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Panasonic 9KW Aquarea T-CAP Bi-bloc Air To Water Heat Pump

5800,00  inc. Vat

€4793.39 Ex. Vat
The best shipping price will be calculated after inquiry


Heating capacity: 9KW
Power Supply: 3 Phase
Operation range (Outdoor ambient): -28℃ ~ +35℃
Model No. KIT-WXC09H3E5 (WH-SXC09H3E5 + WH-UX09HE5)

SKU: KIT-WXC09H3E5 Categories: , ,

Panasonic 9KW Aquarea T-CAP Bi-bloc H Generation 1 Phase / 3 Phase
Aquarea – a new innovative low-energy system based on air-to-water heat pump technology

Aquarea will efficiently and effectively heat your home even at very low outside temperatures. Aquarea can also cool spaces in summer and provide hot water all year round.
Aquarea T-CAP is a range of retrofitted and newly designed products that maintain power even at extremely low outdoor temperatures.
Bi‑Bloc system: a system consisting of indoor and outdoor units, connected to heating and/or hot water systems.
High energy class A++
Constant power even down to -20 °C
Maximum output temperature of the hydraulic module: 60 °C
Works even at -28 °C outdoor temperature
Special software for low-energy houses with a minimum output temperature of 20 °C
Built-in magnetic water filter and flow meter and automatic air release valve
Domestic hot water with external tank
Cloud management and maintenance with CZ-TAW1
Easy to use remote control

Technical Specifications

Aquarea T-CAP Bi-bloc H Generation 1 Phase / 3 Phase. SINGLE PHASE (Power to indoor)
9 kW
Other KIT-WXC09H3E5
Heating capacity (A +7°C, W 35°C) kW 9.00
COP (A +7°C, W 35°C) 4.84
Heating capacity (A +7°C, W 55°C) kW 9.00
COP (A +7°C, W 55°C) 2.94
Heating capacity (A +2°C, W 35°C) kW 9.00
COP (A +2°C, W 35°C) 3.59
Heating capacity (A +2°C, W 55°C) kW 9.00
COP (A +2°C, W 55°C) 2.21
Heating capacity (A -7°C, W 35°C) kW 9.00
COP (A -7°C, W 35°C) 2.85
Heating capacity (A -7°C, W 55°C) kW 9.00
COP (A -7°C, W 55°C) 2.02
Cooling capacity (A 35°C, W 7°C) kW 7.00
EER (A 35°C, W 7°C) 3.17
Cooling capacity (A 35°C, W 18°C) kW 7.00
EER (A 35°C, W 18°C) 5.19
Heating average climate. Seasonal energy efficiency (W 35°C / W 55°C) ηs % 181 / 130
Heating average climate. Seasonal energy efficiency (W 35°C / W 55°C) SCOP 4.60 / 3.33
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 % 235 / 158
Heating warm climate. Seasonal energy efficiency (W 35°C / W 55°C) SCOP 5.95 / 4.03
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 % 160 / 125
Heating cold climate. Seasonal energy efficiency (W 35°C / W 55°C) SCOP 4.08 / 3.20
Heating cold climate. Energy class (W 35°C / W 55°C) (1) A+++ to D A++ / A++
Indoor unit WH-SXC09H3E5
Indoor sound pressure (Heat) dB(A) 33
Indoor sound pressure (Cool) dB(A) 33
Indoor dimension (Height) mm 892
Indoor dimension (Width) mm 500
Indoor dimension (Depth) mm 340
Indoor net weight kg 43
Water pipe connector Inch R 1¼
A class pump (Number of speeds) Variable Speed
A class pump (Input power Min) W 32
A class pump (Input power Max) W 102
Heating water flow (∆T=5 K. 35°C) l/min 25.80
Capacity of integrated electric heater kW 3.00
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-UX09HE5
Outdoor sound power part load (Heat) (3) dB(A) 66
Outdoor sound power full load (Heat) dB(A) 68
Outdoor sound power full load (Cool) dB(A) 67
Outdoor dimension (Height) mm 1340
Outdoor dimension (Width) mm 900
Outdoor dimension (Depth) mm 320
Outdoor net weight kg 101
Refrigerant (R410A) / CO2 Eq. kg / T 2.85 / 5.951
Pipe diameter (Liquid) Inches (mm) 3/8 (9.52)
Pipe diameter (Gas) Inches (mm) 5/8 (15.88)
Pipe length range m 3 ~ 30
Elevation difference (in/out) m 30
Pipe length for additional gas m 10
Additional gas amount g/m 50
Operating range (Outdoor ambient) °C -28 ~ +35
Water outlet (Heat) °C 20~60
Water outlet (Cool) °C 5 ~ 20

1) Sound power meets standards 8112013, 81312013 and EN12102-1:2017 at +7 °C.EER and COP indicators are calculated according to standard EN14511.

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