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首页> 外文期刊>Circuits and Systems I: Regular Papers, IEEE Transactions on >A High-Gain Power-Matching Technique for Efficient Radio-Frequency Power Harvest of Passive Wireless Microsystems
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A High-Gain Power-Matching Technique for Efficient Radio-Frequency Power Harvest of Passive Wireless Microsystems

机译:一种无源无线微系统的高效射频功率收集的高增益功率匹配技术

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摘要

This paper proposes a transformer power-matching and gain-boosting technique to improve the efficiency of power harvesting of passive wireless microsystems. The proposed method utilizes a step-up transformer inserted between the antenna and voltage multiplier of passive wireless microsystems to perform both impedance transformation for power matching and voltage amplification prior to rectification. The series resistance of the primary winding is minimized using multiple metal layers connected using vias, while the width of the spiral of the secondary winding is made much smaller as compared with that of the primary winding to maximize the turn ratio and minimize its shunt capacitive losses. The detailed analysis of the proposed method and simulation results from Spectre of Cadence Design Systems are presented. The proposed power-matching and gain-boosting network, together with voltage multipliers, has been implemented in TSMC 0.18-$muhbox{m}$ 1.8-V six-metal CMOS technology with thick-metal options. For the purpose of comparison, an LC-power-matching and gain-boosting network with the identical voltage multiplier has also been implemented on the same chip. Measurement results demonstrate that the proposed transformer power-matching and gain-boosting technique greatly improves the power sensitivity and efficiency as compared with widely used LC matching approaches.
机译:本文提出了一种变压器功率匹配和增益提升技术,以提高无源无线微系统的功率收集效率。所提出的方法利用在无源无线微系统的天线和电压倍增器之间插入的升压变压器来执行阻抗变换以进行功率匹配和在整流之前进行电压放大。使用多个通过通孔连接的金属层可以使初级绕组的串联电阻最小化,同时与初级绕组相比,次级绕组的螺旋宽度要小得多,以最大程度地提高匝数比并最小化其并联电容损耗。详细介绍了所提出的方法,以及来自Cadence Design Systems的Spectre的仿真结果。拟议的功率匹配和增益提升网络以及电压倍增器已在采用厚金属选项的TSMC 0.18- $ muhbox {m} $ 1.8-V六金属CMOS技术中实现。为了进行比较,在同一芯片上还实现了具有相同电压倍增器的LC功率匹配和增益提升网络。测量结果表明,与广泛使用的LC匹配方法相比,所提出的变压器功率匹配和增益提升技术大大提高了功率灵敏度和效率。

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