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CREATED:20260419T093723Z
DESCRIPTION:Printed Circuit Boards (PCBs) are complex structures from both geometric and material viewpoints and are often simulated (and tested) under a variety demanding environmental conditions (shock, vibration, drop, etc.) to ensure they meet the necessary requirements.  Specifically, they are geometrically complex in that they contain both surface-mounted and internal components (e.g., traces, vias) that need to be captured to ensure true-to-life behavior is being simulated.  In such cases, Ansys Sherlock’s powerful Pre-Processing capabilities allow users to rapidly generate high-fidelity models intended for use with tools such as Ansys Mechanical and Ansys Icepak. \n \nIn this webinar, we will discuss a range of pre-processing/modeling techniques that are available in Ansys Sherlock for addressing such challenges, as well as the relative merits of these approaches, to help you ensure you are choosing the right level of fidelity for your studies.\n \nSpecifically, we will address: \nPCB modeling strategies such as Homogenization, Trace Mapping, Trace Modeling, and Reinforcement Elements \nComponent and Solder/Lead Modeling \nUnderfill, Corner Staking, and Coatings \nSuitable modeling approaches when exporting models from Ansys Sherlock to Ansys Icepak. \nWe will also discuss downstream modeling strategies, such as submodeling/zoom-in modeling, that provide additional accuracy in Ansys Mechanical and Ansys Icepak.\n \n
DTSTART:20210415T190000
DTEND:20210415T200000
DTSTAMP:20260419T093723Z
LOCATION:Online
PRIORITY:5
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SUMMARY;LANGUAGE=es-es:Tecnowebinars.com - :: How Ansys Sherlock's Pre-Processing Engine Creates High-Fidelity Models for Ansys Mechanical & Icepak
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UID:97ee92e23b2d01728ff39d18b7eb597f Tecnowebinars.com
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