Ansys Icepak in Ansys Electronics Desktop Advanced

Course Overview

Ansys Icepak provides flow and thermal management solutions for many types of electronic design applications. The primary goal of this course is to build upon the content discussed in the 'Ansys Icepak in Ansys Electronics Desktop Getting Started' course and cover advanced features of Ansys Icepak in the Ansys Electronics Desktop (AEDT) user environment. Students will be introduced to the world of electronics thermal modeling through a combination of lectures, workshops, and examples/demonstrations.

 

Prerequisites

  • A technical education and background in electronics and/or fluid mechanics and heat transfer is recommended but an engineering degree is not required.
  • Completion of the 'Ansys Icepak in Ansys Electronics Desktop Getting Started' course is recommended.

Target Audience:

Thermal Engineers, Mechanical Engineers, Electrical Engineers.

Teaching Method:

Lectures and computer practical sessions to validate acquired knowledge.

Learning Path

ansys-icepak-in-ansys-electronics-desktop-advanced.png

Learning Outcome

Following completion of this course, you will be able to:

  • Import MCAD geometry into AEDT Icepak and use defeaturing tools
  • Model an inclined PCB. Perform electrothermal analysis using HFSS 3D Layout - AEDT Icepak workflow
  • Use advanced meshing techniques
  • Perform a transient simulation
  • Setup and perform Optimetrics analysis
  • Learn about special applications like MRF modeling, turbulence models, toolkits, and ACTs

Available Dates

Time Duration Event Type Location Language Course Cost Registration
June 21, 2021
13:00 - 15:00 EST (GMT -5)
5 Sessions
Jun 21-25
Virtual Virtual - WebEx English Subscription Only Register

Learning Options

Training materials for this course are available with an Ansys Learning Hub Subscription. If there is no active public schedule available, private training can be arranged. Please contact us.

Agenda

For virtual training, this course is covered over 5 x 2-hour sessions with lectures only.

  • MCAD import and defeaturing
  • Inclined PCB modeling
  • HFSS 3D Layout - AEDT Icepak workflow for electrothermal analysis
  • Manual meshing
  • Transient simulations
  • Optimetrics
  • Special applications (Advanced fan modeling, Turbulence models, Toolkits and ACTs)

Virtual Classroom Session 1 

  • Lecture: Advanced MCAD import
  • Workshop: SpaceClaim - AEDT Icepak workflow
     

Virtual Classroom Session 2 

  • Lecture: Advanced ECAD import
  • Workshop: HFSS 3D Layout - AEDT Icepak workflow
     

Virtual Classroom Session 3

  • Lecture: Advanced meshing
  • Workshop: Advanced meshing
     

Virtual Classroom Session 4

  • Lecture: Transient simulations
  • Lecture: Optimetrics
  • Workshop: Transient simulation
  • Workshop: Optimetrics
     

Virtual Classroom Session 5

  • Lecture: Special applications (Advanced Fan Modeling, Turbulence Models, Toolkits and ACTs)

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