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AX3050ESA 데이터시트(PDF) 9 Page - AXElite technology co. ltd

부품명 AX3050ESA
상세설명  2.3A, Wide Input Sensorless CC/CV Step Down DC/DC Converter
PDF  16 Pages
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제조업체  AXELITE [AXElite technology co. ltd]
홈페이지  http://www.axelite.com.tw/
Logo AXELITE - AXElite technology co. ltd

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Axelite Confidential Materials, do not copy or distribute without written consent.
Rev.2.1 Oct.04, 2019
AX3050/A
Input Capacitor
The input capacitor needs to be carefully selected to maintain sufficiently low ripple at
the supply input of the converter. A low ESR capacitor is highly recommended. Since large
current flows in and out of this capacitor during switching, its ESR also affects efficiency.
The input capacitance needs to be higher than 100μF. The best choice is the ceramic
type, however, low ESR tantalum or electrolytic types may also be used provided that the
RMS ripple current rating is higher than 50% of the output current. The input capacitor
should be placed close to the IN and G pins of the IC, with the shortest traces possible. In
the case of tantalum or electrolytic types, they can be further away if a small parallel 0.1μF
ceramic capacitor is placed right next to the IC. Especially C8 capacitor should be placed as
close as possible to the IC pin.
Output Capacitor
The output capacitor also needs to have low ESR to keep low output voltage ripple.
The output ripple voltage is:
OUT
2
LX
IN
ESR
RIPPLE
OUTMAX
RIPPLE
LC
f
×
28
V
+
R
K
I
=
V
where IOUTMAX is the maximum output current, KRIPPLE is the ripple factor, RESR is
the ESR of the output capacitor, fLX is the switching frequency, L is the inductor value, and
COUT is the output capacitance. In the case of ceramic output capacitors, RESR is very
small and does not contribute to the ripple. Therefore, a lower capacitance value can be
used for ceramic type. In the case of tantalum or electrolytic capacitors, the ripple is
dominated by RESR multiplied by the ripple current. In that case, the output capacitor is
chosen to have sufficiently low ESR.
For ceramic output capacitor, typically choose a capacitance of about 470μF. For
tantalum or electrolytic capacitors, choose a capacitor with less than 50mΩ ESR.



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