Outdoor Unit - Daikin CTXS07LVJU Service Manual

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SiUS121602E

2. Outdoor Unit

Model
COP
EER
SEER / HSPF
Casing Color
Type
Compressor
Model
Motor Output
Model
Refrigerant Oil
Charge
Type
Refrigerant
Charge
H
M
L
Airflow Rate
H
M
L
Type
Motor Output
Fan
Running Current
Power Consumption
Starting Current
Dimension (H × W × D)
Packaged Dimension (H × W × D)
Weight (Mass)
Gross Weight (Gross Mass)
Sound Pressure Level
Liquid
Piping
Gas
Connections
Drain
Heat Insulation
No. of Wiring Connections
Max. Interunit Piping Length
Amount of Additional Charge of
Refrigerant
Max. Installation Height Difference
Drawing No.
Notes:
1.
2. The data are based on the conditions shown in the table below.
Piping Length
Specifications
W/W
Btu/h·W
W
oz (L)
Lbs (kg)
cfm
m³/min
W
A
H: 0.32 / M: 0.32 / L: 0.27
W
H: 62 / M: 62 / L: 54
A
in. (mm)
in. (mm)
Lbs (kg)
Lbs (kg)
dB(A)
in. (mm)
in. (mm)
in. (mm)
ft (m)
oz/ft
(g/m)
ft (m)
Max.: for the combination of CTXS, FTXS series indoor units
Min.: for the combination of CDXS, FDXS series indoor units
Indoor ; 80°FDB (26.7°CDB) / 67°FWB (19.4°CWB)
Cooling
Outdoor ; 95°FDB (35°CDB) / 75°FWB (24°CWB)
Indoor ; 70°FDB (21°CDB) / 60°FWB (15.6°CWB)
Heating
Outdoor ; 47°FDB (8.3°CDB) / 43°FWB (6°CWB)
24-5/8 ft (7.5 m)
2MXL18QMVJU
Cooling
12.7
17.0
Ivory White
Hermetically Sealed Swing Type
2YC63AAXD
1,920
FVC50K
29.7 (0.9)
R-410A
6.17 (2.8)
2,150
2,150
1,949
60.9
60.9
55.2
Propeller
51
15.5
28-15/16 × 34-1/4 × 12-5/8 (735 × 870 × 320)
31-7/8 × 41-3/8 × 17-1/2 (810 × 1,050 × 444)
139 (63)
155 (71)
50
φ 1/4 × 2 (φ 6.4 × 2)
φ 3/8 × 1, φ 1/2 × 1 (φ 9.5 × 1, φ 12.7 × 1)
φ 5/8 (φ 15.9)
Both Liquid and Gas Pipes
3 for Power Supply, 4 for Interunit Wiring (Including Ground Wiring)
164 (50) (for Total of Each Room)
82 (25) (for One Room)
0.21 (20) (98-7/16 ft (30 m) or more)
49-1/4 (15) (between Indoor Unit and Outdoor Unit)
24-5/8 (7.5) (between Indoor Units)
C: 3D101750
Outdoor Unit
60 Hz, 208 - 230 V
Heating
4.20
10.3
1,963
1,963
1,006
55.6
55.6
28.5
H: 0.33 / M: 0.33 / L: 0.07
H: 65 / M: 65 / L: 14
51
Conversion Formulae
kcal/h = kW × 860
Btu/h = kW × 3412
cfm = m³/min × 35.3
13

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