Simultaneous optimization for low dropout regulator and its error amplifier with process variation

Yen-Lung Chen, Guan Chu, Ying-Chi Lien, Ching-Mao Lee, C. Liu
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引用次数: 1

Abstract

Due to its low power, small ripple and low noise properties, low-dropout regulators (LDO) are often used in on-chip applications. However, there are few design automation works focusing on this important circuit. In this paper, an automatic optimization process is proposed to generate the optimal sizing of low dropout regulators. The devices in the LDO circuit and its error amplifier are both considered in the optimization process for reducing the overall circuit cost. The process variation effects are also considered in this work to guarantee the circuit performance after manufactured. As demonstrated in the experiments, the proposed approach successfully solves the unreachable specification in previous work and significantly improves the design yield of the generated circuits.
具有工艺变化的低差调节器及其误差放大器的同步优化
由于其低功耗、小纹波和低噪声特性,低差稳压器(LDO)经常用于片上应用。然而,很少有设计自动化工作关注这个重要的电路。本文提出了一种自动优化过程,以产生低差调节器的最优尺寸。在优化过程中考虑了LDO电路中的器件及其误差放大器,以降低电路的总体成本。为了保证电路制造后的性能,本文还考虑了工艺变化的影响。实验表明,该方法成功地解决了以往工作中无法达到的规格,显著提高了所生成电路的设计良率。
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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