首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >An RF-to-DC Rectifier With High Efficiency Over Wide Input Power Range for RF Energy Harvesting Applications
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An RF-to-DC Rectifier With High Efficiency Over Wide Input Power Range for RF Energy Harvesting Applications

机译:RF到DC整流器在RF能量收集应用的宽输入功率范围内具有高效率。

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This paper presents, a wide input range, 4-stage threshold voltage compensated RF-to-DC power converter, designed to efficiently convert RF signals to dc voltages by applying an optimum compensation voltage produced by subthreshold auxiliary transistors. The proposed optimally compensated rectifiers can achieve higher efficiency over a wider input power range compared to other threshold voltage compensation circuits where the level of the compensation is limited by the circuit structure and varies with input power. The designed rectifier is implemented in three possible ways. This proposed compensation technique can be applied to a rectifier chain with a relatively low number of stages. Designed and implemented in a 130 nm CMOS technology, the proposed rectifier exhibits a measured PCE of above 20 over the 8.5-dB input power range while driving a 1- $ext{M}Omega $ load resistor at 896-MHz. For the same load and utilizing a minimal number of compensated rectifier stages, the proposed circuit exhibits a maximum PCE of 43 at -11 dBm for single-ended Dickson-based CMOS rectifiers. The proposed circuit demonstrates a -20.5 dBm sensitivity for 1 V output across a 1- $ext{M}Omega $ resistive load.
机译:本文提出了宽的输入范围,4级阈值电压补偿RF-TO-DC功率转换器,其设计为通过施加由亚阈值辅助晶体管产生的最佳补偿电压来有效地将RF信号转换为DC电压。与其他阈值电压补偿电路相比,所提出的最佳补偿整流器可以通过更宽的输入功率范围实现更高的效率,其中补偿水平受电路结构的限制并随输入功率而变化。设计的整流器以三种可能的方式实现。该提出的补偿技术可以应用于具有相对较低的阶段的整流链。在130nm CMOS技术中设计和实现,所提出的整流器在8.5-dB输入功率范围内呈现出高于20的测量PCE,同时在896-MHz处驾驶1-$ Text {M} Omega $负载电阻。对于相同的负载和利用最小数量的补偿整流器级,所提出的电路在-11dBm上显示出基于单端Dickson的CMOS整流器的最大PCE为-11dBm。所提出的电路显示1-$ 文本{M} oomga $电阻负载的1 V输出的-20.5 dBm灵敏度。

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