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11

TECHNICAL DATA AND PERFORMANCES

IP

Heating A7W35 

( source : air in 7°C d.b. 6°C w.b. / plant : water in 30°C out 35°C )

Heating capacity

6,92

8,03

10,2

11,9

15,7

18,6

kW

Power input

1,87

2,28

2,86

3,39

4,27

5,28

kW

COP

3,70

3,52

3,57

3,51

3,68

3,52

-

Water flow rate plant side

1183

1371

1731

2023

2674

3171

l/h

Pressure drops plant side

19

25

36

47

50

46

kPa

Heating A2W35 

( source : air in 2°C d.b. 1°C w.b. / plant : water in 30°C out 35°C )

Heating capacity

5,74

6,66

8,42

9,84

13,0

15,5

kW

Power input

1,84

2,25

2,81

3,32

4,18

5,18

kW

COP

3,12

2,96

3,00

2,96

3,11

2,99

-

Water flow rate plant side

982

1138

1437

1678

2211

2640

l/h

Pressure drops plant side

14

18

27

34

36

34

kPa

Cooling A35W18 

( source : air in 35°C d.b. / plant : water in 23°C out 18°C )

Cooling capacity

7,34

8,50

10,7

12,5

16,6

19,6

kW

Power input

2,39

2,91

3,64

4,31

5,45

6,74

kW

EER

3,07

2,92

2,94

2,90

3,05

2,91

-

Water flow rate plant side

1266

1467

1855

2164

2868

3400

l/h

Pressure drops plant side

22

28

41

52

56

51

kPa

IP

Heating A7W45 

( source : air in 7°C d.b. 6°C w.b. / plant : water in 40°C out 45°C )

Heating capacity

6,78

7,87

9,95

11,7

15,4

18,2

kW

Power input

2,22

2,71

3,38

4,01

5,06

6,25

kW

COP

3,05

2,90

2,94

2,92

3,04

2,91

-

Water flow rate plant side

1154

1339

1690

1981

2612

3090

l/h

Pressure drops plant side

18

24

35

45

48

43

kPa

Heating A2W45 

( source : air in 2°C d.b. 1°C w.b. / plant : water in 40°C out 45°C )

Heating capacity

5,60

6,50

8,21

9,61

12,7

15,1

kW

Power input

2,19

2,68

3,33

3,94

4,97

6,16

kW

COP

2,56

2,43

2,47

2,44

2,56

2,45

-

Water flow rate plant side

954

1106

1397

1632

2151

2561

l/h

Pressure drops plant side

13

17

25

33

35

32

kPa

Cooling A35W7 

( source : air in 35°C d.b. / plant : water in 12°C out 7°C )

Cooling capacity

6,12

7,10

8,95

10,4

13,8

16,4

kW

Power input

2,31

2,81

3,51

4,15

5,24

6,49

kW

EER

2,65

2,53

2,55

2,51

2,63

2,53

-

Water flow rate plant side

1054

1222

1543

1802

2385

2831

l/h

Pressure drops plant side

16

20

30

39

42

38

kPa

NOMINAL performances - low temperature plants

NOMINAL performances - medium temperature plants

Data declared according to 

EN 14511

. The values are referred to units without options or accessories.

Frame

1

2

3

Model

7.1

8.1

10.1

12.1

15.1

18.1

U.M.

Power supply

230 - 1 - 50

230 - 1 - 50

230 - 1 - 50

400 - 3N - 50

230 - 1 - 50

400 - 3N - 50

400 - 3N - 50

400 - 3N - 50

V-ph-Hz

Frame

1

2

3

Model

7.1

8.1

10.1

12.1

15.1

18.1

U.M.

Power supply

230 - 1 - 50

230 - 1 - 50

230 - 1 - 50

400 - 3N - 50

230 - 1 - 50

400 - 3N - 50

400 - 3N - 50

400 - 3N - 50

V-ph-Hz

Summary of Contents for HXA SERIES

Page 1: ...HXA AIR WATER HEAT PUMPS FOR OUTDOOR INSTALLATION TECHNICAL MANUAL R410A ...

Page 2: ...2 ...

Page 3: ...TROL SySTEM 7 OPTIONS 8 ACCESSORIES 9 TECHNICAL DATA AND PERFORMANCES 10 TECHNICAL DATA 10 NOMINAL PERFORMANCES LOW TEMPERATURE PLANTS 11 NOMINAL PERFORMANCES MEDIUM TEMPERATURE PLANTS 11 HEATING PERFORMANCES 12 COOLING PERFORMANCES 13 PLANT SIDE HyDRAULIC PERFORMANCES 14 OPERATING LIMITS 16 ELECTRICAL DATA 17 NOISE LEVELS 17 WEIGHTS 18 OVERALL DIMENSIONS 18 MINIMUM OPERATING AREA 18 ...

Page 4: ...4 ...

Page 5: ...rnal programmer clock allows to define different daily switching programs for heating cooling and domestic hot water production The refrigerant circuit contained in a compartment protected from the air flow to simplify the maintenance operations is equipped with rotary or scroll compressor according to the model mounted on damper supports brazed plate heat exchanger thermostatic expansion valve re...

Page 6: ...lizer allows the unit to adjust itself to the dif ferent operating conditions keeping steady the set superhea ting The refrigerant circuit of each unit contains moreover solid core hermetic filter dryer 5 to restrain impurity and moistu re residuals that could be present in the circuit high and low pressure switches in order to assure the compressor to ope rate inside the permitted limits 4 way re...

Page 7: ...d circuit pump and 3 way mixing valve management of a heating direct circuit only pump management of a storage tank for heating and or cooling management of electrical heaters for heating and dome stic hot water 3 steps logic solar panels integration room humidity control for cooling with radiant systems internal programmer clock for heating cooling and dome stic hot water digital input for electr...

Page 8: ...ent The controller flexibility and the big number of options available allow to get for each model a lot of diffe rent configurations that integrate inside the heat pump many components of the plant and allow to realize compact and tested installations In order to select the right configuration it is neces sary to define the type of plant to which the heat pump will be connected both for what conc...

Page 9: ...less transmitter Connected to the unit controller allows to communicate with wireless remote control and wireless outdoor temperature sensor Wireless repeater Extends wireless operating range Wireless adaptor for out door temperature sensor Allows to transform the wired outdoor temperature sensor standard for all the units in a wireless sensor Condensate sensor In cooling mode it allows the minimu...

Page 10: ...il finned coil Quantity 1 1 1 1 1 1 n Frontal surface 0 60 0 60 0 77 0 77 0 98 0 98 m2 Fans Type axial axial axial axial axial axial Quantity 1 1 1 1 2 2 n Diameter 450 450 500 500 500 500 mm Maximum rotational speed 900 900 900 900 900 900 rpm Toatal installed power 0 15 0 15 0 21 0 21 0 42 0 42 kW Plant side hydraulic circuit Expansion vessel volume 10 10 10 10 10 10 l Plant pump standard option...

Page 11: ...kW Power input 2 22 2 71 3 38 4 01 5 06 6 25 kW COP 3 05 2 90 2 94 2 92 3 04 2 91 Water flow rate plant side 1154 1339 1690 1981 2612 3090 l h Pressure drops plant side 18 24 35 45 48 43 kPa Heating A2W45 source air in 2 C d b 1 C w b plant water in 40 C out 45 C Heating capacity 5 60 6 50 8 21 9 61 12 7 15 1 kW Power input 2 19 2 68 3 33 3 94 4 97 6 16 kW COP 2 56 2 43 2 47 2 44 2 56 2 45 Water f...

Page 12: ...in order to obtain the real performances in the selected opera ting conditions The reference nominal condition is A7W35 source air in 7 C d b 6 C w b plant water in 30 C out 35 C HEATING performances Outlet temperature plant side A 55 C B 45 C C 35 C D 25 C Heating capacity Inlet air temperature w b C Power input Inlet air temperature w b C 0 4 0 6 0 8 1 0 1 2 1 4 1 6 1 8 2 0 15 10 5 0 5 10 15 20 ...

Page 13: ... air temperature d b C 0 4 0 6 0 8 1 0 1 2 1 4 1 6 1 8 2 0 15 20 25 30 35 40 45 50 EER Inlet air temperature d b C The graphs allow to get the corrective factors to be applied to the nominal performances in order to obtain the real performances in the selected opera ting conditions The reference nominal condition is A35W7 source air in 35 C d b plant water in 12 C out 7 C Outlet temperature plant ...

Page 14: ...1 8 1 Pressure drops unit without options 0 10 20 30 40 50 60 0 500 1000 1500 2000 2500 3000 3500 4000 Flow rate l h Pressure drops kPa Pressure drops to be added unit with option Integrative electrical heaters 7 1 Plant side hydraulic performances The graphs are referred to units operating with water at the temperature of 10 C density 1000 kg m3 ...

Page 15: ...side flow rate management Standard pump 0 20 40 60 80 100 120 140 160 180 0 500 1000 1500 2000 2500 3000 3500 4000 Flow rate l h Available static head kPa Available static head unit with option Plant side flow rate management High head pump 10 1 12 1 18 1 15 1 8 1 7 1 18 1 15 1 12 1 10 1 8 1 7 1 The graphs are referred to units operating with water at the temperature of 10 C density 1000 kg m3 ...

Page 16: ...the correct working of the unit is guaranteed HEATING Inlet air temperature d b C Outlet temperature plant side C Operating limits 5 0 5 10 15 20 25 30 35 40 45 25 20 15 10 5 0 5 10 15 20 25 30 35 40 45 50 COOLING Inlet air temperature d b C Outlet temperature plant side C Temperature difference between unit inlet and outlet Plant side T max Maximum value 11 C T min Minimum value 3 C ...

Page 17: ...230 1 50 230 1 50 230 1 50 230 1 50 V ph Hz F L A Maximum total current input 13 4 17 1 22 0 24 8 A F L I Maximum total power input 2 9 3 7 4 7 5 3 kW M I C Maximum total start current 82 112 141 174 A Maximum total start current with soft starter option 41 43 49 59 A Power supply 400 3N 50 400 3N 50 400 3N 50 400 3N 50 V ph Hz F L A Maximum total current input 8 1 9 0 11 1 13 9 A F L I Maximum to...

Page 18: ...andard pump 7 7 7 7 14 14 kg High head pump 9 9 14 14 15 15 kg Integrative electrical heaters 5 5 5 5 5 5 kg Rispect the free area around the unit as shown in figure in order to guarantee a good accessibility and facilitate maintenance and control operations Minimum operating area Overall dimensions B C A A 400 mm B 600 mm C 200 mm 1 Plant return 2 Plant return with Plant side flow rate management...

Page 19: ...s all the responsabilities regarding inaccuracies contained in this manual if due to printing or typing mistakes The manufacturer reserves the right to apply changes and improvements to the products at any time and without notice ...

Page 20: ...Ferroli spa 37047 San Bonifacio Verona Italy Via Ritonda 78 A tel 39 045 6139411 fax 39 045 6100933 www ferroli it 3QE26662 ...

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