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12. Operation
Control
12.1 Basic Function
Inverter control, which equipped with a microcomputer in determining the most suitable operation mode as time
passes, automatically adjusts output power for maximum comfort always. In order to achieve the suitable operation
mode, the microcomputer maintains the set temperature by measuring the temperature of the environment and
performing temperature shifting. The compressor at outdoor unit is operating following the frequency instructed by
the microcomputer at indoor unit that judging the condition according to internal setting temperature and intake air
temperature.
12.1.1 Internal Setting Temperature
Once the operation starts, remote control setting temperature will be taken as base value for temperature shifting
processes. These shifting processes are depending on the air conditioner settings and the operation environment.
The final shifted value will be used as internal setting temperature and it is updated continuously whenever the
electrical power is supplied to the unit.
12.1.2 Cooling
Operation
12.1.2.1 Thermostat
control
Compressor is OFF when intake Air Temperature - Internal Setting Temperature < -0.5°C.
Compressor is ON after waiting for 3 minutes, if the Intake Temperature - Internal Setting Temperature >
Compressor OFF point.
12.1.3 Soft Dry Operation
12.1.3.1 Thermostat
control
Compressor is OFF when Intake Temperature - Internal Setting Temperature < -1.0°C.
Compressor is ON after waiting for 3 minutes, if the Intake Air Temperature - Internal Setting Temperature >
Compressor OFF point.
12.1.3.2 Automatic
Operation
This mode can be set using remote control and the operation is decided by indoor intake air temperature.
During operation mode judgment at the beginning of the Auto Mode operation, indoor fan motor (with speed of
Lo-) is running for 30 seconds to detect the indoor intake air temperature. Power indicator blinks during operation
mode judgment.
The operation mode is decided based on below chart.
After the operation mode is decided, the unit operation will follow the respective operation mode control.
Remote Control Setting Temperature
16°C ~ 30°C
Indoor Air Temperature Shifting
Outdoor Air Temperature Shifting
Powerful Mode Shifting
Setting Temperature Limit Checking
(Min: 16°C; Max: 33°C)
Internal Setting Temperature
Cooling
operation
Soft Dry
operation
Indoor intake
Air Temp
23°C
Summary of Contents for cs-s9pkv
Page 12: ...12 4 Dimensions 4 1 Indoor Unit 4 1 1 CS S9PKV CS S12PKV...
Page 13: ...13 4 1 2 CS S18PKV CS S24PKV CS S28PKV...
Page 14: ...14 4 2 Outdoor Unit 4 2 1 CU S9PKV 4 2 2 CU S12PKV 542...
Page 15: ...15 4 2 3 CU S18PKV CU S24PKV...
Page 16: ...16 4 2 4 CU S28PKV...
Page 17: ...17 5 Refrigeration Cycle Diagram 5 1 CS S9PKV CU S9PKV CS S12PKV CU S12PKV...
Page 18: ...18 5 2 CS S18PKV CU S18PKV CS S24PKV CU S24PKV...
Page 19: ...19 5 3 CS S28PKV CU S28PKV...
Page 20: ...20 6 Block Diagram 6 1 CS S9PKV CU S9PKV...
Page 21: ...21 6 2 CS S12PKV CU S12PKV...
Page 24: ...24 7 Wiring Connection Diagram 7 1 Indoor Unit 7 1 1 CS S9PKV CS S18PKV CS S24PKV...
Page 26: ...26 7 1 3 CS S28PKV...
Page 31: ...31 8 Electronic Circuit Diagram 8 1 Indoor Unit 8 1 1 CS S9PKV CS S18PKV CS S24PKV...
Page 32: ...32 8 1 2 CS S12PKV...
Page 33: ...33 8 1 3 CS S28PKV...
Page 35: ...35 8 2 2 CU S12PKV...
Page 39: ...39 9 1 1 2 CS S12PKV...
Page 41: ...41 9 1 5 Human Activity Sensor Printed Circuit Board...
Page 42: ...42 9 2 Outdoor Unit 9 2 1 Main Printed Circuit Board 9 2 1 1 CU S9PK...
Page 43: ...43 9 2 1 2 CU S12PK...
Page 44: ...44 9 2 1 3 CU S18PK CU S24PK...
Page 45: ...45 9 2 1 4 CU S28PK...
Page 46: ...46 9 2 2 Noise Filter Printed Circuit Board 9 2 2 1 CU S9PKV...
Page 47: ...47 9 2 2 2 CU S28PKV...
Page 51: ...51...
Page 60: ...60...
Page 121: ...121 Figure 3 Figure 4 16 1 1 3 To Remove Discharge Grille Figure 5...
Page 123: ...123 Figure 9 Figure 10...
Page 125: ...125 16 2 1 3 To Remove Power Electronic Controller Figure 13 Figure 14 Figure 15...
Page 127: ...127 Figure 19 Figure 20 Figure 21...