A Power-Efficient CMOS Active Rectifier with Circuit Delay Compensation for Wireless Power Transfer Systems

被引:6
|
作者
Shahsavari, Sajjad [1 ]
Saberi, Mehdi [1 ]
机构
[1] Ferdowsi Univ Mashhad, Dept Elect Engn, Mashhad, Iran
关键词
Active rectifier; Implantable medical devices; Delay compensation; Power conversion efficiency; COMPARATORS; OFFSET;
D O I
10.1007/s00034-018-0902-9
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In this paper, an active CMOS rectifier with new delay compensation technique for wireless power transmission system is proposed. In order to reduce the delays of the comparators employed in the proposed rectifier, a new low-power common-gate comparator is proposed which presents higher speed compared with the conventional counterpart. Moreover, a negative feedback loop changes the bulk voltage of PMOS transistors in the comparator to compensate the remaining turn-off delay of the circuit and its variation against all process, voltage, and temperature variations. Therefore, due to the reduction in the delay and consequently the reverse current of the active diodes, power conversion efficiency and voltage conversion ratio (VCR) of the proposed rectifier are increased considerably. Besides, since the feedback signal is applied to the bulk terminal of transistors in the comparator, it does not need any extra circuitry for generating the required offset current. The proposed circuit is simulated in a standard 0.13-A mu m CMOS technology. Post-layout simulation results show that, with +/- 1.2 V input amplitude, the proposed circuit presents a maximum efficiency of 86.7% with 200 a"broken vertical bar loading, a peak VCR of 97%, and a minimum voltage ripple of 6.5 mV with 2 ka"broken vertical bar loading.
引用
收藏
页码:947 / 966
页数:20
相关论文
共 50 条
  • [31] A power-efficient LVDS driver circuit in 0.18-μm CMOS technology
    Tajalli, Armin
    Leblebici, Yusuf
    2007 PH.D RESEARCH IN MICROELECTRONICS AND ELECTRONICS, 2007, : 145 - 148
  • [32] Design of power-efficient CMOS based oscillator circuit with varactor tuning control
    Dwivedi, Dileep
    Kumar, Manoj
    Niranjan, Vandana
    SN APPLIED SCIENCES, 2021, 3 (04):
  • [33] Design of power-efficient CMOS based oscillator circuit with varactor tuning control
    Dileep Dwivedi
    Manoj Kumar
    Vandana Niranjan
    SN Applied Sciences, 2021, 3
  • [34] High efficiency CMOS active rectifier with adaptive delay compensation
    Banerjee, Arnab
    Bhattacharyya, Tarun Kanti
    Nag, Sudip
    MICROELECTRONICS JOURNAL, 2021, 112
  • [35] The Resonance Compensation Circuit Research to Wireless Power Transfer System
    Qu, Yanhua
    Wang, Anna
    Lin, Sheng
    Li, Yangchun
    ADVANCES IN POWER AND ELECTRICAL ENGINEERING, PTS 1 AND 2, 2013, 614-615 : 728 - 732
  • [36] LCL Circuit for Shunt Active Power Compensation Systems
    Wojciechowski, Daniel
    PRZEGLAD ELEKTROTECHNICZNY, 2012, 88 (4B): : 270 - 275
  • [37] A 13.56 MHz On/Off Delay-Compensated Fully-Integrated Active Rectifier for Biomedical Wireless Power Transfer Systems
    Cheng, Lin
    Ki, Wing-Hung
    Yim, Tak-Sang
    2017 22ND ASIA AND SOUTH PACIFIC DESIGN AUTOMATION CONFERENCE (ASP-DAC), 2017, : 31 - 32
  • [38] Compensation Topologies of High-Power Wireless Power Transfer Systems
    Zhang, Wei
    Mi, Chunting Chris
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2016, 65 (06) : 4768 - 4778
  • [39] Power-Efficient Ultrahigh-Speed CMOS Wireless Communications in Terahertz Era
    Fujishima, Minoru
    2013 IEEE INTERNATIONAL ELECTRON DEVICES MEETING (IEDM), 2013,
  • [40] A 6.78 MHz Active Voltage Doubler with Near-Optimal On/Off Delay Compensation for Wireless Power Transfer Systems
    Mao, Fangyu
    Lu, Yan
    Seng-Pan, U.
    Martins, Rui P.
    2018 INTERNATIONAL SYMPOSIUM ON VLSI DESIGN, AUTOMATION AND TEST (VLSI-DAT), 2018,