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Table 10-1 Name and Role of each thermistor
Name
OH thermistor
Compressor head
If the temperature of the compressor
rises abnormally (118˚C), the
compressor will be stopped. The
temperature is used to decide the
operation of the valve.
The thermistors decide the defrost
operation during heating combined
the data of the outside temperature
and its data.
The thermistors detect the
temperatures of the piping to the
indoor units. The temperatures are
used to decide how much the
expansion valve is opened.
Outdoor temperature is used to
decide the various operations of the
air conditioner.
C N 5
DEF thermistor
Heat exchanger
C N 6
Outdoor temperature
thermistor
Outside temperature
C N 7
Electric expansion valve
thermistor (NARROW PIPE 1)
Indoor unit 1 (NARROW PIPE)
Electric expansion valve
thermistor (NARROW PIPE 2)
Indoor unit 2 (NARROW PIPE)
Electric expansion valve
thermistor (NARROW PIPE 3)
Indoor unit 3 (NARROW PIPE)
Electric expansion valve
thermistor (NARROW PIPE 4)
Indoor unit 4 (NARROW PIPE)
Electric expansion valve
thermistor (NARROW PIPE 5)
Indoor unit 5 (NARROW PIPE)
Electric expansion valve
thermistor (NARROW PIPE 6)
Indoor unit 6 (NARROW PIPE)
C N 8
Electric expansion valve
thermistor (WIDE PIPE 1)
Indoor unit 1 (WIDE PIPE)
Electric expansion valve
thermistor (WIDE PIPE 2)
Indoor unit 2 (WIDE PIPE)
Electric expansion valve
thermistor (WIDE PIPE 3)
Indoor unit 3 (WIDE PIPE)
Electric expansion valve
thermistor (WIDE PIPE 4)
Indoor unit 4 (WIDE PIPE)
Electric expansion valve
thermistor (WIDE PIPE 5)
Indoor unit 5 (WIDE PIPE)
Electric expansion valve
thermistor (WIDE PIPE 6)
Indoor unit 6 (WIDE PIPE)
C N 9
Connector No
Measuring Point
Role
Table 10-2 Correspondence between each thermistor's
resistance and temperature (reference value)
Electric expansion valve
thermistor
DEF thermistor
-15˚C
12.6k
Ω
1.0V
1.7V
3.0V
3.9V
1.0V
1.7V
2.4V
3.1V
4.4V
0.5V
1.3V
2.4V
3.4V
3.6V
3.9V
6.1k
Ω
2.2k
Ω
860
Ω
400
Ω
0˚C
25˚C
50˚C
75˚C
Outdoor temperature
thermistor
Temperature
25˚C
50˚C
75˚C
100˚C
105˚C
118˚C
Temperature
-15˚C
0˚C
15˚C
30˚C
Temperature
Resistance
33.9k
Ω
10.8k
Ω
4.1k
Ω
1.7k
Ω
1.5k
Ω
1k
Ω
Resistance
12.6k
Ω
6.1k
Ω
3.2k
Ω
2k
Ω
Resistance
Potential
Potential
Microcomputer
pin potential
OH thermistor
Table 10-2 shows the correspondence between
the thermistor's resistance and the temperature.
They should be used as reference values. The
value, which you measure, may be slightly
difference from that in the table. It depends on
the instrument.
When you measure the resistance, pull out the
connector after turning off the power supply.
Pulling out the connector while the power supply
is turned on will cause troubles.
Содержание RAM-130QH5
Страница 10: ... 11 SIX ROOM SYSTEM MULTI R A C RAM 130QH5 CONNECTING POSISION TO BE ABLE TO INSTALL ...
Страница 20: ... 22 CAPACITY DIAGRAM RELATED TO THE PIPING LENGTH MODEL RAM 130QH5 ...
Страница 25: ... 29 6V01 ...
Страница 26: ... 31 ...
Страница 28: ... 35 ...
Страница 33: ... 41 Outdoortemperature STAROTP_C TSKTM1_C1 Outdoortemperature STAROTP_C TSKTM1_C2 ...
Страница 34: ... 43 ...
Страница 35: ... 45 ...
Страница 36: ... 47 ...
Страница 37: ... 49 ...
Страница 47: ... 59 5A ...
Страница 54: ... 66 ...
Страница 55: ... 67 5 Reversing valve control circuit Fig 5 1 ...
Страница 58: ... 70 8 Overload control circuit OVL control circuit Fig 8 1 Overload Control System Configuration Fig 8 2 ...
Страница 77: ... 92 TROUBLESHOOTING OF THE SYSTEM POWER MODULE ...
Страница 78: ... 93 ...
Страница 79: ... 94 ...
Страница 83: ... 98 ...
Страница 84: ...HITACHI PM NO 0000 Printed in Malaysia RAM 130QH5 ...