OPERA
Condensing hot water generator
The OPERA range consists of six modular condensing generators with high water content, ideal for newly designed systems and particularly suitable also for the upgrade of existing thermal power plants. The technical specifications of OPERA and in particular the high water content, allow it to be inserted in any type of heating system regardless of the engineering choices that the designer wants to pursue. The generators of the OPERA range can be installed individually or up to three modules in cascade (INAIL certified) for a maximum overall power of 1.346 kW. The efficiency of the OPERA range allows the client to access the economic incentives currently in place for upgrading conditioning systems.
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Technical Data
The range consists of 6 generators, certified B23
mod. 70 Thermal capacity 65.5 kW
Useful thermal capacity (50°C-30°C) 69.9 kW - ErP Class A
mod. 125 Thermal capacity 116.0 kW
Useful thermal power (50°C-30°C) 125.0 kW
Efficiency at Pmax (50°C-30°C) 106.8
mod. 160 Thermal capacity 150.0 kW
Useful thermal power (50°C-30°C) 160.0 kW
Efficiency at Pmax (50°C-30°C) 106.8
mod. 220 Thermal capacity 207.0 kW
Useful thermal power (50°C-30°C) 220.0 kW
Efficiency at Pmax (50°C-30°C) 106.8
mod. W 320 Thermal capacity 299.0 kW
Useful thermal power (50°C-30°C) 320.0 kW
Efficiency at Pmax (50°C-30°C) 106.8
mod. W 450 Thermal capacity 466.4 kW
Useful thermal power (50°C-30°C) 448.6 kW
Efficiency at Pmax (50°C-30°C) 106.8
The large water content of the boiler and its vertical extension ensure the generators of the OPERA series have very low pressure drops even at high flow rates and allow the generator to work with ΔT between delivery and return practically free, up to a maximum of 60°C close to zero flow rate. All that translates into great engineering flexibility, which frees the designer from the limits imposed by the type of generator. It can also be connected directly to the system without interposing separation elements, even in the case of multi-zone systems, usually characterised by significant variations in flow rates and Δt between delivery and return to the boiler.
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Technical Files
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Manuals
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Depliant
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Certifications