IEEE Trans Biomed Circuits Syst. 2014 Jun;8(3):334-44. doi: 10.1109/TBCAS.2013.2270177. Epub 2013 Jul 2.
A full-wave active rectifier switching at 13.56 MHz with compensated bias current for a wide input range for wirelessly powered high-current biomedical implants is presented. The four diodes of a conventional passive rectifier are replaced by two cross-coupled PMOS transistors and two comparator- controlled NMOS switches to eliminate diode voltage drops such that high voltage conversion ratio and power conversion efficiency could be achieved even at low AC input amplitude |VAC|. The comparators are implemented with switched-offset biasing to compensate for the delays of active diodes and to eliminate multiple pulsing and reverse current. The proposed rectifier uses a modified CMOS peaking current source with bias current that is quasi-inversely proportional to the supply voltage to better control the reverse current over a wide AC input range (1.5 to 4 V). The rectifier was fabricated in a standard 0.35 μm CMOS N-well process with active area of 0.0651 mm(2). For the proposed rectifier measured at |VAC| = 3.0 V, the voltage conversion ratios are 0.89 and 0.93 for RL=500 Ω and 5 kΩ, respectively, and the measured power conversion efficiencies are 82.2% to 90.1% with |VAC| ranges from 1.5 to 4 V for RL=500 Ω.
本文提出了一种用于无线供电大电流生物医学植入物的全波有源整流器,其工作频率为13.56 MHz,具有补偿偏置电流,适用于宽输入范围。传统无源整流器的四个二极管被两个交叉耦合的PMOS晶体管和两个比较器控制的NMOS开关所取代,以消除二极管压降,从而即使在低交流输入幅度|VAC|下也能实现高电压转换比和功率转换效率。比较器采用开关偏置来补偿有源二极管的延迟,并消除多脉冲和反向电流。所提出的整流器使用一种改进的CMOS峰值电流源,其偏置电流与电源电压近似成反比,以便在宽交流输入范围(1.5至4 V)内更好地控制反向电流。该整流器采用标准的0.35μm CMOS N阱工艺制造,有源面积为0.0651 mm²。对于在|VAC| = 3.0 V下测量的所提出的整流器,当RL = 500Ω和5 kΩ时,电压转换比分别为0.89和0.93,并且当|VAC|在1.5至4 V范围内、RL = 500Ω时,测量的功率转换效率为82.2%至90.1%。