PCBMod - for EMI calculations of PCBs and cable harness systems
PCBMod is unique for its capabilities to help investigating all SI, EMC, and EMI effects without the need for a real prototype of your PCB.
Regardless if for high speed digital, analog / mixed signal, or power supply designs, PCBMod will save you time and money when designing and
producing new PCBs.
You have the choice to analyze in time domain or frequency domain and to use 2D or 3D line models for transmission line simulations or
power/ground analyses. Skin effect, dielectric losses, and any structural EMC issues are all considered in the built-in simulator.
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CableMod - Analysis of electronic system cables and harness systems
CableMod provides the user an efficient software tool regarding EMC/EMI and signal integrity aspects for modelling and simulation of complex
cable structures.
CableMod includes powerful two-dimensional field solvers for the determination of transmission line characteristics and a Spice-equivalent
network simulator for calculating the currents and voltages in the excitated conductor systems.
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RadiaSim - for EMI calculations of PCBs and cable harness systems
RadiaSim gives you fast and accurate results together with either
PCBMod or
CableMod.
RadiaSim offers the user with powerful and flexible solutions for analyzing various kinds of radiation effects from PCBs and cable systems.
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EMC Studio
An EMC design environment (PC/Windows) including: 3D static field simulator, 3D full-wave EM simulator, circuit simulator,
time domain and frequency domain excitations,cable assembly management, virtual EMC stripline test, virtual TEM cell test,
virtual BCI test etc.
One software for all your EMC design aspects!
Ideal for the automotive, aerospace, naval and defense industry applications.
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MEFiSTo
is a full 3D simulator (PC/Windows) well known to the research and electronics community because it is easy to use and has some very unique features.
MEFiSTo is based on the Transmission Line Method, TLM (see
Methods),
a method that is in many ways similar to the Finite Difference Time Domain but does not have the stability problems sometimes
associated with FDTD.
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