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Integrated interleaving SC power converters with analog and digital control schemes for energy-efficient microsystems

机译:具有模拟和数字控制方案的集成交错式SC功率转换器,用于节能微系统

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This paper addresses design strategies and tradeoffs of a series of newly developed interleaving switched-capacitor power converters. In such a design, a converter consists of multiple sub-cells in the power stage, and is regulated with interleaving power flow control. By splitting the power flow in a time-sequenced manner, the converter maintains a continuous power delivery flow to the output V OUT, with significant reductions on the in-rush input current and the output voltage ripples. System modeling and optimization focusing on power efficiency and z-domain closed-loop gain enhancement are discussed. An experimental prototype was successfully fabricated with a standard 0.35-μm digital CMOS N-well process. The entire die area, including fully integrated pads and power devices, is 3.84 mm2. Measurement results show that, with a supply voltage of 1.5 V and a load of 250 mA, the output of the converter is well regulated at 2.5 V with 16-mV ripple. The maximum efficiency of 82.3% is achieved at the output power of 625 mW. Keywords Interleaving switched-capacitor power converter - Efficiency optimization - z-Domain loop gain analysis
机译:本文介绍了一系列新开发的交错式开关电容器电源转换器的设计策略和权衡。在这种设计中,转换器由功率级中的多个子电池组成,并通过交织的功率流控制进行调节。通过按时间顺序划分功率流,转换器可保持到输出V OUT 的连续功率传输流,从而大大减少了浪涌输入电流和输出电压纹波。讨论了针对功率效率和z域闭环增益增强的系统建模和优化。使用标准的0.35-μm数字CMOS N阱工艺成功制造了实验原型。包括完全集成的焊盘和功率器件在内的整个芯片面积为3.84 mm 2 。测量结果表明,在电源电压为1.5 V且负载为250 mA的情况下,转换器的输出可在2.5 V且具有16mV纹波的情况下得到很好的调节。在625 mW的输出功率下可实现82.3%的最大效率。交错式开关电容器功率转换器-效率优化-z域环路增益分析

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