基于交流耦合伪三环技术的快速瞬态翻转电压从动器低压差稳压器,不使用任何输出电容

Tzu-Hao Chien, Ching-Jan Chen, S. Li, Chieh-Ju Tsai
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引用次数: 2

摘要

提出了一种不使用任何输出电容的快速瞬态低差稳压器(LDO),用于片上系统(SoC)供电。传统LDO需要pF ~ nF级的输出电容来抑制瞬态压降,在轻载条件下会遇到稳定性问题。提出的三环结构包括一个翻转电压跟随器(FVF)级、一个交流耦合电容和一个误差放大器,解决了在没有输出电容的情况下不同负载条件下的稳定性问题。交流耦合电容形成交流耦合回路,缩短了响应时间。误差放大器(EA)以高直流增益精确调节输出电压。提出的LDO采用0.18um CMOS工艺实现在集成电路(IC)中。整个芯片面积为0.398mm2, LDO仅占0.094mm2。全晶体管级仿真结果表明,在转换速率为20mA/100ps的情况下,负载暂态为1-20mA时,欠调电压为270mV,过调电压为272mV。采用该技术的基于fvf的LDO实现了0.225ns的响应时间,达到了0.388ps的性能值(FOM)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Fast Transient Flip Voltage Follower Based Low Dropout Regulator with AC-Coupled Pseudo Tri-Loop Technique Without Using Any Output Capacitor
This paper presents a fast transient low-dropout regulator (LDO) without using any output capacitor for system-on-chip (SoC) powering. Conventional LDO needs a pF to nF level output capacitor for transient voltage drop suppression and encounters stability issue in light load condition. The proposed tri-loop architecture includes a flip-voltage-follower (FVF) stage, an ac-coupled capacitor, and an error amplifier, which resolves the stability issue at different load condition without any output capacitor. The ac-coupled capacitor which forms an ac-coupled loop shortens the response time. The error amplifier (EA) regulates output voltage accurately with high DC gain. The proposed LDO is implemented into an integrated circuit (IC) using 0.18um CMOS process. The whole chip area is 0.398mm2, and the LDO only occupies 0.094mm2. The full transistor-level simulation results demonstrate that undershoot and overshoot voltage are only 270mV and 272mV respectively for load transient of 1-20mA within slew rate of 20mA/100ps. The FVF-based LDO with the proposed technique achieves a response time of 0.225ns, which reaches figure-of-merit (FOM) of 0.388ps.
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