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L6984 Datenblatt(PDF) 23 Page - STMicroelectronics

Teilenummer L6984
Bauteilbeschribung  36 V 400 mA synchronous step-down switching regulator
PDF  34 Pages
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Hersteller  STMICROELECTRONICS [STMicroelectronics]
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L6984 Datenblatt(HTML) 23 Page - STMicroelectronics

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L6984
Design of the power components
34
4
Design of the power components
4.1
Input capacitor selection
The input capacitor voltage rating must be higher than the maximum input operating voltage
of the application. During the switching activity a pulsed current flows into the input capacitor
and so its RMS current capability must be selected accordingly with the application
conditions. Internal losses of the input filter depend on the ESR value, so usually low ESR
capacitors (like multilayer ceramic capacitors) have a higher RMS current capability. On the
other hand, given the RMS current value, lower ESR input filter has lower losses and so
contributes to higher conversion efficiency.
The maximum RMS input current flowing through the capacitor can be calculated as:
Equation 13
Where IO is the maximum DC output current, D is the duty cycles, is the efficiency. This
function has a maximum at D = 0.5 and, considering
= 1, it is equal to IO/2.
In a specific application the range of possible duty cycles has to be considered in order to
find out the maximum RMS input current. The maximum and minimum duty cycles can be
calculated as:
Equation 14
and
Equation 15
Where
V
HIGH_SIDE and VLOW_SIDE are the voltage drops across the embedded switches.
The peak-to-peak voltage across the input filter can be calculated as:
Equation 16
In case of negligible ESR (MLCC capacitor) the equation of CIN as a function of the target
VPP can be written as follows:
Equation 17
IRMS
IO
D
2D
2
---------------
D
2
2
-------
+
=
DMAX
VOUT VLOW_SIDE
+
VINMIN VLOW_SIDE VHIGH_SIDE
+
--------------------------------------------------------------------------------------------------
=
DMIN
VOUT VLOW_SIDE
+
VINMAX VLOW_SIDE VHIGH_SIDE
+
----------------------------------------------------------------------------------------------------
=
VPP
IO
CIN fSW
-----------------------
1
D
----

 D
D
----
1D

+
ESR IO
+
=
CIN
IO
VPP fSW
-------------------------
1
D
----

 D
D
----
1D

+
=



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