EV Protection Devices

Protective devices for EV charging circuits, including overload protection, residual current protection, surge protection, and safe electrical isolation.

EV protection devices are used to protect charging circuits, equipment, users, and electrical installations. They help manage overloads, short circuits, residual currents, surge events, and safe disconnection for residential, commercial, and technical EV charging infrastructure.

Product Range

MCB Protection

Miniature circuit breakers for overload and short-circuit protection of EV charging circuits.

  • Dedicated EV circuits
  • Single-phase and three-phase use
  • DIN rail installation

RCD Protection

Residual current devices for personal safety and earth fault protection in charging installations.

  • Residual current protection
  • Type A / Type B selection
  • Earth fault safety

RCBO Protection

Combined overload, short-circuit, and residual current protection for compact EV circuit design.

  • Combined protection
  • Space-saving installation
  • Dedicated charging circuits

Surge Protection Devices

SPDs for protecting EV chargers and upstream electrical systems against transient overvoltages.

  • Type 2 surge protection
  • Charger electronics protection
  • Distribution board integration

Isolation Switches

Switch disconnectors for safe isolation, maintenance, and emergency disconnection of EV charging circuits.

  • Local isolation
  • Maintenance safety
  • Manual disconnection

Protection Accessories

Busbars, labels, blanks, enclosures, terminals, and accessories for complete EV protection assemblies.

  • DIN rail accessories
  • Panel labels
  • Connection accessories

Technical Selection Guide

Application Residential EV chargers, wallbox circuits, apartment parking, commercial charging points, technical rooms, fleet charging preparation, and dedicated EV distribution boards.
Typical Products MCBs, RCDs, RCBOs, surge protection devices, switch disconnectors, busbars, terminals, labels, blanks, and protection accessories.
Installation Type DIN rail mounting inside EV distribution boards, charger subpanels, technical enclosures, wallbox supply boards, and main electrical distribution systems.
Technical Considerations Charging power, supply type, short-circuit rating, residual current type, surge protection requirement, cable cross-section, selectivity, available board space, and maintenance access.