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XC6225B19ANR-G

Description
30mA High Speed LDO Regulator
File Size267KB,16 Pages
Manufacturer
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XC6225B19ANR-G Overview

30mA High Speed LDO Regulator

XC6225
Series
30mA High Speed LDO Regulator
ETR0342-002
The XC6225 series is a high accuracy, low noise, and low dropout CMOS LDO regulator. The series includes a
reference voltage source, an error amplifier, a driver transistor, a current limiter, and a phase compensation circuit.
The CE function enables the entire circuit to be turned off by a low level input signal to the CE pin. In this stand-by
state, the XC6225B series can discharge the electric charge stored at the output capacitor through the internal
auto-discharge switch, and as a result the V
OUT
pin quickly returns to the V
SS
level. The output stabilization capacitor
(C
L
) is also compatible with low ESR ceramic capacitors. Output voltage is selectable in 0.05V increments within a
range of 0.8V~5.0V. The current limit fold-back circuit works as a short circuit protection as well as the output current
limiter. The series achieves a fast response with only 25μA of low power consumption. The current limit is set to
50mA (TYP.) so that the device is optimized to protect the circuit from over-current. It is ideally suited for applications
requiring 30 mA or less.
A small USP-4 package makes high density mounting possible.
■GENERAL
DESCRIPTION
■APPLICATIONS
Cellular phones
Cordless phones,
Wireless communication equipment
Portable games
Cameras, VCRs
Portable AV equipment
PDAs
■FEATURES
Output Current
Dropout Voltage
Operating Voltage Range
Output Voltage Range
Accuracy
: 30mA <50mA (TYP.) Limit>
: 70mV@ I
OUT
=30mA, V
OUT
=3.2V
: 2.5V ~ 6.0V
: 0.8V~5.0V (0.05V increments)
: +2% (V
OUT
>1.5V)
+0.03V (V
OUT
≦1.45V)
: 25μA (TYP.)
: Less than 0.1μA
: 70dB @ 1kHz
: -40℃~+85℃
Low Power Consumption
Stand-by Current
High Ripple Rejection
Operating Temperature
Range
Output Capacitor
: 1.0μF ceramic capacitor
CL High-Speed Auto-Discharge (XC6225B)
Low Output Noise
Packages
: USP-4, SOT-25
SSOT-24 (under development)
■TYPICAL
APPLICATION CIRCUIT
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