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SC453 Arkusz danych(PDF) 14 Page - Semtech Corporation

Numer części SC453
Szczegółowy opis  Portable, VID Programmed Single Phase Power Supply Controller
PDF  23 Pages
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Producent  SEMTECH [Semtech Corporation]
Strona internetowa  http://www.semtech.com
Logo SEMTECH - Semtech Corporation

SC453 Arkusz danych(HTML) 14 Page - Semtech Corporation

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© 2006 Semtech Corp.
www.semtech.com
POWER MANAGEMENT
SC453
Applications Information (Cont.)
DESIGN PROCEDURE
Step 1: Define Constants
Maximum input voltage
Minimum input voltage
Maximum load current,
highest output voltage
Leakage current, highest
output voltage
The highest V
CORE voltage
The lowest V
CORE voltage
SC453 Internal reference voltage
Output capacitance per cap
ESR per cap
Current sense resistor
Parasitic resistance from the
current sense resistor to the
processor
Voltage droop allowed for a low
current to high current transient
Voltage rise allowed for a high
current to low current transient
Desired maximum output ripple
Step 2: Output Inductor and Capacitor Selection
The SC453 has "passive" droop. The voltage at full load is
less than the DAC voltage by the voltage drop across the
current sense resistor and any PCB copper losses from
the sense resistor to the processor socket. The steady-
state voltage at full load is:
VMAX_FL VMAX_NL
RCS RCU
+
()IMAX_FL
:=
VMAX_FL 1.182 V
=
Output capacitance and ESR values are a function of
transient requirements and output inductor value. Figure
1 illustrates the response of a hysteretic converter to a
positive transient. In a hysteretic converter with passive
droop, like the SC453, two conditions determine if you
meet the positive transient requirements.
A.
ESR
VPOS_TRANS
IMAX_FL ILKGMAX
(
)
B.
VNEG_TRANS deltaV COUT
()
Figure 1 - Hysteretic Converter Response to a
Positive Transient
The first condition is easy to see; if the ESR is too high, the
transient response will fail.
VINMAX 20V
:=
VINMIN
8V
:=
IMAX_FL 20A
:=
ILKGMAX 5A
:=
VMAX_NL 1.212V
:=
VMIN_NL
0.956 V
:=
VREF 1.7V
:=
COUT 330 μF
:=
RESR 6m Ω
:=
RCS 1m Ω
:=
RCU 0.5m Ω
:=
VPOS_TRANS
50mV
:=
VNEG_TRANS 50mV
:=
VRIPPLE
20m V
:=



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