12 kW. Aquarea HT Bi-bloc F Generation 1 Phase / 3 Phase. Heating Only • R407C
KIT-WHF12F6E5 (WH-SHF12F6E5 + WH-UH12FE5)
Aquarea, an innovative new low-energy system based on Air to Water heat pump technology
Aquarea warms your home effectively and efficiently, even with extreme outdoor temperatures. Aquarea can also cool space in summer and bring hot water all year round.
Aquarea HT can produce a flow temperature of 65°C making it the ideal high efficiency replacement for oil/gas boilers connected to high temperature radiators.
The Bi‑Bloc system: The system, separate indoor and outdoor units, connects to the heating and/or hot water system.
- High energy Class A++ (average climate at 35°C water outlet)
- Maximum hydraulic module output temperature: 65°C
- Works at temperatures as low as -20°C
- Domestic hot water with external tank
- Optional Smartphone control
- Efficient control of room temperature based on the outdoor temperature, indoor temperature using the Aquarea Manage
A heat pump turns heat energy outside into warmth inside
Air to water heat pump
Heating, cooling and domestic hot water systems
for a green future.
Specifications
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Aquarea HT Bi-bloc F Generation 1 Phase / 3 Phase. Heating Only • R407C | SINGLE PHASE (Power to indoor) | ||
---|---|---|---|
12 kW | |||
Kit | KIT-WHF12F6E5 | ||
Heating capacity (A +7°C, W 35°C) | kW | 12,00 | |
COP (A +7°C, W 35°C) | 4,46 | ||
Heating capacity (A +7°C, W 55°C) | kW | 12,00 | |
COP (A +7°C, W 55°C) | 2,41 | ||
Heating capacity (A +2°C, W 35°C) | kW | 12,00 | |
COP (A +2°C, W 35°C) | 3,26 | ||
Heating capacity (A +2°C, W 55°C) | kW | 10,30 | |
COP (A +2°C, W 55°C) | 2,01 | ||
Heating capacity (A -7°C, W 35°C) | kW | 12,00 | |
COP (A -7°C, W 35°C) | 2,52 | ||
Heating capacity (A -7°C, W 55°C) | kW | 9,60 | |
COP (A -7°C, W 55°C) | 1,77 | ||
Heating average climate. Seasonal energy efficiency (W 35°C / W 55°C) | ηs % | 150 / 125 | |
Heating average climate. Seasonal energy efficiency (W 35°C / W 55°C) | SCOP | 3,83 / 3,20 | |
Heating average climate. Energy class (W 35°C / W 55°C) (1) | A+++ to D | A++ / A++ | |
Heating warm climate. Seasonal energy efficiency (W 35°C / W 55°C) | ηs % | 188 / 156 | |
Heating warm climate. Seasonal energy efficiency (W 35°C / W 55°C) | SCOP | 4,78 / 3,98 | |
Heating warm climate. Energy class (W 35°C / W 55°C) (1) | A+++ to D | A+++ / A+++ | |
Heating cold climate. Seasonal energy efficiency (W 35°C / W 55°C) | ηs % | 134 / 113 | |
Heating cold climate. Seasonal energy efficiency (W 35°C / W 55°C) | SCOP | 3,43 / 2,90 | |
Heating cold climate. Energy class (W 35°C / W 55°C) (1) | A+++ to D | A+ / A+ | |
Indoor unit | WH-SHF12F6E5 | ||
Indoor sound pressure (Heat) | dB(A) | 33 | |
Indoor sound pressure (Cool) | dB(A) | 33 | |
Indoor dimension (Height) | mm | 892 | |
Indoor dimension (Width) | mm | 502 | |
Indoor dimension (Depth) | mm | 353 | |
Indoor net weight | kg | 47 | |
Water pipe connector | Inch | R 1¼ | |
A class pump (Number of speeds) | 7 | ||
A class pump (Input power Min) | W | 40 | |
A class pump (Input power Max) | W | 106 | |
Heating water flow (∆T=5 K. 35°C) | L/min | 34,40 | |
Capacity of integrated electric heater | kW | 6,00 | |
Indoor recommended fuse | A | 30 / 30 | |
Recommended cable size, supply 1 | mm² | 3 x 4,0 or 6,0 | |
Recommended cable size, supply 2 | mm² | 3 x 4,0 | |
Outdoor unit | WH-UH12FE5 | ||
Outdoor sound power part load (Heat) (3) | dB(A) | — | |
Outdoor sound power full load (Heat) | dB(A) | 67 | |
Outdoor dimension (Height) | mm | 1340 | |
Outdoor dimension (Width) | mm | 900 | |
Outdoor dimension (Depth) | mm | 320 | |
Outdoor net weight | kg | 104 | |
Refrigerant (R407C) / CO2 Eq. | kg / T | 2,90 / 5,145 | |
Pipe diameter (Liquid) | Inch (mm) | 3/8 (9,52) | |
Pipe diameter (Gas) | Inch (mm) | 5/8 (15,88) | |
Pipe length range | m | 3 ~ 30 | |
Elevation difference (in/out) | m | 20 | |
Pipe length for additional gas | m | 10 | |
Additional gas amount | g/m | 70 | |
Operation range (Outdoor ambient) | °C | -20 ~ +35 | |
Water outlet (Heat) | °C | 25 ~ 65 |
(1) Sound power in accordance to 8112013,81312013 and EN12102-1:2017 at +7°C.
EER and COP calculation is based in accordance to EN14511.