This training aims to improve your skills with one full day of hands-on optical training with CST STUDIO SUITE® 2018 tools dedicated to the simulation of electromagnetic, photonic, and plasmonic applications.
The full CST STUDIO SUITE optical training course consists of two training days.
492 Old Connecticut Path, Suite 500
9:00 am - 5:00 pm (both days) From: September 5, 2018 Till: September 6, 2018
No registration possible.
This training will cover the following topics
Basic and Advanced Parametric Modeling
CAD Import and Parameterization
Solver Overview and Help Overview
Advanced Material Models for Photonic and Plasmonic Applications (Dispersive, Nonlinear..)
Waveguide Port Basics and Advance for Photonic Applications
This course is available exclusively to CST customers. Lunch and refreshments will be included.
There is a registration deadline one week prior to the training class and subject to availability.
Training material and hardware will be provided on site.
Payment is required at the time of registration. Your place is NOT confirmed until payment is received. We accept payment by check or VISA/MasterCard/American Express credit cards. Please mail a check to: CST of America, Inc. (Training AP), Suite 500, 492 Old Connecticut Path, Framingham, MA 01701. All credit card payments can be completed using a purchase link. The purchase link will be sent via email once your registration has been submitted.
Cancellations must be made in writing or via your MyCST account. Cancellation of an accepted registration may be made up to seven days before the training without fee. Delegates who request a cancellation after seven days before the training and delegates who do not attend, are responsible for the full attendance fee.
For more information contact CST or call (508) 665-4400.
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December 6, 2018
5G Antenna Design for Mobile Phones
November 29, 2018
CST STUDIO SUITE - Optical Training
October 24-25, 2018
Simulating and Resolving EMC/EMI Issues in Vehicles Powered by Electric Drive Systems
September 27, 2018
Design Optimization and Sensitivity Analysis of Photonic Integrated Circuits using Physical and Circuit-Level Simulations
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