Applications
QuickField is used effectively across a wide range of engineering problems, most commonly in the design of complex electrical and electromechanical devices such as motors, turbine generators, actuators, loudspeakers, transformers, induction heating systems and transmission lines.
Featured Applications
Cable design
8 examplesElectric field strength and capacitance of power cables, leakage current and dielectric loss, inductance, temperature distribution and ampacity, and structural stress analysis.
Electrical machines design
7 examplesMagnetic field, torque, eddy currents, temperature rise and structural stress analysis of DC motors, induction motors, synchronous motors and switched reluctance motors.
EMC analysis
3 examplesElectric field and potential distribution, self and mutual capacitance in EMC analysis, and AC Magnetics for impedance and self/mutual inductance calculation.
High voltage system design
5 examplesElectric field strength and potential distribution, leakage current, dielectric loss factor and resistive losses in high-voltage equipment, plus transient electric field analysis.
Induction heating system design
5 examplesElectromagnetic field distribution, eddy currents and heat generation, skin effect, and coupled temperature field analysis for induction heating equipment.
Transformer design
5 examplesPower loss, electromagnetic force, induced voltage and eddy current distribution in transformers, plus temperature rise and stress analysis of windings and cores.
All Application Areas
19 areasQuickField's applications are not limited to the list below. For more specific problems, see theEngineering Q&Asection.
