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Tel:0755-22277778
Mobile:13826586185(Mr.Duan)
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Advanced Institute Technology is specifically designed for high-precision GPS antennas, and the GPS antenna dielectric ceramic silver paste ensures lossless signal transmission with its excellent conductivity and stability. Adopting advanced material formulas and seamlessly integrating with ceramic media to enhance antenna performance and achieve precise positioning. Whether it's car navigation, drones, or smartphones, they can all enjoy faster and more accurate GPS services.
0755-22277778
With the continuous development and popularization of GPS technology, GPS ceramic antennas, as important signal receiving components, are becoming increasingly widely used in fields such as satellite navigation and mobile communication. Therefore, as one of the key materials for antenna manufacturing, the market demand for GPS antenna dielectric ceramic silver paste will continue to grow.
Product Features
High conductivity: Contains high-purity silver powder, ensuring excellent conductivity.
Good adhesion: It has good adhesion performance with ceramic substrates.
High temperature resistance: suitable for high-temperature sintering processes, able to maintain structural stability in high-temperature environments.
Weather resistance: The cured coating has excellent weather resistance and is suitable for long-term outdoor use.
Easy to print: Suitable for screen printing and other printing processes.
instructions
Mixing: Thoroughly mix before use to ensure even distribution of all components in the silver paste.
Dilution: It is generally not recommended to dilute. If dilution is needed, a specialized diluent should be used and diluted according to the recommended ratio. After dilution, it needs to be re stirred evenly.
Printing: Suitable for various GPS ceramic printing processes, printing requires controlling parameters such as screen size, tension, scraping hardness, angle, and speed to obtain ideal conductive lines.
Sintering: The printed silver paste needs to undergo high-temperature sintering treatment to form a stable conductive layer. The sintering temperature and time need to be adjusted according to specific product requirements.
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