Model: CD125-C010-1000


The vehicular millimeter-wave radar, installed at the front of the vehicle, must withstand vibrations from driving, exposure to wind, sand, rain, and snow, while also strictly controlling electromagnetic interference. Shell deformation and insufficient wave absorption performance can directly lead to inaccurate radar ranging and angle measurement, resulting in false alarms and missed detections. Many suppliers can only provide single components, requiring customers to integrate from multiple suppliers, which incurs high coordination costs.

The CD125-C010-1000 connector assembly is a high-performance black plastic connector made of Mitsubishi 5010G30X4 material. Designed specifically for harsh environments, this product boasts high-grade sealing performance of IP6K7/IP6K9K, ensuring stable operation within a wide temperature range from -40℃ to 125℃. It exhibits excellent electrical performance, supporting a load of 2A/100V, with low contact resistance and strong insulation. The surface of the product is treated with fine sandblasting, giving it an elegant appearance that meets automotive-grade environmental standards. It is suitable for automotive or industrial connection scenarios that demand high levels of sealing, weather resistance, and electrical stability.

Model: CD125-C010-1000
The CD125-C010-1000 connector assembly is a high-performance black plastic connector made of Mitsubishi 5010G30X4 material. Designed specifically for harsh environments, this product boasts high-grade sealing performance of IP6K7/IP6K9K, ensuring stable operation within a wide temperature range from -40℃ to 125℃. It exhibits excellent electrical performance, supporting a load of 2A/100V, with low contact resistance and strong insulation. The surface of the product is treated with fine sandblasting, giving it an elegant appearance that meets automotive-grade environmental standards. It is suitable for automotive or industrial connection scenarios that demand high levels of sealing, weather resistance, and electrical stability.
With the popularization of intelligent driving, the EPS steering electronic control signals have become increasingly complex. Vehicle vibration during driving, alternating high and low temperatures, and contamination from engine compartment water and gasoline can easily cause poor contact and signal disconnection of connectors, posing significant safety hazards to driving. Traditional universal connectors struggle to meet the stringent safety requirements for in-vehicle applications.