Tab.2
Heating mode: outside air tempe7 °C, water temperature at the 35 °C. Performances in accordance
with EN 14511-2.
Measurement type
Unit
AWHP 22 TR–2
AWHP 27 TR-2
Heat output
kW
21.70
24.40
Coefficient of Performance (COP)
3.96
3.80
Absorbed electrical power
kWe
5.48
6.25
Nominal water flow rate (ΔT = 5 K)
m
3
/hour
3.8
4.2
Tab.3
Heating mode: outside air tempe2 °C, water temperature at the 35 °C. Performances in accordance
with EN 14511-2.
Measurement type
Unit
AWHP 22 TR–2
AWHP 27 TR-2
Heat output
kW
16.11
14.70
Coefficient of Performance (COP)
3.13
3.13
Absorbed electrical power
kWe
5.14
4.70
Tab.4
Cooling mode: outside air tempe35 °C, water temperature at the 18 °C. Performances in accordance
with EN 14511-2.
Measurement type
Unit
AWHP 22 TR–2
AWHP 27 TR-2
Cooling output
kW
17.65
22.20
Energy efficiency ratio (EER)
3.80
3.80
Absorbed electrical power
kWe
4.65
5.84
Tab.5
Common specifications
Measurement type
Unit
AWHP 22 TR–2
AWHP 27 TR-2
Nominal air flow rate
m
3
/h
8400
8400
Power supply voltage of the outdoor unit
V
400
400
Start-up amperage
A
Maximal amperage
A
19
21
Acoustic power - Inside
(1)
dB(A)
43.4
43.4
Acoustic power - Outside
(2)
dB(A)
77
77
Refrigerant fluid R410A
kg
7.1
7.7
R410A refrigerant
(3)
tCO
2
e
14.821
16.074
Refrigerant connection (Liquid - Gas)
inch
3/8 - 3/4
(4)
or 3/8 - 1
1/2 - 3/4
(4)
or 1/2 - 1
Max. pre-charged length
m
20
20
(1) Noise radiated by the envelope - Test run in accordance with the NF EN 12102 standard, temperature conditions: air 7 °C, water 55 °C
(2) Noise radiated by the envelope - Test run in accordance with the NF EN 12102 standard, temperature conditions: air 7 °C, water 45 °C
for AWHP 4.5 MR only (inner and outer sides).
(3) Quantity of refrigerant calculated in tonnes of CO
2
equivalent
(4) Warning: the refrigerant connection lengths are limited to 20 m with the 3/4"gas pipe
Important
R410A refrigerant fluid is contained in equipment that has been
hermetically sealed.
Important
The Global-Warming Potential (GWP) of R410A gas is 2088.
The values in tonnes of CO
2
equivalent are calculated using the
following formula: quantity (in kg) of refrigerant x GWP / 1000.
3.2.2
Heat pump weight
3 Technical specifications
12
iHPI
7701563 - v02 - 22052018