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Deeply cultivating the field of electromechanical seismic resistance, showcasing the strength of hardcore technology | NFT empowers the construction of high-end semiconductor projects with professional services
Time:2026-05-19 16:20:51

As the safety barrier of building electromechanical systems, electromechanical seismic supports date back to the 1940s. In 1947, foreign countries first put forward seismic support design requirements for fire sprinkler systems. Later, such standards were gradually extended to water supply and drainage, HVAC, electrical and other full-range electromechanical systems, forming a standardized seismic support system and consolidating the foundation for the safety of building electromechanical facilities worldwide.

In China, the rapid rise and development of the electromechanical seismic industry stems from great emphasis on building safety. After major geological disasters, China accelerated the formulation of relevant industrial standards. The Code for Seismic Design of Building Mechanical and Electrical Engineering (GB50981-2014) was officially issued in 2014 and enforced in 2015. It stipulates that seismic supports must be equipped for electromechanical projects in areas with seismic fortification intensity of 6 degrees and above. Since then, electromechanical seismic supports have turned from optional accessories into legal necessities, driving standardized and large-scale industrial development, with application scenarios expanding from public buildings to industrial workshops, semiconductor factories, data centers and other high-end precision fields.


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As core carriers of high-end precision manufacturing, semiconductor projects impose strict requirements on cleanliness, stability, seismic resistance and low vibration control. The seismic support design for pipelines, cable trays and HVAC systems is directly related to the stable operation of precision equipment and production safety, setting extremely high thresholds for support manufacturers in mechanical design, precise calculation, customized solutions and on-site service capabilities.

Boasting solid experience in electromechanical supporting R&D and engineering technology, Natefu has made in-depth layout in the field of electromechanical seismic supports. Supported by mature technical systems, professional mechanical calculation capacity and refined customized design capability, we have successfully provided complete sets of seismic support solutions and on-site implementation services for many key semiconductor projects. During project implementation, our team conducts accurate load calculation, 3D layout optimization and seismic joint design in accordance with working conditions, pipeline arrangement and equipment seismic parameters of semiconductor clean workshops, balancing seismic safety, space utilization and clean environment adaptability. We provide full-process services including detailed design, technical disclosure, installation guidance and project acceptance, efficiently solving various difficulties such as construction coordination, pipeline avoidance and precision matching.


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Endowed with strong technical strength, thoughtful customized design and efficient full-cycle services, the seismic support systems delivered by Natefu feature stable seismic performance, neat layout and easy installation, which perfectly adapt to harsh working conditions of semiconductor projects. They effectively avoid pipeline displacement and equipment disturbance risks caused by earthquakes and vibrations, ensuring long-term stable operation of projects and winning wide recognition and high praise from clients.

The successful delivery of this semiconductor project fully demonstrates Natefu’s technical advantages in seismic supports. In the future, we will continue to focus on electromechanical seismic technology research and development, polish design capability and engineering service level, empower high-end manufacturing, new energy, industrial workshops and other fields with higher standards and better solutions, and keep safeguarding the safety of building electromechanical systems.



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