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In the protection of high-precision electronic chips and sensitive electronic components, temperature change impact, mechanical vibration, and erosion by moisture and dirt are core pain points. Conventional potting materials either have high hardness that easily causes stress damage to chips, or poor weather resistance that makes them difficult to adapt to extreme environments, resulting in greatly reduced protection effects. A chip-specific silicone rubber, with its soft cushioning properties, self-healing ability, and an ultra-wide temperature resistance range of -60℃ to 200℃, has become the "soft armor protector" for chips and precision electronic components, building a comprehensive protection barrier even in extreme environments.
Its core protection advantage lies in the soft properties and self-healing ability specially designed for precision electronics. After curing, it forms a colorless and translucent gel with a hardness of only 3-8A, which is as soft as soft rubber. After potting, it can closely fit every detail of chips and electronic components, not only avoiding hard stress damage to precision circuits but also effectively reducing the tension caused by mechanical impact and thermal vibration, just like putting a soft protective armor on the chip. The unique self-healing performance is even more icing on the cake—if the colloid is slightly damaged, it can recover by itself, continuously maintaining the protection effect, and completely solving the problem of protection failure after the traditional material is damaged.
The ultra-wide temperature resistance range allows it to adapt to various extreme operating environments. From the ultra-low temperature of -60℃ to the high temperature of 200℃, its mechanical and electrical properties remain stable without brittleness, softening or deformation. It can provide stable protection whether it is electronic equipment in the harsh cold environment in the north or industrial precision instruments operating at high temperatures. At the same time, it can effectively resist the erosion of moisture, dirt and various atmospheric components, with a water absorption rate of less than 1% after long-term immersion, completely isolating the damage of moisture and impurities to the chip, and avoiding problems such as short circuits and oxidation.
As a platinum-catalyzed solvent-free two-component system, it does not produce any by-products during the curing process and will not contaminate chips and electronic components, perfectly meeting the strict requirements of high-precision electronic potting. From the potting protection of various electronic chips to the filling and sealing of industrial precision sensors and sensitive electronic components, this silicone can be accurately adapted. With the strong strength of soft protection and self-healing, it ensures that precision electronics can operate stably even in extreme environments.