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首页> 外文期刊>IEEE Transactions on Industry Applications >A 500-MHz, 0.76-W/mm Power Density and 76.2% Power Efficiency, Fully Integrated Digital Buck Converter in 65-nm CMOS
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A 500-MHz, 0.76-W/mm Power Density and 76.2% Power Efficiency, Fully Integrated Digital Buck Converter in 65-nm CMOS

机译:采用65nm CMOS的500MHz,0.76W / mm功率密度和76.2%功率效率的全集成数字降压转换器

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摘要

In this paper, we propose a 500-MHz on-chip digitally controlled buck converter in which active and passive components are fully integrated on a single CMOS chip. To achieve high-power density, a two-phase interleaving buck converter with negatively coupled inductors is adopted to reduce the silicon area for both inductors and output capacitors. In addition, the proposed on-chip stacked L/C structure can achieve 20% area-saving. Furthermore, to support a 500-Hz switching frequency, we present a low-power digital pulsewidth modulation (PWM) controller that includes a 9-bit time-based analog-to-digital converter and a 15%–90% wide-range digital pulsewidth modulator (DPWM), which occupies only $0.075 text{ mm}^{2}$ and dissipation of 3 mW. The prototype IC fabricated in 65-nm CMOS can convert a 2.2-V input to a 1.2-V output and achieve a peak power efficiency of 76.2% and maximum power density of $0.76 {rm W/mm}^{2}$. Simultaneously, it can deliver 0.84 W and occupy $1.1 text{ mm}^{2}$ of effective area that includes a pair of 1.54-nH on-chip inductors and 2.63-nF on-chip capacitors.
机译:在本文中,我们提出了一个500 MHz的片上数字控制降压转换器,其中有源和无源组件都完全集成在单个CMOS芯片上。为了获得高功率密度,采用了带有负耦合电感的两相交错降压转换器,以减少电感和输出电容器的硅面积。此外,建议的片上堆叠L / C结构可以节省20%的面积。此外,为了支持500 Hz的开关频率,我们提出了一种低功耗数字脉宽调制(PWM)控制器,该控制器包括一个基于时间的9位模数转换器和一个15%–90%的宽范围数字转换器。脉宽调制器(DPWM),仅占用$ 0.075的文本{mm} ^ {2} $,耗散3 mW。用65nm CMOS制成的原型IC可以将2.2V输入转换为1.2V输出,并实现76.2%的峰值功率效率和0.76美元(rm W / mm} ^ {2} $的最大功率密度。同时,它可以提供0.84W的功率,并占用$ 1.1文本{mm} ^ {2} $的有效面积,其中包括一对1.54nH的片上电感器和2.63nF的片上电容器。

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