電気モーターの設計とシミュレーション
SOLIDWORKS ユーザー向け

mobile banner
HOME / 製品 / EMWORKS MotorWizard



A Template-Based SOLIDWORKS Plugin Motor Design Software

MotorWizard is a cutting-edge template-based motor design software that empowers users to effortlessly create and analyze a wide range of electric machine designs.

As the only electric motor design software that is a SOLIDWORKS Plugin, MotorWizard seamlessly integrates with the SOLIDWORKS environment, enhancing the design process by allowing users to work within a familiar CAD system.

It uses advanced analytical and finite element-based solvers to calculate electric and magnetic fields, circuit parameters, force and torque parameters, and losses.

This integration not only streamlines the workflow but also significantly reduces the learning curve for SOLIDWORKS users.

Mz SOLIDWORKS post processing results

MotorWizard provides accurate and reliable results for various operating conditions and performance characteristics, making it an indispensable tool for engineers focused on innovation and efficiency in electric motor design.

user freindly interface


MotorWizard Capabalities

intuitive_topology_designer
Intuitive Topology Designer
MotorWizard's advanced CAD tool features a flexible parametrization panel for effortless transformation of your CAD assembly into a fully defined electric machine. Customize default templates to generate various motor designs, including BLDC.

The topology editor simplifies complex machine design with an auto-correction feature, ensuring precise dimensions based on your selected configuration.
quick performance Quick Performance Prediction
Efficient motor design starts with quick and accurate performance predictions. MotorWizard provides instant calculations for design characteristics such as torque waveform, air gap flux density, Back EMF, winding flux linkage, phase inductance, co-energy, and core losses.

Accurate predictions are achieved through finite element-based analysis for various machine operating conditions, including no-load and full-load scenarios.
user freindly User-Friendly Interface
MotorWizard offers a user-friendly interface that simplifies design management. Its heuristic workflow ensures a quick mastery of available tools and features. Conduct multiple analyses in a short time and easily restore previous design specifications for efficient optimization.
MotorWizard Results
Define winding and power supply properties to obtain a variety of machine performance characteristics, including:

  • Torque-Speed curve
  • Inductance profile
  • Torque-Angle profile
  • Winding Flux Linkage waveform
  • Current waveform
  • Co-energy
  • Air Gap Flux FEA results include:Density

FEA results include:

  • Winding Flux Linkage per phase
  • Back EMF per phase
  • Cogging Torque
  • Inductance per phase
  • Static Torque
  • Magnetic Field Distribution
  • Magnetic Flux Density Distribution
  • Advanced Analysis Options
winding_editor Winding Editor
MotorWizard offers a comprehensive solution for configuring motor windings with ease. Users can choose from various winding types, including single-layer or double-layer, concentrated or distributed, and full or short pitch. This feature automates the winding design process, making it straightforward to set up and optimize winding configurations based on the motor’s specifications.

Additionally, for more precise adjustments or custom designs, users have the option to manually edit winding parameters. This combination of automated and manual editing capabilities ensures both efficiency and flexibility in achieving the desired motor performance.
material_library Extensive Material Library
MotorWizard provides users with a diverse selection of materials essential for electric motor design. This library includes a comprehensive range of permanent magnets and steel laminations, offering different grades to optimize core performance and minimize losses.

The library also features a variety of conductors, which are essential for efficient current flow in windings, ensuring optimal electrical conductivity and thermal performance. Furthermore, it includes a selection of insulators to prevent short circuits and ensure electrical isolation between components. With this extensive collection of materials, designers can easily choose, compare, and implement materials suited to specific motor performance.


関連するリソース

Effect of Skew Angle and Airgap on Torque Ripple with EMWORKS-MotorWizard Effect of Skew Angle and Airgap on Torque Ripple with EMWORKS-MotorWizard
Discover how airgap length and skew angle affect PMSM performance using EMWORKS MotorWizard. Learn to optimize torque, efficiency, and reduce cogging torque.
Simulating Toyota Prius Motor Using EMWORKS - MotorWizard & Autodesk Inventor Simulating Toyota Prius Motor Using EMWORKS - MotorWizard & Autodesk Inventor
Learn how EMWORKS - MotorWizard, powered by Autodesk Inventor, precisely simulates and optimizes the Toyota Prius motor. Essential reading for advanced motor design.
Enhancing SRM Performance with Permanent Magnets: A Comparative Study Enhancing SRM Performance with Permanent Magnets: A Comparative Study
Discover how permanent magnets boost SRM efficiency, offering advancements in torque and reduced ripple in our comparative analysis.
Impact of Rotor Eccentricity on Nissan Leaf Electric Motor Performance Impact of Rotor Eccentricity on Nissan Leaf Electric Motor Performance
How does eccentricity impact the performance of electric motors, and what solutions can optimize their reliability and efficiency?
What’s New in MotorWizard for Electric Motor Design What’s New in MotorWizard for Electric Motor Design
Experience a live MotorWizard demonstration. Witness designing and simulating a permanent magnet motor, exploring capabilities and potential.
Unlocking Electric Motor Design Excellence: A Multiphysics Simulation with EMWorks Products Unlocking Electric Motor Design Excellence: A Multiphysics Simulation with EMWorks Products
Webinar for electric motor professionals: Essential for engineers, designers, researchers, and academics keen on Multiphysics simulation and analysis.
Efficient Green Energy: Exploring Simulation-Driven Design for High-Torque Wind Turbine Machine Efficient Green Energy: Exploring Simulation-Driven Design for High-Torque Wind Turbine Machine
Electric machines with direct drive, operating at low speeds while delivering remarkable torque, are indispensable components in various critical applications.
Is the Switched Reluctance Motor (SRM) the Future of Electric Vehicles? Is the Switched Reluctance Motor (SRM) the Future of Electric Vehicles?
The switched reluctance motor (SRM) has various benefits such as a simple and robust structure, high speed operating capabilities, and lower manufacturing costs.
The Impact of External Rotor PM Motors on Ceiling Fan Efficiency The Impact of External Rotor PM Motors on Ceiling Fan Efficiency
Discover how external rotor PM motors revolutionize ceiling fan performance with superior efficiency, quieter operation, and improved airflow.
Optimizing Spoke-Type PMSM Design for Robotics with EMWORKS MotorWizard Optimizing Spoke-Type PMSM Design for Robotics with EMWORKS MotorWizard
Discover how to design spoke-type PMSMs for robotics, enhancing torque density and efficiency with EMWORKS MotorWizard. Your guide to cutting-edge motor technology.
Exploring EMWorks' Software Benefits in Academic Research Exploring EMWorks' Software Benefits in Academic Research
Learn about the benefits of using EMWorks' Electromagnetic Simulation Software for enhancing research and education in academic settings.
Advanced PMSG Designs for Efficient Wind Energy Conversion Advanced PMSG Designs for Efficient Wind Energy Conversion
Explore how optimized Permanent Magnet Synchronous Generators (PMSGs) enhance wind turbine efficiency, offering a sustainable solution to global energy needs.


オプション

MotorWizard streamlines the analysis process, automating mesh generation and boundary condition application for precise results in minimal time. Experience unparalleled efficiency in electric motor design with MotorWizard.

MotorWizard offers three types of analysis:

Analytical Analysis
Utilizes analytical models of the machine, incorporating detailed geometry and winding structure to estimate parameters such as back EMF constant, stator phase resistance, and core loss. Gain insights into the machine's performance quickly.
Semi-Analytical Analysis
Combines analytical and finite element analysis to estimate airgap flux density and inductance of phases, contributing to predictions of steady-state performance.
Finite Element Analysis
Provides the most accurate results by analyzing detailed geometry, winding distribution, slotting effects, and electromagnetic properties. FEA offers insights into various operating conditions, revealing the impact of different machine features on results such as back EMF waveform and torque profiles.