© 2016 IEEE. An on-chip resonator is designed and fabricated using a standard 0.13- μ m SiGe technology for millimeter-wave applications. The designed resonator is based on a unique structure, which consists of two broadside-coupled meander lines with opposite orientation. The equivalent LC circuit of the resonator is given, while the impact of the structure on the resonance frequencies is investigated. Using this structure along with capacitors, a compact bandpass filter (BPF) is also designed and fabricated. The measured results show that the resonator can generate a resonance at 57 GHz with the attenuation better than 13.7 dB, while the BPF has a center frequency at 31 GHz and a insertion loss of 2.4 dB. The chip size of both the resonat...
© 2017 IEEE. A unique miniaturization technique for on-chip passive device implemented in gallium ar...
© 2019 IEEE. This paper presents a millimeter-wave on-chip bandpass filter (BPF) with all-pole chara...
© 2018 IEEE. In this paper, a design methodology of a miniaturized passive resonator implemented in ...
An on-chip resonator is designed and fabricated using a standard 0.13-μm SiGe technology for millime...
This paper proposed a novel broadside-coupled meander-line resonator (BCMLR) for millimeter-wave (mm...
© 2017 IEEE. An on-chip bandpass filter (BPF) is designed and fabricated in a 0.13-μm SiGe (Bi)-CMOS...
© 2016 IEEE. An ultra-compact integrated resonator and bandpass filters (BPF), in silicon-based tech...
© 2017 IEEE. The full potential of active device in current Si-based technology has almost reached i...
© 2018 IEEE. This paper introduces a unique approach for the implementation of a miniaturized on-chi...
Presented is a compact millimetre-wave bandpass filter using a thin-film microstrip meander line on ...
© 2017 IEEE. This paper presents a design of a miniaturized resonator for millimeter-wave applicatio...
© 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...
© 2018 IEEE. © 2018 IEEE. Personal use is permitted, but republication/redistribution requires IEEE ...
This paper presents an Integrated on-chip bandpass filter design using an inverse-coupled resonator....
© 2017 IEEE. A unique miniaturization technique for on-chip passive device implemented in gallium ar...
© 2019 IEEE. This paper presents a millimeter-wave on-chip bandpass filter (BPF) with all-pole chara...
© 2018 IEEE. In this paper, a design methodology of a miniaturized passive resonator implemented in ...
An on-chip resonator is designed and fabricated using a standard 0.13-μm SiGe technology for millime...
This paper proposed a novel broadside-coupled meander-line resonator (BCMLR) for millimeter-wave (mm...
© 2017 IEEE. An on-chip bandpass filter (BPF) is designed and fabricated in a 0.13-μm SiGe (Bi)-CMOS...
© 2016 IEEE. An ultra-compact integrated resonator and bandpass filters (BPF), in silicon-based tech...
© 2017 IEEE. The full potential of active device in current Si-based technology has almost reached i...
© 2018 IEEE. This paper introduces a unique approach for the implementation of a miniaturized on-chi...
Presented is a compact millimetre-wave bandpass filter using a thin-film microstrip meander line on ...
© 2017 IEEE. This paper presents a design of a miniaturized resonator for millimeter-wave applicatio...
© 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...
© 2018 IEEE. © 2018 IEEE. Personal use is permitted, but republication/redistribution requires IEEE ...
This paper presents an Integrated on-chip bandpass filter design using an inverse-coupled resonator....
© 2017 IEEE. A unique miniaturization technique for on-chip passive device implemented in gallium ar...
© 2019 IEEE. This paper presents a millimeter-wave on-chip bandpass filter (BPF) with all-pole chara...
© 2018 IEEE. In this paper, a design methodology of a miniaturized passive resonator implemented in ...