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Co-Design of a CMOS Rectifier and Small Loop Antenna for Highly Sensitive RF Energy Harvesters

机译:用于高灵敏度射频能量采集器的CMOS整流器和小环形天线的共同设计

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摘要

In this paper, a design method for the co-design and integration of a CMOS rectifier and small loop antenna is described. In order to improve the sensitivity, the antenna-rectifier interface is analyzed as it plays a crucial role in the co-design optimization. Subsequently, a 5-stage cross-connected differential rectifier with a 7-bit binary-weighted capacitor bank is designed and fabricated in standard 90 nm CMOS technology. The rectifier is brought at resonance with a high-Q loop antenna by means of a control loop that compensates for any variation at the antenna-rectifier interface and passively boosts the antenna voltage to enhance the sensitivity. A complementary MOS diode is proposed to improve the harvester's ability to store and hold energy over a long period of time during which there is insufficient power for rectification. The chip is ESD protected and integrated on a compact loop antenna. Measurements in an anechoic chamber at 868 MHz demonstrate a –27 dBm sensitivity for 1 V output across a capacitive load and 27 meter range for a 1.78 W RF source in an office corridor. The end-to-end power conversion efficiency equals 40% at –17 dBm.
机译:本文介绍了一种用于CMOS整流器和小环形天线的协同设计和集成的设计方法。为了提高灵敏度,分析了天线整流器接口,因为它在协同设计优化中起着至关重要的作用。随后,采用标准的90 nm CMOS技术设计和制造具有7位二进制加权电容器组的5级交叉连接的差分整流器。整流器通过控制回路与高Q环形天线发生谐振,该控制回路补偿天线-整流器接口处的任何变化,并被动提高天线电压以提高灵敏度。提出了一个互补MOS二极管,以提高收割机在没有足够功率进行整流的情况下长时间存储和保持能量的能力。该芯片具有ESD保护,并集成在紧凑型环形天线中。在868 MHz的消声室中进行的测量表明,在容性负载上输出1 V电压时的灵敏度为–27 dBm,在办公室走廊中使用1.78 W射频源时为27米的范围。端到端功率转换效率在–17 dBm时等于40%。

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