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Getting Started with Ansys Maxwell  

Understanding how electromagnetic devices behave is essential for anyone entering today’s electrified world of motors, transformers, and power systems. This webinar will introduce you to Ansys Maxwell and show how to model these components while visualizing the fields and phenomena inside them. You’ll walk through solvers, geometry setup, meshing, and results analysis, all demonstrated through a live transformer example.

Date/Time:
February 6, 2026
11 AM EST

Venue:
Virtual

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Overview

The performance of any modern electrified system depends on the design of its electromagnetic devices. Motors, transformers, inductors and cables are key components shaping today’s power systems. Designing such components is crucial, requiring engineers to account for nonlinear magnetic materials, skin effect, induced eddy currents, torque ripple, and other complex phenomena. Gaining confidence in understanding and visualizing these effects begins with a strong foundation in electromagnetic principles.

In this webinar, you’ll be introduced to Ansys Maxwell—an advanced electromagnetic field solver within Ansys Electronics Desktop for 2D and 3D simulations. The session will guide students and educators through available solvers, geometry creation, meshing strategies, and results analysis. A live textbook transformer example will be designed and analyzed, illustrating a complete workflow from start to finish.

What Attendees Will Learn

  • Gain hands-on familiarity with Ansys Maxwell and its available solvers
  • Navigate and become familiar with Ansys Electronics Desktop (AEDT)
  • Create a 3D geometry and introduce design variables
  • Set up a complete electromagnetic analysis, from excitations and materials to meshing and solution settings
  • Post-process and interpret results

Who Should Attend

  • Undergraduate electrical engineering students and educators

Speakers

  • Angelos Fragkos
  • Dimitris Tzagkas

Secure your spot!