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Digital Engineering Drives Industry 5.0


During the Fourth Industrial Revolution, known as Industry 4.0, industrial processes and manufacturing shifted toward digitization in nearly every market, from agriculture and mining to heavy machinery and building automation systems. Today, this digital transformation is not slowing down. A global industrial robotics survey from McKinsey & Co. revealed that industrial companies are expecte... » read more

Navigating Vehicle Engineering In A Software-Defined World: Ebook


The e-book “Navigating Vehicle Engineering in a Software-Defined World” explores the transformative shift in the automotive industry toward software-defined vehicles (SDVs), a groundbreaking evolution from traditional hardware-focused designs to software-centric systems. It highlights how advancements in microprocessor technology and the emergence of over-the-air (OTA) updates have enabled ... » read more

Optimizing Optical Fiber Connections In Hyperscale Datacenters: A Simulation-Driven Approach


Hyperscale datacenters are redefining the limits of data transmission technology, driven by increasing demands for higher bandwidth, lower power consumption, and reduced latency. Through advanced simulation workflows and multiphysics integration, engineers can design, optimize, and validate optical coupling systems for next-generation datacenters. The use of Ansys Optics software for photonic c... » read more

Best Practices and HPC Strategies for Ansys Mechanical


Mechanical engineers face growing complexity in structural simulations. Modeling intricate geometries, capturing nonlinear material behaviors, and ensuring accurate boundary conditions often push traditional computing resources to their limits. These challenges can lead to longer solve times, convergence issues, and difficulties interpreting results — all of which slow innovation and impact p... » read more

Best Practices to Optimize Infrastructure for Simulations


Our Best Practices Guide equips you with expert strategies for leveraging high-performance computing (HPC) to maximize Ansys workload efficiency and overcome common challenges. As simulation complexity increases, a robust computing infrastructure is essential for rapid and large-scale modeling. Modern HPC systems provide: High-core-count CPUs for superior memory and compute perfo... » read more

EBook: Optimizing Analog Design With Multiphysics


As technologies like artificial intelligence (AI), 5G, electric vehicles, and high-speed computing continue to advance, analog and mixed-signal (AMS) technologies have become the unsung heroes of next-gen electronics. AMS chips are enabling smarter, faster, and more efficient systems, but traditional design approaches are struggling to keep pace. Interconnect parasitics, power integrity, photo... » read more

Introducing a Digital Engineering Methodology To Aid All Engineers


A systems engineer developing a novel system-on-a-chip (SoC) design. A CFD engineer studying the airflow over the wing of a new electric airplane design. A safety engineer reviewing the design of a new pacemaker to confirm that it is compliant with existing regulations and requirements. What do all these people have in common? One connecting thread is the ever-present need to efficiently col... » read more

E-Powertrain EMC Design And Validation


In the pursuit of zero-emission vehicles, the design of the e-powertrain and its electronic systems encounters numerous challenges. From stringent regulatory requirements to the demand for enhanced performance and efficiency, the landscape is ripe with complexities. Here, simulation emerges as a vital tool, offering a pathway to navigate these challenges with precision and innovation. What y... » read more

Discovering Digital Twins: A Complete Guide


As artificial intelligence (AI) and machine learning (ML) continue to revolutionize industries, their integration with simulation is amplifying the capabilities of digital twins. AI/ML, simulation, and reduced-order modeling (ROM) technologies combine to create hybrid digital twins—virtual replicas that blend data-driven insights with the accuracy of physics-based models. This powerful approa... » read more

Extracting Parasitic Impedance Of Semiconductor Power Modules


As a key component in energy conversion system, power semiconductor devices are widely used in various applications, e.g., electric vehicles, renewable energy conversion, and uninterrupted power supplies. The trend for power converter design is always toward higher power density. Power modules that integrate multiple semiconductor devices can meet this demand. It also reduces the compl... » read more

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