10.1 A 1.1W/mm2-power-density 82%-efficiency fully integrated 3∶1 Switched-Capacitor DC-DC converter in baseline 28nm CMOS using Stage Outphasing and Multiphase Soft-Charging

N. Butzen, M. Steyaert
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引用次数: 20

Abstract

Over the past years, delivering power to integrated circuits has become increasingly difficult. With the current intake of many modern-day applications growing each new process generation, the Power Delivery Network (PDN) losses have increased as well. By integrating a DC-DC converter together with the load, part of the required voltage conversion can be realized on-chip, and the current intake, together with the PDN losses, can thus ideally be reduced by its Voltage Conversion Ratio (VCR). In order to be viable, though, the converter must 1) have a high efficiency and VCR such that its losses are smaller than the reduction of PDN losses, 2) limit the area overhead by achieving high power density and 3) rely only on commonly available devices to enable wide-spread use.
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1.1W/mm2功率密度82%效率的全集成3∶1开关电容DC-DC变换器,采用分段失相和多相软充电
在过去的几年里,向集成电路输送电力变得越来越困难。随着许多现代应用的不断发展,每一代新工艺的产生,电力输送网络(PDN)的损耗也在增加。通过将DC-DC变换器与负载集成在一起,可以在片上实现部分所需的电压转换,并且可以通过其电压转换比(VCR)理想地降低电流输入和PDN损耗。然而,为了可行,转换器必须1)具有高效率和VCR,使其损耗小于PDN损耗的减少,2)通过实现高功率密度来限制面积开销,3)仅依赖常用器件来实现广泛使用。
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