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A Monolithic Capacitor-Current-Controlled Hysteretic Buck Converter With Transient-Optimized Feedback Circuit

机译:具有瞬态优化反馈电路的单片电容电流控制磁滞降压转换器

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摘要

This paper proposes a monolithic capacitor-current-controlled hysteretic buck converter with a transient-optimized feedback circuit (TOFC) for compact-sized portable devices. The proposed TOFC simultaneously optimizes both load and dynamic voltage scaling (DVS) transient responses to minimize output voltage undershoot/overshoot and settling time. In addition, a transient-hold (TH) technique, which prevents transient response optimization from being affected by the error amplifier without increasing the compensation capacitance, is also proposed to save chip area. This work is implemented in a 0.35 µm CMOS process with a chip area of 0.88 mm 2 . Measurement results show that, for a 500 mA load transient, the output voltage settles in 0.9 µs with an undershoot/overshoot of less than 35 mV. For a 0.6-V DVS transient, output voltage settles in 3 µs with negligible undershoot/overshoot. Moreover, 96% peak efficiency is measured at 500 mW output power.
机译:本文提出了一种用于紧凑型便携式设备的具有瞬态优化反馈电路(TOFC)的单片电容电流控制磁滞降压转换器。拟议中的TOFC同时优化了负载和动态电压定标(DVS)瞬态响应,以最大程度地减少输出电压下冲/过冲和建立时间。此外,还提出了一种瞬态保持(TH)技术,该技术可在不增加补偿电容的情况下防止误差放大器影响瞬态响应优化,以节省芯片面积。这项工作以0.35 µm CMOS工艺实现,芯片面积为0.88 mm 2。测量结果表明,对于500 mA的负载瞬态,输出电压稳定在0.9 µs,下冲/过冲小于35 mV。对于0.6V DVS瞬态,输出电压稳定在3 µs,下冲/过冲可忽略不计。此外,在500 mW输出功率下测得96%的峰值效率。

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