NACS Mode 2 Portable EV Charger | China Suppliers Factory | 3.5kW/7kW, IP67, Dual-Button Smart Control
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The Sanco NACS Mode 2 portable EV charger is engineered to meet the latest charging requirements for North American electric vehicles.
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Supporting both 3.5kW and 7kW AC output at 250V, it provides efficient Level 2 charging performance for daily use.
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The dual-button smart control panel ensures intuitive operation, allowing users to monitor charging status and switch functions with ease.
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Built with premium insulation and tested to IEC 62196 standards, the charger withstands 2500V AC for one minute and maintains insulation resistance above 500MΩ.
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Its IP67 protection rating safeguards against dust and water ingress, ensuring reliability even in outdoor or harsh weather conditions.
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Gold-plated contact terminals reduce heating risk and guarantee stable conductivity over thousands of charge cycles.
Frequently Asked Questions
What are the charging outputs supported by the Sanco NACS Mode 2 EV charger?
The charger supports both 3.5kW and 7kW AC output at 250V, providing efficient Level 2 charging performance for daily use.
Is this portable EV charger compatible with North American electric vehicles?
Yes, the Sanco NACS Mode 2 portable EV charger is specifically engineered to meet the latest charging requirements for North American electric vehicles.
How does the control panel work?
It features a dual-button smart control panel that ensures intuitive operation, allowing users to monitor charging status and switch functions with ease.
What safety and insulation standards does the charger meet?
Built with premium insulation and tested to IEC 62196 standards, the charger withstands 2500V AC for one minute and maintains insulation resistance above 500MΩ.
Can I use this EV charger outdoors in bad weather?
Yes. Its IP67 protection rating safeguards against dust and water ingress, ensuring reliability even in outdoor or harsh weather conditions.
Why does the charger use gold-plated contact terminals?
The gold-plated contact terminals reduce heating risks and guarantee stable conductivity over thousands of charge cycles.



