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This paper presents a scalable MIM capacitor model that is applicable at RF and mm-wave frequencies. The model parameters are obtained from electromagnetic simulations and verified by measurements over a wide range of geometry parameters. A de-embedding method is described that is based on two through structures.
In this paper a full-wave electromagnetic (EM) macomodeling of 3D high-density trenched capacitors is proposed based on planar EM Method of Moments. The results are used to derive scalable wide-band SPICE-compatible models synthesis easy to include in Physical Design Kit (PDK) libraries for frequency and time domain block-level and system-level simulations. Comparison of both EM macro-models and wideband...
The microwave perfonrance of very thin (10-200nm) High-Tc superconducting thin films as used for microelectronic applications cannot be charterized satisfactorily by the well-known microwave resonator technique due to the disadvantageous dIL raio. It is shown tha the microwave performance of these films can be deduced from the microwave penetration depth, which is determined absolutely and with high...
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