High Voltage Hybrid Connectors & Customized Solutions
High voltage hybrid connectors are composite connectors integrated with high-voltage power terminals, low-voltage signal terminals, grounding terminals and shielding structures, specially designed for high-voltage electrical scenarios in the medical, security and semiconductor fields. As equipment in these fields upgrades, standardized connectors can no longer meet complex working conditions and stringent requirements, making professional and customized high voltage hybrid solutions an industrial necessity.
Our customized solutions are tailored to customers' actual scenarios in the three fields, with systematic design around electrical performance, structural layout, safety protection, environmental adaptability and assembly process. We solve core industry pain points such as high-voltage transmission safety, signal isolation, limited space, high-current heating and vibration resistance, optimize circuit layout, realize integrated power and signal transmission, reduce costs and improve assembly efficiency.
Electrical performance customization is the core, which can accurately match rated voltage, current and other key indicators, with flexible configuration for different scenarios. We ensure low heating and loss under high-current transmission through optimized structural and material selection, and strictly implement physical isolation and electromagnetic shielding to avoid signal interference and ensure stable and accurate transmission.
Safety protection and environmental adaptability are key design considerations. The solutions can achieve IP67, IP68 and above waterproof and dustproof grades, with safety structures such as anti-electric shock, anti-misplug and anti-arc, meeting the stringent environmental requirements of medical instrument rooms, outdoor security sites and semiconductor clean rooms. Special reinforced design is available for high/low temperature resistance, salt spray resistance, vibration and impact resistance to ensure long-term stable operation.