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10 Ways to Identify Counterfeit ICs
April 2, 2021 | Bill Cardoso, Creative ElectronEstimated reading time: 1 minute

In my monthly column, I’ve expressed concern about the likelihood of increased counterfeiting as a knock-on effect of the chip shortage. Because the incentives for counterfeiters are high right now, as an industry we must be somewhat more vigilant in maintaining our best practices for preventing fake parts from corrupting the supply chain and our products.
Under normal circumstances the cost associated with counterfeit electronic components exceeds $5 billion annually. The pressures of the current chip shortage will likely push those losses even higher for as long as the supply remains tight. Still, we all can agree that, if fake parts were to enter your inventory or end up in your products, while the reputational damage to your business will likely be significant, it can also be tough to quantify. Even harder yet would be assigning cost should counterfeit components in critical applications contribute to injury or loss of life.
So, how about a little refresher on some of the most effective techniques for component inspection using X-ray? While other visual inspection techniques provide important insight into component quality and authenticity, nothing exceeds X-ray inspection for fast, accurate, non-destructive evaluation. The following are 10 ways to identify a fake IC using X-ray.
To read this entire article, which appeared in the March 2021 issue of SMT007 Magazine, click here.
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Talking with Tamara: Floor Planning Policies
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Connect the Dots: How to Avoid Five Common Causes of Board Failure
09/04/2025 | Matt Stevenson -- Column: Connect the DotsBoards fail for various reasons, and because I’ve been part of the PCB industry for a long time, I’ve seen most of the reasons for failure. As part of my ongoing crusade to help designers design for the reality of manufacturing, here are five common causes for board failure and how to avoid them.
Mastering PCB Floor Planning
08/28/2025 | Stephen V. Chavez, Siemens EDAPlacement of PCB components is far more than just fitting components onto a board. It’s a strategic and critical foundational step, often called “floor planning,” that profoundly impacts the board’s performance, reliability, manufacturability, and cost. Floor planning ties into the solvability perspective, with performance and manufacturability being the other two competing perspectives for addressing and achieving success in PCB design.