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Current-mode adaptively hysteretic control for buck converters with fast transient response and improved output regulation

机译:具有快速瞬态响应和改进的输出调节的降压转换器电流模式自适应磁滞控制

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摘要

This paper presents a current-mode adaptively hysteretic control (CMAHC) technique to achieve the fast transient response for DC-DC buck converters. A complementary full range current sensor comprising of charging-path and discharging-path sensing transistors is proposed to track the inductor current seamlessly. With the proposed current-mode adaptively hysteretic topology, the inductor current is continuously monitored, and the adaptively hysteretic threshold is dynamically adjusted according to the feedback information comes from the output voltage level. Therefore, a fast load-transient response can be achieved. Besides, the output regulation performance is also improved by the proposed dynamic current-scaling circuitry (DCSC). Moreover, the proposed CMAHC topology can be used in a nearly zero RESR design configuration. The prototype fabricated using TSMC 0.25µm CMOS process occupies the area of 1.78mm2 including all bonding pads. Experimental results show that the output voltage ripple is smaller than 30mV over a wide loading current from 0 mA to 500 mA with maximum power conversion efficiency higher than 90%. The recovery time from light to heavy load (100 to 500 mA) is smaller than 5µs.
机译:本文提出了一种电流模式自适应迟滞控制(CMAHC)技术,以实现DC-DC降压转换器的快速瞬态响应。提出了一种由充电路径和放电路径感测晶体管组成的互补全范围电流传感器,以无缝跟踪电感器电流。利用提出的电流模式自适应滞后拓扑,可以连续监视电感器电流,并根据来自输出电压电平的反馈信息动态调整自适应滞后阈值。因此,可以实现快速的负载瞬态响应。此外,所提出的动态电流调节电路(DCSC)也改善了输出调节性能。此外,建议的CMAHC拓扑可用于几乎为零的RESR设计配置中。采用台积电0.25µm CMOS工艺制造的原型包括所有焊盘在内的面积为1.78mm2。实验结果表明,在0mA至500mA的宽负载电流下,输出电压纹波小于30mV,最大功率转换效率高于90%。从轻载到重载(100至500 mA)的恢复时间小于5µs。

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