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A Fast Transient Voltage Regulator Design with All Ceramic Output Capacitor for Mobile Microprocessors

机译:具有用于移动微处理器的全陶瓷输出电容器的快速瞬态稳压器设计

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The need to have fast transient response of the voltage regulator is driven by the increasing current slew rate of the mobile microprocessor. Hence, optimizing the switching frequency of the voltage regulator becomes an important step to achieve a balance between preserving the efficiency of the voltage regulator and improving the transient response. Besides, output capacitor solution with multilayer ceramic capacitor has also become more popular due to its small size and cheap cost. A fast transient voltage regulator with all ceramic output capacitors for mobile microprocessor is proposed in this study. The outcome of the study shows that the voltage regulator designed is stable with the proposed type and number of multi-layer ceramic capacitors. More importantly, the actual transient results correlate well with the simulation results in which minimal transient droop and overshoot are observed with a dynamic current load step with a slew rate of 10.5 A/1 μs.
机译:移动微处理器的电流压摆率的提高推动了对电压调节器具有快速瞬态响应的需求。因此,优化电压调节器的开关频率成为在保持电压调节器的效率与改善瞬态响应之间取得平衡的重要步骤。此外,具有多层陶瓷电容器的输出电容器解决方案由于其体积小和成本低廉而也变得越来越流行。本研究提出了一种用于移动微处理器的具有所有陶瓷输出电容器的快速瞬态稳压器。研究结果表明,所设计的稳压器对于所建议的多层陶瓷电容器的类型和数量是稳定的。更重要的是,实际瞬态结果与仿真结果具有很好的相关性,在仿真结果中,以10.5 A / 1μs的转换速率在动态电流负载阶跃下观察到了最小的瞬态下垂和过冲。

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