Empowering Innovation in Electrical Machines and Drives Through Electromagnetic Design
Probe into the advanced electro-thermal modeling of BLDC motors to understand how it drives performance improvements and efficiency gains.
Probe into the process of virtual prototyping for stepper motors, delving into their operational intricacies and design features. Gain insights into their precise positioning capabilities, torque generation, and electromagnetic interactions.
Dive into the world of magnetic coupling machines, exploring their efficient design, functionality, and versatile applications across various engineering systems.
Explore insights into the performance of in-wheel Switched Reluctance Motors through advanced simulations. Understand their efficiency and reliability for electric vehicle applications.
Explore the intricacies of Switched Reluctance Motors (SRMs) with MotorWizard simulation. Analyze magnetic flux density & torque for optimized SRM design.
Asking how can 2D FEM simulation effectively aid in the design and optimization of BLDC motors for early-stage development? This application note answers your question.
Learn about the electromagnetic simulation of linear switched reluctance motors. Analyze magnetic flux density, inductance, and force profiles for precision in linear motion applications.
Gain insights into the analysis of a 6/4 switched reluctance motor (SRM) using EMS in Autodesk Inventor, focusing on electromagnetic torque variations and rotor alignment
Learn how magnet segmentation influences cogging torque in Permanent Magnet Synchronous Machines (PMSMs) through insightful analysis and simulations.
Gain valuable insights into the design and behavior of the 2004 Prius electric motor through detailed analysis and simulations. Explore its specifications, torque generation, and magnetic field distribution.
Explore the efficiency, torque density, and simulation results of 24-slot/8-pole spoke-type motors under various load conditions. Gain insights into material selection, magnet coercivity, winding configuration, and more.
Understand the performance of outer-runner radial flux BLDC motors in direct drive applications, including wind turbines and electric vehicles.
Explore static and on-load analysis of a switched reluctance motor using simulation software. Gain insights into motor performance and optimization.
Explore the analysis of a double-sided flat PM linear synchronous motor using simulation software. Gain insights into motor behavior and optimization.
Learn how the Halbach array configuration impacts permanent magnet motor design for improved efficiency and torque.
Explore advanced PM linear electric motor design for efficiency and performance. Ideal for EVs, robotics, and industrial applications.
Discover how asymmetric IPMSM design boosts torque, reduces ripple, and cuts cogging torque for more efficient electric motors.
Explore how PMSM optimization enhances More Electric Aircraft efficiency, balancing power density and weight for sustainable aviation solutions.
Discover how VDSE optimizes Asymmetric IPMSM, enhancing efficiency and reducing torque ripple.
Discover how external rotor PMSM technology boosts electric vehicle efficiency, offering higher torque and reduced noise.
How does eccentricity impact the performance of electric motors, and what solutions can optimize their reliability and efficiency?
Discover how permanent magnets boost SRM efficiency, offering advancements in torque and reduced ripple in our comparative analysis.
Learn how EMWORKS - MotorWizard, powered by Autodesk Inventor, precisely simulates and optimizes the Toyota Prius motor. Essential reading for advanced motor design.
Discover how airgap length and skew angle affect PMSM performance using EMWORKS MotorWizard. Learn to optimize torque, efficiency, and reduce cogging torque.