C-SCN603H8K R407C
C-SCN603H8K R407C
Motor Compressor
50Hz 60Hz
Voltage Range(V) 342-456 396-506 Maximum Discharge Temp(℃) 135
3
RLA (A) 15.9 Displacement (cm /rev) 171.2
MCC (A) 22.2 Weight (with oil kg) 66.5
LRA (A) 80 84
RPM (min-1) 2900 3450
Winding Resistance
at 25ºC Sound level 50Hz/380V 60Hz/440V
1.655 70Max 73Max
U-V (db)
1.742
U-W
V-W 1.713
Others
Content Unit Specification
L.P. S. MPa(G)/psig 1.6(232)
Design Pressure
H. P. S. MPa(G)/psig 3.2(464)
Insulation Resistance MΩ 100 (without refrigerant)
Dielectric Strength V 2400 (1 second)
Residual Moisture mg 400
Note:
1. The insulation resistance be measured with a DC500V megohm test
1.
Accessories List
FOR LIQUID
REFRIGERANT
CHARGING
CAPILLARY
LIQUID LINE
SERVICE
OUTDOOR VALVE
INDOOR
HEAT HEAT
EXCHANGER EXCHANGER
GAS LINE
REVERSING SERVICE VALVE
VALVE
LOW
PRESSURE
SWITCH
COMPRESSOR CRANKCASE
HEATER
Section 3. Performance data
PERFORMANCE DATA
Compressor Model(Code) C-SCN603H8K (809 183 88)
Power Source 3PH 50Hz 380-415V
Suction Gas Superheat(K) 9
Sub Cooling(K) 8.3
Compressor Cooling Natural Cooling
Refrigerant R407C
CAPACITY(W)
Condensing Evaporating Temperature(℃)
Temperature(℃) -15 -10 -6.7 0 4.4 7.2 10 12
35.0 13,210 16,230 18,590 24,490 29,350 32,930 36,960 40,130
40.5 12,180 14,950 17,130 22,550 27,020 30,310 34,010 36,920
45.0 11,380 13,980 16,000 21,070 25,230 28,310 31,750 34,470
50.0 10,560 12,960 14,830 19,520 23,370 26,220 29,400 31,910
54.4 12,120 13,870 18,250 21,850 24,500 27,470 29,820
60.0 12,750 16,760 20,060 22,480 25,210 27,350
65.0 15,540 18,590 20,840 23,360 25,350
POWER(W)
Condensing Evaporating Temperature(℃)
Temperature(℃) -15 -10 -6.7 0 4.4 7.2 10 12
35.0 5,020 5,090 5,120 5,160 5,160 5,160 5,140 5,120
40.5 5,600 5,680 5,720 5,770 5,770 5,770 5,750 5,740
45.0 6,140 6,230 6,270 6,330 6,340 6,340 6,330 6,320
50.0 6,810 6,910 6,960 7,030 7,050 7,050 7,050 7,040
54.4 7,570 7,630 7,710 7,740 7,750 7,750 7,740
60.0 8,570 8,670 8,710 8,730 8,740 8,740
65.0 9,610 9,660 9,690 9,700 9,710
CURRENT(A) @380V
Condensing Evaporating Temperature(℃)
Temperature(℃) -15 -10 -6.7 0 4.4 7.2 10 12
35.0 9.3 9.3 9.3 9.3 9.3 9.3 9.3 9.3
40.5 10.1 10.2 10.2 10.2 10.2 10.2 10.2 10.2
45.0 10.9 11.0 11.0 11.1 11.1 11.1 11.1 11.1
50.0 11.8 11.9 12.0 12.1 12.2 12.2 12.2 12.2
54.4 12.9 13.0 13.1 13.2 13.2 13.2 13.2
60.0 14.3 14.5 14.6 14.6 14.6 14.6
65.0 15.9 16.0 16.0 16.0 16.0
NOTE:
* The performance values are based on MID point method
* The performance values subject to change without notice
Cond.
CAPACITY
Temp.
45,000 (℃)
40,000
35.0
35,000
40.5
30,000 45.0
CAPACITY (W)
50.0
25,000
54.4
20,000 60.0
15,000 65.0
10,000
5,000
0
-15 -10 -5 0 5 10
Cond.
CURRENT @ 380V
Temp.
17.0 (℃)
16.0 65.0
15.0 60.0
54.4
14.0
50.0
CURRENT (A)
13.0 45.0
40.5
12.0
35.0
11.0
10.0
9.0
8.0
-15 -10 -5 0 5 10
X=C1+C2*(S)+C3*D+C4*(S2)+C5*(S*D)+C6*(D2)+C7*(S3)+C8*(D*S2)+C9*(S*D2) +C10*(D3)
X——CAPACITY(W) OR POWER(W) OR CURRENT(A) OR FLOW(kg/h)
S——EVAPORATING TEMP, °C
D——CONDENSING TEMP, °C
CAPACITY(W)
Condensing Evaporating Temperature(℃)
Temperature(℃) -15 -10 -6.7 0 4.4 7.2 10 12
35.0 16,340 19,980 22,820 29,900 35,690 39,950 44,720 48,480
40.5 14,900 18,240 20,840 27,330 32,650 36,560 40,950 44,400
45.0 13,810 16,910 19,330 25,370 30,330 33,970 38,060 41,280
50.0 12,680 15,540 17,770 23,340 27,920 31,290 35,070 38,040
54.4 14,420 16,500 21,690 25,960 29,100 32,620 35,400
60.0 15,020 19,760 23,660 26,540 29,770 32,310
65.0 18,200 21,810 24,480 27,460 29,820
POWER(W)
Condensing Evaporating Temperature(℃)
Temperature(℃) -15 -10 -6.7 0 4.4 7.2 10 12
35.0 5,940 6,090 6,170 6,270 6,290 6,290 6,270 6,240
40.5 6,660 6,820 6,900 7,000 7,030 7,030 7,020 7,000
45.0 7,340 7,500 7,580 7,690 7,720 7,730 7,720 7,710
50.0 8,190 8,340 8,420 8,540 8,590 8,600 8,610 8,600
54.4 9,160 9,240 9,370 9,430 9,450 9,470 9,470
60.0 10,400 10,530 10,600 10,640 10,680 10,700
65.0 11,670 11,760 11,810 11,860 11,900
CURRENT(A) @440V
Condensing Evaporating Temperature(℃)
Temperature(℃) -15 -10 -6.7 0 4.4 7.2 10 12
35.0 8.3 8.7 9.0 9.3 9.3 9.3 9.3 9.2
40.5 9.5 9.9 10.1 10.3 10.4 10.4 10.4 10.3
45.0 10.6 11.0 11.1 11.4 11.4 11.4 11.4 11.4
50.0 12.2 12.4 12.5 12.6 12.7 12.7 12.7 12.7
54.4 13.7 13.8 13.8 13.9 13.9 13.9 14.0
60.0 15.6 15.5 15.6 15.6 15.7 15.8
65.0 17.2 17.2 17.3 17.4 17.6
NOTE:
* The performance values are based on MID point method
* The performance values subject to change without notice
Cond.
CAPACITY
Temp.
60,000 (℃)
50,000 35.0
40.5
40,000 45.0
CAPACITY (W)
50.0
30,000 54.4
60.0
20,000 65.0
10,000
0
-15 -10 -5 0 5 10
Cond.
CURRENT @440V
Temp.
18.0 (℃)
17.0
65.0
16.0 60.0
15.0 54.4
50.0
CURRENT (A)
14.0
45.0
13.0 40.5
12.0 35.0
11.0
10.0
9.0
8.0
-15 -10 -5 0 5 10
X=C1+C2*(S)+C3*D+C4*(S2)+C5*(S*D)+C6*(D2)+C7*(S3)+C8*(D*S2)+C9*(S*D2) +C10*(D3)
X——CAPACITY(W) OR POWER(W) OR CURRENT(A) OR FLOW(kg/h)
S——EVAPORATING TEMP, °C
D——CONDENSING TEMP, °C
Suction Gas
Superheat :9K
Refrigerant : R407C
70
60
Condensing Temperature (℃)
Transient Operation
50
Normal
ormal Ope n
40
30
20
10
-30 -25 -20 -15 -10 -5 0 5 10 15 20
Evaporating Temperature(℃)
Section 5. Application Standard & Limit
Voltage at compressor
9 Running Voltage Within ±10% of the rated voltage
terminals.
Three Phase Models: 85% of the rated voltage min. Voltage at compressor
10 Starting Voltage
Single Phase Models: 90% of the rated voltage min. terminals.
On Period: Until the oil level returns to the center of the lower bearing For at least 7 minutes -
11 On/Off Cycling on/3 minutes-off is
Off Period: Until balance of high and low pressure is obtained recommended.
Abnormal Pressure Pressure Rise: 3.20MPa(G) (464psig) Max. By high pressure switch
15
Rise/Drop Pressure Drop: 0.05MPa(G) (7.3psig) Min. By low pressure switch
System Moisture
16 200ppm Max.
Level
18 Tilt 5Deg.Max.
1 Installation should be completed within 15 minutes after removing the rubber plugs.
4 Evacuation and Refrigerant charge : Evacuate internal section in the refrigeration system from high and low pressure
sides and charge liquid refrigerant from condenser outlet side. Additional charge shall be done with gas condition from
low side.
7 Crankcase heater is required when the oil sump temperature is too low to meet the requirement of item 6 on page7.
8 Voltage fluctuation between compressor terminals, during operation, shall be within 2% of the rated voltage.
②
terminal plate compressor
indoor
outdoor
power ① ② ③
terminal
source indoor plate
compressor
5m max. 10m max. 15m max. 20m max. 30m max. 50m max. 1m max.
20max. 2.0 2.0 2.0 3.5 5.5 8.0 2.0
30max. ↑ ↑ 3.5 5.5 ↑ 14.0 ↑
40max. ↑ 3.5 5.5 ↑ 8.0 ↑ ↑
50max. ↑ ↑ 8.0 14.0 22.0 ↑
60max. ↑ 5.5 ↑ ↑ ↑
70max. 3.5 ↑ 8.0 14.0 ↑ ↑ 3.5
80max. ↑ ↑ 22.0 30.0 ↑
90max. ↑ ↑ 14.0 ↑ ↑ ↑
100max. ↑ 8.0 ↑ ↑ 38.0 ↑
110max. ↑ ↑ ↑
120max. 5.5 ↑ ↑ 22.0 30.0 ↑ ↑
140max. ↑ 14.0 ↑ ↑ 50.0 5.5
160max. ↑ ↑ 22.0 ↑ ↑ ↑
180max. ↑ ↑ 38.0 60.0 8.0
200max. 8.0 ↑ ↑ 30.0 ↑ ↑ ↑
220max. ↑ ↑ 50.0 80.0 ↑
240max. ↑ ↑ 14.0
The internal motor protector does not protect the compressor against all possible conditions.
Please be sure that the system utilizes the ground connection when installed in the field.
Section 7. Drawings
77.2
U W
68.
ETAPPING
ARTHING SCREWS
SCREW M4
TERMINAL
TERMIN
BOLT M5
Compressor Code A B C D
809 *8* 8*(8HP)
538 284 486 8
809 *9* 8*(9HP)
809 *0* 8*(10HP)
553 299 501 9
809 *2* 8*(12HP)
7.2. Wiring & mounting sketch
SWITCH
DISCHARGE GAS
V
TEMP. SENSOR
POWER SUPPLY 50Hz
380~415V INTERNAL
PROTECTOR
R
U W
S
T
COMPRE
TERMINAL MAGNETIC SWITCH SSOR
A 14
POWER SUPPLY B 11
50Hz 220V C 12
REVERSAL
DEFENSIBLE RELAY
CRANKCASE HEATER
Part Code
E-0910-DSC Name
Wiring Diagram
MOUNTING SKETCH
M8 BOLT
1 COMPRESSOR BASE
[1.772]
[1.594]
45
40.5
2
[0.118]
AIR-COND.
3
UNIT BASE
7.2. Packing dimensios
Compressor Code A
80928*8*
682
80918*8*
[26.850]
80929*8*
80920*8*
80910*8* 697
80922*8* [27.441]
80912*8*