Daikin Super Multi Plus E-Series Service Manual page 48

Super multi plus e-series
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SiEN18-622
Model
Cooling Capacity
Heating Capacity
Total Indoor Unit Capacity
Power Consumption
Running Current
Casing Color
Type
Model
Compressor
Motor Output
(2.2kW/60rps)
Model
Refrigerant
Oil
Charge
Type
Refrigerant
Charge
Cooling
Air Flow Rate
(H)
Heating
Type
Motor Output
Fan
Running Current
Power Consumption
Starting Current
Dimensions (H×W×D)
Package Dimensions (H×W×D)
Weight
Gross Weight
Cooling
Operation
Sound
Heating
Liquid
Piping
Gas
Connection
Drain
Heat Insulation
No. of Wiring Connection
O.U. - BP
Total piping
BP - I.U.
length
System Total
BP - I.U.
Max. piping
length
1st Branch - I.U.
O.U. - BP
Max. level
O.U. - I.U.
difference
BP - BP, I.U. - I.U.
Necessity of Additional Charge H
Note:
1. H Refrigerant charge is required. (Chargeless piping length 0m)
2. The data are based on the conditions shown in the table below.
Indoor ; 27°CDB / 19°CWB
Outdoor ; 35°CDB
Outdoor Unit
Specifications
RMXS112EVLT
4HP
kW
11.2 (9,630)
(kcal/h)
kW
12.5 (10,750)
(kcal/h)
kW
5.5~14.5
W
A
kW
2.5
L
kg
m³/min
(cfm)
m³/min
(cfm)
W
A
W
A
19.8
mm
mm
kg
kg
dBA
52
dBA
54
mm
mm
mm
3 For Power Supply (Including Earth Wiring), 2 For Interunit Wiring (Outdoor Unit-BP)
m
m
60
m
115
m
m
m
m
m
kg/m
Formula for calculation charge : R (kg)
R = Total length (m) of liquid pipe size at φ9.5×0.054 + Total length (m) of liquid piping size at φ6.4×0.022
Cooling
Indoor ; 20°CDB
Outdoor ; 7°CDB / 6°CWB
Main Piping
BP Unit
Branch Piping
RMXS140EVLT
5HP
14.0 (12,040)
16.0 (13,760)
7.0~18.2
Ivory White
Hermetically Sealed Scroll Type
JT100G-VDL
3.0
DAPHNE FVC68D
1.5
R-410A
4.0
106 (3,742)
106 (3,742)
Propeller
70+70
0.4+0.4
88+88
24.8
1,345×900×320
1,475×925×390
125
136
53
55
φ9.5 (Flare Connection)
φ19.1 (Brazing Connection)
φ18
Both Liquid and Gas Pipes
55
80
135
15
40
30
30
15
Necessary
Heating
Piping Length
Main Piping : 5m
Branch Piping : 3m
Level difference:0m
Indoor Unit
(Q0143)
Specifications
60Hz 220V
RMXS160EVLT
6HP
15.5 (13,330)
17.5 (15,050)
8.0~20.8
3.5
26.1
54
56
90
145
Conversion Formulae
kcal/h=kW×860
Btu/h=kW×3414
cfm=m³/min×35.3
35

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