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L6986H bảng dữ liệu(PDF) 48 Page - STMicroelectronics

tên linh kiện L6986H
Giải thích chi tiết về linh kiện  38 V, 2 A synchronous step-down switching regulator with 30 μA quiescent current
PDF  68 Pages
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L6986H bảng dữ liệu(HTML) 48 Page - STMicroelectronics

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Figure 51. Master driving capability to synchronize the L6986H
6.6
Design of the power components
6.6.1
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 depends on the ESR
value so usually low ESR capacitors (like multilayer ceramic capacitors) have 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:
IRMS=IOUT⋅ (1−Dη)⋅Dη
(43)
Where IOUT is the maximum DC output current, D is the duty cycles, ƞ is the efficiency. This function has a
maximum at D = 0.5 and, considering h = 1, it is equal to IOUT/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:
DMAX=
VOUT+ΔVLOWSIDE
VINMIN+ΔVLOWSIDE−VINMIN+ΔVHIGHSIDE
(44)
DMIN=
VOUT+ΔVLOWSIDE
VINMAX+ΔVLOWSIDE−VINMIN+ΔVHIGHSIDE
(45)
Where DVHIGH_SIDE and DVLOW_SIDE are the voltage drops across the embedded switches. The peak-to-peak
voltage across the input filter can be calculated as follows:
CIN= IOUT
VPP⋅fSW⋅(1−Dη)⋅Dη+ESR⋅(IOUT+ΔIL)
(46)
In case of negligible ESR (MLCC capacitor) the equation of CIN as a function of the target VPP can be written as
follows:
CIN= IOUT
VPP⋅fSW⋅(1−Dη)⋅Dη
(47)
Considering ƞ=1 this function has its maximum in D = 0.5:
CINMIN= IOUT
4⋅VPPMAX⋅fSW
(48)
Typically CIN is dimensioned to keep the maximum peak-peak voltage across the input filter in the order of 5%
VIN_MAX.
L6986H
Design of the power components
DS12905 - Rev 2
page 48/68



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