AquaMaster Inverter Combi heat pump
- Energy Efficiency
- R410a Refrigerant
- Heating Water Temperature up to 64 °C
- Output up to 15 kW
- Online Control
MAIN FEATURES
Ground source heat pump (New Gen R290)
Compact design for residential, commercial, and industrial applications
Unique global range of heat pumps with R290 refrigerant
Total cascade output of more than 1,100 kW
Also excellent for industrial cooling and waste heat recovery
Anti-legionella function using compressor only
INDUSTRIAL-GRADE PERFORMANCE
Output up to 70 kW with a twin-compressor solution, or 35 kW with a single-compressor unit. Designed to handle high demands with maximum efficiency.
Flexible installation options. Also available as a water-to-water heat pump. Ideally suited and ready for heat recovery applications in industrial settings.
Scalable output for large buildings. The system supports a total cascade power of more than 1,100 kW.
Connectivity and Control
Product specifications
| Model | Output at B0W35 | Building heat loss Qz | Seasonal space heating energy efficiency at 35 °C low temperature operation | Seasonal space heating energy efficiency at 55 °C medium temperature operation | Order number (depending on heating circuit control) | ||
|---|---|---|---|---|---|---|---|
| kW | kW | SCOP | Class | SCOP | Class | Control PLUS (pCO5) | |
| AquaMaster 45 Inverter P | 5–35 | up to 35 | 4.85 | A+++ | 3.79 | A++ | AQ45IP-311U |
| AquaMaster 90 Inverter P | 10–70 | up to 70 | 4.85 | A+++ | 3.79 | A++ | AQ90IP-311U |
Control PLUS (pCO5): Designed for multi-circuit heating systems. 2 independent auxiliary heating circuits including mixing. 2-zone room temperature, up to 6 heating circuits.
How it works
Ground source heat pumps extract energy from the ground by means of a vertical or horizontal collector. Brine (antifreeze) circulates through the collector and draws heat from the ground. Thanks to the constant temperature of the ground, the heat pump has a stable source of energy throughout the year.
The heat extracted from the ground is then transferred to the building. The system achieves a seasonal efficiency up to 5.5 times higher than that of a conventional electric boiler.
References