infolytica motorsolve v6.20.17

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infolytica motorsolve 6.20.17

motorSolve BLDC is easy to use. Model, simulate and predict the performance of brushless DC and permanent magnet AC machines. The software makes it simple to analyze and optimize both motors and generators. The rapid and accurate results are based on automated finite element simulations. There are several analysis methods available. Read more about the motor analysis types and generator analysis types in MotorSolve BLDC. Templates and Design Parameters Synchronous Reluctance Interior Permanent Magnet Surface Mounted Bread-loaf Spoke Inset download link:http://www.dwcrk.com/Icsj/EDA/infolytica-motorsolve-6.20.17-download.html All standard slot types (square, round, slotless, parallel tooth, etc) are also included. Custom rotor and stator geometries can be imported. Design Parameters Geometric dimension of the magnets, teeth and slots Number of poles and slots - can be arbitrarily large Stack length Lamination, coil and magnet material Temperature for each component Skew & skew prediction for zero cogging torque Winding Layout Coil winding layout: Select from a list of automatically calculated balanced layouts or specify via manual entry Detailed end winding geometry Supports several wire sizing methods Relevant factors are automatically calculated Winding charts available Phase Back-EMF Line-line Back-EMF Back-EMF harmonics Phase flux linkage Winding factors Görges diagram Airgap MMF Animated Airgap MMF Coil winding layout Motor Performance, Charts & Fields Output Waveforms and Charts Current Back-EMF Torque Flux Linkage Phasor Diagram And many more Performance Calculations Torque Efficiency Air Gap Flux Cogging Torque Efficiency Maps And many more Field Plots Demagnetization prediction Flux density Hysteresis, eddy current, iron and total losses Surface Force Density And many more Drives Drives can be treated as either ideal or PWM, supporting both wye and delta connections. Comparing air gap flux of two designs Field Plot: Eddy Current Loss Generator Performance, Charts & Fields Output Waveforms and Charts Load Power Factor Load Impedance Output Power Efficiency Losses Phasor Diagram And many more Performance Calculations Voltage regulation Voltage vs. Current Power vs. Speed Torque vs. Load Angle Field Plots Demagnetization prediction Flux density Hysteresis, eddy current, iron and total losses Surface Force Density And many more Drives Drives can be treated as either ideal or PWM, supporting both wye and delta connections.

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