Agenda Siemens EDA Forum Finland

Logo - Siemens EDA Forum FInland 2026 Logo - Siemens EDA Forum FInland 2026
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The agenda below is valid for both events - Tampere, october 27 and Oulu, October 29

11:15 AM

The Era of the Silicon System: Designing the Future

The shift to software defined Silicon Systems, moving beyond “chip centric” mindset towards convergence of the electronic, mechanical and software domains. Delivering the digital twin of the entire system from concept, design, manufacturing and test.

Track
PCB design & analysis
Shift-Left Timing Closure: Eliminating SDC Bottlenecks with Siemens Gencellicon

 

As SoC complexity accelerates and multi-mode, multi-corner (MCMM) operational scenarios proliferate, manual timing constraint development has become one of the largest risks to project schedules. Subtle SDC errors and incorrect timing exceptions often remain hidden until late in physical implementation—or worse, cause silicon failure.

This session introduces Siemens Gencellicon, a unified platform that automates, validates, and manages timing constraints and clock structures from early RTL through physical sign-off. Learn how shifting constraint verification and early chip planning left enables design teams to achieve predictable timing closure, drastically cut costly place-and-route (P&R) iterations, and accelerate time-to-market.

Track
Special sessions

01:00 PM

The Intersection of AI & Electronic Systems Design - What's New in Xpedition

As electronic systems reach unprecedented levels of complexity, the traditional methods of design and verification have reached a breaking point. This presentation moves past the theoretical to demonstrate how industrial-grade AI is being deployed today to solve critical bottlenecks in electronic systems design. We will highlight the transition path from manual, heuristic-based processes to AI-orchestrated workflows, where AI agents manage complex, multi-domain design tasks, allowing engineers to reclaim their time for high-level innovation and enabling engineering teams to achieve radical improvements in speed, cost, and first-pass success.

Track
PCB design & analysis
PowerPro: Bridging the Gap from Power Analysis to Automated Power Closure

Compelling, to the point, focused on customer value and differentiation Presenter: The AI revolution is driving unprecedented demands for performance, efficiency, and time-to-market. Successful semiconductor teams must manage power continuously across the design cycle while maintaining productivity and design quality. This session highlights how Siemens PowerPro enables a comprehensive RTL low-power methodology through early power estimation, automated optimization, and scalable SoC power exploration. We will also discuss how AI-powered capabilities within the Siemens EDA ecosystem are helping engineers gain deeper insights, automate repetitive tasks, and make more informed power optimization decisions.

Track
Special sessions

01:45 PM

EDM in the Cloud - What´s New in EDM

Xpedition EDM Cloud Server extends Siemens' proven Enterprise Data Management platform through a Siemens-managed cloud deployment model designed to reduce IT burden, accelerate implementation, and simplify ongoing maintenance. Learn how organizations can improve data governance, collaboration, and design productivity while leveraging enterprise-grade cloud infrastructure and best-practice deployment templates

Track
PCB design & analysis
Solder Fatigue & Warpage: Mastering Thermo-Mechanical Reliability

For today’s PCB and SoC designers, reliability isn't just about managing temperature—it's about managing the mechanical consequences of heat. From BGA solder fatigue to complex board warpage, the physics of failure are more interconnected than ever.
In this seminar, we demonstrate the latest Siemens workflows for predicting and preventing thermo-mechanical failures before the first prototype is built.
Key Topics:

    • Transient Heat Transfer: Moving beyond steady-state to capture real-world thermal solder fatigue.
    • Structural Integrity: Integrating random vibration, shock, and drop testing into your design cycle.
    • Multi-zone Modeling: How to manage "Unified Detail Levels"—from homogenized board properties to detailed wire-bond analysis—in a single environment.
Track
Special sessions

03:00 PM

Where Better PCB Design Begins - What´s New in HyperLynx

Front-end design constraint planning is the first step toward analysis-driven PCB design. By shifting constraint definition and validation earlier in the process, teams can improve predictability, catch issues sooner, and avoid costly late-stage iterations. Siemens EDA PCB analysis tools enable this shift-left approach in the front-end phase, helping lay the foundation for more efficient, reliable, and optimized PCB development.

Track
PCB design & analysis
Design Space Exploration with HLS: Different architectures, multiple PPA points - can you write them all in RTL?

As modern silicon architectures face increasingly tight power, performance, and area (PPA) constraints, finding the optimal microarchitecture has become the most critical—and time-consuming—phase of hardware design.

Traditional handcrafted RTL forces engineering teams into a costly compromise: because each architectural variant requires weeks or months of manual re-coding, verification, and timing closure, designers typically commit to a single, best-guess microarchitecture early in the cycle. Exploring alternative pipelining depths, memory partitioning schemes, or loop unrolling strategies across multiple target PPA points in RTL is simply impractical under modern tape-out schedules.

High-Level Synthesis (HLS) dismantles this bottleneck by decoupling algorithmic intent from microarchitectural implementation. Using Catapult HLS, designers maintain a single golden source in C++/SystemC and leverage synthesis constraints to rapidly generate, evaluate, and verify dozens of distinct hardware architectures in hours rather than months.

Track
Special sessions

03:45 PM

Invent the future, don’t inspect the past

This session starts with an introduction to HyperLynX DRC, covering its role in PCB design verification and how analysis-driven rule checking helps identify design issues early in the development process. Building on this foundation, attendees will learn a practical workflow for creating HyperLynX DRC custom rule checks with AI support. The session demonstrates how complex verification concepts can be transformed into executable checks, enabling faster validation.

Track
PCB design & analysis
Leveraging AI to accelerate RTL-to-GDS digital implementation and improve PPA

As design complexity and schedule pressures continue to increase, traditional digital implementation flows struggle to deliver optimal power, performance, and area (PPA) within aggressive timelines. In this presentation, we discuss Aprisa AI: how AI in digital implementation helps accelerate design convergence while improving overall PPA, with fully integrated generative AI capabilities and orchestrated AI agents that drastically improve productivity and scale engineering team efforts. The presentation will cover digital implementation technologies from synthesis to place-and-route, and semi-custom low skew routing, while discussing agentic workflows with examples and demos. Join us in this session to learn how to expand your digital implementation workflow and embed AI agents to increase productivity and improve PPA for the next generation of silicon designs

Track
Special sessions