Optimal High-Efficiency DCM Design of Switched-Inductor CMOS Power Supplies

Tianyu Chang, G. Rincón-Mora
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引用次数: 1

Abstract

Improving efficiency for switched-inductor (SL) power-supplies is vital for energy-limited battery-supplied microsystems such as wireless microsensors and portable devices. These microsystems idle mostly so efficiency in Discontinuous Conduction Mode (DCM) is crucial. Moreover, limited volumes of these tiny microsystems often lead to using tiny lossy inductors, which further reduce efficiency. Therefore, this paper theorizes how to select the optimal inductor, design the optimal power stage, and optimize the current profile to achieve the highest efficiency in DCM, using insightful derivations. This proposed co-design of inductor and current profile is absent in the state-of-the-art. The theory is accurate, and the percentage error is 0.3–4.9%. Using the proposed theory, with a 1.6 × 0.8 × 0.8 mm3 inductor, efficiency improvement can reach 6.4% compared with the State of the Art.
开关电感CMOS电源的高效DCM优化设计
提高开关电感(SL)电源的效率对于能量有限的电池供电微系统(如无线微传感器和便携式设备)至关重要。这些微系统大多处于空闲状态,因此在断续传导模式(DCM)下的效率至关重要。此外,这些微型微系统的体积有限,往往导致使用微小的损耗电感,这进一步降低了效率。因此,本文从理论上阐述了如何选择最优电感,设计最优功率级,优化电流分布以实现DCM的最高效率。这种提出的电感器和电流剖面的共同设计在最先进的技术中是不存在的。理论准确,百分比误差为0.3-4.9%。利用所提出的理论,采用1.6 × 0.8 × 0.8 mm3的电感,与目前的技术相比,效率提高了6.4%。
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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