From Battery to EV Charging
One architecture. One partner. One system.
Turn energy storage into EV charging.
Use your existing system — or deploy a complete solution including battery, control, and charging.
Bundle our 40kW DC-coupled EV charger with your existing infrastructure, or deploy a fully integrated system including battery, control, and charging.
Two Starting Points. One Solution.
Every project begins in a different place. We support both.
Already Have a BESS?
Integrate EV charging directly into your existing system.
No major redesign
Direct DC integration
Fast deployment
Starting From Scratch?
We design and deliver a complete DC-coupled energy and EV charging system.
Battery Energy Storage System (BESS)
40kW DC-coupled EV charger
System control & integration
Optimized architecture from day one
How It Works
Our charger connects directly to the DC side of the energy system.
Energy flows directly from battery or solar to EV
No unnecessary AC conversions
The system operates as a unified DC architecture
The BESS becomes:
Energy buffer
Peak shaving tool
Primary energy source (if required)
Result: higher efficiency, simpler design, and better use of stored energy.
One Architecture — Not a Patchwork
Traditional EV charging systems are built around AC infrastructure.
We take a different approach.
Our systems are designed as DC-first architectures, where:
Storage
Generation (PV)
EV charging
…all operate on the same energy layer.
This reduces complexity and unlocks performance that AC-based systems cannot match.
What We Deliver
Core System
40kW DC-coupled EV charger
OCPP-enabled communication
Monitoring, control, and diagnostics
Integration Capability
Direct connection to existing BESS
Support for non-standard system architectures
Engineering-driven implementation
Complete System Delivery
Battery Energy Storage System (BESS)
System sizing and design
Pre-integrated DC architecture
Why DC-Coupled Systems Win
Higher Efficiency
Energy flows directly from storage to vehicle — fewer conversions, fewer losses.
Lower Infrastructure Cost
Reduced need for complex AC-side equipment.
Faster Deployment
Simpler integration, fewer system dependencies.
Energy Flexibility
Operate from battery, solar, grid — or any combination.
Grid Independence
Deploy in locations where grid capacity is limited or unavailable.
DC vs Traditional AC Approach
| Feature | DC-Coupled System | Traditional AC System |
|---|---|---|
| Energy conversions | Minimal | Multiple |
| System efficiency | Higher | Lower |
| BESS integration | Native | Indirect |
| System complexity | Lower | Higher |
| Grid dependency | Optional | Required |
Where It Works
Commercial & Industrial Sites
Use existing storage to enable EV charging and reduce peak costs.
Solar + Storage Projects
Charge vehicles directly from solar via battery storage.
Fleet Depots
Control energy usage and charging schedules with precision.
Remote / Weak Grid Locations
Deploy charging without relying on grid upgrades.
Built for Real Systems
Not every project is standard.
Our approach is designed for flexibility:
Works with a wide range of DC system configurations
Supports custom integration scenarios
Full system visibility via PC dashboard
OCPP-ready for backend connectivity
If your system requires adaptation, we design around it.
From Energy Asset to Charging Infrastructure
Energy storage is already a major investment. EV charging turns it into:
A revenue-generating asset
A tool for energy optimization
A flexible part of your infrastructure
Let’s Design Your System
Whether you’re integrating into an existing BESS or building a complete solution, we help you define the right architecture.
We deliver EV charging systems built around energy storage — not just chargers connected to it.
Let’s power the future of EV charging—off-grid, efficient, and intelligent. Start with a battery. End with a charging network.