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Resonant-Switched Capacitor Converters for Chip-Scale Power Delivery: Design and Implementation

机译:用于芯片级功率输出的谐振开关电容转换器:设计与实现

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摘要

There is an increasing need for power management systems that can be fully integrated in silicon to reduce cost and form factor in mobile applications, and provide point-of-load voltage regulation for high-performance digital systems. Switched-capacitor (SC) converters have shown promise in this regard due to relatively high energy-density of capacitors and favorable device utilization figures of merit. Resonant switched-capacitor (ReSC) converters show similar promise as they benefit from many of the same architectures and scaling trends, but also from ongoing improvements in mm-scale magnetic devices. In this study, we explore the design and optimization of 2:1 step-down topologies, based on representative capacitor technologies, CMOS device parameters, and air-core inductor models. We compare the SC approach to the ReSC approach in terms of efficiency and power density. Finally, a chip-scale ReSC converter is presented that can deliver over 4 W at 0.6 W/mm with 85% efficiency. The two-phase, nominally 2:1 converter supports input voltages from 3.6–6.0 V, and is implemented in 180-nm bulk CMOS with die-attached air-core solenoid inductors.
机译:对电源管理系统的需求日益增长,这些电源管理系统可以完全集成在硅片中,以降低移动应用的成本和外形尺寸,并为高性能数字系统提供负载点电压调节。由于电容器的相对较高的能量密度和有利的器件利用率,开关电容器(SC)转换器在这方面已显示出希望。谐振开关电容器(ReSC)转换器具有类似的前景,因为它们得益于许多相同的架构和缩放趋势,而且还受益于毫米级磁性设备的不断改进。在这项研究中,我们基于代表性的电容器技术,CMOS器件参数和空心电感模型,探索了2:1降压拓扑的设计和优化。在效率和功率密度方面,我们将SC方法与ReSC方法进行了比较。最后,介绍了一种芯片级ReSC转换器,该转换器可以以85%的效率以0.6W / mm的功率提供超过4W的功率。两相标称2:1转换器支持3.6–6.0 V的输入电压,并在180nm大容量CMOS中实现,并带有裸片连接的空心螺线管电感器。

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