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Dynamic Slew Enhancement Technique for Improving Transient Response in an Adaptively Biased Low-Dropout Regulator

机译:动态斜率增强技术可改善自适应偏置低压降稳压器的瞬态响应

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This brief presents a dynamic slew enhancement technique for improving the transient response in an adaptively biased low-dropout regulator. This is done by introducing FAST and SLOW paths in an adaptive bias loop. The FAST path injects a quick momentary current during a low-to-high load transient, whereas the SLOW path keeps the current large during a high-to-low load step. The dynamic current shoots up to quite a high level as it is combined with adaptive biasing. When the proposed technique is implemented in the 0.18- CMOS technology, the experimental results show the effective reduction in the undershoot (67%) and the overshoot (66.7%) while maintaining a low quiescent current of 1.1 . The settling times during 0–50-mA and 50–0-mA load transients are improved by 74% and 99.9%, respectively.
机译:本简介介绍了一种动态压摆增强技术,用于改善自适应偏置低压降稳压器中的瞬态响应。这是通过在自适应偏置环路中引入FAST和SLOW路径来完成的。 FAST路径在从低到高的负载瞬变期间注入快速的瞬时电流,而SLOW路径在从高到低的负载阶跃期间保持较大的电流。动态电流与自适应偏置相结合,可达到很高的水平。当在0.18-CMOS技术中实施所提出的技术时,实验结果表明有效降低了下冲(67%)和过冲(66.7%),同时保持了1.1的低静态电流。在0–50 mA和50–0 mA负载瞬态期间的建立时间分别提高了74%和99.9%。

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