Basic Information
The 16A Ev Smart Charger Electric Car Plugs is made of high-quality materials, with durability and reliability, designed for over 10000 charging cycles. It is suitable for all electric vehicles using Type2 or CCS2 charging inlet socket.
This Electric Car Plugs adopts the IEC62196-1/2 standard and is mainly used for AC charging of electric cars. It is suitable for home AC charging stations or portable EV chargers.
Product: Ev Smart Charger Electric Car Plugs
Rated: 16A 250V AC 3.7KW
Certification: TUV CE




More details about this Ev Smart Charger Electric Car Plugs, please contact our sales team.
This Ev Smart Charger Electric Car Plugs factory delivery test video link:
https://www.youtube.com/watch?v=q47DGoRf45E




What is the Plug in Force of Ev Smart Charger Electric Car Plugs?
Answer: ≤ 75N
Standard for Insertion and Insertion Force of EV plugs:
For AC ev plug in stations, the maximum insertion and extraction force is generally required to be no more than 75N, and the appropriate insertion and extraction force is to ensure the reliability and stability of the connector. If the insertion and extraction force is too small, it is easy to cause loose connections or poor contact, which in turn affects the normal use of the vehicle. If the insertion and extraction force is too high, it will increase the burden.
Factors Affecting Insertion and Insertion Force of Electric Car Plugs
Terminal material: The material of the terminal has a significant impact on the insertion and extraction force. Generally speaking, materials with higher hardness, such as copper alloys and beryllium copper, have greater insertion and extraction forces; Materials with lower hardness, such as aluminum alloy and zinc alloy, have less insertion and extraction force.
Terminal shape: The shape of the terminal can also affect the insertion and extraction force. Generally speaking, the larger the contact area of the terminal, the greater the insertion and extraction force; The more complex the shape of the terminal, the greater the insertion and extraction force.
Terminal surface treatment: The Electric Car Plugs surface treatment method of the terminal can also affect the insertion and extraction force. For example, surface treatment methods such as gold plating and silver plating can reduce insertion and extraction forces and improve the reliability of connectors.
Connector material: The material of the connector can also affect the insertion and extraction force. Generally speaking, materials with higher hardness, such as nylon, polycarbonate, etc., have greater insertion and extraction forces; Materials with lower hardness, such as polyoxymethylene and polyetheretherketone, have less insertion and extraction force.
Connector structure: The structural design of the connector also affects the insertion and extraction force. For example, the guiding structure and locking structure of the connector can affect the magnitude of the insertion and extraction force.
Environmental factors: Environmental factors such as temperature, humidity, etc. can also affect the insertion and extraction force. of the Ev Smart Charger Electric Car Plugs. Generally speaking, the higher the temperature, the smaller the insertion and extraction force; The higher the humidity, the greater the insertion and extraction force.
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