We propose a slow-wave MEMS phase shifter that can be fabricated using the CMOS back-end and an additional maskless post-process etch. The tunable phase shifter concept is formed by a conventional slow-wave transmission line. The metallic ribbons that form the patterned floating shield of this type of structure are released to allow motion when a control voltage is applied, which changes the characteristic impedance and the phase velocity. For this device a quality factor greater than 40 can be maintained, resulting in a figure of merit on the order of 0.7 dB/360 degrees and a total area smaller than 0.14 mm(2) for a 60-GHz working frequency. (C) 2011 Elsevier B.V. All rights reserved
A true time delay multi-bit MEMS phase shifter topology based on impedance-matched slow-wave CPW sec...
This paper presents a 500-600 GHz submillimeterwave MEMS-reconfigurable phase shifter. It is the fir...
This paper presents proof of concept of first liquid metal (LM) based millimeter-wave (mm-wave) phas...
We propose a slow-wave MEMS phase shifter that can be fabricated using the CMOS back-end and an addi...
L’objectif de ces travaux de recherche est la conception en technologie intégrée d’une nouvelle topo...
A true time delay multi-bit MEMS phase shifter topology based on impedance-matched slow-wave CPW sec...
International audience"Slow-Wave Distributed MEMS Phase Shifter in CMOS for Millimeter-Wave Applicat...
This paper presents the development of an analog distributed MEMS transmission line (DMTL) phase shi...
This paper demonstrates a surface micromachined millimeter wave phase shifter with small size and la...
A continuously variable transmission type W-band phase shifter based on a single pole bandpass filte...
An analog RF microelectromechanical systems (MEMS) slotline true-time-delay (TTD) phase shifter is p...
This work focuses on the design of millimeter-wave phase shifters based on a new topology of tunable...
Millimeter-wave phase shifters are important components for a wide scope of applications. An analog-...
This paper presents the analysis and design of tapered coplanar waveguide based RF phase shifter usi...
International audienceThis communication reports an innovative lowcost millimeter-wave microstrip ph...
A true time delay multi-bit MEMS phase shifter topology based on impedance-matched slow-wave CPW sec...
This paper presents a 500-600 GHz submillimeterwave MEMS-reconfigurable phase shifter. It is the fir...
This paper presents proof of concept of first liquid metal (LM) based millimeter-wave (mm-wave) phas...
We propose a slow-wave MEMS phase shifter that can be fabricated using the CMOS back-end and an addi...
L’objectif de ces travaux de recherche est la conception en technologie intégrée d’une nouvelle topo...
A true time delay multi-bit MEMS phase shifter topology based on impedance-matched slow-wave CPW sec...
International audience"Slow-Wave Distributed MEMS Phase Shifter in CMOS for Millimeter-Wave Applicat...
This paper presents the development of an analog distributed MEMS transmission line (DMTL) phase shi...
This paper demonstrates a surface micromachined millimeter wave phase shifter with small size and la...
A continuously variable transmission type W-band phase shifter based on a single pole bandpass filte...
An analog RF microelectromechanical systems (MEMS) slotline true-time-delay (TTD) phase shifter is p...
This work focuses on the design of millimeter-wave phase shifters based on a new topology of tunable...
Millimeter-wave phase shifters are important components for a wide scope of applications. An analog-...
This paper presents the analysis and design of tapered coplanar waveguide based RF phase shifter usi...
International audienceThis communication reports an innovative lowcost millimeter-wave microstrip ph...
A true time delay multi-bit MEMS phase shifter topology based on impedance-matched slow-wave CPW sec...
This paper presents a 500-600 GHz submillimeterwave MEMS-reconfigurable phase shifter. It is the fir...
This paper presents proof of concept of first liquid metal (LM) based millimeter-wave (mm-wave) phas...