E x H Electromagnetics Education Package – Billed Monthly

13.50

E x H Tools reTORT and PFSS (Beta) only for non-commercial and not for profit use within a university educational environment, purely for the purpose of educating students in electromagnetics. E x H tools include both a ray tracer and full wave solvers that enable the student to design optical and RF systems that are small, lighter and have improved performance.

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Description

E x H Tools reTORT and PFSS (Beta) only for non-commercial and not for profit use within a university educational environment, purely for the purpose of educating students in electromagnetics.

Both tools run with E x H's proprietary GEMSIF (GEometry, Modeling, and Simulation InterFace) computational framework, which is also included in the package. Both tools runs with E x H's proprietary GEMSIF (GEometry, Modeling, and Simulation InterFace) computational framework, which is also included in the package.

reTORT is a geometric-optics ray tracer with proven applicability in the high-frequency RF spectrum, built from scratch for modeling and optimizing complex optical systems with the latest software technologies. It allows designs with arbitrary 3D geometry and has an arbitrary material simulation engine that includes binary mixing of standard materials included or new materials you upload into the engine.

reTORT has the capabiility to perform multi-objective local and global optimizations and includes wizards for quick and easy setup of your design and simulation. It excels, and has internal capabilities, for the design of phase gradient metasurfaces and gradient index lenses.

PFSS (Periodic Frequency-Selective Surfaces) is a simulation tool used to rapidly and efficiently solve the problem of electromagnetic scattering from periodic, 2.5D structures for any incidence angle or polarization. The software is suitable for designing devices for RF, terahertz, infrared, and optical applications. As a specialized simulation tool, the solvers within PFSS can rapidly compute the scattering properties from periodic metallodielectric frequency selective surfaces, metamaterials, and antennas. The efficient nature of the solvers allows the use of GEMSIF's advanced stochastic optimizers to select the design properties.

PFSS is not publicly released but is offered in its Beta form although it is fully functional and is regularly used internally on design projects.

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