基于CMOS单相全桥整流器的开关电源设计与分析

Shubham Kumar, Prateek Jain, S. Akashe
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引用次数: 2

摘要

本文设计了一种基于CMOS的低漏电流开关电源。开关模式电源将可用的去调节的交流或直流输入电源转换为调节的直流输出电源。本文综述了传统线性稳压电源的局限性,重点介绍了开关电源技术的优点。与线性电源电路的低间距变压器相比,所提出电路中使用的高频变压器在尺寸和重量上要小得多。与线性元件的损耗相比,MOS等现代开关的开关损耗要低得多。该电路使用更小体积的滤波元件,可以很容易地滤波电路中产生的高频纹波。计算泄漏电流、泄漏功耗、平均功耗和延迟性能参数。通过仿真结果,实现了减少漏电流和功耗,提高延时(reduced delay)。在cadence virtuoso工具上以45nm工艺完成了完整的仿真计算方法。电路在0.7v电源下工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and analysis of switch mode power supply using CMOS single-phase full bridge rectifier
This paper presents the design of a low leakage CMOS based switch mode power supply. The switch mode power supply converts the available deregulated A.C or D.C input supply to a regulated D.C output supply. This paper reviews the limitations of conventional linear regulated power supply and focuses on the advantages of switch mode power supply (SMPS) technique. The high frequency transformer used in the proposed circuit is much smaller in a size and weight compared to the low pitch transformer of the linear power supply circuit. The switching losses in modern switches like MOS are much lowered as compared to the loss in the linear element. The proposed circuit easily filtered the high frequency ripple produced in the circuit using smaller volumes of filtering elements. Leakage current, leakage power dissipation, average power dissipation and delay performance parameters are calculated. Due to simulation results, it is realized that the leakage current and power dissipation are reduced and delay is improved (reduced delay).The complete simulation and calculation method have been done in 45 nm technology at cadence virtuoso tool. The circuits were operated at 0.7v power supply.
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