SLVAE57B February 2021 – October 2021 LM5050-1 , LM5050-2 , LM5051 , LM66100 , LM74202-Q1 , LM74500-Q1 , LM74610-Q1 , LM74700-Q1 , LM74720-Q1 , LM74721-Q1 , LM74722-Q1 , LM7480-Q1 , LM7481-Q1 , LM76202-Q1 , SM74611 , TPS2410 , TPS2411 , TPS2412 , TPS2413 , TPS2419
An ideal diode controller drives an external N-channel MOSFET to emulate an ideal diode with a very low forward voltage drop and negligible reverse current. Key features such as low operating quiescent current, very low shutdown current, regulated forward voltage, and fast reverse current response enable ideal diode controllers to emulate an ideal diode in variety of applications. The power MOSFET is connected in such way that its body diode blocks reverse current when the MOSFET is turned OFF. Forward voltage drop and power dissipation are reduced significantly as the MOSFET is turned ON during forward conduction. Ideal diode controllers sense the reverse current through MOSFET and turn it OFF, allowing the body diode to block reverse current. Ideal diode controllers can be classified into two types based on the gate control mechanism: Linear Regulation Control and Hysteretic ON/OFF Control.