Using HFSS9 to simulate the design of cavity filters HFSS9.0 and cavity filter design Introduction to HFSS9.0 HFSS9.0 provides a more concise and intuitive user design interface, precise adaptive field solver, and powerful post-processor with unprecedented electrical performance analysis capabilities. It can calculate the s-parameters and full-wave electromagnetic fields of any shape of three-dimensional passive structures. The best choice for improving R&D efficiency Powerful drawing functions are fully compatible with AutoCAD and fully integrated with ACIS solid modeler. Unlimited undo/redo Multiple object combinations, subtractions, intersections Boolean operations Dynamic geometry rotation Click on objects to select/hide two-dimensional objects Scan along the third dimension to obtain three-dimensional objects Macro record/macro text Parameterized macros for cones, helices, cylinders and cubes Optional \"real surface\" geometry Online associative help to speed up the application of new functions. Advanced material library Comprehensive material database includes dielectric constants, permeabilities, and electromagnetic loss tangents of common substances. Users can analyze uniform materials, non-uniform materials, anisotropic materials, conductive materials, resistive materials and semiconductor materials in simulation. For non-reciprocal devices, the standard HFSS can directly analyze ferrite problems with uniform magnetostatic bias. Users can also choose the ANSOFT 3DFS option to complete the ferrite magnetostatic FEM solution simulation. Model Library ANSOFT HFSS contains a large library that can be used to parameterize standard shapes: Microstrip T-junction Broadside coupled lines Mitered and non-mitered bends Semi-circular bends and asymmetric bends Circular and square spirals Hybrid T-junction patch antennas Spiral geometry Powerful macros Users can log in to very easy to read complete macro files for drawing and simulation. Parameterized simulations can be performed using the automatic record and replay function built into the macro language. During replay, the macro prompts the geometry dimensions immediately, allowing users to create a geometry library based on the nominal structure and then simulate the nominal structure to obtain design curves, geometric sensitivity and optimization design. Powerful antenna design functions calculate antenna parameters such as gain, directivity, far-field pattern profile, far-field 3D plot and 3dB bandwidth. Plot polarization characteristics, including spherical field components, circular polarization field components, Ludwig third definition field components and axial ratio. Half, quarter, and eighth symmetric models and automatic calculation of far-field directivity patterns. Frequency sweep technology zPowerful field post-processor produces vivid and realistic field patterns...
You Might Like
Recommended ContentMore
Open source project More
Popular Components
Searched by Users
Just Take a LookMore
Trending Downloads
Trending ArticlesMore