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Advanced Electronics Packaging Digest

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Beyond Design: How Signals Survive the Hostile PCB Environment

06/03/2026 | Barry Olney -- Column: Beyond Design
Modern digital signals exhibit behavior more characteristic of RF waveforms than the slow logic transitions of the past. With fast rise times, a PCB is no longer a collection of copper traces, but a distributed electromagnetic system. Successful design isn’t about routing signals anymore; it’s about engineering transmission lines, preserving uninterrupted return‑current paths, and controlling the resonant structures that naturally form within the multilayer PCB.

Beyond Design: Demystifying Common‑Mode Radiation

02/24/2026 | Barry Olney -- Column: Beyond Design
Common-mode radiation is a major contributor to unwanted electromagnetic interference (EMI). It arises when equal-phase currents flow on conductors without an opposing return current to cancel their fields. The resulting imbalance causes those conductors, especially attached cables, to behave as unintended antennas. Grasping how common-mode radiation is generated, the problems it creates, and the methods available to control it is essential for designing reliable electronic systems that meet regulatory requirements.

Elementary, Mr. Watson: Why Traces Alone Won’t Save You

12/02/2025 | John Watson -- Column: Elementary, Mr. Watson
Whether you call them polygons, pours, planes, floods, copper areas, copper regions, zones, or copper shapes, they all refer to the same fundamental concept: large, defined areas of copper used to control electrical performance, thermal behavior, and manufacturability on a PCB. In a recent Design-007 column, we looked at how we ended up with this endless list of names describing the same basic thing. Somewhere along the way, the industry decided that one name simply wasn’t enough, so we created half a dozen synonyms that confuse newcomers and occasionally amuse veterans.

Everyone’s Talking About Power

11/06/2025 | Heidi Barnes, Keysight Technologies
Delivering power to a digital load is an AC function, not DC. That simple statement may be obvious, but the implications of how electricity travels to an electronic load are complicated. Dynamic loads with rapidly changing currents create electric and magnetic fields that adhere to Maxwell’s equations. Ground can be misleading and is probably better used for describing where one grows potatoes and carrots. Electrical currents have “return paths,” and the energy is traveling in the fields between the power rail and the return path.

Beyond Design: Slaying Signal Integrity Villains

09/17/2025 | Barry Olney -- Column: Beyond Design
High-speed PCB design is a balancing act, where subtle oversights can develop into major signal integrity nightmares. Some culprits lie dormant during early validation, only to reveal themselves later through workflow disruptions and elusive performance bottlenecks. Take crosstalk, for example. What begins as a stray signal coupling between traces can ripple through the design, ultimately destabilizing the power distribution network. Each of these troublemakers operates with signature tactics, but they also have well-known vulnerabilities.
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