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Tutorial
Femtet tutorial helps you learn how to use Femtet.
If you are a first-time user, start with an analysis tutorial of your interest.
After that, continue on to the modeling tutorial to familiarize yourself further with the solid modeler built into Femtet .
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It is not necessary to go through the modeling tutorial,
if you are going to import CAD data and have no plan to use the Femtet solid modeler.
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After completing this tutorial, please go through Examples, where you will find a variety of useful examples.
Analysis Tutorials (Required time: approximately 30 minutes for each)
Electric Analysis (Coulomb)The electric field around a pair of electrodes in the dielectric material is solved. The resulting electric field is displayed and the capacitance is obtained. |
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Magnetic Analysis (Gauss, Static Analysis)A coil with core is calculated by the static analysis of the magnetic solver. The resulting magnetic field is displayed and the inductance is obtained. |
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Magnetic Transient Analysis (Luvens, Transient Analysis of Motor)IPM motor is analyzed. |
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Magnetic Transient Analysis [Luvens, Motor Modeling Tool]The 2D motor is analyzed with the motor modeling tool. |
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Electromagnetic Analysis (Hertz) 3D Harmonic AnalysisHarmonic analysis is performed for an open-circuit stub. S-parameters are obtained and the electromagnetic field is displayed . |
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Electromagnetic Analysis (Hertz) 2D Waveguide AnalysisThe waveguide analysis is performed for a coaxial cable. |
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Thermal Analysis (Watt)A heat source placed on a substrate is analyzed. The cooling by natural convection is solved. |
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Stress Analysis (Galileo)The stress and the deformation of a pressured case are solved in this tutorial. |
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Piezoelectric Analysis (Rayleigh)A device with two piggybacked piezoelectric plates is analyzed. Two materials are reversely polarized each other. |
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Acoustic Analysis (Mach)The sound waves generated by a vibrating disc in the air sphere are simulated and analyzed. |
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Fluid Analysis (Bernoulli)A flow in the flow path with an obstacle is solved in this tutorial.
Create only a fluid body for analysis. To analyze the internal flow in the model with such a solid domain as a pipe, refer to the tutorial: Fluid Analysis_2 (Bernoulli, Diffusion Analysis: Automatic Internal Fluid Creation).
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Fluid Analysis_2 (Bernoulli, Diffusion Analysis: Automatic Internal Fluid Creation)Fluids containing diffusing materials at different concentrations flow in from two inlets of the T-shaped pipe, mix with each other, and flow out through one outlet. The flow is solved. Select [Automatic Fluid Domain Creation]. Create only a solid body for analysis. |
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Fluid Thermal Analysis (Bernoulli Watt, Automatic External Fluid Creation)The cooling by natural convection (steady-state analysis) is solved in this tutorial. The tutorial model Thermal Analysis (Watt) is solved using fluid-thermal analysis with external fluid flow taken into account. |
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Simple Fluid-Thermal Analysis (Pascal/Watt)A heat source placed on a substrate is analyzed. The cooling by forced convection is solved with the combination of Pascal and Watt. |
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Modeling Tutorial (Required time: approximately 2 hours)
ModelingFor the modeling exercise, we create a mobile phone. You can learn how to create primitives and how to modify bodies". |
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Tutorial: MATLAB/Simulink Motor Drive Analysis Coordination (Required time: approximately 30 minutes)
Integration with MATLAB/Simulink Motor Drive AnalysisFemtet motor analysis and MATLAB/Simulink motor drive analysis are integrated in this tutorial.
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