LT3023
LT3023 is Micropower Regulator manufactured by Linear Technology.
..
LT3023 Dual 100m A, Low Dropout, Low Noise, Micropower Regulator
Features s s s s s s s s s
DESCRIPTIO s s s s s
U APPLICATIO S s s s s s
Low Noise: 20µVRMS (10Hz to 100k Hz) Low Quiescent Current: 20µA/Channel Wide Input Voltage Range: 1.8V to 20V Output Current: 100m A/Channel Very Low Shutdown Current: <0.1µA Low Dropout Voltage: 300m V at 100m A Adjustable Output from 1.22V to 20V Stable with 1µF Output Capacitor Stable with Aluminum, Tantalum or Ceramic Capacitors Reverse Battery Protected No Reverse Current No Protection Diodes Needed Overcurrent and Overtemperature Protected Thermally Enhanced 10-Lead MSOP and DFN Packages
Cellular Phones Pagers Battery-Powered Systems Frequency Synthesizers Wireless Modems
The LT ®3023 is a dual, micropower, low noise, low dropout regulator. With an external 0.01µF bypass capacitor, output noise drops to 20µVRMS over a 10Hz to 100k Hz bandwidth. Designed for use in battery-powered systems, the low 20µA quiescent current per channel makes it an ideal choice. In shutdown, quiescent current drops to less than 0.1µA. Shutdown control is independent for each channel, allowing for flexibility in power management. The device is capable of operating over an input voltage from 1.8V to 20V, and can supply 100m A of output current from each channel with a dropout voltage of 300m V. Quiescent current is well controlled in dropout. The LT3023 regulator is stable with output capacitors as low as 1µF. Small ceramic capacitors can be used without the series resistance required by other regulators. Internal protection circuitry includes reverse battery protection, current limiting, thermal limiting and reverse current protection. The device is available as an adjustable device with a 1.22V reference voltage. The LT3023 regulator is available in the thermally enhanced 10-lead MSOP and DFN packages.
, LTC and LT are registered trademarks of Linear Technology Corporation.
TYPICAL APPLICATIO
VIN 3.7V TO 20V IN 1µF SHDN1...