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Shrinking Geometries: Back to Fundamentals to Fight EMI
February 23, 2023 | Andy Shaughnessy, Design007 MagazineEstimated reading time: 1 minute

When silicon shrinks, a variety of things can happen—some positive, some negative. But for PCB designers, the fight against EMI becomes more complex as signal channels shrink and rise times increase.
Dan Beeker is technical director at NXP Semiconductors, a veteran design engineer, and an instructor who has spent years helping students and customers battle EMI through building a better understanding of electromagnetic fields and field theory. In this interview, Dan explains what happens when silicon shrinks, how feature size controls signal speed, and why this marks the perfect time to return to the fundamentals of physics and field theory.
Andy Shaughnessy: Shrinking silicon is increasingly causing EMI issues for PCB designers and EEs. What sort of problems does shrinking silicon cause?
Dan Beeker: Smaller device geometries and higher current switching capabilities have thrust us all into the world of RF, HF, UHF, and microwave energy management. Rise times on even the lowest-tech devices now exhibit gigahertz impact. These changes directly impact product functionality and reliability. When IC technology was described as a percent of shrink from integer design rules, a circuit-based approach was usually close enough. Now that IC technology is described in nanometers, that traditional approach completely falls apart. An EM field, physics-based approach is essential.
To make things worse, EMC standards have changed; we now have lower and higher frequency compliance requirements, much lower emissions levels allowed, and greater immunity required. The playing field and the equipment have completely changed. This really is a brand-new game. The challenges are not only about providing adequate power to the devices, but also managing the output signals. The smaller the transistor, the faster it turns on, and the bigger the impact it has on EMC and signal integrity.
To read this entire interview, which appeared in the February 2023 issue of Design007 Magazine, click here.
Suggested Items
Why I Finally Embraced Autorouting
07/03/2025 | Stephen V. Chavez, Siemens EDAHere is a common misconception held by those who don’t fully understand the PCB layout process or how to wield today’s high-level EDA tools: "All I need to do is push the autorouter button, let the computer route all the signal traces, and get the layout 100% routed. It’s a no-brainer. Anyone can do it. It should take less than a few hours.”
Reflections and Priorities: An Update to I-Connect007 Readers
06/24/2025 | Marcy LaRont, I-Connect007The electronics and manufacturing industry is evolving rapidly—with new technologies, deeper global connections, and a growing drive toward sustainability. To reflect these changes and our place in this dynamic space, we’re refreshing our brand.
Microchip Enhances Digital Signal Controller Lineup with Industry-Leading PWM Resolution and ADC Speed
06/21/2025 | MicrochipEvolving security and functional safety demands, coupled with the growing complexity of real-time embedded applications, are driving designers to seek innovative solutions that deliver greater accuracy, improved reliability and compliance with industry standards.
Beyond Design: The Metamorphosis of the PCB Router
06/18/2025 | Barry Olney -- Column: Beyond DesignThe traditional PCB design process is often time-consuming and labor-intensive. Routing a complex PCB layout can consume up to 30% of a designer’s time, and addressing this issue is not straightforward. We have all encountered this scenario: You spend hours setting the constraints and finally hit the Go button, only to be surprised by the lack of visual appeal and the obvious flaws in the result.
Elementary, Mr. Watson: PCB Routing: The Art—and Science—of Connection
06/11/2025 | John Watson -- Column: Elementary, Mr. WatsonMany people who design circuit boards love the routing part of the design. This is partially because we want to stop looking at the annoying rat's nest of connections, which seem to have no rhyme or reason at first glance. We want to get to something more exciting. Routing is the ultimate part of solving the puzzle. You take all the messy lines from the schematic and turn them into neat, organized paths.