Electromagnetic CAE solutions

Simulation Tools for Field Solving and Analysis

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Software Demos and Simulation Examples

* Please note that demos are not in real time unless specified.

ELECTRO:
2D/RS Electric Fields

Model of an elementary high voltage insulator unit to illustrate the application of floating conductors, and the concept of unbalanced mode analysis.
View demo (2m42s) 5.89Mb
Click here to view ELECTRO demo COULOMB:
3D Electric Fields

Analysis of a parallel plate capacitor system, as well as symmetry and periodicity features for simplifying model design and solution time.
View demo (1m6s) 2.87Mb
View real time demo (2m59s) 6.06Mb
Click here to view COULOMB demo
MAGNETO:
2D/RS Magnetic Fields

Analysis of a permanent magnet generator.
View demo (3m40s) 8.73Mb
Click here to view MAGNETO demo AMPERES:
3D Magnetic Fields

Simple cabinet catch model to illustrate symmetry and anti-symmetry as applied to models containing permanent magnets.
View demo (3m11s) 8.09Mb
Click here to view AMPERES demo
OERSTED:
2D/RS Eddy Currents

Helmholtz coil model to demonstrate a simple parametric solution.
View parametric only (1m59s) 4.47Mb
View model input and parametric (2m54s) 5.91Mb
Click here to view OERSTED demo FARADAY:
3D Eddy Currents

Model of an electrodynamic levitation device that is based on Lenz's Law.
View demo (2m36s) 6.34Mb
Click here to view FARADAY demo
LORENTZ: 2D Particle Trajectory/Beam Analysis
Analysis of charged particle motion in response to both an electric field and a user defined magnetic field.
View demo (3m56s) 7.54MB
Click here to view LORENTZ 2D demo LORENTZ: 3D Particle Trajectory/Beam Analysis
Simple solar system model to demonstrate conic section trajectories.
View demo (3m26s) 6.55Mb
Click here to view LORENTZ 3D demo
SINGULA: 3D Full-Wave High Frequency Simulator
Dielectric coated conducting sphere illuminated by an incident wave plane.
View demo (4m27s) 17.5Mb
Click here to view SINGULA demo Importing Geometry from SolidWorks
Importing your geometry from major CAD packages like SolidWorks is fast and easy.
View demo (1m11s) 3.89Mb
Click here to view SolidWorks import demo
Solenoid Optimization
The benefits of parametric optimization of a solenoid
View demo (2m6s) 4.86MB
Click here to view Solenoid Optimization demo

SINGULA Simulation Examples:

Example 1:    Dipole Antenna of 11cm Length with 0.22mm Radius
Example 2:    λ/4 Monopole Antenna with Finite Square Ground Plane
Example 3:    Single Slot Antenna with Finite Square Ground Plane
Example 4:    Helix Antenna with Finite Square Ground Plane
Example 5:    L-Probe Antenna
Example 6:    Wire Junction Antenna
Example 7:    WR90 Horn Antenna
Example 8:    Hemispherical Dielectric Resonator Antenna
Example 9:    Disk Patch Antenna
Example 10: Circular Patch Antenna
Example 11: Conformal Strip Dielectric Resonator Antenna
Example 12: Two-Port Asymmetric Antenna
Example 13: Branch Line Coupler
Example 14: Wilkinson Power Divider
Example 15: Parallel Coupled Line Bandpass Filter
Example 16: Shielded Microstrip Single-Stub Filter
Example 17: Microstrip Radial Stub
Example 18: Circular Disk Two-Port Filter
Example 19: Open Power Bus Structures
Example 20: Physical Optics-MoM Hybrid Method
Example 21: Compact Microstrip Antenna with a Slotted Finite Ground Plane
Example 22: Broadband Microstrip-Line-Fed Shorted Patch Antenna
Example 23: Cavity-Backed Aperture Antenna
Example 24: Pyramidal Horn Antenna
Example 25: Conical Horn Antenna
Example 26: Circular Cavity Fed by Two WR75 Waveguides
Example 27: 90 Degree Twisted Waveguide
Example 28: Rectangular T-junction
Example 29: T-Type Waveguide with Post
Example 30: Magic-T Junction
Example 31: Rectangular Ridge Waveguide
Example 32: Rectangular Dieclectric Resonator Waveguide
Example 33: Circular-Rectangular T-Junction Waveguide
Example 34: Coaxial T-Junction
Example 35: Waveguide-to-Microstrip Transition
Example 36: Rectangular Waveguide Filter
Example 37: Waveguide Two-Slot Directional Coupler

Other Demos

FARADAY demo of a set of AC conductors running over a thin plate of aluminum. This demo illustrates the induced currents as the phase in the conductors change. The plot was created for a full cycle. (23s) 6.03Mb
How to copy AutoGraph data from your IES program into other applications
How to load materials
How to construct a prototype flaw, build a volume around it, and then displace the location of the flaw using FARADAY:
Step 1: Create flaw volume (1m17s) 3.3Mb
Step 2: Create top surfaces (47s) 2.33Mb
Step 3: Add inside and bottom surfaces (1m7s) 3.82Mb
Step 4: Define volumes and materials (1m3s) 3.3Mb
Step 5: Define group (34s) 1.76Mb
Step 6: Displace flaw and surrounding surface (40s) 2Mb

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"I truly enjoy using IES software. Its combination of speed, accuracy and extraordinary user-friendliness make my work much more productive. I would like to thank the IES team for an excellent numerical code."

Dr. Valery Rudnev
Inductoheat Group

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