Current controlled capacitor less low dropout voltage regulator for fast transient response

R. Ranjan
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Abstract

This paper discusses and address a transistor based new current control low dropout voltage regulator (LDO) offering a high gain and large bandwidth without using complex compensation and large output capacitor. The conventional error amplifier based LDO which is using voltage feedback loop suffers from an inherent poor load transient response. The poor load transient associated with error amplifier results because of limited DC open-loop gain and limited closed loop bandwidth. The frequency response of error amplifier based LDO is highly sensitive to load current. Current controlled transistor based LDO has been designed for fast dynamic response with low output capacitor in the range of 1 to 10 uF. Experimental results show circuit has small output voltage variations of less than 10 mV for load current variation in the range of 0–3A without any overshoot or undershoot. This circuit is also simulated in PSpice and results are compared with Hardware LDO.
电流控制电容器少,低差电压调节器,快速瞬态响应
本文讨论了一种基于晶体管的新型电流控制低降稳压器(LDO),该稳压器无需复杂的补偿和大输出电容,即可提供高增益和大带宽。传统基于误差放大器的LDO采用电压反馈回路,其固有的负载瞬态响应较差。由于直流开环增益有限和闭环带宽有限,误差放大器的负载暂态较差。基于LDO的误差放大器的频率响应对负载电流非常敏感。基于电流控制晶体管的LDO在1 ~ 10 uF范围内具有快速动态响应和低输出电容。实验结果表明,电路在0-3A范围内负载电流变化时输出电压变化小,小于10 mV,无过调和过调现象。在PSpice中对该电路进行了仿真,并与硬件LDO进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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