Frequency response electric field analysis software using the finite element method.
Perform static analysis and frequency response analysis Electric field analysis software using the finite element method (Electric field simulator) ■□■Features■□■ ■Since it is integrated with the dedicated pre/post of the PHOTO series, data creation, analysis, and result processing can be performed as a series of operations. ■It is integrated with other PHOTO series modules, allowing for easy coupled analysis, such as obtaining temperature distribution from heat generation determined by electromagnetic field analysis. ■Using the ICCG method, calculations are fast, enabling analysis on a personal computer. ■Since it uses the finite element method, the solutions are stable, making it safe for beginners to use.
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basic information
■ This software performs electric field and current analysis using the finite element method, conducting static analysis and frequency response analysis. ■ It can handle three-dimensional, two-dimensional, and axisymmetric problems. ■ In the case of electric field analysis, it calculates the electric field distribution from the potential and charge distribution at the boundaries. ■ For current distribution analysis, it determines the distribution of current flowing through the conductor from the potential at the boundaries. ■ It can also determine the distribution of current flowing through the conductor simultaneously with the displacement current flowing within the dielectric. ■ Nonlinear analysis with electric conductivity and permittivity that depend on the electric field (electric field) can be performed. ■ It calculates dielectric loss and Joule loss. ■ It performs calculations for capacitance and electric force. ■ For other functions and details, please download the catalog or contact us.
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Applications/Examples of results
■□■Applicable Fields■□■ Fields that require simulation of electric fields and current distribution within conductors.
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At Photon, we are developing "electromagnetic field analysis software" that models and simulates products and components utilizing electromagnetic phenomena on computers. In traditional design and development environments, the process has primarily revolved around trial and error through prototypes based on the experience of engineers and experiments with those prototypes. However, conducting experiments with actual prototypes and analyzing the results requires significant time and cost. Moving forward, transitioning from an experimental and prototype-based approach to an analysis-based design is a critical issue for improving productivity, and establishing simulation technology as the core of analysis-based design techniques is a challenge. In this context, Photon is developing and providing "analysis software" focusing on electromagnetic fields, as well as heat, vibration, and sound fields. By utilizing Photon’s software, efficient development and design of various industrial products can be achieved. In this way, Photon aims to reduce the number of prototypes and development costs, shorten development periods in the manufacturing sites of our users, and ultimately support the enhancement of our users' competitiveness.