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Innovation of Switched-Capacitor Voltage Multiplier: Part 1: A Brief History

机译:开关电容器倍压器的创新:第1部分:简要历史

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摘要

The switched-capacitor (SC) voltage multiplier is becoming one of the most critical IC blocks for energy harvesting in wireless sensor nodes to generate a voltage high enough for microwatt sensing and computing ICs in a nanometer complementary metal?oxide?semiconductor (CMOS) from environmental energy sources such as mechanical vibration, electromagnetic wave, and temperature gradient. However, its origin was a 10 m-scale particle accelerator generating 1 MV back to 1920s. There have been several innovative design techniques to realize integrated SC voltage multipliers since the original one. This article overviews such innovations for the last century and describes how 10 m-scale SC voltage multipliers have been integrated in microwatt ICs and what technical considerations are critical for area- and power-efficient design. It also summarizes how device parameters determine circuit performance such as output voltage current and power efficiency. There have been also several design innovations in switching circuits to enable to work at extremely low voltages. This article shows state of the art for switching circuits for both dc-dc and ac-dc voltage multipliers and their applications as well.
机译:开关电容器(SC)倍增器正在成为无线传感器节点中能量收集的最关键的IC块之一,以产生足够高的电压以用于微瓦感测和计算纳米互补金属氧化物半导体(CMOS)中的IC。环境能源,例如机械振动,电磁波和温度梯度。然而,它的起源是一个10 m尺度的粒子加速器,可产生回溯至1920年代的1 MV。自最初的设计以来,已经有几种创新的设计技术可以实现集成式SC电压倍增器。本文概述了上个世纪的此类创新,并描述了如何将10 m规模的SC电压倍增器集成到微瓦IC中,以及哪些技术考虑因素对于面积和功率效率设计至关重要。它还总结了器件参数如何确定电路性能,例如输出电压电流和功率效率。开关电路中也有几项设计创新,可以在极低的电压下工作。本文介绍了用于DC-DC和AC-DC电压倍增器的开关电路的最新技术及其应用。

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  • 来源
    《Solid-State Circuits Magazine, IEEE》 |2016年第1期|51-59|共9页
  • 作者

    Tanzawa Toru;

  • 作者单位

    Micron Memory Japan, Inc, 5-37-1, Kamata, 144-8721 Ota-ku, Japan;

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  • 正文语种 eng
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