Actuators, Solenoids, and Electromechanical Systems
You can design and optimize electromechanical devices, such as relays, valves, switches, and motors, with our software. You can simulate the magnetic forces, torques, displacements, and currents of your devices, and optimize their performance and efficiency.
Magnets and Magnet Arrays
You can uncover the potential of magnets and magnet arrays, and use them to advance technologies in various fields, such as medical, aerospace, and industrial. You can simulate the magnetic fields, flux densities, and forces of your magnets, and optimize their shapes, sizes, and arrangements.
Transformers and Power Engineering
You can dive into power electronics and transformer design and optimize energy systems for a sustainable future. You can simulate the electrical parameters, losses, and thermal effects of your transformers, and optimize their winding configurations, core materials, and cooling systems.
Electrical Machines and Drives
You can harness the power of efficient electrical machines and drives and enhance their performance and reliability. You can simulate the electromagnetic, thermal, and mechanical aspects of your machines, such as induction motors, synchronous generators, and permanent magnet motors, and optimize their dimensions, materials, and control strategies.
Antennas and Radomes
You can explore the world of antenna design and electromagnetic simulations and achieve precision and efficiency. You can simulate the radiation patterns, gains, impedances, and efficiencies of your antennas, such as microstrip, horn, and reflector antennas, and optimize their shapes, sizes, and locations. You can also simulate the effects of radomes on your antennas, and optimize their materials, thicknesses, and shapes.
RF and Microwave Components
You can achieve excellence in RF and microwave design and ensure seamless connectivity and communication. You can simulate the electromagnetic behavior, scattering parameters, and losses of your RF and microwave components, such as filters, couplers, and waveguides, and optimize their geometries, materials, and frequencies.
Electronic Design Automation
You can simplify electronic design processes and streamline your workflows. You can simulate the electromagnetic compatibility, interference, and signal integrity of your electronic circuits and systems, and optimize their layouts, components, and shielding.
Sensors and NDT/NDE
You can ensure the reliability of sensors and non-destructive testing and evaluation processes. You can simulate the electromagnetic fields, currents, and voltages of your sensors, such as magnetic, eddy current, and capacitive sensors, and optimize their sensitivity, accuracy, and resolution. You can also simulate the electromagnetic inspection and characterization of your materials and structures, and optimize their quality, safety, and durability.
Biomedical and EM Exposure
You can explore biomedical applications and electromagnetic exposure studies and contribute to advancements in healthcare. You can simulate the electromagnetic fields, currents, and temperatures of your biomedical devices, such as pacemakers, MRI scanners, and nerve stimulators, and optimize their functionality, safety, and comfort. You can also simulate the electromagnetic exposure and dosimetry of human tissues and organs and optimize their health and well-being.
Electric Vehicles and Batteries
You can shape the future of transportation and energy storage with our advanced simulation software. You can simulate the electromagnetic, thermal, and mechanical aspects of your electric vehicles and batteries, such as electric motors, inverters, and battery packs, and optimize their performance, efficiency, and lifespan.
Multiphysics Applications
Our products come equipped with integrated thermal, structural, and motion analyses, making Multiphysics simulations accessible and efficient. You can simulate the coupled effects of various physical phenomena on your electromagnetic systems, and optimize their behavior, response, and stability.