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ACE752D 데이터시트(PDF) 5 Page - ACE Technology Co., LTD.

부품명 ACE752D
상세설명  120KHz 3.5A Buck DC-DC Converter
PDF  9 Pages
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제조업체  ACE [ACE Technology Co., LTD.]
홈페이지  http://www.ace-ele.com
Logo ACE - ACE Technology Co., LTD.

ACE752D 데이터시트(HTML) 5 Page - ACE Technology Co., LTD.

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ACE752D
120KHz 3.5A Buck DC-DC Converter
VER 1.1
5
APPLICATIONS INFORMATION
Output Voltage and Feedback Loop Settings
Refer to the figure 1, the output voltage of the switching regulator (VOUT) can be set with Equation
following:
VOUT = (1+
)X0.835V
The limit current is set by the external resistor R2:
ILIMIT =
The ACE752D uses a patent-pending output voltage compensation scheme for the conductor wire loss
by properly selecting the value of R3, R4, if the conductor resistance is Rline, current sense resistor is R2
(Refer to the figure1), then:
R3 =
R4 =
For Rline=70mΩ, R2=33.3mΩ (2.1A current limit as figure 1), VOUT=5V:
R3=11k, R4=2.2k, choose R3=10k, R4=2k as the figure1.
Component Selection
Inductor Selection
The ACE752D can utilize small inductors due to its fast 120kHz switching frequency. Typically, a 100µH
inductor is recommended for most applications. Larger values of inductance will allow greater output
current capability by reducing the inductor ripple current. Increasing the inductance above will also
increase size.
The inductor current ripple is typically set for 20% to 40% of the maximum inductor current (IP). The
inductor should have low DCR (series resistance of the windings) to reduce the power losses, and must
be able to handle the peak inductor current without saturating. To minimize radiated noise, use a shielded
bobbin inductor.
Output and Input Capacitor Selection
Low ESR (equivalent series resistance) capacitors should be used to minimize the output voltage ripple.
The parallel of multilayer ceramic and electrolytic capacitors is an excellent choice as they have extremely
low ESR and are low cost.
A parallel of 10µF ceramic capacitor and 220µF electrolytic capacitor is sufficient for most applications.
Larger values may be used to obtain extremely low output voltage ripple and improve transient response.
Low ESR input capacitors reduce input switching noise and reduce the peak current drawn from the
battery. It follows that ceramic capacitors are also a good choice for input decoupling, and should be
located as close as possible to the device. A 10µF input capacitor is sufficient for virtually any application.
For all the ceramic capacitors above, X5R and X7R dielectric materials are preferred, for their ability to
maintain capacitance over wide voltage and temperature ranges.
R3
R4
70mV
R2
Rline
200
μ*R2
VOUT-0.835
0.835*R3



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