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ANSYS HFSS

ANSYS HFSS

ANSYS HFSS

Product catalog summary
Overview
ANSYS HFSS is a leading simulation technology used to predict the performance of high-frequency and high-speed electronics in real-world applications. It is trusted by engineers for its accuracy and advanced solver capabilities, making it essential for designing components in communication systems, radar systems, satellites, smartphones, and tablets.
Key Features
  • Industry Standard Simulation: HFSS provides full-wave electromagnetic field simulation, setting the standard for accuracy and performance.
  • Rigorous Validation: Offers high-frequency EM results that facilitate direct transition to manufacturing, with capabilities to extract parasitic parameters and visualize 3D electromagnetic fields.
  • User-Friendly and Efficient: Features like automatic adaptive meshing and advanced computing technology make it accessible and efficient for designers.
Applications and Case Studies
  • Cost Savings: Ooma reduced costs by designing a DDR3 subsystem without a termination voltage regulator using HFSS.
  • Antenna Design: Synapse Product Development used HFSS to evaluate antenna designs, considering interactions with the human body.
  • Customization Efficiency: Vortis engineers achieved up to 90% reduction in antenna design customization time for specific phones.
  • Multiphysics Solutions: Raytheon engineers coupled HFSS with ANSYS Mechanical for thermal simulations of microwave antennas.
Technical Specifications
  • Analysis Capabilities: Includes frequency and time domain analysis, eigenmode, and hybrid finite element/method of moments.
  • Geometry and Boundary Conditions: Supports 3D modeling, CAD import, and various excitation and boundary conditions.
  • Meshing and Material Modeling: Features automatic mesh refinement, higher order elements, and advanced material modeling including frequency-dependent materials.
Contact Information
For more information, visit www.ansys.com or contact via email at [email protected] or phone at 866.267.9724.
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Catalog excerpts

ANSYS HFSS-1

ANSYS HFSS ANSYS simulation technology enables you to predict with confidence that your products will thrive in the real world. Customers trust our software to help ensure the integrity of their products and drive business success through innovation. Industry Standard Full Wave, Electromagnetic Field Simulation HFSS sets the gold-standard for accuracy, advanced solver and high-performance computing technology, making it the ‘go to’ tool for engineers designing high-frequency and high-speed electronics found in communication systems, radar systems, satellites, smart phones and tablet devices. Rigorous Validation Sign-off quality high-frequency EM results that allow customers to simulate and go straight to manufacturing. With HFSS, engineers can extract parasitic parameters (S, Y, Z), visualize 3D electromagnetic fields (near- and far-field) and generate Full-Wave SPICE™ models that link to circuit simulations. Easy to Use, Versatile and Fast Features such as automatic adaptive meshing, versatile design entry and advanced high-performance computing technology put analyst-quality solvers in the hands of the designer. Vortis engineers reduced the time required to customize the antenna design for a specific phone by up to 90 percent using ANSYS HFSS. Ooma saved 50 cents on each of hundreds of thousands of devices by using ANSYS HFSS and other ANSYS solutions to design a DDR3 subsystem that does not require a termination voltage regulator. Synapse Product Development used HFSS and the ANSYS human body model to evaluate the performance of various antenna designs by modeling the complete system, including the wireless device and antenna and their interactions with the human bo

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ANSYS HFSS-2

High Frequency Electromagnetics • Frequency and Time Domain Analysis • Eigenmode • 2.5D and 3D Method of Moments • Hybrid Finite Element/Method of Moments • Direct and Iterative Matrix Solvers • Physical Optics Geometry Entry • 3-D Modeler • 3-D Electrical Layout help cross-functional engineering organizations predict the performance of complex products in- fluenced by multiple physics and improve their designs through Excitations and Boundary Conditions • Modal Wave Port Excitation • Lumped, Voltage and Current Excitations • Floquet Excitations • Incident Wave Excitation • Magnetic Ferrite Bias...

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