The complete range – the TRIGON® XXL range comprises four models that all offer powerful performance, topped by an industry first 2 MW version. With extremely flexible configurations, clever design and a wide range of models available, the boiler is perfect for a variety of commercial applications. Another key element of the TRIGON® XXL is its easy compatibility to a commercial building management systems or smart integration with multiple energy sources.

TRIGON® XXL

TRIGON® XXL
SE

Low condensing:
• 650 – 1.900 kW
• 10 models
• 103,9 % efficiency
• NOx (EN15502) = 23 mg/kWh

Applications:
• High power/temperature
• Cost driven

3 sections:
• 1 burner
• 2 HEX-sections

TRIGON® XXL

TRIGON® XXL
ECO

Medium condensing:
• 650 – 1.600 kW
• 9 models
• 104,1 % efficiency
• NOx (EN15502) = 22 mg/kWh

Applications:
• Medium efficiency
• Reduced energy consumption

3 sections:
• 1 burner
• 2 HEX-sections

TRIGON® XXL EVO

TRIGON® XXL
EVO

High condensing:
• 700 – 1.700 kW
• 9 models
• 109,7 % efficiency
• NOx (EN15502) = 22 mg/kWh

Applications:
• High power/high efficiency
• Low energy consumption

4 sections:
• 1 burner
• 3 HEX-sections

TRIGON® XXL EVO (2 MW)

TRIGON® XXL
EVO (2 MW)

High condensing:
• 2.000 kW
• 1 model
• 109,7 % efficiency
• NOx (EN15502) = 23 mg/kWh

Applications:
• High power/high efficiency
• Low energy consumption

5 sections:
• 1 burner
• 4 HEX-sections

Comprehensive control features

Designed for simple system integration, the TRIGON® XXL can operate alongside multiple energy sources, while an integrated master-slave cascade function makes commissioning of up to 16 boilers easy.

BMS connections

The TRIGON® XXL is compatible with common building managements system protocols, utilising the ELCO Commercial Gateway for a hassle-free connection.

Wider applications

With an 8 bar max. water pressure, the boiler is compatible with higher buildings without the need for hydraulic separation. Plus, an up to 30K flow/return temperature differential allows easier integration with district heating systems while maintaining optimum efficiency.