Description
TECHNICAL FEATURES
|
i-32V5 |
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10T |
12 | 12T |
14 |
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Cooling |
Cooling capacity (1) min/nom/max |
kW |
4,66 / 7,53 /8,28* |
4,55 / 8,51 /9,36* |
4,55 / 8,51 / 9,36* |
6,87 / 11,5 /12,1* |
|
Power consumption (1) | kW | 2,39 | 2,79 | 2,79 | 3,53 | ||
E.E.R. (1) | W/W | 3,15 | 3,05 | 3,05 | 3,25 | ||
Cooling capacity (2) min/nom/max |
kW |
,
22 / 9,50 /10,4* |
6,41 / 11,6 /12,8* |
6,41 / 11,6 / 12,8* |
9,17 /14,0/14,7* |
||
Power consumption (2) | kW | 2,15 | 2,79 | 2,79 | 2,59 | ||
E.E.R. (2) | W/W | 4,41 | 4,16 | 4,16 | 5,40 | ||
SEER (5) | W/W | 4,34 | 4,43 | 4,43 | 4,77 | ||
Water flow rate (1) | L/s | 0,36 | 0,41 | 0,41 | 0,55 | ||
Use-side exchanger pressure drop (1) | kPa | 6,9 | 8.8 | 8.8 | 12,9 | ||
Heating |
Thermal power (3) min/nom/max | kW | 4,47/6,13/7,48* | 4,24/7,71/8,99* | 5,18/9,76/11,2* | 7,54 / 14,1/15,2* | |
Power consumption (3) | kW | 2,28 | 2,73 | 2,73 | 2,91 | ||
C.O.P. (3) | W/W | 4,42 | 4,32 | 4,32 | 4,85 | ||
Thermal power (4) ) min/nom/max | kW | 5,18 / 9,76 / 11,2* | 5,13 / 11,5 /13,2* | 5,13 / 11,5 / 13,2* | 7,23 / 13,6 /14,6* | ||
Power consumption (4) | kW | 2,80 | 3,33 | 3,33 | 3,55 | ||
C.O.P. (4) | W/W | 3,48 | 3,44 | 3,44 | 3,82 | ||
SCOP (6) | W/W | 4,43 | 4,47 | 4,47 | 4,58 | ||
Water flow rate (4) | L/s | 0,47 | 0,55 | 0,55 | 0,65 | ||
Use-side exchanger pressure drop (4) | kPa | 9,7 | 13,1 | 13,1 | 13 | ||
Energy Efficiency
water 35°C / 55°C |
Class | A+++/A++ | A+++/A++ | A+++/A++ | A+++/A++ | ||
Compressor |
Type | Twin Rotary Dc Inverter | |||||
Number of compressors | 1 | 1 | 1 | 1 | |||
Coolant oil(Type) | ESTER OIL VG74 | ||||||
Coolant oil (Quantity) | L | 1 | 1 | 1 | 1,4 | ||
Cooling circuits | 1 | 1 | 1 | 1 | |||
Coolant |
Type | R32 | R32 | R32 | R32 | ||
Refrigerant Qty (7) | kg | 2,5 | 2,5 | 2,5 | 3,2 | ||
Refrigerant qty in tons of CO2 equivalent (7) | ton | 1,7 | 1,7 | 1,7 | 2,2 | ||
Design pressure (high/low) mod. heat pump | bar | 42,8/1,3 | 42,8/1,3 | 42,8/1,3 | 42,8/1,3 | ||
Design pressure (high/low) mod. chiller | bar | 42,8/3,5 | 42,8/3,5 | 42,8/3,5 | 42,8/3,5 | ||
Outdoor zone fans | Type | Brushless DC Motor | |||||
Number | 1 | 1 | 1 | 2 | |||
Internal exchanger | Internal exchanger type | A plates | |||||
No. of internal exchangers | 1 | 1 | 1 | 1 | |||
Water content | L | 1,2 | 1,2 | 1,2 | 1,7 | ||
Hydraulic circuit |
Useful prevalence (1) | kPa | 68,9 | 63,4 | 63,4 | 75 | |
Water content of hydronic circuit | L | 1,8 | 1,8 | 1,8 | 3,0 | ||
Maximum water-side pressure | bar | 6 | 6 | 6 | 6 | ||
Hydraulic connections | inch | 1 “M | 1 “M | 1 “M | 1 “M | ||
Minimum water volume (8) | L | 50 | 60 | 60 | 60 | ||
Maximum circulator power | kW | 0,075 | 0,075 | 0,075 | 0,14 | ||
Max circulator absorbed current | A | 0,38 | 0,38 | 0,38 | 1,10 | ||
Energy Efficiency Index (EEI) circulator | ≤ 0,21 | ≤ 0,21 | ≤ 0,21 | ≤ 0,23 | |||
Sound emissions | Sound Power Lw (9) | dB(A) | 64 | 65 | 65 | 68 | |
Sound Power Lw (10) | dB(A) | 62 | 62 | 62 | 66 | ||
Electrical data |
Power supply | 400V/3P+N+T/50Hz | 230V/1/50Hz | 400V/3P+N+T/50Hz | 230V/1/50Hz | ||
Maximum power input | kW | 4,6 | 5,1 | 5,1 | 6,6 | ||
Maximum absorbed current | A | 6,6 | 22,1 | 7,3 | 28,6 | ||
Maximum power input with antifreeze kit | kW | 4,8 | 5,2 | 5,2 | 6,7 | ||
Maximum absorbed current with antifreeze kit | A | 7,0 | 22,7 | 7,5 | 29,2 |
Performance referred to the following conditions in accordance with 14511:2018:
(1) Cooling: outdoor air temperature 35°C; water temperature in/out. 12/7°C.
(2) Cooling: outdoor air temperature 35°C; inlet/outlet water temperature 23/18°C.
(3) Heating: outdoor air temperature 7°C b.s. 6°C b.u.; water temp.ing./exc. 30/35°C
(4) Heating:outdoor air temperature 7°C b.s. 6°C b.u.; water temp.ing./exc. 40/45°C.
(5) Cooling: inlet/outlet water temperature 7/12°C.
(6) Heating: average climatic conditions; Tbiv=-7°C; temp.water ing./usc. 30/35°C.
(7) Indicative data and subject to change. Always refer to the technical label on the unit for the correct figure.
(8) Calculated for a decrease in system water temperature of 20°C with a defrost cycle lasting 6 minutes.
(9) Sound power: heating mode condition (3) according to EN 12102-1:2013; value determined on the basis of measurements made in accordance
With the UNI EN ISO 9614-1 standard.
(10) Sound power: heating mode at part load according to annex A of EN 12102:2017; value determined based on measurements made
in accordance with UNI EN ISO 9614-1, in compliance with the requirements of Eurovent and Heat Pump Keymark certification.
(*) by activating the maximum Hz function.
N.B. Performance data shown are approximate and may be subject to change. In addition, the yields declared in (1), (2), (3) and (4)
are intended to refer to instantaneous power according to UNI EN 14511. The figure stated in (5) and (6) is determined according to UNI
EN 14825.