17
Total
Electrical circuit
Refrigerant circuit
Indoor side
Outdoor
side
SHF
BF
W
kW
V
A
V
A
MPa
MPa
°
C
°
C
°
C
m
°
C
°
C
°
C
°
C
°
C
Mode
Capacity
Input
Indoor unit
Phase , Hz
Volts
Amperes
Outdoor unit
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
Cooling
7,700
3.42
1 , 50
230
0.79
1/3 , 50
230/400
15.55/4.64
2.30
0.47
81
44
5
5
27
19
13.4
35
24
0.74
0.13
Cooling
9,200
3.68
1 , 50
230
1.25
1/3 , 50
230/400
16.33/4.59
1.98
0.54
71
42
8
5
27
19
14.0
35
24
0.78
0.12
Cooling
13,300
5.09
1 , 50
230
1.64
3 , 50
400
6.44
2.11
0.48
71
41
6
5
27
19
11.7
35
24
0.72
0.06
Cooling
14,200
5.90
1 , 50
230
1.64
3 , 50
400
7.73
2.27
0.45
81
45
2
5
27
19
11.3
35
24
0.69
0.09
D.B.
W.B.
D.B.
D.B.
W.B.
PLA-RP71AA
PLA-RP100AA
PU-P71VGAA.UK
PU-P71YGAA.UK
PU-P100VGAA.UK
PU-P100YGAA.UK
PU-P125YGAA.UK
PU-P140YGAA.UK
PLA-RP125AA
PLA-RP140AA
PLA-RP71AA
PLA-RP100AA
PLA-RP125AA
PLA-RP140AA
Representative matching
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
)
OC336--1.qxp 05.8.29 7:18 PM Page 17