|
EWAH710TZSLC2 |
EWAH770TZSLC2 |
EWAH880TZSLC2 |
EWAH940TZSLC2 |
EWAH990TZSLC2 |
EWAHH10TZSLC2 |
EWAHC11TZSLC2 |
EWAHC12TZSLC2 |
EWAHC13TZSLC2 |
EWAHC14TZSLC2 |
EWAHC15TZSLC2 |
EWAHC16TZSLC2 |
Sound pressure level
|
Cooling
|
Nom.
|
dBA
|
77
|
Compressor
|
Type
|
|
Inverter driven single screw compressor
|
|
Quantity
|
|
2
|
Weight
|
Operation weight
|
kg
|
7,313
|
|
Unit
|
kg
|
7,033
|
Air heat exchanger
|
Type
|
|
Microchannel
|
EER
|
3.088
|
3.104
|
3.087
|
3.102
|
3.107
|
3.11
|
3.126
|
3.109
|
3.111
|
3.077
|
2.975
|
2.826
|
Refrigerant
|
GWP
|
|
7
|
|
Type
|
|
R-1234(ze)
|
|
Circuits
|
Quantity
|
|
2
|
|
Charge
|
kg
|
120
|
Cooling capacity
|
Nom.
|
kW
|
712.3
|
Water heat exchanger
|
Water volume
|
l
|
280
|
|
Type
|
|
Shell and tube
|
Power input
|
Cooling
|
Nom.
|
kW
|
230.7
|
Sound power level
|
Cooling
|
Nom.
|
dBA
|
98
|
Dimensions
|
Unit
|
Width
|
mm
|
2,280
|
|
|
Depth
|
mm
|
6,909
|
|
|
Height
|
mm
|
2,540
|
Capacity control
|
Minimum capacity
|
%
|
12.5
|
|
Method
|
|
Inverter controlled
|
Fan
|
Air flow rate
|
Nom.
|
l/s
|
71,438
|
|
Speed
|
rpm
|
900
|
Compressor
|
Starting method
|
|
VFD driven
|
Power supply
|
Phase
|
|
3~
|
|
Frequency
|
Hz
|
50
|
|
Voltage
|
V
|
400
|
Notes
|
(1) - Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C. Fouling factor = 0
|
(1) - Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C. Fouling factor = 0
|
(1) - Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C. Fouling factor = 0
|
(1) - Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C. Fouling factor = 0
|
(1) - Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C. Fouling factor = 0
|
(1) - Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C. Fouling factor = 0
|
(1) - Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C. Fouling factor = 0
|
(1) - Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C. Fouling factor = 0
|
(1) - Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C. Fouling factor = 0
|
(1) - Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C. Fouling factor = 0
|
(1) - Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C. Fouling factor = 0
|
(1) - Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C. Fouling factor = 0
|
|
(2) - Voltage unbalance between phases must be within ± 3%.
|
(2) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(2) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(2) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(2) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(2) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(2) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(2) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(2) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(2) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(2) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(2) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
|
(3) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(3) - Based on minimum allowed voltage à Max. current for wire sizing = Max. Running current x 1,1
|
(3) - Based on minimum allowed voltage à Max. current for wire sizing = Max. Running current x 1,1
|
(3) - Based on minimum allowed voltage à Max. current for wire sizing = Max. Running current x 1,1
|
(3) - Based on minimum allowed voltage à Max. current for wire sizing = Max. Running current x 1,1
|
(3) - Based on minimum allowed voltage à Max. current for wire sizing = Max. Running current x 1,1
|
(3) - Based on minimum allowed voltage à Max. current for wire sizing = Max. Running current x 1,1
|
(3) - Based on minimum allowed voltage à Max. current for wire sizing = Max. Running current x 1,1
|
(3) - Based on minimum allowed voltage à Max. current for wire sizing = Max. Running current x 1,1
|
(3) - Based on minimum allowed voltage à Max. current for wire sizing = Max. Running current x 1,1
|
(3) - Based on minimum allowed voltage à Max. current for wire sizing = Max. Running current x 1,1
|
(3) - Based on minimum allowed voltage à Max. current for wire sizing = Max. Running current x 1,1
|
|
(4) - Based on minimum allowed voltage à Max. current for wire sizing = Max. Running current x 1,1
|
(4) - In case of inverter driven compressor, the starting current is zero
|
(4) - In case of inverter driven compressor, the starting current is zero
|
(4) - In case of inverter driven compressor, the starting current is zero
|
(4) - In case of inverter driven compressor, the starting current is zero
|
(4) - In case of inverter driven compressor, the starting current is zero
|
(4) - In case of inverter driven compressor, the starting current is zero
|
(4) - In case of inverter driven compressor, the starting current is zero
|
(4) - In case of inverter driven compressor, the starting current is zero
|
(4) - In case of inverter driven compressor, the starting current is zero
|
(4) - In case of inverter driven compressor, the starting current is zero
|
(4) - In case of inverter driven compressor, the starting current is zero
|
|
(5) - In case of inverter driven compressor, the starting current is zero
|
(5) - It may change in case of unit with options or customized unit. Refer to dedicated unit’s wiring diagram.
|
(5) - It may change in case of unit with options or customized unit. Refer to dedicated unit’s wiring diagram.
|
(5) - It may change in case of unit with options or customized unit. Refer to dedicated unit’s wiring diagram.
|
(5) - It may change in case of unit with options or customized unit. Refer to dedicated unit’s wiring diagram.
|
(5) - It may change in case of unit with options or customized unit. Refer to dedicated unit’s wiring diagram.
|
(5) - It may change in case of unit with options or customized unit. Refer to dedicated unit’s wiring diagram.
|
(5) - It may change in case of unit with options or customized unit. Refer to dedicated unit’s wiring diagram.
|
(5) - It may change in case of unit with options or customized unit. Refer to dedicated unit’s wiring diagram.
|
(5) - It may change in case of unit with options or customized unit. Refer to dedicated unit’s wiring diagram.
|
(5) - It may change in case of unit with options or customized unit. Refer to dedicated unit’s wiring diagram.
|
(5) - It may change in case of unit with options or customized unit. Refer to dedicated unit’s wiring diagram.
|
|
(6) - It may change in case of unit with options or customized unit. Refer to dedicated unit’s wiring diagram.
|
|
(7) - The data are referred to the unit without additional options.
|
|
(8) - All data are subject to change without notice. For updated information on project base refer to unit specific wiring diagram and unit’s nameplate data.
|
Cooling capacity
|
Nom.
|
kW
|
|
765.6
|
879.4
|
942.8
|
990.5
|
1056
|
1117
|
1231
|
1302
|
1432
|
1519
|
1603
|
Capacity control
|
Method
|
|
|
Inverter controlled
|
Inverter controlled
|
Inverter controlled
|
Inverter controlled
|
Inverter controlled
|
Inverter controlled
|
Inverter controlled
|
Inverter controlled
|
Inverter controlled
|
Inverter controlled
|
Inverter controlled
|
|
Minimum capacity
|
%
|
|
12.5
|
12.5
|
12.5
|
12.5
|
12.5
|
12.5
|
12.5
|
12.5
|
12.5
|
12.5
|
12.5
|
Power input
|
Cooling
|
Nom.
|
kW
|
|
246.6
|
284.9
|
303.9
|
318.9
|
339.4
|
357.4
|
396
|
418.4
|
465.3
|
510.4
|
567.4
|
IPLV
|
|
4.85
|
4.8
|
4.74
|
4.78
|
4.71
|
4.73
|
4.63
|
5.17
|
5.08
|
5.07
|
4.98
|
SEER
|
|
4.652
|
4.629
|
4.618
|
4.646
|
4.61
|
4.631
|
4.557
|
4.922
|
4.883
|
4.844
|
4.798
|
Dimensions
|
Unit
|
Depth
|
mm
|
|
6909
|
7809
|
8709
|
9602
|
10510
|
11402
|
12302
|
11402
|
12302
|
13202
|
14102
|
|
|
Height
|
mm
|
|
2540
|
2540
|
2540
|
2540
|
2540
|
2540
|
2540
|
2540
|
2540
|
2540
|
2540
|
|
|
Width
|
mm
|
|
2280
|
2280
|
2280
|
2280
|
2280
|
2280
|
2280
|
2280
|
2280
|
2280
|
2280
|
Weight
|
Operation weight
|
kg
|
|
7313
|
8152
|
8585
|
9483
|
9871
|
11116
|
11518
|
11727
|
12145
|
12575
|
13048
|
|
Unit
|
kg
|
|
7033
|
7660
|
8093
|
8900
|
9288
|
10073
|
10475
|
10716
|
11134
|
11564
|
12037
|
Casing
|
Colour
|
|
|
Ivory white
|
Ivory white
|
Ivory white
|
Ivory white
|
Ivory white
|
Ivory white
|
Ivory white
|
Ivory white
|
Ivory white
|
Ivory white
|
Ivory white
|
|
Material
|
|
|
Galvanized and painted steel sheet
|
Galvanized and painted steel sheet
|
Galvanized and painted steel sheet
|
Galvanized and painted steel sheet
|
Galvanized and painted steel sheet
|
Galvanized and painted steel sheet
|
Galvanized and painted steel sheet
|
Galvanized and painted steel sheet
|
Galvanized and painted steel sheet
|
Galvanized and painted steel sheet
|
Galvanized and painted steel sheet
|
Fan
|
Quantity
|
|
|
14
|
16
|
18
|
20
|
22
|
24
|
26
|
24
|
26
|
28
|
30
|
|
Type
|
|
|
Direct propeller, on/off fans
|
Direct propeller, on/off fans
|
Direct propeller, on/off fans
|
Direct propeller, on/off fans
|
Direct propeller, on/off fans
|
Direct propeller, on/off fans
|
Direct propeller, on/off fans
|
Direct propeller, on/off fans
|
Direct propeller, on/off fans
|
Direct propeller, on/off fans
|
Direct propeller, on/off fans
|
Compressor
|
Quantity
|
|
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
|
Type
|
|
|
Inverter driven single screw compressor
|
Inverter driven single screw compressor
|
Inverter driven single screw compressor
|
Inverter driven single screw compressor
|
Inverter driven single screw compressor
|
Inverter driven single screw compressor
|
Inverter driven single screw compressor
|
Inverter driven single screw compressor
|
Inverter driven single screw compressor
|
Inverter driven single screw compressor
|
Inverter driven single screw compressor
|
|
Starting method
|
|
|
VFD driven
|
VFD driven
|
VFD driven
|
VFD driven
|
VFD driven
|
VFD driven
|
VFD driven
|
VFD driven
|
VFD driven
|
VFD driven
|
VFD driven
|
Sound power level
|
Cooling
|
Nom.
|
dBA
|
|
98
|
99
|
100
|
101
|
101
|
102
|
103
|
102
|
102
|
103
|
104
|
Sound pressure level
|
Cooling
|
Nom.
|
dBA
|
|
77
|
77
|
78
|
78
|
79
|
79
|
80
|
79
|
79
|
80
|
80
|
Refrigerant
|
GWP
|
|
|
7
|
7
|
7
|
7
|
7
|
7
|
7
|
7
|
7
|
7
|
7
|
|
Charge
|
kg
|
|
120
|
130
|
141
|
150
|
175
|
200
|
220
|
200
|
220
|
250
|
270
|
|
Circuits
|
Quantity
|
|
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
Power supply
|
Frequency
|
Hz
|
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
|
Voltage range
|
Min.
|
%
|
|
-10
|
-10
|
-10
|
-10
|
-10
|
-10
|
-10
|
-10
|
-10
|
-10
|
-10
|
|
|
Max.
|
%
|
|
10
|
10
|
10
|
10
|
10
|
10
|
10
|
10
|
10
|
10
|
10
|
Unit
|
Starting current
|
Max
|
A
|
|
0 (5)
|
0 (5)
|
0 (5)
|
0 (5)
|
0 (5)
|
0 (5)
|
0 (5)
|
0 (5)
|
0 (5)
|
0 (5)
|
0 (5)
|
|
Running current
|
Cooling
|
Nom.
|
A
|
|
433.3 (1)
|
493.5 (1)
|
521.5 (1)
|
549.9 (1)
|
579.6 (1)
|
612.7 (1)
|
668.8 (1)
|
718.8 (1)
|
780.9 (1)
|
848.9 (1)
|
934.8 (1)
|
|
|
Max
|
A
|
|
640.0 (3)
|
717.0 (3)
|
763.0 (3)
|
811.0 (3)
|
869.0 (3)
|
924.0 (3)
|
1032.0 (3)
|
1029.0 (3)
|
1119.0 (3)
|
1198.0 (3)
|
1226.0 (3)
|
|
Max unit current for wires sizing
|
A
|
|
704.0 (4)
|
789.0 (4)
|
839.0 (4)
|
892.0 (4)
|
956.0 (4)
|
1016.0 (4)
|
1135.0 (4)
|
1132.0 (4)
|
1231.0 (4)
|
1318.0 (4)
|
1349.0 (4)
|
Piping connections
|
Evaporator water inlet/outlet (OD)
|
|
|
|
219.1mm
|
219.1mm
|
219.1mm
|
219.1mm
|
273mm
|
273mm
|
273mm
|
273mm
|
273mm
|
273mm
|