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Self-Biased 2.4 GHz CMOS RF-to-DC Converter with 80 Efficiency and ?22.04 dBm Sensitivity for Wi-Fi Energy Harvesting

机译:自偏置2.4 GHz CMOS RF-TO-DC转换器,效率为80%,Δ22.04dBm灵敏度的Wi-Fi能量收获

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One of the significant disadvantages of RF energy harvesting is having a low power density in comparison to other ambient energy sources. The rectifier is the core of an RF energy harvesting system since it converts and boosts weak RF power to usable DC power. This study introduces a design of an efficiency enhanced RF-to-DC power converter with impedance matched to 50 Ω. The circuit design is based on two circuit design architectures, namely: the fully cross-coupled rectifier and self-biased technique, and the combined with LC matching circuit to obtain high power conversion efficiency. The design simulation is implemented using 65 nm CMOS Technology process. The performance of the proposed circuit design has achieved a peak power conversion efficiency of 80% at -14.4 dBm with a minimum input power of -22.04 dBm at 2.4 GHz for a load resistance of 20 kΩ and 10 pF load.
机译:与其他环境能源相比,RF能量收集的显着缺点之一具有低功率密度。整流器是RF能量收集系统的核心,因为它转换并提升了弱的RF功率,以便可用的直流电源。本研究介绍了一种效率增强的RF-TO-DC功率转换器,阻抗匹配为50Ω。电路设计基于两个电路设计架构,即:完全交叉耦合整流器和自偏置技术,以及与LC匹配电路的结合获得高功率转换效率。使用65 nm CMOS技术过程实现了设计模拟。所提出的电路设计的性能已经实现了80%的峰值功率转换效率,在-14.4dBm处,最小输入功率为-22.04 dBm,为2.4 GHz,负载电阻为20kΩ和10pf负载。

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