Introduction of case studies! Specializing in simulations of low-pressure plasma or low-temperature plasma.
Our self-developed particle method plasma analysis software 'Particle-PLUS' is suitable not only for plasma analysis applications but also for fundamental research on particle confinement using electric and magnetic fields. In this case, we newly constructed a simulation model aimed at high-precision evaluation of the magnetic mirror effect, confirming that the calculation results, such as magnetic moment and loss cone region, are consistent with the results predicted by particle kinetics. The processes that can be calculated include PVD using magnetron sputtering, CVD using capacitively coupled plasma (CCP), and spatial control of charged particles using electric and magnetic fields. 【Features】 ■ Excels in simulating low-pressure or low-temperature plasmas, which are difficult to compute with fluid models ■ Supports non-equilibrium particle systems that do not follow Maxwell distribution ■ Capable of full model analysis using 3D meshes ■ Enables fast analysis by using axisymmetric models and planar models with 2D meshes and symmetric boundary conditions *For more details, please download the PDF or feel free to contact us.
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【Other Features】 ■ Precisely reproduces surfaces with curvature using a cut-cell model ■ Comes with a standard database for chemical species and reaction parameters, along with editing capabilities ■ As a strength of our in-house developed software, customization to fit customer equipment is also possible *For more details, please download the PDF or feel free to contact us.
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For customers like these: ■ Developers and users of various plasma devices, electron beam devices, ion beam devices, and particle accelerators, as well as academic researchers related to these fields. *For more details, please download the PDF or feel free to contact us.
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Our company develops and sells a "Maintenance Management System" for managing and operating various plants, factories, and other facilities and assets. Currently, this system is undergoing significant evolution into one that incorporates IoT technologies, such as sensor information and input from tablet devices, as well as AI technologies like machine learning, featuring functions for failure prediction and automatic scheduling. Additionally, as part of the recent trend towards digital transformation (DX), there is a growing movement to digitize and automate manufacturing processes and research and development sites in factories to enhance operational efficiency. In line with this trend, our company provides a solution aimed at improving efficiency in research and development environments, known as the Laboratory Information Management System (LIMS), which includes features such as workflow management, data tracking, data management, data analysis, and integration of electronic lab notebooks.