Electromagnetic Field / Electromagnetic Environment Charged Particle Orbit Analysis Software 'ELF/BEAM'
Spatial mesh, no boundary conditions needed! Continuous spatial evaluation! Using 'ELF/MAGIC' and 'ELFIN'.
"ELF/BEAM" is a charged particle trajectory analysis software that enables high-speed and high-precision analysis without the need for spatial meshing. It calculates the trajectories of charged particles in three-dimensional space using the magnetic field calculations from the magnetic field analysis software "ELF/MAGIC" and the electric field calculations from the electric field analysis software "ELFIN." Thanks to its unique acceleration technology, it allows for faster and more precise analysis than the Euler method or the fourth-order Runge-Kutta method. 【Features】 ■ No spatial meshing required ■ Capable of calculating trajectories with high precision even near the speed of light ■ Considers Coulomb interactions between charged particles *For more details, please visit our website or feel free to contact us. *The related link's website contains a price list, analysis examples, and a free demo version.
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basic information
【Other Features】 ■ Input Files - Magnetic Charge/Electric Charge File (.mas) - Particle File (.meg) - Control File (.mai) ■ Output Files - Log File (.mao) - Result File (.mag) *For more details, please visit our website or feel free to contact us.
Price range
P5
Delivery Time
P3
Applications/Examples of results
【Applications】 ■Electron gun ■Electron microscope ■Accelerator ■Cathode ray tube *For more details, please refer to the PDF document or feel free to contact us.
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Download All Catalogs![[Information] Overview of Electric/Magnetic Field Charged Particle Orbit Analysis Software "ELF/BEAM"](https://image.mono.ipros.com/public/catalog/image/01/c8b/529400/IPROS19756223025718709435.jpeg?w=120&h=170)
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Company information
Our company uses the "Integral Element Method," which is different from the "Finite Element Method." This analytical technique employs "formulas derived from integrating laws such as Coulomb's law and Biot-Savart's law," and has many features including "no need for spatial meshing," "high-precision solutions for spatial electric and magnetic fields obtained through analytical formulas," "fast three-dimensional calculations," "ease of analyzing magnets," and "easy mixing of components with different scales." It is already being utilized by numerous companies, universities, and research institutions, and we encourage beginners as well as those who have struggled with the finite element method to give it a try.