|
EWAT085B-SLB1 |
EWAT115B-SLB1 |
EWAT135B-SLB1 |
EWAT155B-SLB2 |
EWAT175B-SLB1 |
EWAT195B-SLB2 |
EWAT205B-SLB2 |
EWAT215B-SLB1 |
EWAT240B-SLB2 |
EWAT240B-SLB2-VFDFAN |
EWAT260B-SLB2 |
EWAT260B-SLB2-VFDFAN |
EWAT290B-SLB1 |
EWAT290B-SLB1-VFDFAN |
EWAT310B-SLB2 |
EWAT310B-SLB2-VFDFAN |
EWAT330B-SLB2 |
EWAT330B-SLB2-VFDFAN |
EWAT340B-SLB1 |
EWAT340B-SLB1-VFDFAN |
EWAT350B-SLB2 |
EWAT350B-SLB2-VFDFAN |
EWAT420B-SLB2 |
EWAT420B-SLB2-VFDFAN |
EWAT460B-SLB2 |
EWAT460B-SLB2-VFDFAN |
EWAT510B-SLB2 |
EWAT510B-SLB2-VFDFAN |
EWAT570B-SLB2 |
EWAT570B-SLB2-VFDFAN |
EWAT610B-SLB2 |
EWAT610B-SLB2-VFDFAN |
EWAT670B-SLB2 |
EWAT670B-SLB2-VFDFAN |
EWAT085B-SLA1 (Archived) |
EWAT115B-SLA1 (Archived) |
EWAT135B-SLA1 (Archived) |
EWAT155B-SLA2 (Archived) |
EWAT175B-SLA1 (Archived) |
EWAT195B-SLA2 (Archived) |
EWAT205B-SLA2 (Archived) |
EWAT215B-SLA1 (Archived) |
EWAT240B-SLA2 (Archived) |
EWAT240B-SLA2-VFDFAN (Archived) |
EWAT260B-SLA2 (Archived) |
EWAT260B-SLA2-VFDFAN (Archived) |
EWAT290B-SLA1 (Archived) |
EWAT290B-SLA1-VFDFAN (Archived) |
EWAT310B-SLA2 (Archived) |
EWAT310B-SLA2-VFDFAN (Archived) |
EWAT330B-SLA2 (Archived) |
EWAT330B-SLA2-VFDFAN (Archived) |
EWAT340B-SLA1 (Archived) |
EWAT340B-SLA1-VFDFAN (Archived) |
EWAT350B-SLA2 (Archived) |
EWAT350B-SLA2-VFDFAN (Archived) |
EWAT420B-SLA2 (Archived) |
EWAT420B-SLA2-VFDFAN (Archived) |
EWAT460B-SLA2 (Archived) |
EWAT460B-SLA2-VFDFAN (Archived) |
EWAT510B-SLA2 (Archived) |
EWAT510B-SLA2-VFDFAN (Archived) |
EWAT570B-SLA2 (Archived) |
EWAT570B-SLA2-VFDFAN (Archived) |
EWAT610B-SLA2 (Archived) |
EWAT610B-SLA2-VFDFAN (Archived) |
EWAT670B-SLA2 (Archived) |
EWAT670B-SLA2-VFDFAN (Archived) |
Sound pressure level
|
Cooling
|
Nom.
|
dBA
|
66.3 (1)
|
68.5 (1)
|
69.3 (1)
|
68.4 (1)
|
70.7 (1)
|
69.5 (1)
|
70.1 (1)
|
71.6 (1)
|
71.8 (1)
|
71.8 (1)
|
71.8 (1)
|
71.8 (1)
|
72 (1)
|
72 (1)
|
72.3 (1)
|
72.3 (1)
|
72.4 (1)
|
72.4 (1)
|
73.2 (1)
|
73.2 (1)
|
72.4 (1)
|
72.4 (1)
|
73.3 (1)
|
73.3 (1)
|
73.4 (1)
|
73.4 (1)
|
74 (1)
|
74 (1)
|
74 (1)
|
74 (1)
|
74.1 (1)
|
74.1 (1)
|
74.6 (1)
|
74.6 (1)
|
66.3
|
68.5
|
69.3
|
68.4
|
70.7
|
69.5
|
70.1
|
71.6
|
71.8
|
71.8
|
71.8
|
71.8
|
72
|
72
|
72.3
|
72.3
|
72.4
|
72.4
|
73.2
|
73.2
|
72.4
|
72.4
|
73.3
|
73.3
|
73.4
|
73.4
|
74
|
74
|
74
|
74
|
74.1
|
74.1
|
74.6
|
74.6
|
Operation range
|
Air side
|
Cooling
|
Min.
|
°CDB
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
-10
|
-10
|
-10
|
-10
|
-10
|
-10
|
-10
|
-10
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
-18
|
|
|
|
Max.
|
°CDB
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
|
Water side
|
Cooling
|
Max.
|
°CDB
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
|
|
|
Min.
|
°CDB
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
-13
|
Compressor
|
Type
|
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Scroll compressor
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
Driven vapour compression
|
|
Starting method
|
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
|
|
Direct on line
|
|
|
|
|
|
Direct on line
|
|
Direct on line
|
|
Direct on line
|
|
Direct on line
|
|
Direct on line
|
|
Direct on line
|
|
|
|
Direct on line
|
|
Direct on line
|
|
Quantity
|
|
2
|
2
|
2
|
4
|
2
|
4
|
4
|
2
|
4
|
4
|
4
|
4
|
3
|
3
|
4
|
4
|
4
|
4
|
3
|
3
|
4
|
4
|
4
|
4
|
5
|
5
|
5
|
5
|
6
|
6
|
6
|
6
|
6
|
6
|
2
|
2
|
2
|
4
|
2
|
4
|
4
|
2
|
4
|
4
|
4
|
4
|
3
|
3
|
4
|
4
|
4
|
4
|
3
|
3
|
4
|
4
|
4
|
4
|
5
|
5
|
5
|
5
|
6
|
6
|
6
|
6
|
6
|
6
|
Weight
|
Operation weight
|
kg
|
696
|
783
|
830
|
1,035
|
1,006
|
1,198
|
1,190
|
1,210
|
1,826
|
1,826
|
1,853
|
1,853
|
2,020
|
2,020
|
2,308
|
2,308
|
2,336
|
2,336
|
2,454
|
2,454
|
2,364
|
2,364
|
2,852
|
2,852
|
3,094
|
3,094
|
3,251
|
3,251
|
3,526
|
3,526
|
3,960
|
3,960
|
4,321
|
4,321
|
696
|
783
|
830
|
1,035
|
1,006
|
1,198
|
1,190
|
1,210
|
1,822
|
1,822
|
1,849
|
1,849
|
1,951
|
1,951
|
2,268
|
2,268
|
2,296
|
2,296
|
2,350
|
2,350
|
2,324
|
2,324
|
2,784
|
2,784
|
2,954
|
2,954
|
3,111
|
3,111
|
3,360
|
3,360
|
3,762
|
3,762
|
4,089
|
4,089
|
|
Unit
|
kg
|
691
|
777
|
821
|
1,028
|
994
|
1,187
|
1,179
|
1,194
|
1,815
|
1,815
|
1,842
|
1,842
|
2,004
|
2,004
|
2,289
|
2,289
|
2,317
|
2,317
|
2,434
|
2,434
|
2,345
|
2,345
|
2,824
|
2,824
|
3,066
|
3,066
|
3,223
|
3,223
|
3,484
|
3,484
|
3,918
|
3,918
|
4,279
|
4,279
|
689
|
773
|
820
|
1,026
|
993
|
1,185
|
1,177
|
1,191
|
1,815
|
1,815
|
1,843
|
1,843
|
1,935
|
1,935
|
2,251
|
2,251
|
2,277
|
2,277
|
2,330
|
2,330
|
2,304
|
2,304
|
2,754
|
2,754
|
2,921
|
2,921
|
3,078
|
3,078
|
3,312
|
3,312
|
3,718
|
3,718
|
4,053
|
4,053
|
Air heat exchanger
|
Type
|
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
Microchannel
|
EER
|
2.55
|
2.83
|
2.64
|
2.55
|
2.58
|
2.75
|
2.63
|
2.53
|
2.83
|
2.83
|
2.73
|
2.73
|
2.62
|
2.62
|
2.72
|
2.72
|
2.71
|
2.7
|
2.94
|
2.93
|
2.65
|
2.65
|
2.84
|
2.83
|
2.73
|
2.73
|
2.76
|
2.76
|
2.63
|
2.62
|
2.66
|
2.66
|
2.8
|
2.8
|
2.55
|
2.82
|
2.64
|
2.55
|
2.58
|
2.75
|
2.63
|
2.53
|
2.82
|
2.81
|
2.71
|
2.71
|
2.61
|
2.61
|
2.71
|
2.71
|
2.7
|
2.69
|
2.92
|
2.91
|
2.64
|
2.64
|
2.83
|
2.82
|
2.72
|
2.71
|
2.74
|
2.74
|
2.61
|
2.61
|
2.64
|
2.64
|
2.78
|
2.77
|
ESEER
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
3.96
|
4.03
|
3.86
|
3.83
|
4.09
|
4
|
3.94
|
3.85
|
3.94
|
4
|
3.76
|
3.86
|
3.99
|
4.09
|
4.02
|
4.09
|
3.97
|
4.01
|
4.06
|
4.21
|
3.91
|
3.98
|
4.09
|
4.14
|
4
|
4.13
|
3.97
|
4.06
|
4.03
|
4.03
|
4.01
|
4.08
|
3.98
|
4.11
|
Refrigerant
|
GWP
|
|
|
|
|
|
|
|
|
|
|
675
|
|
675
|
|
675
|
|
675
|
|
675
|
|
675
|
|
675
|
|
675
|
|
675
|
|
675
|
|
675
|
|
675
|
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
675
|
|
Type
|
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
R-32
|
|
Circuits
|
Quantity
|
|
|
|
|
|
|
|
|
|
2
|
2
|
|
2
|
1
|
1
|
2
|
2
|
|
2
|
|
1
|
|
2
|
|
2
|
|
2
|
|
2
|
2
|
2
|
|
2
|
|
2
|
1
|
1
|
1
|
2
|
1
|
2
|
2
|
1
|
2
|
2
|
2
|
2
|
1
|
1
|
2
|
2
|
2
|
2
|
1
|
1
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
2
|
|
Charge
|
kg
|
7.1
|
8.2
|
8.4
|
12.4
|
10.7
|
14
|
13.4
|
12.7
|
19
|
19
|
18
|
19
|
19
|
19
|
25.5
|
25.5
|
26.5
|
25
|
27
|
26
|
24.3
|
24
|
34.3
|
34.5
|
36.1
|
36
|
39.7
|
41
|
42
|
42
|
45.5
|
46.5
|
55.5
|
52.5
|
10
|
11
|
12.5
|
15
|
14
|
18
|
18
|
17
|
36
|
36
|
38
|
38
|
36
|
36
|
42
|
42
|
43
|
43
|
50
|
50
|
44
|
44
|
57
|
57
|
58
|
58
|
60
|
60
|
62
|
62
|
80
|
80
|
90
|
90
|
Cooling capacity
|
Nom.
|
kW
|
81
|
109
|
131
|
158
|
175
|
191
|
211
|
217
|
241
|
241
|
261
|
261
|
283
|
283
|
306
|
306
|
330
|
330
|
344
|
344
|
350
|
350
|
416
|
416
|
468
|
468
|
513
|
513
|
567
|
567
|
612
|
612
|
668
|
668
|
80.92
|
108.73
|
131.2
|
157.55
|
174.49
|
190.91
|
209.86
|
216.55
|
240.44
|
240.44
|
259.39
|
259.39
|
281.85
|
281.85
|
305.6
|
305.6
|
328.59
|
328.59
|
342
|
342
|
348.88
|
348.88
|
414.98
|
414.98
|
465.75
|
465.75
|
511.1
|
511.1
|
564.43
|
564.43
|
609.05
|
609.05
|
664.62
|
664.62
|
Water heat exchanger
|
Water volume
|
l
|
|
|
|
|
|
|
|
|
11
|
11
|
|
11
|
16
|
16
|
19
|
19
|
|
19
|
|
20
|
|
19
|
|
28
|
|
28
|
|
28
|
42
|
42
|
|
42
|
|
42
|
5
|
6
|
9
|
7
|
12
|
11
|
11
|
16
|
11
|
11
|
11
|
11
|
16
|
16
|
19
|
19
|
19
|
19
|
20
|
20
|
19
|
19
|
28
|
28
|
28
|
28
|
28
|
28
|
42
|
42
|
42
|
42
|
42
|
42
|
|
Type
|
|
|
|
|
|
|
|
|
|
Brazed plate
|
Brazed plate
|
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
|
Brazed plate
|
|
Brazed plate
|
|
Brazed plate
|
|
Brazed plate
|
|
Brazed plate
|
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
|
Brazed plate
|
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Brazed plate
|
Power input
|
Cooling
|
Nom.
|
kW
|
|
|
|
|
|
|
|
|
85.2
|
85.4
|
|
95.6
|
108
|
108
|
113
|
112
|
|
122
|
|
117
|
|
132
|
|
146
|
|
171
|
|
186
|
216
|
216
|
|
230
|
|
238
|
31.8
|
38.5
|
49.8
|
61.8
|
67.7
|
69.4
|
79.8
|
85.6
|
85.3
|
85.5
|
95.7
|
95.7
|
108
|
108
|
112
|
112
|
121
|
122
|
117
|
117
|
132
|
132
|
146
|
147
|
171
|
171
|
186
|
186
|
216
|
216
|
230
|
230
|
239
|
239
|
Sound power level
|
Cooling
|
Nom.
|
dBA
|
83.7 (1)
|
86.2 (1)
|
87 (1)
|
86.7 (1)
|
88.8 (1)
|
88.1 (1)
|
88.7 (1)
|
90 (1)
|
90.8 (1)
|
90.8 (1)
|
90.8 (1)
|
90.8 (1)
|
91 (1)
|
91 (1)
|
91.8 (1)
|
91.8 (1)
|
91.9 (1)
|
91.9 (1)
|
92.7 (1)
|
92.7 (1)
|
91.9 (1)
|
91.9 (1)
|
93.3 (1)
|
93.3 (1)
|
93.4 (1)
|
93.4 (1)
|
93.9 (1)
|
93.9 (1)
|
94 (1)
|
94 (1)
|
94.5 (1)
|
94.5 (1)
|
95.3 (1)
|
95.3 (1)
|
83.7
|
86.2
|
87
|
86.7
|
88.8
|
88.1
|
88.7
|
90
|
90.8
|
90.8
|
90.8
|
90.8
|
91
|
91
|
91.8
|
91.8
|
91.9
|
91.9
|
92.7
|
92.7
|
91.9
|
91.9
|
93.3
|
93.3
|
93.4
|
93.4
|
93.9
|
93.9
|
94
|
94
|
94.5
|
94.5
|
95.3
|
95.3
|
Dimensions
|
Unit
|
Width
|
mm
|
1,204
|
1,204
|
1,204
|
1,204
|
1,204
|
1,204
|
1,204
|
1,204
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
1,204
|
1,204
|
1,204
|
1,204
|
1,204
|
1,204
|
1,204
|
1,204
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
2,236
|
|
|
Depth
|
mm
|
2,120
|
2,660
|
2,660
|
3,570
|
3,180
|
4,170
|
4,170
|
3,780
|
2,326
|
2,326
|
2,326
|
2,326
|
2,326
|
2,326
|
3,226
|
3,226
|
3,226
|
3,226
|
3,226
|
3,226
|
3,226
|
3,226
|
4,126
|
4,126
|
4,126
|
4,126
|
4,126
|
4,126
|
4,126
|
4,126
|
5,025
|
5,025
|
5,874
|
5,874
|
2,120
|
2,660
|
2,660
|
3,570
|
3,180
|
4,170
|
4,170
|
3,780
|
2,326
|
2,326
|
2,326
|
2,326
|
2,326
|
2,326
|
3,226
|
3,226
|
3,226
|
3,226
|
3,226
|
3,226
|
3,226
|
3,226
|
4,126
|
4,126
|
4,126
|
4,126
|
4,126
|
4,126
|
4,126
|
4,126
|
5,025
|
5,025
|
5,874
|
5,874
|
|
|
Height
|
mm
|
1,801
|
1,801
|
1,801
|
1,822
|
1,801
|
1,822
|
1,822
|
1,822
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
1,801
|
1,801
|
1,801
|
1,822
|
1,801
|
1,822
|
1,822
|
1,822
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
2,540
|
Capacity control
|
Minimum capacity
|
%
|
50
|
38
|
50
|
25
|
38
|
21
|
19
|
50
|
17
|
17
|
25
|
25
|
24
|
24
|
14
|
14
|
13
|
13
|
33
|
33
|
19
|
19
|
17
|
17
|
15
|
15
|
14
|
14
|
12
|
12
|
11
|
11
|
17
|
17
|
50
|
38
|
50
|
25
|
38
|
21
|
19
|
50
|
17
|
17
|
25
|
25
|
24
|
24
|
14
|
14
|
13
|
13
|
33
|
33
|
19
|
19
|
17
|
17
|
15
|
15
|
14
|
14
|
12
|
12
|
11
|
11
|
17
|
17
|
|
Method
|
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Step
|
Staged
|
Staged
|
Staged
|
Variable
|
Staged
|
Variable
|
Variable
|
Staged
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Variable
|
Fan
|
Air flow rate
|
Nom.
|
l/s
|
|
|
|
|
|
|
|
|
20,306
|
20,306
|
|
20,306
|
20,306
|
20,306
|
25,382
|
25,382
|
|
25,382
|
|
30,459
|
|
25,382
|
|
35,535
|
|
35,535
|
|
40,612
|
40,612
|
40,612
|
|
45,688
|
|
55,841
|
6,022
|
9,036
|
9,036
|
13,354
|
12,023
|
16,710
|
16,710
|
15,057
|
20,306
|
20,306
|
20,306
|
20,306
|
20,306
|
20,306
|
25,382
|
25,382
|
25,382
|
25,382
|
30,459
|
30,459
|
25,382
|
25,382
|
35,535
|
35,535
|
35,535
|
35,535
|
40,612
|
40,612
|
40,612
|
40,612
|
45,688
|
45,688
|
55,841
|
55,841
|
|
Speed
|
rpm
|
|
|
|
|
|
|
|
|
900
|
900
|
|
900
|
900
|
900
|
900
|
900
|
|
900
|
|
900
|
|
900
|
|
900
|
|
900
|
|
900
|
900
|
900
|
|
900
|
|
900
|
1,360
|
1,360
|
1,360
|
1,360
|
1,360
|
1,360
|
1,360
|
1,360
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
900
|
Compressor
|
Starting method
|
|
|
|
|
|
|
|
|
|
Direct on line
|
Direct on line
|
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
|
Direct on line
|
|
Direct on line
|
|
Direct on line
|
|
Direct on line
|
|
Direct on line
|
|
Direct on line
|
Direct on line
|
Direct on line
|
|
Direct on line
|
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Direct on line
|
Power supply
|
Phase
|
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
3~
|
|
Voltage range
|
Max.
|
%
|
10
|
10
|
10
|
10
|
10
|
10
|
10
|
10
|
|
|
10
|
|
|
|
|
|
10
|
|
10
|
|
10
|
|
10
|
|
10
|
|
10
|
|
|
|
10
|
|
10
|
|
|
Min.
|
%
|
-10
|
-10
|
-10
|
-10
|
-10
|
-10
|
-10
|
-10
|
|
|
-10
|
|
|
|
|
|
-10
|
|
-10
|
|
-10
|
|
-10
|
|
-10
|
|
-10
|
|
|
|
-10
|
|
-10
|
|
Frequency
|
Hz
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
|
Voltage
|
V
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
Unit
|
Max unit current for wires sizing
|
A
|
77
|
107
|
104
|
144
|
176
|
204
|
200
|
184
|
|
|
208
|
|
|
|
|
|
291
|
|
280
|
|
287
|
|
364
|
|
445
|
|
454
|
|
|
|
544
|
|
556
|
|
Starting current
|
Max
|
A
|
213
|
313
|
324
|
284
|
462
|
384
|
395
|
498
|
|
|
420
|
|
|
|
|
|
583
|
|
588
|
|
594
|
|
636
|
|
681
|
|
719
|
|
|
|
801
|
|
843
|
|
Running current
|
Cooling
|
Nom.
|
A
|
59
|
69
|
83
|
108
|
113
|
117
|
131
|
143
|
|
|
160
|
|
|
|
|
|
206
|
|
196
|
|
219
|
|
237
|
|
285
|
|
310
|
|
|
|
381
|
|
398
|
|
|
Max
|
A
|
73
|
86
|
96
|
143
|
132
|
156
|
167
|
168
|
|
|
193
|
|
|
|
|
|
254
|
|
258
|
|
265
|
|
307
|
|
351
|
|
389
|
|
|
|
471
|
|
513
|
Notes
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
(1) - All the performances (Cooling capacity, unit power input in cooling and EER) are based on the following conditions: evaporator 12.0/7.0°C; ambient 35.0°C, unit at full load operation, operating fluid: water, fouling factor = 0
|
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - The value refers to the pressure drop in the evaporator only
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
(2) - In accordance with standard EN14825:2013 comfort low temperature, average climate, SEER and µs values applicable Ecodesign regulation: (EU) No 2016/2281
|
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power level (referred to evaporator 12/7°C, ambient 35°C full load operation) are measured in accordance with ISO 9614 and Eurovent 8/1
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
(3) - Sound power (evap. 12/7°C, ambient 35°C full load operation) in accordance with ISO9614 and Eurovent 8/1 for Eurovent certified units. Certification refers only to the overall sound power, sound pressure is calculated from sound power level and used for i
|
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The certification refers only to the overall sound power level.
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(4) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - The sound pressure level is calculated from the sound power level and is for information only and not considered binding
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(5) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - The minimum capacity indicated is referred to unit operating at standard Eurovent condition
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
(6) - All data refers to the standard unit without options.
|
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - Dimensions and weights are for indication only and are not considered binding. Before designing the installation, consult the official drawings available from the factory on request.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
(7) - All data are subject to change without notice. Please refer to the unit nameplate data.
|
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - Fluid: Water
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
(8) - The value refers to the pressure drop in the evaporator only
|
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
(9) - Option FANMOD consist in Continuous Fan Speed Regulation and improves part load operation. Single-V units are standardly equipped with continuous fan control, Multi-V units require opt 99 - VFD fans
|
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Maximum starting current: starting current of biggest compressor + current of the other compressors at maximum load + fans current at maximum load. In case of inverter driven units, no inrush current at start up is experienced.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
(10) - Allowed voltage tolerance ± 10%. Voltage unbalance between phases must be within ± 3%.
|
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - Nominal current in cooling mode is referred to the following conditions: Water Side Heat Exchanger 12/7°C; ambient 35°C; compressors + fans current
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
(11) - In case of inverter driven units, no inrush current at start up is experienced.
|
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
(12) - Nominal current in cooling mode: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C. Compressor + fans current.
|
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
(13) - Maximum running current is based on max compressor absorbed current in its envelope and max fans absorbed current
|
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
(14) - Maximum unit current for wires sizing is based on minimum allowed voltage.
|
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - The data are referred to the unit without additional options.
|
(15) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(15) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(15) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(15) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(15) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(15) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(15) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(15) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(15) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(15) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(15) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(15) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(15) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(15) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(15) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
(15) - Maximum current for wires sizing: (compressors full load ampere + fans current) x 1.1
|
|