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ANSYS Emag
(Electromagnetics)
Electromagnetic simulations are critical to electrical and electronic product designs across many industries. Applications involve everything from rotating machines (motors and alternators), sensors and actuators, power generators and transformer systems, and Micro Electro Mechanical Systems (MEMS). ANSYS Emag provides a comprehensive range low-frequency analysis features to address the diverse needs of the electromagnetics engineer, from motor design to ion optics.
ANSYS Emag simulates low-frequency electric currents and electric fields in conductive and capacitive systems, as well as magnetic fields resulting from currents or permanent magnets. It contains a comprehensive tool set for static, transient and harmonic low-frequency electromagnetic studies, permitting the simulation of electrostatic, magnetostatic, electromagnetic, electric circuit and current conduction. The program can also simulate charged-particle tracing in both electrostatic and magnetostatic fields. ANSYS Emag also features a complete range of automatic calculations for force, torque, inductance, impedance, capacitance, Joule losses, field leakage, saturation, and electric and magnetic field strengths.
ANSYS Emag's circuit builder enables the user to apply harmonic, transient (including large amplitude transient) voltage and current loads directly to a finite element model via a graphically generated circuit schematic. This circuit builder permits the user to arbitrarily arrange the resistors, capacitors, diodes, inductors, wires, transformers, voltage and current sources, as well as other components. The circuit coupling to the finite element domain allows for simulating circuit-fed devices where nonlinear (saturation) effects must be considered. ANSYS Emag can be used as an independent package or in combination with other ANSYS software suite products, such as ANSYS Mechanical, to enable even more comprehensive simulation of real-world phenomena involving coupled thermal-electromagnetic systems and magneto-mechanical systems.
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