illustrates the effects of ESR,
ESL, and Co on the output voltage.
and the RMS current is
2005 Semtech Corp.
10
www.semtech.com

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