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14th Electronic Circuits World Convention
June 20, 2017 | Happy HoldenEstimated reading time: 10 minutes
Figure 9: KT action sequences. (Source: Happy Holden.)
Figure 10: Selecting the right statistical tool. (Source: the NIST Engineering Statistics Handbook.)
Figure 11: Automation strategy and methodology. (Source: Happy Holden.)
Figure 12: PCB fab automation software interactions. (Source: Happy Holden.)
“FPC Market and Related Technology Trend,” Hirofumi Matsumoto, Nippon Mektron
Nippon Mektron is considered to be the largest printed circuit fabricator in 2015, with ZenDing Technology a close rival. This invited talk highlighted the flex circuit segment of the PCB market:
- FPC market trends: The FPC market has grown by an average of 6.5% to $15.4B in 2015. It is expected to slow to 1.5% over the next seven years to $17.7B in 2022. Of that amount, $4.98B will be FPC assembly.
- FPC primary market and future markets: The mix has changed. In 2000, the applications were: mobile phone—22%, mobile camera—11%, hard discs—24%, digital audio—17%, packaging—13%, LCDS—5%, vehicle—4%, and optical—2%. In 2014, the distribution was: cellular phones—51%, LCD for phones—9%, camera for phones—4%, HDD—10%, automotive—9% computers—6%, cameras—6%, wearables—1% and other—4%
- Smartphone market and related FPC technologies (Figure 13): 17 different kinds of FPCs go into the smartphone and shipments exceeded 1.5 billion sets in 2016, growing to 1.84 billion by 2020 (Figure 14).
- Future FPC markets: The smartphone will continue to grow for medical, emergency, and other social network needs. Other growing markets will be automotive, virtual reality, drones, and IoT/M2M
- Wearable, 5G and IoT markets: These growing markets will demand new materials better suited to their performance and environment. Washable materials, ultra-high-speed films like LCP (30-300 GHz), and disposable film or harsh environment films.
Figure 13: Smartphone growth (updated 2016). (Source: Matsumoto.)
Figure 14: Smartphone flexible display trend. (Source: Matsumoto.)
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Flexible Thinking: Designing Flex Circuits for Dynamic Reliability
04/09/2026 | Joe Fjelstad -- Column: Flexible ThinkingFlex circuits flex. No surprises there. However, they are also very commonly designed into products because they are thin and offer consistent thickness and dielectric properties, attributes highly prized by present-day product designers of personal electronics. This would include smartphones and, increasingly, wearable electronics for medical monitoring and even fashion.
Understanding Tolerances in Flexible Circuit Design
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Target Condition: An Exploration of Flooding PCB Layers
04/02/2026 | Kelly Dack -- Column: Target ConditionThe concept of flooding PCB layers with copper has been around for so long, you’d think we’d have it mastered. We haven’t. (Oh, and by “we,” I mean design engineers and the software tools we depend on.) Years ago, PCB artwork was created by hand using light tables, with tape applied to Mylar. Signals were slow, traces were relatively wide, and high-current paths were simply “beefed up” with wider copper. Signal integrity wasn’t yet a driving concern. Today, solid return paths are fundamental to robust design. We understand the importance of continuous reference planes for signal integrity and EMI control.
New, Greener Solutions for Etch: Novel Copper Extraction
03/30/2026 | Richard Nichols, GreenSource Engineering“Novel” is a typical marketing phrase that implies new and unique, but often “novel” actually means an established technology being applied to a new field or application. This, in turn, is often driven by newly relevant external motivation. GreenSource has been working on just such a solution: novel copper extraction, offering a better and greener alternative to traditional LLE control systems for cupric chloride etch.