Esgee technologies inc

Powerful Multiphysics Framework

Plasma, fluid, electromagnetic, & particle simulations that enable real world engineering solutions.

Esgee Technologies Inc.

We offer expertise in plasmas, reactive flows, gas-phase & surface chemistry mechanism development, as well as integration with multi-dimensional flow and plasma systems. Our software products are targeted towards applications in semiconductor manufacturing, solar cell and flat panel manufacturing, lighting and display, automotive manufacturing, aerospace / defense, and electrical devices such as circuit breakers and switchgears.

Industries Served Include:

Semiconductor

We have a strong legacy of supporting the semiconductor equipment and integrated-circuit (IC) manufacturing industry.

Electrical

High-fidelity modeling / simulation of electrical circuit-breakers, electrical switchgear, plasma welding and cutting tools…

Automotive

Expertise in non-equilibrium plasmas, thermal (arc) plasmas, electromagnetics, combustion, and heat transfer.

Aerospace

We quantify complex multiphysics phenomena to help guide system design & development for aerospace applications

Customized Training, Consulting & Support

We work closely with our customer base to help solve complex multiphysics problems while also providing customized training and dedicated technical support for our software products. We also work with leading industrial customers worldwide to help them analyze, understand, and design complex and novel equipment, devices, and processes.

Simulating Real Physics

Esgee Technologies is a leading provider in non-equilibrium and thermal plasma simulation solutions. Our team is dedicated to making reliable, scalable plasma simulation accessible for solving real-world, industrial problems. Together, we can help you overcome your biggest technical challenges through high-fidelity multiphysics simulation.

 

Applications For:

  • Comprehensive plasma simulation
  • Non-equilibrium plasma
  • Thermal plasma
  • Microwave plasma
  • Inductively coupled plasma
  • Free burning arcs
  • Magnetized arcs
  • Capacitively coupled plasma
  • Glow discharges
  • Vacuum arcs
  • Direct current discharges
  • Magnetron discharges
  • High pressure arcs
  • Plasma propulsion
  • Atmospheric pressure plasma
  • Magnetized plasma
  • Dusty plasma discharges
  • Electron cyclotron resonance
  • Process optimization
  • Nano-feature simulation
  • Scalability of IC technologies

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