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Heating Capacity: Up to 6,300 ft²
Up to 95% efficiency with oxygen-sensor combustion control
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TITAN Lambda Wood Gasification Boiler
The sensor monitors residual oxygen in the exhaust and automatically regulates primary and secondary air for efficient combustion.
The gasification process converts firewood into combustible wood gas, supporting cleaner burning and efficiency up to 95%.
A ceramic heater uses a small amount of pellets to ignite the wood automatically for easier starts and greater operating autonomy.
The loading chamber accepts firewood up to 23.6 inches long, making it easier to load substantial fuel for hydronic heating.
The controller can manage pumps, valves, and temperature sensors while coordinating the boiler's combustion controls.
A touch screen display, turbulator cleaning mechanism, and accessible ash removal simplify daily use and routine maintenance.
Choose between the two offered heating capacities for residential and light commercial hydronic applications.
Lambda-controlled gasification helps extract more usable heat from each wood load while reducing fuel consumption and emissions.
High-temperature hydronic output supports radiator, radiant floor, fan coil, and buffer tank heating systems.
Servo motors adjust primary and secondary combustion air automatically based on live lambda sensor readings.
Specifications for the TITAN Lambda models currently offered by MBTEK.
| Heating capacity | 110,000 BTU / 175,000 BTU |
|---|---|
| Efficiency rating | Up to 95% |
| Energy efficiency class | A+ |
| Maximum water temperature | 194°F |
| Maximum operating pressure | 43.5 PSI |
| Flue gas tube external diameter | 5.9 in |
For complete installation, operation, maintenance, and safety information, refer to the user manual in the Documents tab.
Download the current TITAN Lambda product manual.
Installation, operation, maintenance, safety, controller, and troubleshooting guidance for the TITAN Lambda wood gasification boiler.
The TITAN Lambda Wood Gasification Boiler is a powerful solid fuel boiler designed for high-performance hydronic heating in residential and light commercial applications. With advanced lambda sensor control, wood gasification combustion, automatic ignition technology, and up to 95% efficiency, the TITAN Lambda delivers strong heating performance while helping reduce wood consumption and emissions.
TITAN Lambda FAQ
Answers about TITAN Lambda's lambda-controlled combustion, efficiency, and hydronic heating capabilities.
TITAN Lambda is an indoor wood gasification boiler that uses an oxygen sensor (lambda probe) to automatically regulate primary and secondary combustion air for stable, efficient burns. Flue gas temperature runs from about 95-100°C at minimum output up to 150-165°C at maximum output, and the boiler supports a maximum water temperature of 194°F/90°C for hydronic distribution to radiators, radiant floors, fan coils, and buffer tanks.
TITAN Lambda is rated up to 95% efficiency with an A+ energy efficiency class, the highest efficiency rating in MBTEK's wood boiler line. Real-world performance depends on wood quality and moisture content, chimney draft, cleaning, and how well the lambda-controlled combustion is maintained.
Per MBTEK's TITAN Lambda specifications, the lower combustion chamber operates in the range of 1,000°C to 1,200°C during secondary gasification, where wood gases are burned at high temperature for cleaner, more complete combustion. This is separate from the flue gas temperature reaching the chimney, which runs cooler at 95-165°C depending on output.
TITAN Lambda and UNI are both wood gasification boilers, but TITAN Lambda adds automatic ceramic ignition and oxygen-sensor lambda control for up to 95% efficiency, compared with UNI's smart controller and 86%+ efficiency. TITAN Lambda is sold as a single model with 110,000 and 175,000 BTU variants, while UNI spans a wider range of sizes from 65,000 up to 3,400,000 BTU across separate models. Choose TITAN Lambda for the most automated, highest-efficiency option, or UNI for a broader range of heating capacities.
Yes. TITAN Lambda can support domestic hot water through an indirect tank or approved hydronic design, alongside space heating. Domestic hot water demand should be sized alongside the space-heating load from the start, since it affects buffer tank sizing and peak output needs.