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TECH BREW 2025

30-min of All Things Engineering and AI

Starting from 16th July to 14th August 2025.

Every Week Wednesday and Thursday 4.00 pm to 4.30 pm

We are excited to announce the schedule for Tech Brew 2025. Join us twice a week for a brief look at maximizing your tech stack. In a live webinar format, we will explore scenarios where product developers like you can easily implement new workflows to make significant improvements to your next-generation product development.

Please see session details below.

Session Details :

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1A : Next-Gen Meshing Techniques for Rapid Model Build, Assembly and Simulation

Wednesday, July 16, 2025, | 4.00 pm-04:30 pm

The next generation HyperWorks experience is arevolutionary part of the evolution of our interface withStrategic integration of AI & ML. Modern, easy touse, intuitive with discoverable user interface. ​
  • AI-Powered Design - Shape AI​
  • Model Build & Assembly – Part Browser​
  • Compare tool​
  • Auto Mid Mesh and New capabilities​
  • Connectors ​

 

 

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1B : Integrated Design Exploration, Optimization and AI based Generative Design​

Thursday, July 17, 2025 | 04:00-04:30 pm

Gaining insights into a product’s performances has never been easier. With the HyperWorks Design Explorer, users can easily set up and execute the design of experiments (DOE) and optimization studies, learning which attributes contribute the most to the different performances, review, plot, and compare results from multiple runs, and ultimately identify optimal designs.

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2A : Simplified Workflows for Complex 3D Structural Meshing​ and Automation

Wednesday, July 23, 2025 | 04 :00-04:30 pm

In this tech brew session, we will discuss the following topics on SimLab meshing and Automation

  • CAD Based Workflow
  • Mesh Based Workflow
  • Automatic Feature Identification tool
  • Automation from CAD to Results


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2B : Simplified Workflows for Electronics Thermal Management​

Thursday, July 24, 2025 | 4.00 - 4.30 pm

In this tech brew session, we will discuss the followingtopics:​

1D–3D Coupled Simulation: Electrical losses (like powerdissipation) are computed in the 1D domain using PSIMand mapped onto the 3D model for realistic thermal inputin SimLab using a bidirectionally coupled workflow.​

PCB Joule Heating Workflow: PCB trace losses due tocurrent flow, which are critical for accurate board-levelthermal performance​

Parametric DOE (Design of Experiments): Supportswhat-if studies to explore the impact of design or loadvariations on thermal behavior.


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3A: Accelerating Innovation with Geometry Building, FEA, and Optimization​

Wednesday, July 30, 2025 | 04:00-04:30 pm

We will demonstrate how Inspire Motion accelerates innovation by combining geometry creation, finite element analysis (FEA), and motion-based optimization in a single environment. By simulating real-world motion and loads, engineers can optimize components for strength, efficiency, and manufacturability early in the design process—reducing development time and improving product performance.

  • Simulates real-world motion and loads for accurate performance insights
  • Built-in checks ensure designs are both optimized and practical for real-world production.
  • Enables early-stage optimization for strength, efficiency, and manufacturability
  • Combines geometry creation, FEA, and motion-based optimization in one platform
  • Validates designs for methods like casting, machining, and additive manufacturing, ensuring end-to-end integrity.
  • Helps reduce development time and enhance overall product performance
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3B : Simulation at Speed of Design : Rapid Structural Simulation ​

Thursday, July 31, 2025 | 04:00-04:30 pm

Design Engineers grapple with multiple challenges in their everyday work. The design of products demands engineers to meet various requirements ranging from performance, assembly, manufacturability, and cost. Achieve all this in the shortest of time.

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4A : Linear & Non Linear Structural Simulation for Strength and Durability​

Wednesday, August 06, 2025 | 04:00-04:30 pm

One Model, One Solver, One Optimizer

OptiStruct is a powerful multiphysics and multidisciplinarysimulation platform that goes well beyond traditionalstructural analysis. With years of continuous development,it supports everything from implicit to explicit analysis inone environment.​

Its “One Model, One Solver” approach boosts workflowefficiency, speeds up results, and maintains accuracy.True engineering optimization means refining the entiresystem across all physical domains — and OptiStructenables this within a single, integrated solution.​

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4B : Full Frequency Structural Vibration and Noise Analysis Platform​

Thursday, August 07, 2025 | 04:00-04:30 pm

Altair NVH solutions automate analysis tasks to reducelead time, deliver NVH performance with attributebalancing, predict and eradicate squeak and rattlephenomena, and eliminate expensive late designchanges.​

Simulations that include more physical effects takeaccount real world variability and allow noise and vibrationto be experienced subjectively. Industry trends arefollowed closely, such as the increase in electric andhybrid vehicles and the lightweighting of engines. Specificapproaches are developed to meet these challenges anddeliver leading NVH performance.

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5A : Multi Body System Kinematic and Dynamic Analysis​

Wednesday, August 13, 2025 | 04:00- 4:30 pm

With MotionSolve, engineers and designers can graphically build system models describing the phenomena of interest. These models can include realistic geometry, diverse loading conditions, linear or nonlinear component flexibility, nonlinear connectivity, friction/contact, multiphysics and other environmental effects. Through time- and frequency-domain simulations of these models, you can develop products faster and ensure they’ll perform reliably while meeting all performance requirements.

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5B : Systems simulations and reduced order modelling for multi-fidelity systems integrations

Thursday, August 14,  2025 | 04:00- 04:30 pm

In this session, we shall dive into the multi-physics integration of complex mechatronic systems using Altair Twin Activate, with seamless integration of physics incl. mechanical, electrical, thermal, electromagnetic, power electronics, and control systems – with flexible purpose-driven model fidelity it 0D, 1D to 3D models. ​

Further, combine historical 1D/3D simulations along with test / field data using surrogate modeling techniques. Altair® romAI, combination of AI with physics-based modeling, provides efficient reduced-order modeling (ROM) approach— even capable of capturing non-linear dynamics / transients for rapid system-level evaluations.​

The powerful combination of systems simulations and ROMs enable real-time digital twin deployment across any stage of the product lifecycle—from design to operation.

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