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Cst studio suite 2017
Cst studio suite 2017












cst studio suite 2017

The convergence behavior of S-Parameters versus mesh passes can be viewed in the normal place under "1D Results/S-Parameters". T- and F- Solver Mesh Adaptation: In the folder "1D Results/Mesh Adaption", broadband S-Parameters are no longer displayed. We therefore recommend to install the license tools from the latest CST Studio Suite version (especially for UNIX/Linux license servers). The license daemon cstd, dongle drivers and license tools are continuously improved. Upgrade of CST License Server (especially relevant for floating license, LAN/WAN) “By expanding the feature set of our software, we hope to enable our users to analyse and optimise their systems in greater detail than ever before.Upgrade Information Upgrade Information This page is especially intended for users upgrading from an earlier version of CST Studio Suite. "Innovators are always looking for new ways to improve their products and brand new solutions to long standing problems,” said Dr Peter Thoma, Managing Director R&D, CST. Behind the scenes, the core of the software is as ever fine-tuned to optimise performance on the latest hardware. With the CHT Solver, users can include the cooling systems in their multiphysics simulation, allowing these systems to be designed and optimised before constructing prototypes. This uses Computational Fluid Dynamics (CFD) to simulate the flow of air through devices, taking fans and vents into account. Version 2017 also sees the expansion of CST MPHYSICS STUDIO tools with the Conjugate Heat Transfer (CHT) Solver. This can be combined with the Interference Task for detailed co-site analysis of vehicles, vessels, and aircraft. The Asymptotic Solver can simulate extremely large platforms such as aircraft, ships, and buildings very efficiently, making it well suited to many kinds of antenna placement scenarios. The ray-tracing Asymptotic Solver in CST STUDIO SUITE can now directly calculate the coupling between antennas. The Interference Task shows at a glance which combinations of RF systems can potentially lead to co-site interference problems, allowing mitigation approaches tobe tested on a virtual prototype. The Interference Task offers a straight forward approach for investigating potential EMI issues using coupling data from simulations. Coupling matrix extraction with FD3D offers an efficient way to fine-tune 3D filter structures. The complex and sensitive nature of these filters makes them challenging to design and tune with traditional methods. The tool Filter Designer 3D (FD3D) can automatically synthesise cross-coupled and diplexer filter designs to meet the specifications, including transmission zeroes, Q-factor,and equiripple.














Cst studio suite 2017