
DC Fast Charger – Compact Type
A compact 30–40kW DC fast charger for small commercial facilities, business sites, and parking areas that want to start offering fast charging without moving directly to a large-scale system.
This page organizes key EV charging equipment by output range, use case, and installation scale. Each product page explains advantages, recommended applications, and specifications in a way that is easy for non-specialists to understand.
Open each product page to review use cases, key specifications, and points to confirm before implementation.

A compact 30–40kW DC fast charger for small commercial facilities, business sites, and parking areas that want to start offering fast charging without moving directly to a large-scale system.

A balanced standard model for sites that need more charging speed than entry-level DC chargers while avoiding the scale of high-output systems.

A high-output model for busy locations where charging turnover and shorter charging time are important.

A high-power model for large-scale charging hubs and high-utilization sites, suitable as core equipment for charging stations or large parking facilities.

A flexible power-distribution system for large charging stations, suitable for reducing queue time and improving equipment utilization across multiple charging points.

A 7kW AC charger for long-stay parking. Compared with DC fast charging, it is easier to plan for daily charging and places less demand on site power capacity.

A higher-capacity AC charging option for daily charging services. It provides more capacity than 7kW AC charging while remaining suited to long-stay parking.
Apartment complexes, business sites, and hotels usually benefit from AC charging when vehicles stay for several hours.
Commercial facilities, public parking, and transport nodes are better suited to DC fast charging when turnover matters.
For multi-bay, high-utilization, or expandable sites, high-output systems and flexible charging systems should be considered.
We can review your site, expected unit count, parking duration, and operation method to propose a suitable configuration.