Load Management

Components for balancing EV charging demand with available building electrical capacity, energy monitoring, and peak-load limitation.

EV load management systems help prevent overloads by adjusting charging power according to the available electrical capacity of the building. They are used in homes, apartment buildings, offices, commercial parking areas, and fleet charging installations where EV charging must operate safely alongside existing electrical loads.

Product Range

Dynamic Load Controllers

Controllers that adjust EV charging current in real time according to building consumption.

  • Real-time load balancing
  • Main supply protection
  • Single or multiple charger control

Energy Monitoring Modules

Monitoring devices for measuring electrical consumption and providing data to the charging system.

  • Consumption measurement
  • Single-phase and three-phase use
  • Data for load control

Current Transformers

CT clamps and sensors for measuring current on main supply lines or charging circuits.

  • Main supply measurement
  • Non-invasive current sensing
  • Load monitoring support

Peak-Load Limitation

Devices and control modules for limiting charging power during high building demand.

  • Demand control
  • Priority load protection
  • Reduced overload risk

Multi-Charger Balancing

Systems for distributing available power between several EV chargers in shared installations.

  • Apartment parking support
  • Fleet charging allocation
  • Scalable charging design

Communication Accessories

Communication modules, gateways, cables, and accessories for charger control and monitoring.

  • Gateway modules
  • Control wiring
  • Network integration

Technical Selection Guide

Application Residential wallboxes, apartment buildings, office parking, commercial charging points, fleet charging, technical rooms, and installations with limited available electrical capacity.
Typical Products Dynamic load controllers, energy monitoring modules, current transformers, peak-load limitation modules, multi-charger balancing systems, gateways, control cables, and communication accessories.
Installation Type Main supply monitoring, EV charger communication, distribution board integration, CT clamp installation, networked charger control, and multi-charger power allocation.
Technical Considerations Available building capacity, charging power, supply type, number of chargers, main fuse rating, metering method, communication protocol, cable routing, and future expansion.