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LT1581CT7 Просмотр технического описания (PDF) - Linear Technology

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LT1581CT7
Linear
Linear Technology Linear
LT1581CT7 Datasheet PDF : 12 Pages
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BLOCK DIAGRA
CONTROL
LT1581/LT1581-2.5
POWER
SENSE
FOR FIXED
VOLTAGE
DEVICE
ADJ
GND
OUTPUT
1581 BD
APPLICATIONS INFORMATION
The LT1581 is a low dropout regulator designed to power
the new generation of microprocessors. Low dropout
regulators have become more common in desktop com-
puter systems as microprocessor manufacturers have
moved away from 5V only CPUs. A wide range of supply
requirements exists today with new voltages just over the
horizon. In many cases the input/output differential is very
small, effectively disqualifying many of the low dropout
regulators on the market today. The LT1581 is designed to
make use of multiple power supplies present in most
systems to reduce the dropout voltage. This 2-supply
approach maximizes efficiency.
The second supply, at least 1V greater than the output
voltage, is used to provide power for the control circuitry
and supply the drive current to the NPN output transistor.
This allows the NPN to be driven into saturation, thereby
reducing the dropout voltage by a VBE compared to
conventional designs. The current requirement for the
control voltage is relatively small, equal to approximately
1% of the output current or about 100mA for a 10A load.
The bulk of this current is drive current for the NPN output
transistor. This drive current becomes part of the output
current.
The control voltage must be at least 1V greater than the
output voltage to obtain optimum performance. The maxi-
mum voltage on the VCONTROL pin is 13V. The maximum
voltage at the VPOWER pin is limited to 7V. GND pin current
for fixed voltage devices is 6mA (typ) and is constant as a
function of load. ADJUST pin current for adjustable de-
vices is 60µA at 25°C and varies proportional to absolute
temperature.
The LT1581 has improved frequency compensation which
permits the use of capacitors with very low ESR. This is
critical in addressing the needs of modern, low voltage,
high speed microprocessors. Current generation micro-
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