SEMCAD X Matterhorn is a state-of-the-art 3D full-wave electromagnetic and thermal simulation platform developed by SPEAG. Based on FDTD and FEM methods, it provides a powerful and flexible environment for simulating electromagnetic fields across the entire frequency spectrum—from DC to light. Designed for engineers and researchers, SEMCAD X Matterhorn supports a wide range of applications, including safety assessments, antenna design, EMI/EMC analysis, and medical device development.
SEMCAD X Matterhorn is a state-of-the-art 3D full-wave electromagnetic and thermal simulation platform developed by SPEAG. Based on FDTD and FEM methods, it provides a powerful and flexible environment for simulating electromagnetic fields across the entire frequency spectrum—from DC to light. Designed for engineers and researchers, SEMCAD X Matterhorn supports a wide range of applications, including safety assessments, antenna design, EMI/EMC analysis, and medical device development.
Benefits
- Seamless integration of electromagnetic and thermal solvers
- High accuracy and reliability through validated models
- Intuitive user interface and workflow
- Compatibility with Sim4Life for extended functionality
- Scalable performance with high-performance computing (HPC) support
Key Features
- Full-wave solvers (FDTD, FEM) for EM and thermal simulations
- Advanced modeling tools and meshing capabilities
- Python scripting and automation support
- Multi-parameter optimization and parameter sweeps
- Comprehensive post-processing and visualization tools
Typical Applications
- MRI coil and medical implant design
- Wireless power transfer and 5G antenna optimization
- Electromagnetic interference and compatibility (EMI/EMC)
- Dosimetry and safety compliance testing
- Optical and photonic device simulation
Additional Information
SEMCAD X Matterhorn shares its core engine with Sim4Life, ensuring full compatibility and project portability. It is available in modular configurations tailored to specific engineering needs. A free 30-day trial is available upon request.