Looking for:
Motor winding design software free downloadFree electrical machine design resources.Motor winding design software free download
Electric Motor Rewinding Software.Motor winding design software free download
Motor Rewinding Software.Motor winding design software free download
Software for design and analysis of electric motors and generators. Desing and analysis of permanent magnet motors and generators. Design and analysis of induction motors and generators. Design and analysis of axial flux machines with permanent magnets. MotorXP is not just another electric motor design tool. MotorXP is more than 40 years of combined experience of our engineers in electromagnetics, electric machine design, power electronics, control design and EV industry.
This is where theory and practice meet together, where new ideas create technologies of our future. Why we recommend MotorXP? Just because we use it to solve our everyday challenges creating state of the art electric motors and drives. Because electric is the future.
Please see below the full list of features:. Your Name required. Your Email required. Subject required. Your Message required. MotorXP-PM examples.
About MotorXP Software for design and analysis of electric motors and generators. MotorXP-PM combines both finite element analysis FEA and analytical analysis methods providing fast and accurate results, which establishes a complete set of tools for design and analysis of permanent magnet machines.
Sinewave, PWM and six step drives are supported. All types of losses including eddy current and hysteresis iron losses, magnet losses, retaining sleeve losses, etc.
Permanent magnet demagnetization analysis. Time-series waveform plots and frequency spectrums Current, voltage, back-EMF, torque, powers, losses, etc. Air gap distribution waveform plots and frequency spectrums Air gap flux density, magnetic flux, magnetomotive force, radial force, etc. Field plots and flux contours Flux density distribution, current density distribution, loss distribution, etc. Animated air gap distribution and field plots versus time Steady-state performance characteristics taking into account field weakening Torque vs.
Steady-state performance maps Efficiency maps, losses maps, etc. Based on time-stepping magnetostatic finite element simulations assuming ideal sinusoidal or trapezoidal current waveform Calculation of most commonly used motor parameters like voltage, current, powers, back-EMF, torque, power factor, efficiency, losses Waveform plots, air gap distribution and field plots as well as animations click on image to enlarge. Based on a conventional model of the motor in D-Q reference frame derived from FEA solutions Saturation and cross-saturation are taken into account Iron losses are taken into account Calculation of steady-state performance characteristics and performance maps including motor and inverter efficiency maps click on image to enlarge.
Based on the dynamic model of the motor in D-Q reference frame Simulation of the motor with PWM supply and current control algorithm PWM and six step drives are supported. Most powerful and most accurate of all the analysis methods Based on the time-stepping transient finite element simulations FEA simulations with coupled electrical circuits Arbitrary supply current or voltage waveforms including PWM inverter supply Waveform plots, air gap distribution and field plots as well as animations click on image to enlarge.
MotorXP-PM vs. Thanks to its unique quasi-3D finite element modelling approach it brings the AFM design to a completely new level offering x10s times faster computational speed compared to full 3-D FEA without compromising on accuracy. MotorXP-AFM includes several analysis types composed of a combination of FEA and analytical methods, more than hundred output parameters, built-in and custom geometry templates, customizable material library, parametric analysis and optimization API to establish a flexible and robust e-machine design workflow.
Air gap distribution waveform plots and frequency spectrums Air gap flux density, magnetic flux, magnetomotive force, axial direction force, etc. Animated air gap distribution and field plots versus time Machine constants Flux density levels in different parts of the machine automatically calculated Steady-state performance characteristics taking into account field weakening Torque vs. Based on time-stepping magnetostatic quasi-3D finite element simulations assuming ideal sinusoidal or trapezoidal current waveform Calculation of most commonly used motor parameters like voltage, current, powers, back-EMF, torque, power factor, efficiency, losses Waveform plots, air gap distribution and field plots as well as animations click on image to enlarge.
Based on the dynamic model of the motor in D-Q reference frame Simulation of the motor with PWM supply and current control algorithm PWM and six step drives are supported click on image to enlarge. Most powerful and most accurate of all the analysis methods Based on the time-stepping transient quasi-3D finite element simulations FEA simulations with coupled electrical circuits Arbitrary supply current or voltage waveforms including PWM inverter supply Waveform plots, air gap distribution and field plots as well as animations click on image to enlarge.
Contact us. All rights reserved. Integer slot windings only integer number of slots per pole per phase. Export of D-Q model parameters Ld, Lq, magnet flux linkage.
No comments:
Post a Comment