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Digitally-Controlled Steered-Inductor Buck Converter for Improving Heavy-to-Light Load Transient Response

机译:数字控制的转向电感器降压转换器,用于改善重键的负载瞬态响应

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In this paper a novel digital controller and modified buck converter for improving heavy-to-light load transient response of low-power low-voltage dc-dc converters is introduced. The system is primarily designed for point-of-load (PoL) converters providing low regulated voltages for digital loads. In conventional buck topologies, the low output voltage, often below 1 V, severely limits the inductor current slew rate during the transients. To overcome this physical limitation, a modification is introduced whereby during heavy-to-light transients, the inductor current is, by the means of two extra switches, steered into the source and at the same time, the slew-rate of the current is significantly increased. The steering action is governed by a digital controller. The effectiveness of the system is verified on an FPGA-controlled, 12 V to 0.9 V, 10 W, experimental prototype. The results show that the steered-inductor digitally controlled buck converter has much shorter settling time and provides 2.8 times smaller overshoot than the conventional buck.
机译:在本文中,引入了一种新型数字控制器和改进的降压转换器,用于提高低功率低压DC-DC转换器的重对负载瞬态响应。该系统主要设计用于负载点(POL)转换器,为数字负载提供低调节电压。在传统的降压拓扑中,低输出电压通常低于1V,严重限制瞬态期间的电感器电流转换速率。为了克服这种物理限制,在重对光瞬变期间引入修改,电感器电流是通过两个额外开关的装置转向源,同时换档,电流的重速率是显着增加。转向动作由数字控制器管理。在FPGA控制的12V至0.9V,10W,实验原型上验证了系统的有效性。结果表明,转向电感器数字控制的降压转换器具有更短的沉降时间,并提供比传统降压更小的过冲。

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