This paper characterizes coplanar waveguide (CPW) lines formed by ink-jet printed conductors on flexible Kapton substrates at frequencies up to 60 GHz. It is shown that the lines have losses of approximately 1.5 dB/mm but that this relatively high loss is predominantly due to the loss tangent of the substrates and not the lower conductivity of the silver inks used in this implementation. On an Alumina sample the loss is shown to be 0.8 dB/mm for the same ink-jet printed lines. CST simulation has been used to verify the calculated results
In this paper, we present the modeling, fabrication, measurement techniques, and characterization re...
International audienceIn this letter, a grounded coplanar waveguide-to-microstrip (GCPW-to-MS) trans...
International audienceIn this letter, the design, fabrication, and measurement of a 60-GHz printed a...
© 2014 IEEE.This paper characterizes coplanar waveguide (CPW) lines formed by ink-jet printed conduc...
International audienceThis letter introduces radio frequency(RF) characterization of ink-jet printed...
This paper describes the computer-aided-design (CAD)-assited microwave characterization of coplanar ...
This paper describes microwave characterization of coplanar waveguide (CPW) lines formed by ink-jet ...
This paper describes microwave characterization of coplanar waveguide (CPW) lines formed by ink-jet ...
In this paper, we propose a robust microwave characterization of inkjet printed components on flexib...
In this paper, influence of different substrates' thickness on coplanar waveguide (CPW) inductors fo...
Abstract—Failure mode characterization was applied to coplanar transmission lines by utilizing 0.5–1...
Inkjet-printed silver coplanar waveguide on a glass substrate with narrow gap is firstly realized by...
In this paper we present an ink-jet printed coplanar waveguide (CPW) inductors in flexible technolog...
This article investigates the propagation along coplanar waveguide (CPW) structures, where multiwall...
We studied aerosol jet printing on flexible substrates for wearable and flexible electronic devices....
In this paper, we present the modeling, fabrication, measurement techniques, and characterization re...
International audienceIn this letter, a grounded coplanar waveguide-to-microstrip (GCPW-to-MS) trans...
International audienceIn this letter, the design, fabrication, and measurement of a 60-GHz printed a...
© 2014 IEEE.This paper characterizes coplanar waveguide (CPW) lines formed by ink-jet printed conduc...
International audienceThis letter introduces radio frequency(RF) characterization of ink-jet printed...
This paper describes the computer-aided-design (CAD)-assited microwave characterization of coplanar ...
This paper describes microwave characterization of coplanar waveguide (CPW) lines formed by ink-jet ...
This paper describes microwave characterization of coplanar waveguide (CPW) lines formed by ink-jet ...
In this paper, we propose a robust microwave characterization of inkjet printed components on flexib...
In this paper, influence of different substrates' thickness on coplanar waveguide (CPW) inductors fo...
Abstract—Failure mode characterization was applied to coplanar transmission lines by utilizing 0.5–1...
Inkjet-printed silver coplanar waveguide on a glass substrate with narrow gap is firstly realized by...
In this paper we present an ink-jet printed coplanar waveguide (CPW) inductors in flexible technolog...
This article investigates the propagation along coplanar waveguide (CPW) structures, where multiwall...
We studied aerosol jet printing on flexible substrates for wearable and flexible electronic devices....
In this paper, we present the modeling, fabrication, measurement techniques, and characterization re...
International audienceIn this letter, a grounded coplanar waveguide-to-microstrip (GCPW-to-MS) trans...
International audienceIn this letter, the design, fabrication, and measurement of a 60-GHz printed a...