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ACE575D Datasheet(PDF) 6 Page - ACE Technology Co., LTD.

Part # ACE575D
Description  36V Low Current Consumption 250mA CMOS Voltage Regulator
PDF  12 Pages
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Manufacturer  ACE [ACE Technology Co., LTD.]
Direct Link  http://www.ace-ele.com
Logo ACE - ACE Technology Co., LTD.

ACE575D Datasheet(HTML) 6 Page - ACE Technology Co., LTD.

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ACE575D
36V Low Current Consumption 250mA CMOS Voltage Regulator
VER 1.1
6
Application Information
Selection of Input/ Output Capacitors
In general, all the capacitors need to be low leakage. Any leakage the capacitors have will reduce
efficiency, increase the quiescent current.
A recent trend in the design of portable devices has been to use ceramic capacitors to filter DC-DC
converter inputs. Ceramic capacitors are often chosen because of their small size, low equivalent series
resistance (ESR) and high RMS current capability. Also, recently, designers have been looking to ceramic
capacitors due to shortages of tantalum capacitors.
Unfortunately, using ceramic capacitors for input filtering can cause problems. Applying a voltage step to
a ceramic capacitor causes a large current surge that stores energy in the inductances of the power leads.
A large voltage spike is created when the stored energy is transferred from these inductances into the
ceramic capacitor. These voltage spikes can easily be twice the amplitude of the input voltage step. Many
types of capacitors can be used for input bypassing; however, caution must be exercised when using
multilayer ceramic capacitors (MLCC). Because of the self-resonant and high Q characteristics of some
types of ceramic capacitors, high voltage transients can be generated under some start-up conditions,
such as connecting the LDO input to a live power source. Adding
a 3Ω resistor in series with an X5R
ceramic capacitor will minimize start-up voltage transients.
The LDO also requires an output capacitor for loop stability. Connect a 1μF tantalum capacitor from OUT
to GND close to the pins. For improved transient response, this output capacitor may be ceramic.
Typical Performance Characteristics



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