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Additional resources for A simplified guide to using the MCS51 on-chip UART
1 can reduce all three parts of power loss in driving a power MOSFET. For the major part, conduction loss, the proposed circuit can reduce it to only (πRg)/(2Zo ) portion of the loss in a conventional gate driver. For cross-conduction loss, the proposed circuit can eliminate it all. For 41 switching loss, the proposed circuit can also reduce it by lowering the di/dt. This new circuit, therefore, has significant advantages over the conventional gate drive circuit. 3 Some Design Issues After explaining the circuit operation and power loss, this section is to discuss some issues in how to design the circuit.
2 will split into two parts: inductive energy storage EL and resistive dissipation Er-discharging. 7. Again, if energy EL can be recovered, conduction loss will be lower. 2 A New Gate Driver Analysis in the previous section triggers the finding of a new kind of gate drive circuit. By adding a reactive component Lr into the equivalent circuits, originally dissipated energy can now be partially stored in magnetic format. And if a proper way can be found to recover this energy storage, less conduction loss can be expected.
1 can be expected better when a more fair comparison is made. 2. 3. 2 has high efficiency, fast transient response, small current ripple, and low device stress [V-3]. 3 Characteristic Waveforms of a Push-Pull Forward Converter [V-2] Above Push-Pull Forward converter is a very promising candidate for large step-down DC-DC power conversion applications. When this converter is used, its input voltage is usually many times of its output voltage. Meanwhile, to maintain the power balance, its output current is much higher than its input current.