
2-4 mo.
Standard delivery and deployment window for onsite modular installations.
An agile, modular onsite power solution custom-built for AI data centers, IDC expansions, and high-density compute campuses. By deploying containerized SOFC modules, you can completely bypass protracted gas turbine lead times and utility grid connection queues.
Request a Feasibility Review
Power Planning Metrics
Evaluate the core metrics driving your project timeline, site selection, and baseload efficiency. Comprehensive performance curves, boundary conditions, and electrical integration details will be provided during our formal engineering review.

Net electrical efficiency engineered for high-load, continuous baseload operation.

Standard delivery and deployment window for onsite modular installations.

Ultra-low noise, zero local NOx, allowing seamless, near-load placement.

Highly scalable parallel modules supporting everything from single MW blocks to 100+ MW multi-phase campus expansions.
Compare Power Paths
See how modular SOFC stacks up against traditional gas turbines and long-term utility expansions across timeline, footprint, emissions, and phased scalability.
12 to 24 Months: Covers extended procurement, heavy transport, complex heavy lifting, onsite installation, and multi-stage commissioning.
Restricted Siting: High noise, intense vibration, and heavy exhaust footprint typically force equipment far away from primary server loads.
Rigid Scaling: Tailored for massive, single-phase setups; lacks the granular flexibility needed for step-by-step data hall or rack-level scaling.
2 to 4 Months: Standardized factory assembly allows rapid site delivery, stripping months off traditional development schedules.
Flexible Proximity: Minimal noise, zero local NOx, and the total absence of high-speed rotating parts allow modules to be placed directly adjacent to server halls.
Granular Scalability: Scalable modular design seamlessly matches your real-time server rack rollouts—expand from individual MW blocks to 100+ MW campuses.
If critical capacity bottlenecks are stalling your data center deployment, it’s time to evaluate containerized SOFCs as a rapid, plug-and-play alternative to traditional power grids and gas turbines.
How it works
Incoming fuel pressure, composition, sulfur purification, and automated safety protocols are precisely managed before entering the stack system.
Within the solid ceramic stacks, a highly efficient electrochemical reaction directly generates DC power, eliminating the mechanical wear and combustion cycles of reciprocating engines.
Advanced power electronics, integrated switchgear, and micro-grid controls deliver high-quality utility-grade AC power, while high-temperature exhaust is captured for localized combined heat and power (CHP) utilization.


01 / Range
Rated output and physical envelope for unit and system-level configurations.
65 kW+ unit / 500 kW+ system
1200 mm W x 1800 mm D x 2100 mm H
12500 mm W x 1800 mm D x 2100 mm H
MW scale
02 / Output
Grid-ready AC output and high-efficiency power conversion for continuous-load sites.
380 V AC, 50/60 Hz
60%+
85%+
03 / Fuel
Fuel input, pressure range, and grid operation mode for project planning.
Natural gas
1-4 bar
Grid-connected mode
04 / Site
Environmental tolerance, acoustic level, enclosure rating, and service-life parameters.
-30 to 45 deg C, 0-95% air humidity, altitude up to 2000 m
10 years
Less than 70 dB(A) @ 1 m
IP34, suitable for outdoor placement
Not specified in source table
Provide your target capacity, specific application, available fuel infrastructure, and operational timelines. Our senior engineering team will conduct a preliminary compatibility review and follow up with an initial technical scope for your project.
LETON SOFC systems are specifically engineered for continuous, 24/7 baseload power generation, serving as a primary energy source rather than just short-term emergency backup. The precise operational profile can be optimized based on your site’s specific electrical and micro-grid architecture.
Unlike massive, centralized gas turbines, modular SOFC systems offer drastically shorter lead times, exceptionally low noise signatures, zero local NOx emissions, and granular scalability, making them the ideal choice for modern urban or space-constrained data centers.
Yes. Deploying onsite SOFCs allows developers to completely decouple their data center “Go-Live” schedule from slow utility grid expansions. Overall project feasibility is subject to local natural gas/hydrogen infrastructure, electrical tie-in approvals, and load profiling.
The 2-4 month window represents our standard factory-to-site delivery and installation schedule for pre-engineered modules. Final project timelines may vary depending on total requested capacity, regional logistics, local civil engineering prep, and utility interconnection boundaries.
To expedite your review, please have your baseline data ready: required MW capacity, target commercial operation date (COD), site coordinates, fuel/gas pipeline specifications, current utility grid bottleneck status, and typical load profiles.
