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ACE7215A Datasheet(PDF) 7 Page - ACE Technology Co., LTD.

Part # ACE7215A
Description  1.5A 2MHz 6V Synchronous Buck Converter
PDF  9 Pages
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Manufacturer  ACE [ACE Technology Co., LTD.]
Direct Link  http://www.ace-ele.com
Logo ACE - ACE Technology Co., LTD.

ACE7215A Datasheet(HTML) 7 Page - ACE Technology Co., LTD.

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ACE7215A
1.5A 2MHz 6V Synchronous Buck Converter
VER 1.1
7
UVLO and Thermal Shutdown
If VIN drops below 2.1V, the UVLO circuit inhibits switching. Once VIN rises above 2.2V, the UVLO clears,
and the soft-start sequence activates. Thermal-overload protection limits total power dissipation in the
device. When the junction temperature exceeds TJ= +160°C, a thermal sensor forces thedeviceintoshutdown,
allowing thedieto cool. The thermal sensor turns thedevice on again after the junction temperature cools by
15°C, resulting in a pulsed output during continuous overload conditions. Following a thermal-shutdown
condition, the soft-start sequence begins.
Design Procedure
RTOP = RBOTTOM[(VOUT / 0.6) - 1]
Input Capacitor Selection
The input capacitor in a DC-to-DC converter reduces current peaks drawn from the battery or other input
power source and reduces switching noise in the controller. The impedance of the input capacitor at the
switching frequency should be less than that of the input source so high-frequency switching currents do not
pass through the input source. The output capacitor keeps output ripple small and ensures control-loop
stability. The output capacitor must also have low impedance at the switching frequency. Ceramic, polymer,
and tantalum capacitors are suitable, with ceramic exhibiting the lowest ESR and high-frequency
impedance. Output ripple with a ceramic output capacitor is approximately as follows:
V
RIPPLE = IL(PEAK)[1 / (2π x fOSC x COUT)]
If the capacitor has significant ESR, the output ripple component due to capacitor ESR is as follows:
V
RIPPLE(ESR) = IL(PEAK) x ESR



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