Numerical Techniques and EM Modelling

EM Simulation

We offer design, modelling, and simulation services for RF and microwave components, covering various technologies like waveguide and planar technology.

Our expertise spans antennas, microwave components (filters, multiplexers, couplers), microwave sensors, and microwave heating applicators (monomode, multimode, flow applicators, etc.).

We employ advanced full-wave electromagnetic (EM) and circuit models, including proprietary and commercial software like MATLAB, HFSS, QW3D, Ansys, and others.

En example of simulation of mode stirrers in multimode chambers is illustrated in the next figure:

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Numerical Techniques and EM Modelling

In this field, we conduct theoretical research in numerical methods for electromagnetic modelling, both for open and closed microwave structures. These numerical procedures enable us to design various components, such as microwave cavities, dielectric measurement probes, filters, duplexers, and more.

Microwave modeling is crucial in advancing microwave technology, as it allows for the accurate simulation and analysis of microwave circuits, systems, and components. By creating detailed models, engineers can predict performance, identify potential issues, and optimize designs before prototypes are built. This not only accelerates the development process but also reduces costs and enhances the reliability and efficiency of microwave devices. Furthermore, microwave modeling plays a key role in exploring innovative applications, from telecommunications to medical diagnostics, ensuring that new technologies are both feasible and effective.

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