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ST1S40 Datasheet(PDF) 15 Page - STMicroelectronics

Part # ST1S40
Description  3 A DC step-down switching regulator
PDF  29 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

ST1S40 Datasheet(HTML) 15 Page - STMicroelectronics

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DocID17928 Rev 5
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ST1S40
Application information
29
In Table 6 some multi layer ceramic capacitors suitable for this device are reported.
A ceramic bypass capacitor, as close as possible to the VINA pin, so that additional parasitic
ESR and ESL are minimized, is suggested in order to prevent instability on the output
voltage due to noise. The value of the bypass capacitor can go from 330 nF to 1 µF.
6.2
Inductor selection
The inductance value fixes the current ripple flowing through the output capacitor. So the
minimum inductance value, to have the expected current ripple, must be selected. The rule
to fix the current ripple value is to have a ripple at 20% to 40% of the output current.
In continuous current mode (CCM), the inductance value can be calculated by Equation 18
Equation 18
where TON is the conduction time of the high side switch and TOFF is the conduction time of
the low side switch (in CCM, FSW = 1/(TON + TOFF)). The maximum current ripple, given the
Vout, is obtained at maximum TOFF, that is at minimum duty cycle. So by fixing IL = 20% to
30% of the maximum output current, the minimum inductance value can be calculated:
Equation 19
where FSWMIN is the minimum switching frequency, according to Table 4
The peak current through the inductor is given by:
Equation 20
so if the inductor value decreases, the peak current (that must be lower than the current limit
of the device) increases. The higher the inductor value, the higher the average output
current that can be delivered, without reaching the current limit.
Table 6. Input MLCC capacitors
Manufacturer
Series
Cap value (
F)
Rated voltage (V)
Murata
GRM31
10
25
GRM55
10
25
TDK
C3225
10
25
I
L
VIN VOUT
L
------------------------------ TON
VOUT
L
-------------- TOFF
==
LMIN
VOUT
I
MAX
----------------
1DMIN
FSWMIN
-----------------------
=
ILPK
IO
I
L
2
--------
+
=



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