© 1963-2012 IEEE. A design methodology for a compact millimeter-wave on-chip bandpass filter (BPF) is presented in this paper. Unlike the previously published works in the literature, the presented method is based on quasi-lumped elements, which consists of a resonator with enhanced self-coupling and metal-insulator-metal capacitors. Thus, this approach provides inherently compact designs comparing with the conventional distributed elements-based ones. To fully understand the insight of the approach, simplified LC-equivalent circuit models are developed. To further demonstrate the feasibility of using this approach in practice, the resonator and two compact BPFs are designed using the presented models. All three designs are fabricated in a ...
University of Technology Sydney. Faculty of Engineering and Information Technology.Recent advances i...
© 1980-2012 IEEE. In this letter, an on-chip miniaturized bandpass filter (BPF) is presented, which ...
© 2017 IEEE. A unique miniaturization technique for on-chip passive device implemented in gallium ar...
© 2019 IEEE.A design methodology for a compact millimeter-wave on-chip bandpass filter (BPF) is pres...
© 2019 IEEE A design methodology using quasi-lumped elements for compact millimeter-wave on-chip ban...
© 2019 IEEE. In this paper, a novel design approach is proposed for on-chip bandpass filter (BPF) de...
© 2017 IEEE. The full potential of active device in current Si-based technology has almost reached i...
© 2019 IEEE. A design approach for compact on-chip bandpass filters (BPFs) is presented in this work...
© 2019 IEEE In this work, an on-chip bandpass filter (BPF) with ultra-wideband, low insertion loss, ...
© 2018 IEEE. This paper introduces a unique approach for the implementation of a miniaturized on-chi...
© 2017 IEEE. In this paper, the millimeter-wave circuit miniaturization techniques using BCMLR and i...
In this paper, a novel design approach is proposed for on-chip bandpass filter (BPF) design with imp...
© 2016 IEEE. An ultra-compact integrated resonator and bandpass filters (BPF), in silicon-based tech...
© 2018 IEEE. © 2018 IEEE. Personal use is permitted, but republication/redistribution requires IEEE ...
© 2018 Electromagnetics Academy. All rights reserved. Design of a miniaturized resonator and its app...
University of Technology Sydney. Faculty of Engineering and Information Technology.Recent advances i...
© 1980-2012 IEEE. In this letter, an on-chip miniaturized bandpass filter (BPF) is presented, which ...
© 2017 IEEE. A unique miniaturization technique for on-chip passive device implemented in gallium ar...
© 2019 IEEE.A design methodology for a compact millimeter-wave on-chip bandpass filter (BPF) is pres...
© 2019 IEEE A design methodology using quasi-lumped elements for compact millimeter-wave on-chip ban...
© 2019 IEEE. In this paper, a novel design approach is proposed for on-chip bandpass filter (BPF) de...
© 2017 IEEE. The full potential of active device in current Si-based technology has almost reached i...
© 2019 IEEE. A design approach for compact on-chip bandpass filters (BPFs) is presented in this work...
© 2019 IEEE In this work, an on-chip bandpass filter (BPF) with ultra-wideband, low insertion loss, ...
© 2018 IEEE. This paper introduces a unique approach for the implementation of a miniaturized on-chi...
© 2017 IEEE. In this paper, the millimeter-wave circuit miniaturization techniques using BCMLR and i...
In this paper, a novel design approach is proposed for on-chip bandpass filter (BPF) design with imp...
© 2016 IEEE. An ultra-compact integrated resonator and bandpass filters (BPF), in silicon-based tech...
© 2018 IEEE. © 2018 IEEE. Personal use is permitted, but republication/redistribution requires IEEE ...
© 2018 Electromagnetics Academy. All rights reserved. Design of a miniaturized resonator and its app...
University of Technology Sydney. Faculty of Engineering and Information Technology.Recent advances i...
© 1980-2012 IEEE. In this letter, an on-chip miniaturized bandpass filter (BPF) is presented, which ...
© 2017 IEEE. A unique miniaturization technique for on-chip passive device implemented in gallium ar...