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Surge protection circuit resistor paste is optimized for transient voltage suppression, which can quickly respond to harsh conditions such as power fluctuations or lightning strikes, absorb and disperse excess energy, and prevent damage to sensitive electronic components. This slurry has fast reaction speed and high energy absorption capacity, and is a key material for building efficient and reliable surge protection systems. It is widely used in fields such as communication, industrial control, and household appliances.Advanced Institute of TechnologyPrecious metal paste, can be customized according to needs; Welcome to consult.
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Surge protection circuit resistor paste is a special resistor paste designed specifically to enhance the circuit's ability to withstand surges. It adopts advanced material formula and preparation technology, aiming to improve the impact voltage resistance and stability of resistors, thereby effectively protecting other components in the circuit from damage caused by surge currents.
Product Features
Excellent surge resistance performance: This slurry has excellent impact voltage resistance, which can quickly absorb and disperse surge energy, preventing it from causing damage to the circuit.
High stability: The specially treated resistor paste can maintain stable resistance values even in harsh electrical environments, ensuring the long-term reliable operation of the circuit.
Good compatibility: Suitable for various circuit layouts and manufacturing processes, it can seamlessly integrate with other electronic components.
Environmental safety: Compliant with international environmental standards, non-toxic and harmless, harmless to human body and the environment.
Production process
Raw material preparation: Weigh the conductive phase, bonding phase, organic carrier, and additives in a certain proportion.
Mixing and stirring: Mix the raw materials and stir thoroughly to ensure uniform dispersion of each component.
Printing: Printing the paste onto a substrate through screen printing or other methods to form the desired pattern.
Drying: Drying the slurry at an appropriate temperature to remove solvents from the organic carrier.
Sintering: Sintering the slurry at high temperature to form a strong bond between the conductive phase and the substrate, and adjust the resistance value.
Workshop Display
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