In this paper, we describe the measurement and modeling of coplanar waveguide (CPW) transmission lines and power dividers on a 620 mu m thick GaAs substrate to 220GHz. It is shown that excellent agreement with measurements can be predicted using a commercial solver (HFSS (TM)) by appropriate use of port stimuli and boundary conditions
We present the design, fabrication and measurement of a 2-way modified Wilkinson divider constructed...
Abstract—A silicon micromachining process has been developed to fabricate high-aspect-ratio coplanar...
International audienceIn this article, shielded coplanar striplines (S‐CPS) are studied to achieve s...
A theoretical model is derived which predicts the critical frequency above which coupling between Co...
This paper investigates an improved empirical model predicting the propagation characteristics of co...
New scaleable circuit models for Coplanar Waveguide transmission lines and discontinuities have been...
An analytical method is presented for a coplanar waveguide (CPW). The dispersion characteristics as ...
Abstract-Building on our previous work that compared computed propagation characteristics of picosec...
Approximate analytical formulae are presented for calculating the characteristic impedance of elevat...
Abstract—We present a simple semi-empirical high-frequency equivalent circuit model to characterize ...
International audienceIn this paper, a predictive electrical model of the slow-wave coplanar wavegui...
The voltage standing wave on a coplanar waveguide (CPW) is measured at W-band (75-110 GHz) using an ...
We report on the measured mmwave (67-110GHz) performance of Coplanar Waveguide components on GaAs su...
We report on the measured mmwave (67-110GHz) performance of Coplanar Waveguide components on GaAs su...
Theoretical and experimental data for the characterization and design of coplanar lines for millimet...
We present the design, fabrication and measurement of a 2-way modified Wilkinson divider constructed...
Abstract—A silicon micromachining process has been developed to fabricate high-aspect-ratio coplanar...
International audienceIn this article, shielded coplanar striplines (S‐CPS) are studied to achieve s...
A theoretical model is derived which predicts the critical frequency above which coupling between Co...
This paper investigates an improved empirical model predicting the propagation characteristics of co...
New scaleable circuit models for Coplanar Waveguide transmission lines and discontinuities have been...
An analytical method is presented for a coplanar waveguide (CPW). The dispersion characteristics as ...
Abstract-Building on our previous work that compared computed propagation characteristics of picosec...
Approximate analytical formulae are presented for calculating the characteristic impedance of elevat...
Abstract—We present a simple semi-empirical high-frequency equivalent circuit model to characterize ...
International audienceIn this paper, a predictive electrical model of the slow-wave coplanar wavegui...
The voltage standing wave on a coplanar waveguide (CPW) is measured at W-band (75-110 GHz) using an ...
We report on the measured mmwave (67-110GHz) performance of Coplanar Waveguide components on GaAs su...
We report on the measured mmwave (67-110GHz) performance of Coplanar Waveguide components on GaAs su...
Theoretical and experimental data for the characterization and design of coplanar lines for millimet...
We present the design, fabrication and measurement of a 2-way modified Wilkinson divider constructed...
Abstract—A silicon micromachining process has been developed to fabricate high-aspect-ratio coplanar...
International audienceIn this article, shielded coplanar striplines (S‐CPS) are studied to achieve s...