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Taking Control of PCB Verification One Step at a Time
October 9, 2025 | Kirk Fabbri, Siemens EDAEstimated reading time: 1 minute

Today’s designs are as complex as ever, and engineers face tough decisions every day. Simulation and verification teams are confronted with a three-fold challenge: understanding the underlying theory, mastering the tools, and applying best practices.
Engineers need to navigate a vast and ever-changing cast of design and simulation tools, often with overlapping functionality. Additionally, there may be a preference for a mix of software tools, even within the same company, leading to a lack of standardization and varying levels of integration.
All these challenges can lead to confusion, missed requirements, and project delays due to inefficient workflows, often leading engineers to delegate the task to specialists, either in-house or external, rather than tackling it themselves. The inherent fear of complexity and the influence of experts focused on minute details amplify the reluctance to engage with essential tasks like signal integrity analysis. But this need not be the case.
Progressive verification in PCB design offers a strategic, dynamic verification process and addresses the complexities of modern electronics design. By prioritizing tasks based on their complexity and time requirements, design teams can efficiently manage their resources and reduce the risk of project delays. This approach not only helps in catching errors early but also alleviates the bottleneck created by reliance on external or in-house experts. Let’s look at how this dynamic process works in broad strokes.
To continue reading this article, which originally appeared in the September 2025 Design007 Magazine, click here.
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NEDME Returns October 22 — The Northwest’s Premier Design & Manufacturing Expo
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Sumitomo Riko Boosts Automotive Design Efficiency 10x with Ansys AI Simulation Technology
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Si2 Names NVIDIA, Synopsys Technologists to Lead New LLM Benchmarking Coalition
10/10/2025 | BUSINESS WIREThe Silicon Integration Initiative today announced the chair and vice chair of the Si2 Large Language Model Benchmarking Coalition (LBC), a collaborative industry initiative and standards body advancing AI for silicon design and verification that will expedite the development of high-quality large language models for semiconductor design problems.
Quilter Secures $25M Series B to Eliminate Manual PCB Design with Physics-Driven AI
10/09/2025 | BUSINESS WIREQuilter, the first and only company to publicly demonstrate fully autonomous PCB layout through physics-driven AI, announced $25 million in Series B funding led by Index Ventures.