FASMEI cleanliness analysis system is now being used at Shengyi Technology, safeguarding the high-end manufacturing of PCB copper clad laminates.
Publication time:2025-12-01
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In the field of PCB copper clad laminate manufacturing, cleanliness directly impacts product insulation performance, conductivity stability, and service life, making it a core defense line in quality control for the high-end electronic components industry. As a leading global enterprise in the PCB copper clad laminate industry, Shengyi Technology has been deeply rooted in the industry for many years, consistently controlling the quality of its entire production process with rigorous standards. Recently, Shengyi Technology officially purchased the FASMEI multi-station cleanliness analysis system. This system, competing against well-known German brands, won out due to its comprehensive advantages and will be fully applied to the precise cleanliness control of PCB copper clad laminate production, solidifying the quality foundation for high-end electronic manufacturing.


The FASMEI cleanliness analysis system selected by Shengyi Technology boasts the core advantages of full-scenario adaptability and high-performance detection, precisely matching the cleanliness detection needs of PCB copper clad laminates. The system not only supports the core filter membrane analysis function, enabling precise capture and quantification of tiny particles on the detection filter membrane; it also has strong compatibility, capable of adapting to particle scanning detection of various other sample types. Without the need for additional dedicated equipment, it can cover the detection scenarios of Shengyi Technology's multi-category products, significantly improving the flexibility and versatility of the detection process.


In direct competition with German brands, the core performance advantages of the FASMEI cleanliness analysis system are particularly prominent. The system is equipped with advanced single-scan technology, significantly improving analysis speed compared to traditional detection equipment, perfectly matching the detection pace of Shengyi Technology's large-scale production; at the same time, with its high-precision particle recognition algorithm, it can achieve precise differentiation and quantification of tiny particles, with detection accuracy comparable to international high-end equipment. Even more competitively, the system comes with a complete database, enabling real-time storage, traceability, and analysis of detection data; and supports seamless integration with the MES system, combined with the barcode scanner's QR code recognition function, to achieve rapid input of sample information and full-link digital management of the detection process, helping Shengyi Technology improve the intelligence level of quality control.


As a leading enterprise in the PCB copper clad laminate industry, Shengyi Technology has always adhered to the principle of prioritizing both performance and reliability in its selection of testing equipment. This time, the choice of the FASMEI system stems not only from its ability to compete with international brands in core performance but also from its localized service advantages and cost-effectiveness. A professional technical team will provide customized installation and commissioning, operation training, and post-implementation maintenance services to ensure the system is quickly deployed and put into production. This collaboration represents a significant breakthrough for FASMEI's cleanliness testing equipment in the high-end electronics manufacturing sector, demonstrating the comprehensive improvement of FASMEI's testing equipment in terms of technological innovation and intelligence. In the future, FASMEI will continue to focus on the pain points of cleanliness control in the electronics manufacturing industry, iteratively upgrading its products and services to provide more leading enterprises with efficient, accurate, and intelligent cleanliness solutions, contributing to the high-quality development of the electronic information industry.

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