© 2018 IEEE. This paper introduces a unique approach for the implementation of a miniaturized on-chip resonator and its application for the first-order bandpass filter (BPF) design. This approach utilizes a combination of a broadside-coupling technique and a split-ring structure. To fully understand the principle behind it, simplified LC equivalent-circuit models are provided. By analyzing these models, guidelines for implementation of an ultra-compact resonator and a BPF are given. To further demonstrate the feasibility of using this approach in practice, both the implemented resonator and the filter are fabricated in a standard 0.13-μm (Bi)-CMOS technology. The measured results show that the resonator can generate a resonance at 66.75 GHz...
© 2017 IEEE. A unique miniaturization technique for on-chip passive device implemented in gallium ar...
© 2019 IEEE A design methodology using quasi-lumped elements for compact millimeter-wave on-chip ban...
An on-chip resonator is designed and fabricated using a standard 0.13-μm SiGe technology for millime...
© 2018 IEEE. © 2018 IEEE. Personal use is permitted, but republication/redistribution requires IEEE ...
© 2017 IEEE. The full potential of active device in current Si-based technology has almost reached i...
© 2016 IEEE. An ultra-compact integrated resonator and bandpass filters (BPF), in silicon-based tech...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
© 2017 IEEE. In this paper, the millimeter-wave circuit miniaturization techniques using BCMLR and i...
This paper presents an Integrated on-chip bandpass filter design using an inverse-coupled resonator....
© 2018 IEEE. In this work, the design of a compact on-chip edge-coupled resonator is presented. To u...
© 2016 IEEE. This paper presents an Integrated on-chip bandpass filter design using an inverse-coupl...
© 2019 IEEE In this work, a new type of miniaturized on-chip resonator using an inductively-coupled ...
© 1963-2012 IEEE. A design methodology for a compact millimeter-wave on-chip bandpass filter (BPF) i...
© 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...
© 2017 IEEE. A unique miniaturization technique for on-chip passive device implemented in gallium ar...
© 2019 IEEE A design methodology using quasi-lumped elements for compact millimeter-wave on-chip ban...
An on-chip resonator is designed and fabricated using a standard 0.13-μm SiGe technology for millime...
© 2018 IEEE. © 2018 IEEE. Personal use is permitted, but republication/redistribution requires IEEE ...
© 2017 IEEE. The full potential of active device in current Si-based technology has almost reached i...
© 2016 IEEE. An ultra-compact integrated resonator and bandpass filters (BPF), in silicon-based tech...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
© 2017 IEEE. In this paper, the millimeter-wave circuit miniaturization techniques using BCMLR and i...
This paper presents an Integrated on-chip bandpass filter design using an inverse-coupled resonator....
© 2018 IEEE. In this work, the design of a compact on-chip edge-coupled resonator is presented. To u...
© 2016 IEEE. This paper presents an Integrated on-chip bandpass filter design using an inverse-coupl...
© 2019 IEEE In this work, a new type of miniaturized on-chip resonator using an inductively-coupled ...
© 1963-2012 IEEE. A design methodology for a compact millimeter-wave on-chip bandpass filter (BPF) i...
© 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...
© 2017 IEEE. A unique miniaturization technique for on-chip passive device implemented in gallium ar...
© 2019 IEEE A design methodology using quasi-lumped elements for compact millimeter-wave on-chip ban...
An on-chip resonator is designed and fabricated using a standard 0.13-μm SiGe technology for millime...