49
Total
Electrical circuit
Refrigerant circuit
Indoor side
Outdoor
side
Service Ref.
SHF
BF
W
kW
V
A
V
A
Mpa
Mpa
°
C
°
C
°
C
m
°
C
°
C
°
C
°
C
°
C
Mode
Capacity
Input
Indoor unit Service Ref.
Phase,Hz
Volts
Amperes
Outdoor unit Service Ref.
Phase,Hz
Volts
Amperes
Discharge pressure
Suction pressure
Discharge temperature
Condensing temperature
Suction temperature
Ref. pipe length
Intake air temperature
Discharge air temperature
Intake air temperature
PLA-P3AA.UK
PLA-P3AA.UK
1,50
240
PU-P3VGA
PU-P3YGA
1/3 , 50
240/415
PLA-P4AA.UK
PLA-P4AA.UK
1,50
240
PU-P4YGA
3,50
415
PLA-P5AA.UK
PLA-P5AA.UK
1,50
240
PU-P5YGA
3,50
415
Cooling
7,800
3.51
0.81
14.64/5.46
2.30
0.47
81.0
44.0
4.8
5
27
19
13.1
35
24
0.74
0.13
Cooling
9,700
3.62
1.25
5.49
1.98
0.54
71.0
42.0
7.5
5
27
19
13.3
35
24
0.78
0.12
Cooling
12,800
5.55
1.43
8.39
2.27
0.46
78.6
41.0
4.4
5
27
19
12.1
35
24
0.72
0.10
(kgf/
F
)
(kgf/
F
)
PLA-P6AA.UK
PLA-P6AA.UK
1,50
240
PU-P6YGA
3,50
415
Cooling
14,300
6.70
1.64
10.17
22.7
0.45
80.6
45.0
2.4
5
27
19
12.0
35
24
0.69
0.09
(23.2)
(4.3)
(23.2)
(4.6)
(20.2)
(5.4)
(23.4)
(4.8)
D.B.
W.B.
D.B.
D.B.
W.B.
4.2 Cooling only type (1)
The unit of pressure has been changed to MPa based on international SI system.
The conversion factor is : 1(MPa)=10.2(kgf/
f
f
)
OC241-B-2.qxp 04.9.29 5:17 PM Page 49