Leave Your Message
High-Current Energy Storage Connector ES120S for Battery Modules - China Suppliers and Factory
Hot Products

High-Current Energy Storage Connector ES120S for Battery Modules - China Suppliers and Factory

,

The ES120S Series High-Current Energy Storage Connector is an essential solution for battery module interconnections in large-scale Battery Energy Storage Systems (BESS). Manufactured in China, this connector features a robust 12.0 mm terminal diameter that ensures exceptional current-carrying performance. It supports various wiring configurations, including 330A with 95 mm² cable, 360A with 120 mm², and 420A with 150 mm². This versatility enables system engineers to tailor the product to meet diverse power levels and installation requirements. As a leading supplier, our factory guarantees the quality and reliability of the ES120S Series, making it an ideal choice for energy storage solutions.

,

    Rated Current 330A-95mm² / 360A-120mm² / 420A-150mm²
    Rated Voltage DC 1500V
    Withstand Voltage AC 6800V
    Insulation Resistance ≥500MΩ
    Contact Resistance ≤0.3mΩ
    Temperature Rise ≤45K

    Frequently Asked Questions

    What is the rated current for different cable cross-sections?

    The rated current capacity depends on the cable size: 330A for 95mm² cables, 360A for 120mm² cables, and 420A for 150mm² cables.

    What are the voltage ratings for this component?

    This component is designed with a rated voltage of DC 1500V and can withstand a voltage of up to AC 6800V.

    What is the insulation resistance performance?

    The insulation resistance is rated at ≥500MΩ, ensuring excellent electrical isolation and safety during operation.

    How low is the contact resistance of this connector?

    The contact resistance is extremely low, measured at ≤0.3mΩ, which minimizes power loss and heat generation.

    What is the maximum temperature rise under full load?

    The maximum temperature rise is restricted to ≤45K, ensuring stable thermal performance and preventing overheating.