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Breaking Silos with Intelligence: Connectivity of Component-level Data Across the SMT Line
June 9, 2025 | Dr. Eyal Weiss, CybordEstimated reading time: 1 minute

As the complexity and demands of electronics manufacturing continue to rise, the smart factory is no longer a distant vision; it has become a necessity. While machine connectivity and line-level data integration have gained traction in recent years, one of the most overlooked opportunities lies in the component itself. Specifically, in the data captured just milliseconds before a component is placed onto the PCB, which often goes unexamined and is permanently lost once reflow begins.
In many modern SMT lines, the pick-and-place machine captures high-resolution bottom-side images of components as part of the placement process. These images represent a unique opportunity: a real-time, untouched view of each component just before it is mounted. Once placed, this view is destroyed—either physically by solder or visually by occlusion. Yet, this is precisely the moment when critical information can be extracted. Issues like corrosion on leads, mechanical damage, probe marks from unauthorized programming, or foreign object debris (FOD) can all be detected from the underside view before the component becomes permanently embedded onto the board.
Inline X-ray systems, which until recently were the only method of optically examining components, are typically used to inspect the outcome: solder joints, alignment, and the presence of voids or bridges. While valuable, these systems focus on symptoms. Without insight into what the component looked like before it was placed, root cause analysis remains incomplete. For example, a void in a solder joint might appear to be a process failure when, in fact, it stems from oxidation or contamination on the component lead, something that could have been spotted ahead of time.
To continue reading this article, which originally appeared in the May 2025 issue of SMT007 Magazine, click here.
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Cybord Announces Air-Gapped Visual AI Platform for Electronics Integrity and Hardware Cybersecurity
09/17/2025 | PRNewswireCybord, a leading provider of advanced visual-AI electronic component analytics solutions, announced the launch of its fully air-gapped platform, bringing advanced Visual AI inspection and traceability capabilities fully on-premises.
Knocking Down the Bone Pile: Best Practices for Electronic Component Salvaging
09/17/2025 | Nash Bell -- Column: Knocking Down the Bone PileElectronic component salvaging is the practice of recovering high-value devices from PCBs taken from obsolete or superseded electronic products. These components can be reused in new assemblies, reducing dependence on newly purchased parts that may be costly or subject to long lead times.
ICAPE Group Unveils Exclusive Report on Sustainability in Electronics Manufacturing
09/15/2025 | ICAPE GroupICAPE Group, a global leader in printed circuit boards (PCBs) and custom electronics manufacturing, today announces the launch of its 2025 Industry Outlook & Innovation Report: Sustainability in Electronics Manufacturing. This exclusive report is accompanied by fresh insights from a dedicated Statista survey of 100 electronics manufacturing professionals, commissioned by ICAPE Group.
Advanced Packaging-to-Board-Level Integration: Needs and Challenges
09/15/2025 | Devan Iyer and Matt Kelly, Global Electronics AssociationHPC data center markets now demand components with the highest processing and communication rates (low latencies and high bandwidth, often both simultaneously) and highest capacities with extreme requirements for advanced packaging solutions at both the component level and system level. Insatiable demands have been projected for heterogeneous compute, memory, storage, and data communications. Interconnect has become one of the most important pillars of compute for these systems.
Advanced Packaging: Preparation is Now
09/15/2025 | Nolan Johnson, I-Connect007In this interview, Matt Kelly, CTO for the Global Electronics Association, and Devan Iyer, chief strategist of advanced packaging, define advanced electronics packaging and the critical nature of getting it right in the electronics manufacturing field. They share details from their white paper, “Advanced Packaging to Board Level Integration—Needs and Challenges,” and provide insight into how next-generation packaging will change the design, fabrication, and assembly of printed circuit boards, including the implications for final system assembly.