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What happens when the rule book is no longer useful, or worse, was never written in the first place? In today’s fast-moving electronics landscape, we’re increasingly asked to design and build what has no precedent, no proven path, and no tidy checklist to follow. This is where “Design for Invention” begins.
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Zuken and CSA Catapult Present Results of R&D Collaboration
December 8, 2022 | ZukenEstimated reading time: 1 minute
Zuken, a global leader in the area of software and solutions for electronic and electrical engineering, and Compound Semiconductor Applications (CSA) Catapult are announcing an important milestone in their R&D collaboration aimed at building a development environment for state-of-the-art compound semiconductor products.
CSA Catapult is a UK government-funded non-profit organization headquartered in South Wales that was founded to help the UK become a global leader in compound semiconductors. Working with both large companies and start-ups, CSA Catapult develops and commercializes new semiconductor technology applications.
Collaborating with Zuken on a project to bring a power module layout from a graphical concept to a 3D model, CSA Catapult has identified several requirements and optimizations to Zuken’s CR-8000 Design Force chip, package and PCB co-design software that will provide designers of power electronic products with the ability to co-develop mechanical and electrical design in unison. The integration with industry simulation tools enables the efficient design iteration needed to effectively explore the design envelope for new compound semiconductor products.
As a result of the collaboration, an intuitive function was created to generate interconnections between chips and copper layers in a substrate or a printed circuit board, as well as a function to export a CAD model in a format compatible with FEM software. These advanced features will help designers significantly decrease the time required to generate a 3D model of the power module substrate, chip layout, and chip-to-chip, as well as chip-to-copper interconnections.
Dr. Alejandro Villarruel Parra, senior power electronics engineer at CSA Catapult, said, “The creation of a 3D model of the substrate, chip layout, and chip interconnections is an important part of the early-stage power module design process. Zuken’s advanced design solutions have helped to provide a preview of the module performance, which in turn makes our decision-making process faster when several concepts are being compared or helps to steer the refinement of the module geometry if a concept has already been selected.”
The new capability is included in the 2022 release of CR-8000 Design Force.
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Driving Innovation: Selecting the Right Laser Source
04/28/2026 | Simon Khesin -- Column: Driving InnovationWhen I first joined Schmoll Maschinen, I brought experience from almost every PCB process, except for laser. As I immersed myself in laser processing, I realized why it can seem so daunting to a newcomer. The complexity arises from three intersecting factors: A vast variety of laser sources: CO2, UV-nano, green-pico, UV-pico, IR-pico, and others; a diverse range of applications: Drilling, cutting, ablation, and more; and an extensive list of materials: These have vastly different absorption rates. Choosing the right machine or laser source is rarely trivial. Even for experienced engineers, answering "Which source is best?" requires examining the business's specific goals.
Institute of Circuit Technology Spring Seminar 2026: A Bright Future in Europe
04/23/2026 | Pete Starkey, I-Connect007Through the leafy lanes and spring flowers of Warwickshire and back to Meridan, the traditional centre of England, and now officially part of the Metropolitan Borough of Solihull in the county of the West Midlands, I attended the Annual General Meeting and Spring Seminar of the Institute of Circuit Technology (ICT) on April 14. Out of the AGM came notable changes in leadership at the top of the Institute: the retirement of Mat Beadel as chair and Emma Hudson as technical director. Effective May 1, Steve Driver is the new chair, and Alun Morgan is the new technical director.
ACCM Unveils Negative and Near-zero CTE Materials for Large-Format AI Chips
04/21/2026 | Advanced Chip and Circuit MaterialsAdvanced Chip and Circuit Materials, Inc. (ACCM) has launched two new materials: Celeritas HM50, with a negative coefficient of thermal expansion (CTE) of -8 ppm/°C to offset the positive CTE and expansion of copper with temperature on circuit boards, and Celeritas HM001, with near-zero CTE and the low-loss performance needed for high-speed signal layers to 224 Gb/s and faster in artificial intelligence (AI) circuits.
Fresh PCB Concepts: Designing PCBs for Harsh Environments—Reliability Is Engineered Upstream
04/23/2026 | Team NCAB -- Column: Fresh PCB ConceptsWhen engineers hear the phrase “harsh environment,” they usually think of the extreme temperature swings, vibration and shock, pressure changes, or radiation in aerospace. However, aerospace is not the only harsh environment where electronic assemblies must survive. Automotive power electronics, downhole oil and gas tools, marine controls, rail systems, defense platforms, and industrial automation equipment all expose PCBs to environments that are equally unforgiving. The stress mechanisms may differ, but the physics does not.
Advanced Packaging for AI: Reliability Starts at the Cu/Cu/Cu Microvia Junction
04/20/2026 | Kuldip Johal, MKS' AtotechThe rapid growth of AI computing, from training clusters to inference at scale, is reshaping demand across the entire electronics supply chain. Advances in technology requirements, such as higher bandwidth, lower latency, and greater compute density, are driving the development of advanced packaging technologies and transforming the PCB industry across design, manufacturing, testing, and even architecture.