Reseach Fields

Step into the domain of our research area, where we specialize in advancements in the microwave field, pushing the boundaries of technology and applications in areas such as numerical methods, measurements, and microwave processing of materials.

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.

Numerical Techniques and EM Modelling Read More »

Design of Microwave and RF Circuits

This line of research involves the development of microwave circuitry, including oscillators, receivers, filters, phase shifters, antennas, resonators, sensors in both planar (microstrip, coplanar, etc.) and waveguide technologies.

With state-of-the-art fabrication technologies, we can manufacture our designs, ensuring that every component meets the highest standards of quality and performance. This advanced manufacturing capability allows us to produce reliable microwave circuits, facilitating rapid prototyping and iterative development.

Design of Microwave and RF Circuits Read More »

Microwave Measurement Techniques

This line conducts both theoretical and experimental research to develop precise metrology techniques and measurement devices, particularly in the field of microwave and RF (radiofrequency).

Our measurement services encompass power, noise, impedance, dielectric and magnetic material properties, and other fundamental quantities. We also tailor specific devices and methodologies for dielectric measurements to suit the material’s specific microwave frequency requirements.

This line also includes both basic R&D and applied research in the field of Microwave and Millimeter Wave Nondestructive Testing and Evaluation  (microwave sensors).

Microwave Measurement Techniques Read More »

Microwave Heating and Processing

This research line investigates the application of microwave heating as an emerging, innovative, property-improving, energy-conserving, eco-friendly, and time-saving technology applied across numerous fields, including materials processing, drying, curing and thermochemical reactions.

Microwave processing has shown clear advantages over conventional heating in many industrial processes and over an extensive variety of materials such as ceramics, composites and metals. Because electromagnetic energy interacts differently depending on material’s properties or composition, microwave technology has the potential to develop entirely new or enhanced manufactured products through internal selective heating as well as new approaches and processes for producing such materials.

“The ultrafast microwave interaction with materials can create new reaction pathways and processes not possible using other heating methods”

Microwave Heating and Processing Read More »

Scroll to Top