Siemens Industry Software Inc.

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How VCARB F1 Team uses digital twin technology for 2026 race performance | Siemens partnership

Visa Cash App Racing Bulls (VCARB) has been pushing the limits of F1 performance for decades using Siemens' advanced simulation, PLM, and Digital Twin technologies. With the challenging new 2026 FIA regulations reshaping car design, the team's engineers reveal how their digital transformation strategy—built on Siemens Xcelerator—is critical to competitive success. What you'll learn: -How digital twin and digital thread foundations accelerate F1 car design -Real-world applications of Siemens tools in high-performance racing -Engineering strategies for meeting new 2026 FIA regulations -The role of advanced simulation in energy management and performance optimization Featured technologies: ✅ Siemens Xcelerator – Integrated digital platform ✅ Teamcenter – PLM and data management ✅ NX – CAD/CAM design tools ✅ Simcenter – Advanced simulation and testing ✅ Fibersim – Composite design and manufacturing About VCARB: Based in Faenza, Italy and Milton Keynes, UK, Visa Cash App Racing Bulls represents decades of Formula 1 engineering innovation. Their long-term partnership with Siemens demonstrates how Digital Twin technology delivers measurable competitive advantage in the world's most demanding motorsport. Key topics: ️ 2026 FIA regulation challenges ️ Digital Twin implementation in F1 ️ Performance engineering and energy management ️ Composite materials optimization with Fibersim ️ Real-time simulation for race strategy #Formula1 #F1Engineering #DigitalTwin #SiemensXcelerator #VCARB #PerformanceEngineering #Motorsport #DigitalThread #PLM #RacingTechnology

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Why System-Level Test (SLT) and In-Field Test are evolving for advanced ICs

As device complexity increases and heterogeneous integration becomes more common, traditional test approaches are no longer enough on their own. This video explores how system-level test (SLT) is evolving beyond functional test to include structural test, and why in-field deterministic test is becoming increasingly important for advanced silicon. The video explains how newer defect models drive higher pattern volumes and rising manufacturing test costs, creating interest in applying structural tests during SLT using functional interfaces. It also examines the growing role of in-field test in hyperscale data centers, automotive systems, and other electronics where monitoring device health during operation is becoming essential. You’ll also hear why logic BIST and random-pattern approaches may not achieve the required quality levels for advanced nodes, and why deterministic in-field test introduces new challenges around pattern memory, storage location, and test scheduling. ▶️ Topics covered include: -The shift from functional-only SLT toward structural testing -Why advanced defect models are changing test economics -Applying structural test through functional interfaces -In-field test for operational reliability and silent data corruption risk -The limits of traditional logic BIST for advanced devices -Memory and scheduling tradeoffs in deterministic in-field test -Silicon lifecycle monitoring through key-on, key-off, periodic, and opportunistic testing This video is a useful overview of how the industry is rethinking test strategy to improve quality, reliability, and lifecycle visibility for modern ICs. Want to explore further? See how Tessent Silicon Lifecycle Solutions can help address these challenges: https://sie.ag/2Zg7bj ▶️ Connect with us: » LinkedIn: https://sie.ag/5d9rAL » EDA blogs: https://sie.ag/6i3AWE » IC Design Community Discussion Board: https://sie.ag/w7Did #EDA #Semiconductor #ElectronicsEngineering #SLT

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Bugged Out Podcast: Breaking the coverage bottleneck | Episode 6

Harry Foster talks with Vladislav Palfy, Director of Solutions Management at Siemens EDA, about why coverage closure has become one of the biggest bottlenecks in modern verification. Drawing on insights from his white paper, Questa One Unified Coverage Solution: Transforming Verification Through Intelligence, Vladislav explains how traditional brute-force approaches to coverage are struggling to keep up with the complexity of today’s semiconductor designs. Learn how a unified, intelligent approach to coverage—combining planning, automation, and analytics—helps teams break through coverage plateaus, reduce regression effort, and achieve faster, more confident verification closure. 0:00 Introduction & Guest Welcome 0:50 What Inspired the Focus on Coverage Closure? 2:08 Why Is Coverage Closure Such a Persistent Problem? 3:54 Questa One: A Fundamentally Different Approach 5:00 The Three Pillars of Unified Coverage 6:45 The Unified Coverage Database (UCDB) Explained 9:32 Coverage Analyzer & Visualizer: A Powerful Duo 12:04 Breaking Through the Coverage Plateau 14:03 QCX, Intelligent Coverage & Test Ranking Strategies 15:24 The Future of Coverage Closure & AI's Role Read white paper: https://sie.ag/57AKea ▶️ Connect with us: » LinkedIn: https://sie.ag/2Q9Zvs » Verification Horizons blog: https://sie.ag/4ZTxFg » IC Design Community Discussion Board: https://sie.ag/3egFGc #ICverification #functionalverification #buggedoutpodcast #ICdesign #SemiconductorElectronics #IntegratedCircuit

Video

How to build a digital process twin for continuous manufacturing in Pharma

Join us for an insightful fireside chat about the transformative trends shaping the semiconductor industry. In this engaging discussion, Michael Munsey - VP, semiconductor industry at Siemens Digital Industries Software - explores how chiplets and digital twin technology are not only pushing the boundaries of performance but also driving a critical shift towards sustainability. Key discussion points include: - Driving forces: What's behind the rapid development in chiplets and heterogeneous packaging? Michael explains how Moore's Law and the urgent need for sustainable practices are reshaping design and production. - Sustainability in action: Discover concrete examples of how sustainability influences chip design and overall production. Learn about the immense power consumption of modern chips and the industry's push for greener manufacturing. - The Siemens SiGREEN Initiative: Get an overview of Siemens' initiative to measure and reduce the product carbon footprint (PCF) in manufacturing. -Challenges and solutions in 3DICs: Michael discusses the biggest technological hurdles in bringing chiplets together, including bandwidth and cooling. - Digital twins in 3D design: Understand the pivotal role of digital twins, not just for semiconductor devices, but for entire heterogeneous packages. Speaker: Michael Munsey - Vice President: Semiconductor Industry - Siemens Digital Industries Software. Explore Siemens solutions for pharmaceutical industry: https://sie.ag/4ChKNo Uncover the possibilities of simulation with the power of the industry’s most comprehensive Digital Twin: https://sie.ag/7X3YVh

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EnerVenue's battery innovation: Connecting workflows with Siemens Teamcenter Lifecycle Management

Unlock the future of battery development The battery industry is booming, but managing the complexity across multiple engineering domains can be a huge challenge. Many companies face fragmented data and disconnected tools, leading to inefficiencies, rework, and slower time-to-market. Discover how EnerVenue, a leader in non-toxic, non-flammable nickel-hydrogen batteries, tackled these very issues. In this video, we explore how EnerVenue addressed these challenges by connecting cross-domain workflows using Siemens Teamcenter Lifecycle Management solution. Learn how a unified digital thread enables faster iteration, improved collaboration, and better decision-making for groundbreaking battery innovation. This approach helps reduce rework, accelerate development cycles, and ensure higher quality products from concept to production. ► Key takeaways: * Why battery development demands integrated engineering domains. * The pitfalls of fragmented data and disconnected tools. * How EnerVenue achieved seamless cross-domain collaboration. * The benefits of faster iteration, improved decision-making, and accelerated development with Siemens Teamcenter Lifecycle Management solution. #BatteryInnovation #EnerVenue #PLMforbattery #BatteryDevelopment #CleanEnergy #EnergyStorage LEARN MORE: ►Learn more about Teamcenter battery lifecycle management: https://sie.ag/5F2aZB FOLLOW US: ►Facebook: https://sie.ag/3eL1XE ►Twitter: https://sie.ag/4ACj3E ►LinkedIn: https://sie.ag/7BhZ7g ►Instagram: https://sie.ag/59237V ►Blog: https://sie.ag/7BhZ7g

Video

Can 3D chips break Moore's law?

See how Siemens EDA is enabling 3D IC design: https://www.siemens.com/en-us/company/electronic-design-automation/trending-technologies/3d-ic-design/?stc=usdi103797&utm_source=YouTube&utm_medium=social_site&utm_campaign=WW_DI+SW_Epic+Spaceman+3D+IC+video&utm_content=social_post Our AI-powered, end-to-end platform transforms how you design, simulate, and validate robust 3D IC designs, pushing boundaries further, faster. We’ve teamed up with Epic Spaceman to bring you a story about the future of semiconductor design. For decades, Moore's Law has driven incredible technological progress, but we're now approaching the physical limits of shrinking transistors. So, what comes next? And how will power-hungry AI continue to scale up when traditional chip design reaches its roadblock? The answer is to take chip design to another dimension! In this video, we explore the groundbreaking world of 3D chips, where instead of just making components smaller, we're building them taller. Discover how companies like NVIDIA, Apple, and Intel are embracing 3D IC designs and chiplets to achieve faster processing and lower power consumption. Building these complex 3D systems isn't easy. As engineering teams integrate hundreds of chiplets and millions of interconnects into a single package, intertwined multiphysics and reliability risks grow exponentially, far beyond what traditional EDA flows were designed to manage. Siemens Innovator3D IC solutions bring AI-powered design, multiphysics analysis, verification, and test into one unified platform, accelerating robust 3D IC development. ▶️ Join us in this video to explore: - Why Moore's Law is reaching its physical limits and the urgent need for new solutions - How 3D chips and chiplets are revolutionizing semiconductor design - The critical role of AI in accelerating 3D chip development and overcoming complex challenges ▶️ Connect with Siemens EDA: » LinkedIn: https://www.linkedin.com/company/siemens-eda/ » Instagram: https://www.instagram.com/siemenssoftware » 3D IC blog: https://blogs.sw.siemens.com/semiconductor-packaging/?cmpid=119442 ▶️ Connect with Epic Spaceman: YouTube – @EpicSpaceman Instagram – instagram.com/epic.spaceman TikTok – tiktok.com/@epic.spaceman Website – epicspaceman.com #Semiconductor #ElectronicsEngineering #IntegratedCircuit #3DIC #Engineering

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