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Tunable C Band Coupled-C BPF with Resonators Using Active Capacitor and Inductor

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2016, Master of Science in Electrical Engineering (MSEE), Wright State University, Electrical Engineering.
In this thesis, a classic second-order coupled-capacitor Chebyshev bandpass filter with resonators using active capacitor and inductor is presented. The low cost and small size of CMOS active components makes the band pass filter (BPF) attractive in fully-integrated CMOS applications. The active capacitor is designed to compensate active inductor’s resistance for resistive match in the resonator. Meanwhile, adjusting design parameter of the active component provides BPF tunability in center frequency, pass band and pass band gain. Designed in 1.8V 180 nanometer CMOS process, the BPF has a tuning frequency range of 758-864 MHz, a controllable pass band of 7.1-65.9 MHz, a Q factor of 12-107, a pass band gain of 6.5-18.1dB and a stopband rejection of 38-50 dB.
Chien-in Henry Chen, Ph.D. (Advisor)
Yan Zhuang, Ph.D. (Committee Member)
Jiafeng Xie, Ph.D. (Committee Member)
58 p.

Recommended Citations

Citations

  • Wang, Y. (2016). Tunable C Band Coupled-C BPF with Resonators Using Active Capacitor and Inductor [Master's thesis, Wright State University]. OhioLINK Electronic Theses and Dissertations Center. http://rave.ohiolink.edu/etdc/view?acc_num=wright1472479817

    APA Style (7th edition)

  • Wang, Yu. Tunable C Band Coupled-C BPF with Resonators Using Active Capacitor and Inductor . 2016. Wright State University, Master's thesis. OhioLINK Electronic Theses and Dissertations Center, http://rave.ohiolink.edu/etdc/view?acc_num=wright1472479817.

    MLA Style (8th edition)

  • Wang, Yu. "Tunable C Band Coupled-C BPF with Resonators Using Active Capacitor and Inductor ." Master's thesis, Wright State University, 2016. http://rave.ohiolink.edu/etdc/view?acc_num=wright1472479817

    Chicago Manual of Style (17th edition)