|
RQYQ10PY1 |
RQYQ12PY1 |
RQYQ140PY1 |
RQYQ14PY1 |
RQYQ16PY1 |
RQYQ18PY1 |
RQYQ20PY1 |
RQYQ22PY1 |
RQYQ24PY1 |
RQYQ26PY1 |
RQYQ28PY1 |
RQYQ30PY1 |
RQYQ32PY1 |
RQYQ34PY1 |
RQYQ36PY1 |
RQYQ38PY1 |
RQYQ40PY1 |
RQYQ42PY1 |
RQYQ44PY1 |
RQYQ46PY1 |
RQYQ48PY1 |
RQYQ8PY1 |
Sound pressure level
|
Cooling
|
Nom.
|
dBA
|
58.0
|
60.0
|
|
60.0
|
60.0
|
61
|
62
|
63
|
63
|
63
|
63
|
63
|
63
|
64
|
64
|
65
|
65
|
65
|
65
|
65
|
65
|
57.0
|
Standard Accessories
|
Installation manual
|
Installation manual
|
Installation manual
|
Installation manual
|
Installation manual
|
Installation manual
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
Installation manual
|
|
Operation manual
|
Operation manual
|
Operation manual
|
Operation manual
|
Operation manual
|
Operation manual
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
Operation manual
|
|
Connection pipes
|
Connection pipes
|
Connection pipes
|
|
Connection pipes
|
Connection pipes
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
Connection pipes
|
|
Clamps
|
Clamps
|
Clamps
|
Clamps
|
Clamps
|
Clamps
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
Clamps
|
Capacity range
|
HP
|
10
|
12
|
5
|
14
|
16
|
18
|
20
|
22
|
24
|
26
|
28
|
30
|
32
|
34
|
36
|
38
|
40
|
42
|
44
|
46
|
48
|
8
|
Operation range
|
Jäähdytys
|
Max.
|
°CDB
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
43
|
|
|
Min.
|
°CDB
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
-5
|
|
Lämmitys
|
Min.
|
°CWB
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
-20
|
|
|
Max.
|
°CWB
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
15.5
|
Maximum number of connectable indoor units
|
21
|
26
|
10
|
30
|
34
|
39
|
43
|
47
|
52
|
56
|
60
|
64
|
64
|
64
|
64
|
64
|
64
|
64
|
64
|
64
|
64
|
17
|
Space cooling
|
B Condition (30°C - 27/19)
|
Pdc
|
kW
|
|
|
10.3
|
|
|
EERd
|
|
|
|
4.40
|
|
D Condition (20°C - 27/19)
|
Pdc
|
kW
|
|
|
5.01
|
|
|
EERd
|
|
|
|
9.29
|
|
A Condition (35°C - 27/19)
|
EERd
|
|
|
|
2.54
|
|
|
Pdc
|
kW
|
|
|
14.0
|
|
C Condition (25°C - 27/19)
|
EERd
|
|
|
|
7.31
|
|
|
Pdc
|
kW
|
|
|
6.63
|
Compressor
|
Type
|
|
Hermetically sealed scroll compressor
|
Hermetically sealed scroll compressor
|
Hermetically sealed scroll compressor
|
Hermetically sealed scroll compressor
|
Hermetically sealed scroll compressor
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
Hermetically sealed scroll compressor
|
Weight
|
Unit
|
kg
|
284
|
284
|
175
|
381
|
381
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
230
|
Refrigerant
|
Refrigerant-=-Charge-=-TCO2Eq
|
TCO2Eq
|
24.4
|
24.4
|
23.2
|
24.4
|
24.4
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
22.5
|
|
GWP
|
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
2,087.5
|
|
Charge
|
kg
|
11.7
|
11.7
|
11.1
|
11.7
|
11.7
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
10.8
|
|
Type
|
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
R-410A
|
Järjestelmä
|
Outdoor unit module 2
|
|
|
|
|
|
|
RQYQ10P
|
RQYQ12P
|
RQYQ12P
|
RQYQ12P
|
RQYQ16P
|
RQYQ16P
|
RQYQ16P
|
RQYQ16P
|
RQYQ10P
|
RQYQ10P
|
RQYQ12P
|
RQYQ12P
|
RQYQ16P
|
RQYQ16P
|
RQYQ16P
|
RQYQ16P
|
|
Outdoor unit module 3
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
RQYQ14P
|
RQYQ16P
|
RQYQ16P
|
RQYQ16P
|
RQYQ16P
|
RQYQ16P
|
RQYQ16P
|
RQYQ16P
|
|
Outdoor unit module 1
|
|
RQYQ10P
|
RQYQ12P
|
RQYQ140P
|
RQYQ14P
|
RQYQ16P
|
RQYQ8P
|
RQYQ8P
|
RQYQ10P
|
RQYQ12P
|
RQYQ10P
|
RQYQ12P
|
RQYQ14P
|
RQYQ16P
|
RQYQ10P
|
RQYQ10P
|
RQYQ10P
|
RQYQ12P
|
RQYQ10P
|
RQYQ12P
|
RQYQ14P
|
RQYQ16P
|
RQYQ8P
|
Indoor index connection
|
Nom.
|
|
250
|
300
|
125
|
350
|
400
|
450
|
500
|
550
|
600
|
650
|
700
|
750
|
800
|
850
|
900
|
950
|
1,000
|
1,050
|
1,100
|
1,150
|
1,200
|
200
|
|
Min.
|
|
125
|
150
|
62.5
|
175
|
200
|
225
|
250
|
275
|
300
|
325
|
350
|
375
|
400
|
425
|
450
|
475
|
500
|
525
|
550
|
575
|
600
|
100
|
|
Max.
|
|
325
|
390
|
162.5
|
455
|
520
|
585
|
650
|
715
|
780
|
845
|
910
|
975
|
1,040
|
1,105
|
1,170
|
1,235
|
1,300
|
1,365
|
1,430
|
1,495
|
1,560
|
260
|
Cooling capacity
|
Prated,c
|
kW
|
|
|
14.0
|
Recommended combination
|
|
|
4 x FXSQ32A2VEB
|
Space heating (Average climate)
|
TOL
|
COPd (declared COP)
|
|
|
|
1.92
|
|
|
Pdh (declared heating cap)
|
kW
|
|
|
8.5
|
|
D Condition (12°C)
|
Pdh (declared heating cap)
|
kW
|
|
|
4.18
|
|
|
COPd (declared COP)
|
|
|
|
6.43
|
|
B Condition (2°C)
|
COPd (declared COP)
|
|
|
|
3.42
|
|
|
Pdh (declared heating cap)
|
kW
|
|
|
4.58
|
|
C Condition (7°C)
|
COPd (declared COP)
|
|
|
|
4.84
|
|
|
Pdh (declared heating cap)
|
kW
|
|
|
3.29
|
|
A Condition (-7°C)
|
COPd (declared COP)
|
|
|
|
2.20
|
|
|
Pdh (declared heating cap)
|
kW
|
|
|
7.52
|
|
TBivalent
|
Pdh (declared heating cap)
|
kW
|
|
|
8.5
|
|
|
Tbiv (bivalent temperature)
|
°C
|
|
|
-10
|
|
|
COPd (declared COP)
|
|
|
|
1.92
|
Piping connections
|
Liquid
|
OD
|
mm
|
9.52
|
12.7
|
9.52
|
12.7
|
12.7
|
15.9
|
15.9
|
15.9
|
15.9
|
19.1
|
19.1
|
19.1
|
19.1
|
19.1
|
19.1
|
19.1
|
19.1
|
19.1
|
19.1
|
19.1
|
19.1
|
9.52
|
|
|
Type
|
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
|
Total piping length
|
System
|
Actual
|
m
|
300
|
300
|
300
|
300
|
300
|
300
|
300
|
300
|
300
|
300
|
300
|
300
|
300
|
300
|
300
|
300
|
300
|
300
|
300
|
300
|
300
|
300
|
|
Gas
|
OD
|
mm
|
22.2
|
28.6
|
15.9
|
28.6
|
28.6
|
28.6
|
28.6
|
28.6
|
34.9
|
34.9
|
34.9
|
34.9
|
34.9
|
34.9
|
41.3
|
41.3
|
41.3
|
41.3
|
41.3
|
41.3
|
41.3
|
19.1
|
|
|
Type
|
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
Braze connection
|
|
Level difference
|
OU - IU
|
Outdoor unit in highest position
|
m
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
|
|
|
Indoor unit in highest position
|
m
|
40
|
40
|
40
|
40
|
40
|
40
|
40
|
40
|
40
|
40
|
40
|
40
|
40
|
40
|
40
|
40
|
40
|
40
|
40
|
40
|
40
|
40
|
|
|
IU - IU
|
Max.
|
m
|
15
|
15
|
15
|
15
|
15
|
15
|
15
|
15
|
15
|
15
|
15
|
15
|
15
|
15
|
15
|
15
|
15
|
15
|
15
|
15
|
15
|
15
|
Sound power level
|
Cooling
|
Nom.
|
dBA
|
|
|
79
|
Dimensions
|
Unit
|
Width
|
mm
|
930
|
930
|
635
|
1,240
|
1,240
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
930
|
|
|
Depth
|
mm
|
765
|
765
|
765
|
765
|
765
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
765
|
|
|
Height
|
mm
|
1,680
|
1,680
|
1,680
|
1,680
|
1,680
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
1,680
|
Fan
|
External static pressure
|
Max.
|
Pa
|
78
|
78
|
78
|
78
|
78
|
78
|
78
|
78
|
78
|
78
|
78
|
78
|
78
|
78
|
78
|
78
|
78
|
78
|
78
|
78
|
78
|
78
|
Heating capacity
|
Prated,h
|
kW
|
|
|
16.0
|
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~
|
|
Name
|
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
Y1
|
|
Frequency
|
Hz
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
|
Voltage
|
V
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
380-415
|
Notes
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
|
(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
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(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
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(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
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(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
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(1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - TOCA means the total value of each OC set.
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(3) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - MSC means the maximum current during start up of the compressor
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(4) - TOCA means the total value of each OC set.
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(5) - MSC means the maximum current during start up of the compressor
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Maximum allowable voltage range variation between phases is 2%.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(6) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Select wire size based on the value of MCA or TOCA.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(7) - Maximum allowable voltage range variation between phases is 2%.
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the larger value of MCA or TOCA
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(8) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(8) - Select wire size based on the value of MCA
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - Sound values are measured in an anechoic chamber. Operating sound level generally becomes higher than this value depending on the operating conditions, reflected sound, and peripheral noise.
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(9) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
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(10) - Sound values are measured in an anechoic chamber. Operating sound level generally becomes higher than this value depending on the operating conditions, reflected sound, and peripheral noise.
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(10) - Sound values are measured in an anechoic chamber. Operating sound level generally becomes higher than this value depending on the operating conditions, reflected sound, and peripheral noise.
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(10) - Sound values are measured in an anechoic chamber. Operating sound level generally becomes higher than this value depending on the operating conditions, reflected sound, and peripheral noise.
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(10) - Sound values are measured in an anechoic chamber. Operating sound level generally becomes higher than this value depending on the operating conditions, reflected sound, and peripheral noise.
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(10) - Sound values are measured in an anechoic chamber. Operating sound level generally becomes higher than this value depending on the operating conditions, reflected sound, and peripheral noise.
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(10) - Sound values are measured in an anechoic chamber. Operating sound level generally becomes higher than this value depending on the operating conditions, reflected sound, and peripheral noise.
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(10) - Sound values are measured in an anechoic chamber. Operating sound level generally becomes higher than this value depending on the operating conditions, reflected sound, and peripheral noise.
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(10) - Sound values are measured in an anechoic chamber. Operating sound level generally becomes higher than this value depending on the operating conditions, reflected sound, and peripheral noise.
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(10) - Sound values are measured in an anechoic chamber. Operating sound level generally becomes higher than this value depending on the operating conditions, reflected sound, and peripheral noise.
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(10) - Sound values are measured in an anechoic chamber. Operating sound level generally becomes higher than this value depending on the operating conditions, reflected sound, and peripheral noise.
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(10) - Sound values are measured in an anechoic chamber. Operating sound level generally becomes higher than this value depending on the operating conditions, reflected sound, and peripheral noise.
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(10) - Sound values are measured in an anechoic chamber. Operating sound level generally becomes higher than this value depending on the operating conditions, reflected sound, and peripheral noise.
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(10) - Contains fluorinated greenhouse gases
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(10) - Contains fluorinated greenhouse gases
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(10) - Contains fluorinated greenhouse gases
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(10) - Contains fluorinated greenhouse gases
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(10) - Contains fluorinated greenhouse gases
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(10) - Contains fluorinated greenhouse gases
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(10) - Contains fluorinated greenhouse gases
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(10) - Contains fluorinated greenhouse gases
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(10) - Contains fluorinated greenhouse gases
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(10) - Sound values are measured in an anechoic chamber. Operating sound level generally becomes higher than this value depending on the operating conditions, reflected sound, and peripheral noise.
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(11) - Contains fluorinated greenhouse gases
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(11) - Contains fluorinated greenhouse gases
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(11) - Contains fluorinated greenhouse gases
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(11) - Contains fluorinated greenhouse gases
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(11) - Contains fluorinated greenhouse gases
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(11) - Contains fluorinated greenhouse gases
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(11) - Contains fluorinated greenhouse gases
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(11) - Contains fluorinated greenhouse gases
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(11) - Contains fluorinated greenhouse gases
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(11) - Contains fluorinated greenhouse gases
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(11) - Contains fluorinated greenhouse gases
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(11) - Contains fluorinated greenhouse gases
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(11) - Contains fluorinated greenhouse gases
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