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Low dielectric thermal pad for industrial router cooling
1693361157

With the rapid development of smart manufacturing and Industry 4.0 applications, an increasing number of mechanical devices are undergoing digitalization, informationization, and networking. Traditional manufacturing operational models are no longer adequate for the needs of modern industrial development. In order to facilitate the transformation and upgrading of the 5G smart manufacturing industry, the integration of 5G industrial routers with AGV (Automated Guided Vehicle) transport robots undoubtedly stands as a crucial initiative in the current industrial structural adjustment. This not only helps alleviate the pressures stemming from rising labor costs but also enhances output and speed, ultimately achieving the comprehensive 5G intelligence upgrade of the production workshop.

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5G industrial routers and AGV transport robots are connected via Ethernet, providing network connectivity for the AGV robots during their transport operations. The ultra-low latency of the 5G network ensures comprehensive coverage of the factory area, while the AGV transport robots achieve real-time communication with the AGV scheduling and control system through the 5G network. Combined with AI autonomous driving technology, flexible real-time adjustments of transport speed and routes are efficiently realized.


Due to prolonged usage, industrial routers often encounter issues of heat dissipation and stability. It becomes necessary to employ a thermally conductive material to transfer the heat from the chip area to the heat sink, effectively lowering chip temperature rise. In terms of practicality, thermal pads offer ease of use and are conducive to die-cutting, with inherent weak adhesiveness that conveniently facilitates pre-fixation to chips and heat sink surfaces. As 5G router products involve extensive signal and data transmission during operation, ensuring timely transmission becomes crucial. The use of low dielectric thermal pads can reduce latency during the signal transmission process.

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