This is an introductory course for STEM professionals to learn about various algorithms used for process optimisation. Learners also get to know which algorithm is best in a specific use case and business context.
Designers need to learn how to adapt to AI and upskill to learn various AI tools and leverage its power. AI may not replace designers themselves, but designers will be replaced by others who do embrace AI. This course introduces AI application in design.
Machine learning can automate and optimize the meshing process in finite element analysis (FEA) by learning from existing meshes and predicting optimal meshing strategies for new geometries. This can lead to faster and more accurate FEA simulations. Specifically, machine learning can be used for mesh generation, adaptation, and even surrogate modeling to reduce computational time
AI can automate the generation of detailed technical drawings from 3D models, significantly reducing design and drafting time and improving accuracy. AI-powered tools can convert 3D models into 2D fabrication drawings with a simple click, integrating with major CAD software and offering extensive customization options.
This course introduces techniques and platforms used to generate technicall drawings and other specification sheets through AI powered automation.
This course introduces the use of a composite software platform to generatee the details of various processes starting with development of a prototype design and going through the cycle to a prototype. AI algorithms help save time and produces efficient cost saving development of the product to be tested.
Electronic engineering teams use AI-powered electronics design automation platform to automatically design fully functional schematic diagrams, generate BoMs, and select components optimized for size, cost, power, and availability.
Electronics design teams are slowed down by manual, tedious tasks, including iterating when requirements change and errors occur. An AI platform enables teams to generate and redesign electronic systems in seconds/minutes instead of weeks/months saving hundreds of thousands.
This course is essential to switch career to an skilled AI interventionist and further develop other skills to become a leader in using AI for electrical industry setting.
This course enables learners to develop expertise in using a composite software platform which goes beyond simple automation that optimizes every stage of the electrical design process:
The platform understands plain English descriptions, automatically translating them into structured data, eliminating manual data entry. AI engine interprets the requirements and synthesizes error-free electrical schematics and PCB component layouts, saving you valuable design time, automatically generates accurate BOMs based on the design, streamlining procurement and manufacturing processes.
This course develops the ability to simulate variations in designing power electronics systems. By doing this course, engineers develop the ability to verify circuit concepts using ideal semiconductor switches, gradually refine designs by including thermal losses and parasitic effects and effortlessly create circuit models and run fast, accurate simulations. The simulation platform comes with a comprehensive library with components typically required to model power electronic systems and electrical drives. The library spans multiple modeling domains:
Electrical circuits
Rotational and translational mechanics
Magnetic circuits
Thermal models
Controls and signal processing
A single integrated platform helps in development of converters, motor drives, or control algorithms.
This is an essential skill for electrical & electronics engineers to be able to navigate different stages of PCB design on an integrated, user-friendly platform incorporating everything from schematics and layout to simulation and analysis so you can meet design requirements and tight timelines effortlessly.l This course will develop the ability to create electronic designs from schematic capture to final design documentation and manufacturing files – all in one intuitive interface and unified data model.
The construction industry suffers from unpredictability, low earnings and unsustainable levels of waste and energy use. Errors in design and coordination are a primary source of risk, rework and waste.
This course introduces an integrated construction platform that automates the sustainable design of buildings, dramatically reducing the time, cost, waste and uncertainty of construction projects. The platform enables a fundamentally new design process that empowers the construction industry to design and build sustainable housing, cities, and infrastructure at scale, covering all sub-systems like plumbing, electrical etc using AI algorithms and Generative AI.
This is an advanced AI skill build-up course that helps designers, estimators and engineers with AI-powered image search, text search, and pattern search, in a plan set. The platform automatically detects, measures, compares and labels project spaces and features on architectural plans and drawings in seconds, not hours. It eliminates manual tasks, automatically names and organizes your entire plan set with just a few clicks & easy to share plans, track changes, and collaborate — all in one place. Get everyone on the same page (literally) and keep projects moving without messy email chains.
This course leads the learner to an advanced skill of automating scenario exploration with AI—enabling rapid recovery scenarios, mitigate risks, and optimize schedules. This course enables site managers to visualise how teams plan, optimize and deliver projects with generative construction technology. The platform enables you to transform your schedule into a 2D interactive layout and start planning visually—without the need for a 3D model.
This is an advanced course for professionals intending to develop broad based skills around design, simulation, data analytics and AI to develop product design. Platform maximizes the utilization of compute resources and streamlines the management of compute-intensive tasks for AI, modeling and simulation, visualization, and more. This is an essential skillset for product designers to lead the design deptt by covering the skills for end-to-end value chain.
Domain experts and designers need to develop skills of test & validation to transform engineering workflows using AI and analytics algorithms. This course delves deep into various advanced algorithms to model performance and create efficient test plans with maximum coverage. Interface of AI anomaly detector automatically inspects and flags errors across hundreds of test data channels. Learners also develop skills to develop AI models for test & performance prediction.
Designers & engineers need skills to work on integrated platform that accelerates testing of all your applications, data, and business processes and integrates with tools across the delivery pipeline. To lead the develop & test processes, one needs skill to test broad multi-application business processes, dynamic, agile-developed applications, and vendor-specific customizations and add-ons.
This course develops ability to understand visual scripting platforms like CATIA and understand the process. Visual scripting allows engineers to unlock the full power of parametric design - building customized workflows, automating repetitive design tasks, and handling complex shapes.
Visual scripting offers a way to create geometry based on input data or parameters, by visually setting up logical and geometrical relationships in a graph. This way of working can be highly efficient and consistent. Any BIM information can be added or updated together with the geometry and managed from a central place.
Modeling of both simple and complex geometries can be significantly faster than traditional modeling and its engineering accuracy is assured since the engineer can create and manage the design as a whole
This advanced course is for Product engineering professionals and introduces an integrated end-to-end platform designed to work with CAE and CAD softwares. 3D visual feedback, a collaborative environment and LLM guidance. With 3D deep learning, the solution accelerates the way engineers conceptualize, design and validate products – from concept to market.
This course introduces a platform for Electrical CAD with Artificial Intelligence (AI) to maximize productivity and efficiency: save time and money, avoid errors, reduce stress and deadline pressure. Platform helps you design electrical schematics and BOM instantly.
This course develops expertise in EDA - Electronic design automation. Course composition covers working on prominent EDA tools that simplify multi-domain insights for RF and microwave, 5G / 6G, and high-speed digital printed circuit boards (PCB) throughout the design cycle. Some tools offer accurate models and a broad range of validated Process Design Kits (PDKs) to ensure a streamlined workflow from schematic capture to design rule checking (DRC) and accelerates design confidence from simulation to verification and compliance with built-in design templates, extensive component libraries, robust modeling, and precise simulations addressing complex electronic design challenges with precision and efficiency.
This course introduces the application of AI in design using Agentic AI tools which dramatically reduce system-on-chip (SoC) engineering time by months, enabling engineers to create high-performance, efficient designs with unparalleled speed. The semiconductor landscape is getting transformed through integration of AI across multiple design domains, The AI integrated platforms reduce time to market significantly by embracing AI-assisted workflows, manage complex design challenges with advanced tools, achieve lower power consumption and smaller size without compromising quality.
This is an advanced course to develop the ability to create highly constructable schematic designs and turn them into fully integrated BIM models in minutes.
GigaTwin Digital Pvt Ltd
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