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32A 415V 22KW Type 2 EV Charging Socket
- Rated Current: 16A 32A 63A
- Rated Voltage: 250V AC or 415V AC
- Certificate: CE RHOS
- IP Level: IP44
- Product description: The Electric Car Charging Type 2 Socket has a circular design with copper pins that are silver-plated, ensuring both safe and efficient charging. It is capable of supporting power outputs ranging from
Product introduction
IEC 62196 32A Type 2 Ev Charging Sockets 22KW
The Electric Car Charging Type 2 Socket has a circular design with copper pins that are silver-plated, ensuring both safe and efficient charging. It is capable of supporting power outputs ranging from 3 kW up to 43 kW.
The IEC 62196-2 Mennekes Type 2 EV Charging Connector, commonly known as the Mennekes connector, plays a crucial role in the global EV charging infrastructure. Its flexibility, safety features, and capacity to manage different power levels have made it the go-to choice for many electric vehicle manufacturers and users alike. As the electric vehicle market continues to expand, this connector is likely to further establish itself as the worldwide standard for EV charging.
Introduction of the Type2 Car Charging Socket Conductive Terminals and Process
The terminals of type 2 car charging sockets are made from H62 brass, a highly efficient material ideal for connector terminals. H62 brass is an alloy with excellent electrical conductivity—over 98%—ensuring effective energy transfer during charging while minimizing energy loss. The presence of zinc improves its resistance to corrosion, making it durable enough for long-term use in harsh conditions. These properties maintain the terminal’s integrity, reduce wear from frequent use, and ensure good contact, extending its lifespan.
Silver is known for having the highest conductivity and thermal efficiency among all metals. When applied to the plug and EV socket through silver plating, it creates a conductive and thermally efficient layer on the terminal surface. This helps lower resistance and energy loss during charging and enhances heat dissipation under high current, preventing overheating and ensuring safety. For connectors that handle high currents, poor conductivity can lead to overheating, but silver plating helps avoid this issue by stabilizing the connection.
Additionally, silver plating improves the solderability of the terminals. Silver’s chemical properties promote better adhesion with solder, forming a strong, low-resistance bond. This enhances both the quality and durability of the solder joint, contributing to long-term stability.
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