Modules
QuickField offers customizable configurations built around your analysis needs. Every configuration includes a model editor, data editor, solver and postprocessor; which tools and modules are available depends on the analysis options selected.
Analysis options fall into three groups: magnetic analysis, electric analysis, and thermal/structural analysis. Field models can be solved together with an external circuit, and multiple modules can be combined for a complete multiphysics coupling analysis.
Magnetic Analysis
QuickField's magnetic analysis is mainly for low- and medium-frequency electromagnetic simulation, considering only the magnetic field component. It comes in three types:
DC Magnetics
静磁场8 examplesFor static models, with support for nonlinear materials, permanent magnets, DC currents and various boundary conditions.
View details →AC Magnetics
交流磁场8 examplesFor analyzing electromagnetic devices and systems with time-harmonic AC currents — computes eddy currents, proximity effect, impedance and Joule losses, with support for external circuit coupling.
View details →Transient Magnetics
瞬态磁场1 exampleAdds time-stepping on top of DC Magnetics, able to simulate dynamic systems with nonlinear materials and permanent magnets, supporting sinusoidal and pulsed excitation, with external circuit coupling.
View details →Electric Analysis
QuickField's electric analysis is for electromagnetic problems where magnetic effects can be neglected, and includes the following modules:
Electrostatics
静电场2 examplesAnalyzes the electric field produced by static charge distributions and applied voltages in systems with conductors and dielectrics, and can compute charged particle trajectories.
View details →DC Conduction
直流电流场3 examplesSimulates the current distribution in a conductive material under an applied DC voltage or given current density.
View details →AC Conduction
交流电流场3 examplesComputes the electric field and current distribution in conductors and dielectrics under time-harmonic AC voltage or current, accounting for both resistive and capacitive effects.
View details →Transient Electric Field
瞬态电场1 exampleComputes the electric field and current distribution produced by arbitrary-waveform, time-varying voltage or current pulses applied to conductors and dielectrics.
View details →Thermal Analysis
Thermal and structural analysis examines the temperature and mechanical stress distribution in components and devices. The heat transfer part supports both steady-state and transient formulations:
Stress Analysis
The other part of thermal and structural analysis, used to compute the structural response under load:
Circuit Analysis
Field models can be solved together with an external circuit, or a pure circuit problem can be solved on its own:
Multiphysics Coupling
The above modules can be combined, using the result of one analysis as input for another:
