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Significant developments in latest versions of ThermNet and MagNet

Montreal, QC
February 4, 2005

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The latest release of ThermNet (version 1.8) is capable of simulating the convective transfer of heat between the rotor and the stator in a rotating machine. In addition to this helpful new feature for motor designers, ThermNet can now perform, in tandem with MagNet, the following analyses:

  • Coupled thermal transient-to-magnetic transient (with or without motion)
  • Coupled thermal static-to-magnetic transient (with or without motion)

Enhancements to MagNet 6.17 include:

  • Support for multiple sliding interfaces with motion components in 3D
  • Mesh and/or polynomial (3d only) adaption based on individual components
  • Speed and memory usage improvements overall and especially in coupled solves
  • A nonlinear anisotropy model has been added to the materials database
  • Users can control anisotropy in three different directions by specifying an optional x-axis vector
  • Iron loss calculations - Improved interpolation scheme when loss properties are specified for several frequencies and several temperatures
  • The importing of DXF files is now much faster
  • Link to PSIM with MagNet Plug-in for PSIM

About Infolytica

Infolytica offers state-of-the-art 2D/3D Electromagnetic simulation software for magnetic, electric, and thermal analyses. Engineers from a wide range of industries use Infolytica's software to design and analyze applications such as electromechanical devices, non-destructive testing (NDT), induction heating, power electronics, sensors, and industrial transformers. Full feature scripting and parameterization make Infolytica products the flexible solution for your electromagnetic simulation needs. Infolytica also offers a truly innovative design tool for optimizing electromagnetic or thermal devices, using both continuous-valued and discrete-valued variables.

Infolytica’s electromagnetic simulation software:

  • Reduces manufacturing costs by optimizing your design
  • Reduces time-to-market
  • Reduces the need to fabricate prototypes
  • Improves hardware design
  • Helps engineers meet tight deadlines
  • Allows for quick simulation of prototype variations

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