© 2016 IEEE. This paper presents an Integrated on-chip bandpass filter design using an inverse-coupled resonator. Both the resonator and bandpass filter are designed and fabricated in a standard silicon-germanium technology. The designed resonator is based on a unique structure, which consists of two broadside-coupled meander lines with opposite orientation. Using this structure along with capacitors, the bandpass filter is designed. The measured results show that the BPF has a center frequency at 31 GHz and insertion loss of 2.5 dB. The chip size of the BPF, excluding the pads, is only 0.024 mm2 (0.09 × 0.27 mm2), which the most compact one among the other state-of-the-art designs
© 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...
© 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....
© 2016 IEEE. An ultra-compact integrated resonator and bandpass filters (BPF), in silicon-based tech...
© 2018 IEEE. This paper introduces a unique approach for the implementation of a miniaturized on-chi...
© 2017 IEEE. An on-chip bandpass filter (BPF) is designed and fabricated in a 0.13-μm SiGe (Bi)-CMOS...
© 2018 IEEE. In this work, the design of a compact on-chip edge-coupled resonator is presented. To u...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
© 2019 IEEE In this work, a new type of miniaturized on-chip resonator using an inductively-coupled ...
© 1980-2012 IEEE. In this Letter, a flexible approach for low-loss on-chip bandpass filter (BPF) des...
© 2016 IEEE. An on-chip resonator is designed and fabricated using a standard 0.13- μ m SiGe technol...
© 2018 IEEE. © 2018 IEEE. Personal use is permitted, but republication/redistribution requires IEEE ...
An on-chip resonator is designed and fabricated using a standard 0.13-μm SiGe technology for millime...
© 2017 IEEE. The full potential of active device in current Si-based technology has almost reached i...
© 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...
© 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....
© 2016 IEEE. An ultra-compact integrated resonator and bandpass filters (BPF), in silicon-based tech...
© 2018 IEEE. This paper introduces a unique approach for the implementation of a miniaturized on-chi...
© 2017 IEEE. An on-chip bandpass filter (BPF) is designed and fabricated in a 0.13-μm SiGe (Bi)-CMOS...
© 2018 IEEE. In this work, the design of a compact on-chip edge-coupled resonator is presented. To u...
© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
© 2019 IEEE In this work, a new type of miniaturized on-chip resonator using an inductively-coupled ...
© 1980-2012 IEEE. In this Letter, a flexible approach for low-loss on-chip bandpass filter (BPF) des...
© 2016 IEEE. An on-chip resonator is designed and fabricated using a standard 0.13- μ m SiGe technol...
© 2018 IEEE. © 2018 IEEE. Personal use is permitted, but republication/redistribution requires IEEE ...
An on-chip resonator is designed and fabricated using a standard 0.13-μm SiGe technology for millime...
© 2017 IEEE. The full potential of active device in current Si-based technology has almost reached i...
© 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...
© 2017 IEEE. In this paper, the millimeter-wave circuit miniaturization techniques using BCMLR and i...