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Inspirierende Testimonials, die elektromagnetische Durchbrüche hervorheben

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  • I am writing this testimonial to express my satisfaction with the EMS add-on for Inventor. As an engineer passionate about exploring the world of magnetics, I have been searching for a solution to accelerate one magnet with another magnet and precisely compute the force between them that is generated as it moves through a coil. The first aspect that struck me about EMS is its integration with Autodesk Inventor. The integration is incredibly smooth, allowing me to harness the full power of EMS without ever having to leave the Inventor environment. One of the standout features of EMS is its ability to accurately simulate and analyze magnetic fields. With this tool, I was able to simulate the interaction between magnets and calculate the forces.

    The software's advanced algorithms and intuitive interface made it easy for me to set up complex simulations and obtain insightful results. I was able to visualize magnetic fields and flux densities, which was great. I could analyze the forces generated at different positions, study the variation of magnetic flux, and evaluate the impact of different parameters on the overall system performance. The software supports a wide range of magnet types, including permanent magnets and electromagnets, and has different coil configurations and materials. This flexibility allows me to explore various design possibilities and optimize systems for maximum performance.

    The customer support provided by the Academic Team has also been exemplary. Their prompt and knowledgeable assistance ensured that I could quickly overcome my problems. In conclusion, EMS for Inventor is a very nice tool that has transformed the way I approach magnetism analysis. I wholeheartedly recommend EMS to anyone seeking a comprehensive and reliable solution for magnetism analysis.

  • I am an undergraduate Mechatronics Engineering student at VIT University, Chennai, India. A few months ago, I got the opportunity to work on research on wireless charging technologies for electric vehicles (EVs). After doing a study of the existing literature in this field, my faculty guide and I decided to do a comparison study on different shapes of coils used for wireless power transfer for EV charging. As EV charging is a high-power application, charging efficiency is a very important factor in the implementation of wireless charging systems. So, to perform the simulation study, I researched different software options and their benefits. Even though I found a few other free or easily available software programs, I found EMWorks EMS to be the most suitable one for my application, especially in terms of ease of use and simple workflow. Also, another major benefit was the integration with Solidworks. Since Solidworks is our primary 3D CAD software, we could directly simulate the models, unlike some other software tools, which require the model to be exported in a particular format and then imported into the simulation software. So any changes I made to the SolidWorks model were immediately reflected in EMS.

    Once I imported my models, I was able to quickly create an AC Magnetic study and configure the material properties and the coil parameters. Also, since EMS has Litz wire coils, it provides a very accurate simulation. Once the parameters were set up, the simulation parameters were configured. The parameterization option allowed me to set up multiple scenarios and simulate them all together, which saved a lot of time. I generated about 30 scenarios and simulated them as a batch process. I was able to easily plot the required output variables against these input parameters from the results table. I would like to conclude by expressing my satisfaction with this software for my research, and I look forward to working with EMWorks in the future too.



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  • Simon Mauduit-Groussard & Ithar Kazem
    Simon Mauduit-Groussard & Ithar Kazem
    Lycée Chateaubriand, France

    As two French students in preparatory classes for engineering schools working on an academic project about eddy current braking, we used EMS software in order to perform an electromagnetic, motion, and thermal simulation of an eddy current brake. This software perfectly met our expectations. It has great potential, and its handling is accompanied by tutorials. Thanks to EMS, we were able to carry out our project and carry out simulations, which added great value to our research work. And last but not least, we are very satisfied with the assistance the EMS Academic Team offered us during our project, and we thank them for answering our questions and supporting us with quality assistance. We are really pleased with the product and highly recommend it to others.



    Current Density

  • I used the EMWorks’ EMS program to better understand how Axial Flux Motors work, and it is one of the best software programs I have ever used. When I started learning about Axial Flux Motors, my goal was to learn and observe how this machine operates in real-world applications. EMWorks gave me the ability to understand and visualize how machines work. EMWorks is designed to unlock the potential of your creativity. The EMS software is a plugin for Solidworks, enabling you to design your motor within Solidworks and then simulate it in EMS with selected motor components such as coils, magnets, rotors, and more. You can track the direction of the magnets and understand how the magnetic field interacts with air, materials, and other magnets. You can also choose the type of coils, whether they are solid wire or stranded wire. EMWorks includes simulation examples for different applications to help you understand how to use the software, making it an easy and cost-effective way to simulate your designs and obtain real data to improve your designs. The academic team from EMWorks was very helpful during my journey, addressing all my questions. To the EMWorks Team, thank you for developing this software that makes it easier to simulate products for designers and inventors. 

  • Pranaam Reddy
    Pranaam Reddy
    University of Cape Town

    I am currently completing my final year Mechatronics Engineering research project with the assistance of EMWorks, in particular, EMS. EMWorks’ Electromagnetic Simulation software has been a tremendous help in my research. The software assisted in the design of my electromagnet which I, otherwise, would have had to design through manual manufacturing iterations. Part of my project entails designing an electromagnet by varying the current though it to try and measure the force it places on an external object viz. a steel bolt. With Autodesk Inventor and EMS from EMWorks, I was able to simulate this force while varying the current through the electromagnet as well as the number of turns, the diameter of wire used, and material used. These design iterations helped me choose the optimal electromagnet for my application and allowed me to only need to manufacture the electromagnet once. Simulating has saved me an incredible amount of time which I needed to use for many other tasks to complete this project within the three-month deadline. Thank you EMWorks. I could not have done it without you!