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6. Microcpomputer's Peripheral Circuits
6-1. Overload control circuit (OVL control circuit)
Overload control is to decrease the speed of the compressor and reduce the load when the load on
the air conditioner increases to an overload state, in order to protect the compressor, electronic
components and power breaker.
Overloads are judged by comparing the DC current level and set value
Fig.6-1 shows the overload control system configuration and Fig. 6-4 is a characteristic diagram on
overload judgement values. There are two types of control which has named IS OVL and ID OVL.
IS OVL is limitingthe whole input of this room air conditioner system through the current sensor CT1
in order to keep the maximum ratingof components by readingtotal operatingcurrent.
ID OVL is watchingand limits the compressor current through the detection resistor, which is built in
IPM in order to control the compressor reliability. Since the compressor reliability is related with its
curve.
All of OVL operation values were programmed into EEPROM memory.
speed, the ID OVL value is also linked with the compressor speed. Fig.6-2 shows an ID OVL limitation
Compressor
Microcomputer
EEPROM
Motor current (ID)
Whole current (IS)
Fig. 6-1 Overload Control System
Detection
resistor
A-D
converter
ID OVL
value
IS OVL
value
Motor
control
process
A-D
converter
Detection
transformer CT1
Amplifier
Smoother
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Summary of Contents for Summit RAC-18YH5
Page 6: ...SPECIFICATIONS 0 4 ...
Page 17: ... 01 2 34 5 6 2 7 6 7 8 3 9 15 ...
Page 18: ... φ 0 φ φ 0 1 1 1 2 33 16 ...
Page 20: ... 0 0 1 203 1 202 4 5 5 6 6 728 5 9 7 8 2 7 4 18 ...
Page 21: ... 19 ...
Page 24: ...RAC 18YH5 MODEL A X 8 T 1 1 SELF CHECK SELF MODE SERVICE SW RED RED RED 23 ...
Page 25: ... 25 0 0 0 1 1 1 1 2 0 1 3 44 5 1 1 6 7 4 887 8972 ...
Page 26: ... 27 ...
Page 27: ... 28 Mode data file RAS 18YH5 VALUE LABEL NAME ...
Page 28: ... 29 0 1 1 2 334 5 22 1 6 0 7 0 7 6 8 1 9 0 1 1 66 66 5 0 7 22 22 1 1 ...
Page 31: ... 35 0 1 ...
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Page 33: ... 0 1 2 3 4 1 2 0 1 2 3 4 1 2 5 6 6 5 6 6 7 4 4 37 ...
Page 34: ... 2 Receiver Circuit 3 Buzzer Circuit 01 23 4 5 5 6 6 6 78 9 4 9 5 4 9 8 2 38 ...
Page 36: ...5 Initial Setting Circuit IC401 6 Power Supply 0 1 2 2 3 4 2 5 6 4 7 8 6 9 8 6 40 ...
Page 37: ... 7 Fan Motor Drive Circuit 0 0 1 2 3 3 0 45 67 8 7 45 3 0 9 0 2 2 1 52 152 2 2 41 ...
Page 38: ... 0 1 2 3 4 1 2 3 3 3 0 3 5 6 1 7 7 5 8 0 42 ...
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Page 49: ... 0 1 2 3 4 5 45 5 4 5 45 5 5 4 45 45 5 5 53 ...
Page 50: ...5 Power Circuit for P W B 54 ...
Page 54: ... 0 1 2 23 23 4 5 6 7 8 6 6 9 0 6 1 3 1 6 0 1 6 6 0 9 58 ...
Page 57: ... 0 0 0 1 8 Reversing valve control circuit 2 334 5 4 6 5 7 8 0 3 0 8 0 8 0 61 ...
Page 67: ... 71 0 0 1 2 31 0 4 5 0 6 1 6 6 0 1 5 0 1 6 0 0 6 0 ...
Page 68: ... 72 0 1 2 THE SUPPORT FUNCTION OF FAILURE DIAGNOSIS ...
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Page 86: ... 90 0 12 1 3 4 5 4 5 4 5 4 65 65 7 6 8 9 2 8 5 ...
Page 88: ... 92 IPM Intelligent Power Module DIAGNOSIS ...
Page 91: ... 95 4 Tangential air flow fan and fan motor 1 Electrical parts 0 1 211 3 0124 5 6 78 ...
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Page 96: ...Printed in Japan TSK AW NO 0010E RAS 18YH5 RAC 18YH5 F ...