Usage Characteristics of Aerospace Connectors in Energy Storage Systems
High current and high voltage transmission
Suitable for battery clusters, battery management systems (BMS) and high-voltage power distribution units, with low contact resistance, low heat generation and high transmission efficiency.
Excellent insulation and safety performance
High dielectric strength, sufficient creepage distance and clearance, effectively preventing short circuits, electric arcs and electric shock risks in high-voltage energy storage environments.
High stability and anti-interference
Strong EMC performance and shielding effect, ensuring stable transmission of power and BMS communication signals without interference from inverters and high-power equipment.
Wide temperature adaptability
Operates reliably in a wide temperature range, adapting to temperature changes inside energy storage cabinets and outdoor container energy storage systems.
Vibration and shock resistance
Maintains stable connection under transportation vibration, equipment operation and fan vibration, avoiding poor contact and system downtime.
Flame retardant and high safety
Uses flame‑retardant, low‑smoke and halogen‑free materials that meet industrial safety standards, reducing fire risks in energy storage systems.
Waterproof, dustproof and corrosion resistance
High protection level (IP65 to IP67), resistant to moisture, dust and chemical corrosion, suitable for indoor and outdoor energy storage stations.
Modular and high-density design
Compact structure supports multi‑core and hybrid transmission of power and signals, helping to save space in energy storage cabinets and improve integration.
Anti‑misplug and reliable locking
With foolproof coding and firm locking structure to prevent misconnection and loosening, ensuring safe and stable system operation.
Long service life and maintenance‑free
Stable electrical performance under long‑term charging and discharging cycles, supporting high mating cycles and reducing maintenance costs.