A global AI-glasses manufacturer approached C.C.P. with a critical technical challenge in their charging case connector. The application required high electrolysis resistance and superior anti-corrosion performance, yet existing market alternatives failed electrolysis testing in under one minute. The customer set a clear target: electrolysis resistance exceeding 60 minutes, supported by enhanced long-term corrosion robustness.
C.C.P.’s engineering and materials teams conducted a comprehensive evaluation of structural design, coating characteristics, and failure mechanisms. Through this process, we identified a breakthrough direction and implemented APT advanced plating technology, which effectively strengthened anti-electrolytic corrosion capability while reducing plating stress for improved stability.
Following rigorous verification and qualification procedures, the enhanced connector achieved:
By delivering a solution that met and surpassed the customer’s specifications, C.C.P. successfully resolved a key reliability bottleneck in the charging system. This achievement not only earned the customer’s confidence but also resulted in the confirmation of production orders.
This case demonstrates C.C.P.’s commitment to engineering precision, material innovation, and high-reliability interconnect solutions for next-generation intelligent devices.