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AAT3223 Datasheet, PDF (9/17 Pages) Advanced Analogic Technologies – 250mA NanoPower LDO Linear Regulator with Power -OK
Functional Block Diagram
AAT3223
250mA NanoPower™ LDO
Linear Regulator with Power-OK
IN
EN
Over-Current
Protection
Over-Temperature
Protection
+
Error
Amplifier
-
91%
VREF
Voltage
Reference
-
1ms
Delay
+
OUT
POK
GND
Functional Description
The AAT3223 is intended for LDO regulator applica-
tions where output current load requirements range
from no load to 250mA. The advanced circuit design
of the AAT3223 has been optimized for very low qui-
escent or ground current consumption, making it
ideal for use in power management systems in small
battery-operated devices. The typical quiescent cur-
rent level is just 1.1µA. The AAT3223 also contains
an enable circuit, which has been provided to shut
down the LDO regulator for additional power conser-
vation in portable products. In the shutdown state,
the LDO draws less than 1µA from input supply.
The Power-OK function has been incorporated to
allow notification to application circuits when the
output voltage falls out of regulation. If the output
voltage falls below the regulation threshold limit,
which is compared to a level set by the internal
voltage reference, the POK pin is pulled to ground
through an N-channel MOSFET.
The LDO also demonstrates excellent power supply
ripple rejection, and load and line transient response
characteristics. The AAT3223 is a truly high per-
formance LDO regulator that is especially well suit-
ed for circuit applications which are sensitive to load
circuit power consumption and extended battery life.
The LDO regulator output has been specifically
optimized to function with low-cost, low equivalent
series resistance (ESR) ceramic capacitors; how-
ever, the design will allow for operation over a wide
range of capacitor types.
The AAT3223 has complete short-circuit and ther-
mal protection. The integral combination of these
two internal protection circuits give the AAT3223 a
comprehensive safety system to guard against
extreme adverse operating conditions. Device
power dissipation is limited to the package type
and thermal dissipation properties. Refer to the
Thermal Considerations section of this datasheet
for details on device operation at maximum output
current loads.
3223.2005.04.1.4
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