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A Full-Wave CMOS Rectifier with High-Speed Comparators for Implantable Medical Devices

机译:用于植入式医疗设备的具有高速比较器的全波CMOS整流器

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In this paper, we present a CMOS full-wave rectifier with comparator-controlled switches for transmission of wireless power in implantable medical devices. It uses MOS transistors as low loss switches to provide high power conversion efficiency (PCE). The proposed fast comparator circuit, by controlling the switches in the rectifier, reduces the reverse leakage current in the negative cycle and increases the conduction time in the positive cycle so that more current flows into the output load and optimizes the rectifier power efficiency. The designed comparator does not require constant voltage source for its function and it is self-biased. The proposed rectifier is implemented using 0.18 mu m CMOS technology and provides 1.195V output DC voltage with a 190 Omega load resistance and AC input signal with the frequency of 13.56 MHz and peak-to-peak amplitude of 1.36 V. Under these conditions, PCE and voltage conversion efficiency (VCE) values are 85.5% and 88%, respectively. The peak PCE and VCE increase with a decrease in operation frequency and dimensions of transistors are optimized using multiple simulations for intended frequency.
机译:在本文中,我们提出了一种具有比较器控制的开关的CMOS全波整流器,用于在植入式医疗设备中传输无线电力。它使用MOS晶体管作为低损耗开关,以提供高功率转换效率(PCE)。所提出的快速比较器电路通过控制整流器中的开关,可在负周期内减小反向漏电流,并在正周期内增加导通时间,从而使更多的电流流入输出负载,并优化了整流器的功率效率。设计的比较器不需要恒定电压源即可工作,并且具有自偏置功能。拟议的整流器采用0.18μmCMOS技术实现,可提供1.195V输出DC电压和190Ω负载电阻,以及交流输入信号,其频率为13.56 MHz,峰峰值为1.36V。在这种情况下,PCE电压转换效率(VCE)值分别为85.5%和88%。峰值PCE和VCE随工作频率的降低而增加,并且通过对目标频率进行多次仿真来优化晶体管的尺寸。

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