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L7986 Datasheet(PDF) 15 Page - STMicroelectronics

Part # L7986
Description  3 A step-down switching regulator
PDF  43 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

L7986 Datasheet(HTML) 15 Page - STMicroelectronics

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DocID022450 Rev 6
15/43
L7986
Application information
43
6
Application information
6.1
Input capacitor selection
The capacitor connected to the input must be capable of supporting the maximum input
operating voltage and the maximum RMS input current required by the device. The input
capacitor is subject to a pulsed current, the RMS value of which is dissipated over its ESR,
affecting the overall system efficiency.
So, the input capacitor must have an RMS current rating higher than the maximum RMS
input current and an ESR value compliant with the expected efficiency.
The maximum RMS input current flowing through the capacitor can be calculated as:
Equation 6
where IO is the maximum DC output current, D is the duty cycle, is the efficiency.
Considering
, this function has a maximum at D = 0.5 and it is equal to IO/2.
In a specific application, the range of possible duty cycles must be considered in order to
find out the maximum RMS input current. The maximum and minimum duty cycles can be
calculated as:
Equation 7
and
Equation 8
where VF is the forward voltage on the freewheeling diode and VSW is the voltage drop
across the internal PDMOS.
The peak-to-peak voltage across the input capacitor can be calculated as:
Equation 9
where ESR is the equivalent series resistance of the capacitor.
Given the physical dimension, ceramic capacitors can well meet the requirements of the
input filter sustaining a higher input RMS current than electrolytic/tantalum types.
IRMS
IO
D
2D
2
---------------
D
2
2
-------
+
=
DMAX
VOUT VF
+
VINMIN VSW
-------------------------------------
=
DMIN
VOUT VF
+
VINMAX VSW
--------------------------------------
=
VPP
IO
CIN FSW
-------------------------
1
D
----

 D D
----
1D

+
ESR IO
+
=



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