Power-loss reduction of a MOSFET cross-coupled rectifier by employing zero-voltage switching

Qingyun Ma, M. Haider, Y. Massoud
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引用次数: 5

Abstract

Ubiquitous monitoring of sensor data and long term reliable operation of sensor units have been studied extensively either for environmental monitoring or for biomedical applications. Long term operation of sensor units requires continuous wireless signal at the output. The proposed rectifier unit is designed and simulated using 0.5-μm standard CMOS process. Simulation results show that power supply from an external source to avoid unwieldy wires or periodic battery replacements. Inductive-power transfer, as a suitable way of driving the sensor electronics, needs a high efficiency rectifier unit to convert the harvested wireless energy into a usable DC level. However, conventional full-wave bridge rectifier with a lower output voltage and a significant power loss lowers the overall efficiency of the inductive-link system. In this paper, a class-E type zero-voltage-switching structure is presented to achieve a high efficiency rectifier circuit. The symmetrical differential class-E switching structures are driven by differential AC signals that result in a low-loss full-wave rectified the proposed rectifier circuit can achieve more than 76% power conversion efficiency for an input AC signal of 7 MHz frequency with signal amplitude of 2 V (peak).
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利用零电压开关降低MOSFET交叉耦合整流器的功率损耗
传感器数据的无所不在监测和传感器单元的长期可靠运行已被广泛研究,无论是环境监测还是生物医学应用。传感器单元的长期运行需要连续的无线信号输出。采用0.5 μm标准CMOS工艺对整流单元进行了设计和仿真。仿真结果表明,采用外接电源供电,避免了笨重的电线或定期更换电池。感应功率传输作为驱动传感器电子器件的一种合适的方式,需要一个高效的整流器单元将收集到的无线能量转换成可用的直流电平。然而,传统的全波桥式整流器输出电压低,功率损耗大,降低了电感链系统的整体效率。本文提出了一种e类零电压开关结构,实现了高效率的整流电路。对称差分e类开关结构由差分交流信号驱动,产生低损耗全波整流,所提出的整流电路对于频率为7 MHz、信号幅值为2 V(峰值)的输入交流信号可以实现76%以上的功率转换效率。
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