Download MPM3520E Datasheet PDF
Monolithic Power Systems
MPM3520E
MPM3520E is Non-Isolated DC/DC Power Module manufactured by Monolithic Power Systems.
36V, 2A, High-Efficiency, Non-Isolated DC/DC Power Module with Integrated Inductor PRELIMINARY SPECIFICATIONS SUBJECT TO CHANGE DESCRIPTION Features The MPM3520E is a high density, non-isolated DC/DC power module for space-sensitive applications. It offers a very pact solution to achieve 2A continuous output current with excellent load and line regulation over a 4V to 36V input supply range, and can provide an adjustable output voltage from 1.0V to 5.0V via an external FB resistor (default 3.3V output). The MPM3520E integrates a switching controller, power switches, inductors, and a modest amount of input and output capacitance. All support ponents are within an advanced 10mmx10mmx4.2mm size, and the part requires a minimal number of standard external ponents. This pact solution significantly helps in system design and productivity by greatly simplifying board design, as well as layout and manufacturing requirements. The module uses fixed-frequency PWM mode which provides fast transient response and eases loop stabilization. It also offers frequency synchronization from 200k Hz to 2.2MHz. Ultrahigh efficiency is achieved through the use of synchronous rectification and control mode. - Integrated Inductor, Switches, Controller - High-Efficiency Synchronous Mode Control - Low ponent Count and Small Size - Ease of Design and Fastest Time to Market - Wide 4V to 36V Operating Input Range - Output Adjustable from 1.0V to 5.0V - Guaranteed 2A Continuous Output Current - Fixed Freqeuncy Operation - Synchronization from 200k Hz to 2.2MHz - Internal Fixed Soft-Start Time - Power Good Indicator - Non-Latch OCP and UVLO - Thermal Shutdown Protection - Remote Enable Control - Dimension: 10mmx10mmx4.2mm - Weight: 0.78g - Operating Temperature: -40°C to +125°C - CISPR25 Class 5 pliant APPLICATIONS - Automotive Systems - Industrial Supplies - Tele and Networking Systems - Distributed Power and POL...