In this paper, low phase-noise, low-power, and compact oscillators are demonstrated at the millimeter-wave region based on differential transmission lines (DTLs) loaded with metamaterial resonators. There are two types of metamaterial resonators explored: split-ring resonators (SRRs) and complementary split-ring resonators (CSRRs). By creating a sharp stopband at the resonance frequency from a loaded SRR or CSRR, the backward electrical-magnetic (EM) wave is reflected to couple with the forward EM wave to form a standing EM wave in the DTL host, which results in a high-Q and low-loss millimeter-wave resonator with stable EM energy stored. The resulting DTL-SRR and DTL-CSRR resonators are deployed for designs of millimeter-wave oscillators i...
© 2017 IEEE. This paper presents a design of a miniaturized resonator for millimeter-wave applicatio...
In this work, a planar transmission line loaded with square shaped split ring resonator (SRR) metama...
IEEE MTT-S International Microwave Symposium (IMS), Phoenix, Arizona, USA, 17 - 22 May 2015In this p...
A 96-GHz CMOS oscillator is demonstrated in this brief with the use of a high-Q metamaterial resonat...
A power and area efficient CMOS oscillator by high-Q metamaterial resonator is introduced in this pa...
An on-chip metamaterial resonator is demonstrated in 65 nm CMOS at 80 GHz for millimetre-wave integr...
A high-sensitivity 135 GHz millimeter-wave imager is demonstrated in 65 nm CMOS by on-chip metamater...
Abstract — The split ring resonators (SRRs) are utilized to implement a microwave oscillator in this...
Two novel millimeter-wave (MMW) metamaterials (MTMs) unit cells operate at 28 GHz for a future fifth...
In an effort towards high-speed and low-power I/O data link in future Exa-scale data server, this pa...
One high-sensitivity CMOS superregenerative receiver is demonstrated for 96GHz mm-wave imaging based...
CMOS millimeter-wave integrated circuits are more attractive due to its potential in higher integrat...
© 2016 Elsevier Inc. All rights reserved. Today's wireless communication systems typically operate a...
Thanks to advanced scaling of CMOS technology, the operating speed and cut-off frequency of CMOS tra...
Over the past decade, there have been substantial activities as well as changes in the design of hig...
© 2017 IEEE. This paper presents a design of a miniaturized resonator for millimeter-wave applicatio...
In this work, a planar transmission line loaded with square shaped split ring resonator (SRR) metama...
IEEE MTT-S International Microwave Symposium (IMS), Phoenix, Arizona, USA, 17 - 22 May 2015In this p...
A 96-GHz CMOS oscillator is demonstrated in this brief with the use of a high-Q metamaterial resonat...
A power and area efficient CMOS oscillator by high-Q metamaterial resonator is introduced in this pa...
An on-chip metamaterial resonator is demonstrated in 65 nm CMOS at 80 GHz for millimetre-wave integr...
A high-sensitivity 135 GHz millimeter-wave imager is demonstrated in 65 nm CMOS by on-chip metamater...
Abstract — The split ring resonators (SRRs) are utilized to implement a microwave oscillator in this...
Two novel millimeter-wave (MMW) metamaterials (MTMs) unit cells operate at 28 GHz for a future fifth...
In an effort towards high-speed and low-power I/O data link in future Exa-scale data server, this pa...
One high-sensitivity CMOS superregenerative receiver is demonstrated for 96GHz mm-wave imaging based...
CMOS millimeter-wave integrated circuits are more attractive due to its potential in higher integrat...
© 2016 Elsevier Inc. All rights reserved. Today's wireless communication systems typically operate a...
Thanks to advanced scaling of CMOS technology, the operating speed and cut-off frequency of CMOS tra...
Over the past decade, there have been substantial activities as well as changes in the design of hig...
© 2017 IEEE. This paper presents a design of a miniaturized resonator for millimeter-wave applicatio...
In this work, a planar transmission line loaded with square shaped split ring resonator (SRR) metama...
IEEE MTT-S International Microwave Symposium (IMS), Phoenix, Arizona, USA, 17 - 22 May 2015In this p...