OM
Modular Air-Cooled Power for Scalable Deployment
Maximize every kWh
Start with 200 kW and expand output to 1200 kW as your site grows
A switch matrix dynamically allocates power to deliver more energy across every outlet
Connect up to 24 dispensers configured to any use case, site and vehicle
High power density enables efficient integration and lower operating costs
Lower Cost per kWh Delivered¹
M-series power cabinets improve site economics by targeting the lowest cost per kWh over the life of the site
Invest in line with demand
Output is field-upgradable from 200 to 1200 kW across three cabinets, enabling operators to align initial deployment with CAPEX and install more outlets over time. Independent scaling of cabinets and dispensers allows capacity to grow with utilization and fleet electrification – without site redesign or infrastructure replacement.
Superior power delivery
An air‑cooled power cabinet architecture with 50 kW power‑sharing granularity delivers more kWh per site per day with 20% less installed power2. Up to 1.2 MW is dynamically shared across as many as 24 outlets, with reduced thermal derating to sustain high performance during periods of peak vehicle demand.
More charging capability
with less space
Delivering the highest power density in its category, M-series cabinets concentrate megawatt power into a compact footprint of 625 kW/m². The detached dispenser architecture allows operators to install more outlets within site constraints, freeing up parking bays or depot space to increase charging capacity and revenue potential.
1 The same installed kW delivers more kWh per session, and a smaller installed kW delivers the same kWh per hour. Both outcomes lower the cost per kWh.
2 At same high site occupancy (75-100%) and same installed port number (8), at average vehicle kW demand (75-85 kW), our 800 kW system with 50 kW power sharing granularity (M800) delivers the same kWh per day as a market-typical 1000 kW with 62.5 kW power sharing granularity.
The Power Within
Next-generation power modules are developed entirely in-house for improved efficiency and long-term durability.
97 %
Conversion Efficiency
SiC semiconductors deliver up to 97% conversion efficiency and reduce energy costs by 20-40% compared to traditional silicon-based systems.
50 kW
Power Granularity
Dynamic Power Allocation distributes power where it’s needed, optimizing energy delivery across up to 24 outlets.
100 kW
Continuous Output
Power modules sustain power delivery across the entire voltage range to deliver a reliable and predictable performance.
Choose How You Charge
Service & Software
Our integrated solutions target 99% uptime with end-to-end support