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L6986ITR Datasheet(PDF) 41 Page - STMicroelectronics

Part # L6986ITR
Description  38 V, 5 W synchronous iso-buck converter for isolated applications
PDF  60 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
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L6986ITR Datasheet(HTML) 41 Page - STMicroelectronics

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Figure 48. Transformer parasitic capacitances
CP
CS
CWW
6.5.3
Schottky diode
The selection of the Schottky diode should consider the following parameters:
Maximum forward current, mainly defined by the secondary output current demand (see equation (43));
Forward voltage drop, which affects the secondary output voltage regulation
Maximum peak reverse voltage. During the on phase of the primary side, when in the secondary side no
current flows, the diode is reverse biased and must withstand this voltage:
VD1_rev = N∙VINmax−VOUT_pri+VOUT_sec
(44)
Junction capacitance, which should be as low as possible in order to reduce the ringing described in the
previous section
6.5.4
Output capacitors selection
Primary output capacitor
As in a standard buck converter, the primary output capacitor is involved in:
Determining the output voltage ripple
Supporting load transient
The loop stability, by setting one pole and one zero in the transfer function
Considering the ouput voltage ripple requirement, the primary output capacitance should be selected according to
the following equation:
COUT_pri=
ΔIpri
8∙fSW∙ΔVOUT_pri−ESR∙ΔIpri
(45)
Normally MLCC capacitor are the best choice for the output capacitor, therefore the ESR contribution is negligible
and the equation (46) can be simplified.
Secondary output capacitor
The secondary output capacitor supplies the secondary output load current during the tON (when diode D1 is
reverse biased) and its value defines the secondary output voltage ripple (ΔVOUT).
COUT_sec= IOUT_sec∙D
ΔVOUT_sec∙fSW
(46)
L6986I
Design of the external components
DS13647 - Rev 1
page 41/60



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