International audienceIn this paper, a predictive electrical model of the slow-wave coplanar waveguide structure (S-CPW) is presented. The model was developed under the assumption of Quasi-TEM propagation mode. This assumption allows treating separately the electric field from the magnetic field. Therefore, inductive and capacitive effects are processed apart. Within this context, analytical formulas, parameterized by S-CPW geometric dimensions, are given for each electric parameter in the model, including resistances that account for losses. The model was validated with electromagnetic simulations (HFSSTM) and measurement results on several integrated technologies. An excellent agreement was achieved over a wide frequency band from DC up t...
International audienceThis paper focuses on the design of high-performance Coupled Slow-wave CoPlana...
International audienceThis paper focuses on the design of high-performance Coupled Slow-wave CoPlana...
International audienceThis paper focuses on the design of high-performance Coupled Slow-wave CoPlana...
International audienceIn this paper, a predictive electrical model of the slow-wave coplanar wavegui...
International audienceIn this paper, a predictive electrical model of the slow-wave coplanar wavegui...
International audienceIn this paper, a predictive electrical model of the slow-wave coplanar wavegui...
International audienceIn this paper, a predictive electrical model of the slow-wave coplanar wavegui...
International audienceIn this paper, a parametric predictive electrical model of the slow-wave copla...
International audienceIn this paper, a parametric predictive electrical model of the slow-wave copla...
International audienceIn this paper, a parametric predictive electrical model of the slow-wave copla...
International audienceIn this paper, a parametric predictive electrical model of the slow-wave copla...
International audienceIn this paper, a parametric predictive electrical model of the slow-wave copla...
International audienceThis paper presents a new physical model for shielded slow-wave coplanar waveg...
International audienceThis paper presents a new physical model for shielded slow-wave coplanar waveg...
International audienceThis paper focuses on the design of high-performance Coupled Slow-wave CoPlana...
International audienceThis paper focuses on the design of high-performance Coupled Slow-wave CoPlana...
International audienceThis paper focuses on the design of high-performance Coupled Slow-wave CoPlana...
International audienceThis paper focuses on the design of high-performance Coupled Slow-wave CoPlana...
International audienceIn this paper, a predictive electrical model of the slow-wave coplanar wavegui...
International audienceIn this paper, a predictive electrical model of the slow-wave coplanar wavegui...
International audienceIn this paper, a predictive electrical model of the slow-wave coplanar wavegui...
International audienceIn this paper, a predictive electrical model of the slow-wave coplanar wavegui...
International audienceIn this paper, a parametric predictive electrical model of the slow-wave copla...
International audienceIn this paper, a parametric predictive electrical model of the slow-wave copla...
International audienceIn this paper, a parametric predictive electrical model of the slow-wave copla...
International audienceIn this paper, a parametric predictive electrical model of the slow-wave copla...
International audienceIn this paper, a parametric predictive electrical model of the slow-wave copla...
International audienceThis paper presents a new physical model for shielded slow-wave coplanar waveg...
International audienceThis paper presents a new physical model for shielded slow-wave coplanar waveg...
International audienceThis paper focuses on the design of high-performance Coupled Slow-wave CoPlana...
International audienceThis paper focuses on the design of high-performance Coupled Slow-wave CoPlana...
International audienceThis paper focuses on the design of high-performance Coupled Slow-wave CoPlana...
International audienceThis paper focuses on the design of high-performance Coupled Slow-wave CoPlana...