A transformer can cost millions of dollars. That’s why the simulation and validation of all performance aspects of a transformer can save you money and time. The popular EMWorks’s low frequency software package, EMS, is the preferred simulations platform for many transformer’s designers and manufacturers because it addresses all aspects of a transformer’s design.

WEBINARS


 

Simulation of axial flux machines in EMS/SolidWorks

Thursday, December 02, 2021
Session 1: 03:00 PM CET, 02:00 PM GMT
Session 2: 02:00 PM EST, 07:00 PM GMT

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Defected ground structure technique to improve the frequency response of a microstrip lowpass filter

Thursday, December 09, 2021
Session 1: 03:00 PM CET, 02:00 PM GMT
Session 2: 02:00 PM EST, 07:00 PM GMT

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Magnetostriction Modeling of Transformer's Noise

Thursday, December 16, 2021
Session 1: 03:00 PM CET, 02:00 PM GMT
Session 2: 02:00 PM EST, 07:00 PM GMT

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APPLICATION NOTE


Analysis of Outer-rotor Permanent Magnet Machine using EMWorks2D

Permanent magnet brushless DC motors (PMBLDC) are used in a wide range of applications thanks to their high-power density and ease of control. In particular, outer runner PMBLDC is utilized in direct drive wind turbines and small electric vehicles such as golf cars and electric bikes to mitigate the need for mechanical transmission or gearboxes. This can improve the efficiency of the whole system which results in a longer battery lifetime. In this application note, the performance of an out-runner radial flux BLDC motor, with surface-mounted permanent magnets, is assessed using EMWorks2D software.

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Modeling Vibration in Transformers using EMS and SolidWorks

A transformer can cost millions of dollars. That’s why the simulation and validation of all performance aspects of a transformer can save you money and time. The popular EMWorks’s low frequency software package, EMS, is the preferred simulations platform for many transformer’s designers and manufacturers because it addresses all aspects of a transformer’s design.

Since magnetostriction effect is directly related to the magnetic force density and the displacement, i.e., related to stress, in the core and tank, in the following paragraphs will present such results using EMS and SolidWorks. The total rigid body force acting on the windings is equally important because it can cause the windings to vibrate or even break altogether.

   

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