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3PHASEPWM 数据表(PDF) 5 Page - International Rectifier |
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3PHASEPWM 数据表(HTML) 5 Page - International Rectifier |
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5 / 5 page ![]() 5 Figure 4 - Normalized output current across output capacitor, as a function of duty cycle, (Peak to peak current normalized to the Vo/(L3Fs) at zero duty cycle). It is shown that the output current ripple is greatly reduced by multi-phase operation. At the certain duty cycle D=1/N, where N is the phase number, the output ripple will be near zero due to complete cancellation of inductor current ripple. The optimum number of phases exists for different applications. Built-in Synchronous-Rectifier Driver Synchronous rectification reduces conduction losses in the rectifier by shunting the normal Schottky diode with a low on-resistance MOSFET switch. The synchronous rectification also ensures good transient dynamic. The 3- phase synchronous rectifier MOSFET drivers are built inside the IRU3055. Transient Response The IRU3055 delivers transient response that meets Intel VRM 9.0 design guidelines with no oscillation and a voltage drop <100mV for a 60A step load. Figure 5 - 3-phase inductor current and Vout at 60A dynamic load response Conclusion With the development of new microprocessors always requiring more power, voltage are dropping to reduce power dissipation, driving currents upward exponentially. Higher currents also lead to faster transient response requirements and higher switching frequencies. Multiphase topology is the preferred topology to address the functionality of today’s microprocessors voltage regulation requirements in a compact footprint at an acceptable cost. 3- phase converters appear to be the preferred way of economically meeting the design guidelines for Intel VRM9.0. The IRU3055 3-phase synchronous PWM controller IC provides an integrated solution for a straightforward implementation of Intel VRM 9.0. As next generation processors emerge with more stringent power supply requirements and additional functionality, new approaches and advances in technology will be needed. More phases might be needed to meet the ever- increasing currents. With more phases come more design complexity, power dissipation and response delay. The partitioning of functionalities within voltage regulators will need to be optimized to provide the best performance at the best cost in compact footprints. Drop <100mV Inductor Current in each phase rises |
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