MC33375 ON Semiconductor, MC33375 Datasheet - Page 9

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MC33375

Manufacturer Part Number
MC33375
Description
Low Dropout Voltage Regulator
Manufacturer
ON Semiconductor
Datasheet

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current limiting and thermal shutdown making them
user−friendly. Figure 15 is a typical application circuit. The
output capability of the regulator is in excess of 300 mA,
with a typical dropout voltage of less than 260 mV. Internal
protective features include current and thermal limiting.
EXTERNAL CAPACITORS
capacitance between the output and ground for stability for
1.8 V, 2.5 V, 3.0 V, and 3.3 V output voltage options. Output
voltage options of 5.0 V require only 0.22 mF for stability.
The output capacitor must be mounted as close as possible
to the MC33375. If the output capacitor must be mounted
further than two centimeters away from the MC33375, then
a larger value of output capacitor may be required for
stability. A value of 0.68 mF or larger is recommended. Most
type of aluminum, tantalum, or multilayer ceramic will
perform adequately. Solid tantalums or appropriate
multilayer ceramic capacitors are recommended for
operation below 25°C. An input bypass capacitor is
recommended to improve transient response or if the
regulator is connected to the supply input filter with long
wire lengths, more than 4 inches. This will reduce the
circuit’s sensitivity to the input line impedance at high
The MC33375 regulators are designed with internal
These regulators require only a 0.33 mF (or greater)
V
in
C
in
0
V
I
T
100 mA
1 mA
1.78 V
1.80 V
LOAD
1.82 V
A
CC
0.5
= 25°C
= 3 V
Figure 22. Load Transient Response
Figure 23. Typical Application Circuit
= 1 mA to 100 mA
APPLICATIONS INFORMATION
1
MC33375−xx
1.5
MC33375 Series
http://onsemi.com
ON/OFF
2
t, TIME (ms)
GND
2.5
9
frequencies. A 0.33 mF or larger tantalum, mylar, ceramic,
or other capacitor having low internal impedance at high
frequencies should be chosen. The bypass capacitor should
be mounted with shortest possible lead or track length
directly across the regulator’s input terminals. Figure 16
shows the ESR that allows the LDO to remain stable for
various load currents.
conditions to insure stability.
3
Applications should be tested over all operating
100
1.0
0.1
10
3.5
0
4
50
4.5
Figure 24. ESR for V
C
5
out
LOAD CURRENT (mA)
V
100
out
Stable Region
150
LOAD
out
200
= 3.0V
V
C
C
out
out
in
= 1.0 mF
= 3.0 V
= 1.0 mF
250
300

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