In this letter, we have presented a design of on-chip millimeter-wave 3-dB quadrature coupler that utilizes the coupled slow wave coplanar waveguide. The designed CMOS coupler covers the whole E- and W-band and occupies a silicon area of only 0.0115 mm 2 , which is significantly smaller compared to the conventional microstrip-line-based Lange couplers. Measurement of the quadrature coupler shows a -3.5 dB through and a -4.4-dB coupling at 90 GHz. A less than ±1-dB amplitude and a ±4° phase errors from 55 to 110 GHz are recorded.Peer reviewe
This paper validates a design and modeling methodology of coupled slow-wave waveguides (CS-CPW) by p...
Recently, Substrate Integrated Waveguide (SIW) techniques have been noticed for millimeter wave devi...
International audienceThe design and experimental results of millimeter-wave bandpass filters (BPFs)...
In this letter, we have presented a design of on-chip millimeter-wave 3-dB quadrature coupler that u...
International audienceThis paper focuses on the design of high-performance Coupled Slow-wave CoPlana...
© 1980-2012 IEEE. This letter proposes a compact and broadband quadrature coupler with a center freq...
L’objectif de ce travail de thèse est le développement en technologie intégrée standard d’une struct...
International audienceA 60-GHz innovative quadrature branch-line coupler is proposed in this letter....
A compact and wideband coupler for the 60-GHz frequency band applications using 65-nm CMOS technolog...
International audienceIn this article, we present a new wideband hybrid coupler for millimeter‐wave ...
In contrast to conventional coplanar transmission lines, slow-wave coplanar transmission lines offer...
When heading into the millimeter wave frequency band, even wires on CMOS exhibit transmission line e...
The design of two fully integrated 43-GHz voltage-controlled oscillators (VCOs) implemented in a 90-...
International audienceThis article presents an innovative architecture for the implementation of an ...
© 2016 Elsevier Inc. All rights reserved. Today's wireless communication systems typically operate a...
This paper validates a design and modeling methodology of coupled slow-wave waveguides (CS-CPW) by p...
Recently, Substrate Integrated Waveguide (SIW) techniques have been noticed for millimeter wave devi...
International audienceThe design and experimental results of millimeter-wave bandpass filters (BPFs)...
In this letter, we have presented a design of on-chip millimeter-wave 3-dB quadrature coupler that u...
International audienceThis paper focuses on the design of high-performance Coupled Slow-wave CoPlana...
© 1980-2012 IEEE. This letter proposes a compact and broadband quadrature coupler with a center freq...
L’objectif de ce travail de thèse est le développement en technologie intégrée standard d’une struct...
International audienceA 60-GHz innovative quadrature branch-line coupler is proposed in this letter....
A compact and wideband coupler for the 60-GHz frequency band applications using 65-nm CMOS technolog...
International audienceIn this article, we present a new wideband hybrid coupler for millimeter‐wave ...
In contrast to conventional coplanar transmission lines, slow-wave coplanar transmission lines offer...
When heading into the millimeter wave frequency band, even wires on CMOS exhibit transmission line e...
The design of two fully integrated 43-GHz voltage-controlled oscillators (VCOs) implemented in a 90-...
International audienceThis article presents an innovative architecture for the implementation of an ...
© 2016 Elsevier Inc. All rights reserved. Today's wireless communication systems typically operate a...
This paper validates a design and modeling methodology of coupled slow-wave waveguides (CS-CPW) by p...
Recently, Substrate Integrated Waveguide (SIW) techniques have been noticed for millimeter wave devi...
International audienceThe design and experimental results of millimeter-wave bandpass filters (BPFs)...