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Hybrid Feedback Compensation of an External Capacitor-less Low Dropout Voltage Regulator

机译:外部无电容低压差稳压器的混合反馈补偿

摘要

Power management has an ever increasing presence in the electronics industry due to the growth of battery powered mobile devices. The low-dropout voltage regulator (LDO) offers improved efficiency over other regulator topologies. However, the architecture suffers from stability issues, which usually necessitates a large off-chip capacitor to ensure the regulator’s performance. This paper presents an alternative topology by removing the bulky external capacitor, thus allowing for greater power system integration. The proposed Current Amplifier Hybrid Compensation (CAHC) scheme implements an active feedback-feedforward compensation system and maintains both a fast transient response and full range alternating current (AC) stability from 0 to 5mA load currents even with a 100pF loading capacitance. The 1.2V External Capacitor-less LDO voltage regulator was designed and simulated in a commercial 0.35um CMOS technology, consuming only 61uA of quiescent current with a dropout voltage of less than 200mV. Simulated results demonstrate that the proposed External Capacitor-less LDO architecture overcomes the typical load transient and AC stability issues encountered in previous architectures. The combined size and component reduction of this architecture presents a more integrable and economic power management system.
机译:由于电池供电的移动设备的增长,电源管理在电子行业中的地位越来越高。低压差稳压器(LDO)与其他稳压器拓扑相比,具有更高的效率。但是,该架构存在稳定性问题,通常需要使用大的片外电容器来确保稳压器的性能。本文介绍了一种替代拓扑,该拓扑通过移除笨重的外部电容器来实现更大的电源系统集成度。提出的电流放大器混合补偿(CAHC)方案实现了有源反馈-前馈补偿系统,即使负载电容为100pF,也能在0至5mA负载电流下保持快速瞬态响应和全范围交流电(AC)的稳定性。采用商用0.35um CMOS技术设计和仿真了1.2V无需外部电容器的LDO稳压器,该静态电压仅消耗61uA的静态电流,而压降小于200mV。仿真结果表明,所提出的无外部电容器的LDO架构克服了先前架构中遇到的典型负载瞬态和AC稳定性问题。这种架构的组合尺寸和组件减少提供了一个更加可集成和经济的电源管理系统。

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