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LTC3122

Linear Technology

2.5A Synchronous Step-Up DC/DC Converter - Linear Technology


LTC3122
LTC3122

PDF File LTC3122 PDF File



Description
Features n VIN Range: 1.
8V to 5.
5V, 500mV After Start-Up n Output Voltage Range: 2.
2V to 15V n 800mA Output Current for VIN = 5V and VOUT = 12V n Output Disconnects from Input When Shut Down n Synchronous Rectification: Up to 95% Efficiency n Inrush Current Limit n Up to 3MHz Adjustable Switching Frequency Synchronizable to External Clock n Selectable Burst Mode® Operation: 25µA IQ n Output Overvoltage Protection n Soft-Start n <1µA IQ in Shutdown n 12-Lead, 3mm × 4mm × 0.
75mm Thermally Enhanced DFN and MSOP Packages Applications n RF Power n Piezo Actuators n Small DC Motors n 12V Analog Rail From Battery, 5V, or Backup Capacitor L, LT, LTC, LTM, Linear Technology, the Linear logo and Burst Mode are registered trademarks and ThinSOT is a trademark of Linear Technology Corporation.
All other trademarks are the property of their respective owners.
LTC3122 15V, 2.
5A Synchronous Step-Up DC/DC Converter with Output Disconnect Description The LTC®3122 is a synchronous step-up DC/DC converter with true output disconnect and inrush current limiting.
The 2.
5A current limit along with the ability to program output voltages up to 15V makes the LTC3122 well suited for a variety of demanding applications.
Once started, operation will continue with inputs down to 500mV, extending runtime in many applications.
The LTC3122 features output disconnect in shutdown, dramatically reducing input power drain and enabling VOUT to completely discharge.
Adjustable PWM switching from 100kHz to 3MHz optimizes applications for highest efficiency or smallest solution footprint.
The oscillator can also be synchronized to an external clock for noise sensitive applications.
Selectable Burst Mode operation reduces quiescent current to 25µA, ensuring high efficiency across the entire load range.
An internal soft-start limits inrush current during start-up.
Other features include a <1µA shutdown current and robust protection under short-circuit, thermal overload, and output overvoltag...



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