设计一种高效的全集成CMOS整流器,采用自举技术,用于亚微米和无线供电应用

M. Karimi, H. Nabovati
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引用次数: 1

摘要

本文提出了一种高效的全集成CMOS无源整流器。采用四种超低功耗和超低电压技术,加上适当的漏电流补偿技术,这种新拓扑结构在高电压和低电压的宽输入电压范围内同时具有很高的效率。在交流输入信号幅值为0.5V时,功率传输效率为58%,电压传输效率为62%,在0.8V时功率传输效率为68%,电压传输效率为72%。与最近提出的整流器不同,在这种新型整流器中,对于宽范围的交流输入信号幅值,功率和电压的传输效率均高于90%。新型整流器适用于高电流需求的生物植入系统。新的全波整流器也只模拟和优化低电压先进的亚微米应用。该整流器采用0.18μm标准CMOS工艺进行设计和仿真。
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Design of a high efficient fully integrated CMOS rectifier using bootstrapped technique for sub-micron and wirelessly powered applications
A highly efficient fully integrated passive CMOS rectifier is proposed in this paper. Using four ultra low power and low voltage techniques with proper leakage current compensation technique, this new topology is very high efficient in wide input voltage range of both high voltages and low voltage advanced sub-micron applications simultaneously. In 0.5V AC input signal amplitude the power and voltage transmission efficiency are 58% and 62% respectively and these values reach to 68% and 72% in 0.8V. Unlike the recently proposed rectifiers, in this new rectifier, for wide range of AC input signal amplitude the power and voltage transmission efficiency are higher than 90%. New proposed rectifier is applicable for bio-implantable systems with high current demands. The new full-wave rectifier also simulated and optimized only for low voltage advanced sub-micron applications. This rectifier designed and simulated in 0.18μm standard CMOS technology.
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