Si37-701
Troubleshooting (OP: Unified ON/OFF Controller)
Troubleshooting
351
[CHECK 6] Check for causes of drop in low pressure
Referring to the Fault Tree Analysis (FTA) shown below, probe the faulty points.
Abnormally low
low-pressure
(Low evaporating
temperature)
[In cooling]
(See *1.)
Faulty low
pressure
control
Faulty
compressor
capacity
control
Faulty low pressure sensor
←
Are the electrical characteristics normal?
Faulty control PC board
←
Is the pressure value checked with the Service Checker
corresponding to the measurement of the pressure sensor?
Faulty low
pressure
protection
control
Faulty low pressure sensor
←
Are the electrical characteristics normal?
Faulty hot gas solenoid valve
←
Are the coil resistance and insulation normal?
Faulty control PC board
←
Is the pressure value checked with the Service Checker
corresponding to the measurement of the pressure sensor?
[In both cooling
and heating]
(See *2.)
[In cooling]
If the indoor unit
electronic
expansion valve is
throttled too much:
(See *3.)
Faulty indoor
unit electronic
expansion valve
Faulty valve coil
Faulty valve body
←
Are the coil resistance and insulation normal?
Faulty
control
Faulty gas pipe
thermistor of indoor unit
Faulty liquid pipe thermistor
of indoor unit
Faulty control PC board
←
Check for the thermistor resistance and connection.
←
Check for the thermistor resistance and connection.
←
Is the pressure value checked with the Service Checker
corresponding to the measurement of the pressure sensor?
Faulty outdoor
unit electronic
expansion valve
Faulty valve coil
Faulty valve body
←
Are the coil resistance and insulation
normal?
[In heating]
If the outdoor unit
electronic
expansion valve
excessively
throttled:
(See *4.)
Faulty
control
Faulty low pressure sensor
Faulty suction pipe thermistor
Faulty control PC board
←
Are the electrical characteristics normal?
←
Check for the thermistor resistance and
connection.
[In cooling]
Low suction
air temperature
of the
evaporator
[In heating]
Low suction air
temperature of
indoor unit
Short circuit
←
Is the suction air temperature not less than 14˚C
←
Is the indoor temperature not more than 14˚C
Low ambient temperature
Faulty suction air thermistor of indoor unit
←
Is the connector properly connected?
Are the thermistor resistance characteristics normal?
Low suction air temperature of outdoor unit
←
Is the outdoor temperature not less than -20˚C
Faulty outdoor temperature thermistor of outdoor unit
←
Is the connector properly connected?
Are the thermistor resistance characteristics normal?
High pipe
resistance
Abnormal piping length
Bent or crashed pipe
Clogging of foreign particles
Stop valve closed
←
Does the piping length fall in the permissible range?
←
Conduct visual checks for pipe conditions.
←
Is there any temperature difference caused before
and after the filter or branch pipe?
←
Check to be sure the stop valve is open.
Less
circulation
quantity of
refrigerant
Degradation
in condensing
capacity
Inadequate refrigerant quantity
←
Moisture choke
←
Eliminate moisture by vacuum operation.
Dirty
evaporator
Decreased
fan airflow
rate
Decreased
fan output
Faulty fan motor
←
Can the fan motor be rotated with hands?
Are the motor coil resistance and insulation normal?
←
Is the heat exchanger clogged?
Faulty control PC board
(Including capacity setting)
←
If a spare PC board is mounted, is the capacity
setting properly made?
High air
passage
resistance
Dirty filter
←
Is there any obstacle in the air passage?
←
Is the air filter clogged?
Obstacle
*1: For details of the compressor capacity control while in cooling, refer to “Compressor PI Control” on P100.
*2: The “low pressure protection control” includes low pressure protection control and hot gas bypass control. For details, refer to P126.
*3: In cooling, the indoor unit electronic expansion valve is used for “superheated degree control”. (For details, refer to P141.)
*4: In heating, the outdoor unit electronic expansion valve (EVM) is used for “superheated degree control of outdoor unit heat exchanger”.
(For details, refer to P108.)
Faulty electronic
expansion valve
control
SDK04009
Содержание VRV III REYQ8PY1
Страница 1: ...REYQ8 48PY1 R 410A Heat Recovery 50Hz Si37 701...
Страница 59: ...Specifications Si37 701 48 Specifications...
Страница 105: ...Refrigerant Flow for Each Operation Mode Si37 701 94 Refrigerant Circuit...
Страница 230: ...Si37 701 Troubleshooting by Remote Controller Troubleshooting 219...
Страница 373: ...Piping Diagrams Si37 701 362 Appendix 1 Piping Diagrams 1 1 Outdoor Unit REYQ8P 10P 12PY1 3D058154A S1NPH S2NPL...
Страница 374: ...Si37 701 Piping Diagrams Appendix 363 REYQ14P 16PY1 3D058153A S2NPL S1NPH...
Страница 375: ...Piping Diagrams Si37 701 364 Appendix REMQ8PY1 3D057743...
Страница 376: ...Si37 701 Piping Diagrams Appendix 365 REMQ10PY1 12PY1 3D057742...
Страница 377: ...Piping Diagrams Si37 701 366 Appendix REMQ14PY1 16PY1 3D057741...
Страница 382: ...Si37 701 Piping Diagrams Appendix 371 1 3 BS Unit 4D057985A...
Страница 384: ...Si37 701 Wiring Diagrams for Reference Appendix 373 REYQ14 16PY1 3D056774C...
Страница 385: ...Wiring Diagrams for Reference Si37 701 374 Appendix REMQ8PY1 3D055307E...
Страница 386: ...Si37 701 Wiring Diagrams for Reference Appendix 375 REMQ10 12PY1 3D055308E...
Страница 387: ...Wiring Diagrams for Reference Si37 701 376 Appendix REMQ14P 16PY1 3D055309E...
Страница 388: ...Si37 701 Wiring Diagrams for Reference Appendix 377 2 2 Field Wiring REYQ8P 10P 12P 14P 16PY1 3D057764...
Страница 389: ...Wiring Diagrams for Reference Si37 701 378 Appendix REYQ18P 20P 22P 24P 26P 28P 30P 32PY1 3D057762...
Страница 390: ...Si37 701 Wiring Diagrams for Reference Appendix 379 REYQ34P 36P 38P 40P 42P 44P 46P 48PY1 3D057763...
Страница 391: ...Wiring Diagrams for Reference Si37 701 380 Appendix 2 3 Indoor Unit FXCQ20M 25M 32M 63MVE 3D039556A...
Страница 392: ...Si37 701 Wiring Diagrams for Reference Appendix 381 FXCQ40M 50M 80M 125MVE 3D039557A...
Страница 393: ...Wiring Diagrams for Reference Si37 701 382 Appendix FXFQ25M 32M 40M 50M 63M 80M 100M 125MVE 3D039600A...
Страница 394: ...Si37 701 Wiring Diagrams for Reference Appendix 383 FXZQ20M 25M 32M 40M 50M8V1B 3D038359...
Страница 395: ...Wiring Diagrams for Reference Si37 701 384 Appendix FXKQ25MA 32MA 40MA 63MAVE 3D039564C...
Страница 399: ...Wiring Diagrams for Reference Si37 701 388 Appendix FXDYQ180M 200M 250MV1...
Страница 400: ...Si37 701 Wiring Diagrams for Reference Appendix 389 FXSQ20M 25M 32M 40M 50M 63M 80M 100M 125MVE 3D039561B...
Страница 401: ...Wiring Diagrams for Reference Si37 701 390 Appendix FXMQ40MA 50MA 63MA 80MA 100MA 125MAVE 3D039620B...
Страница 402: ...Si37 701 Wiring Diagrams for Reference Appendix 391 FXMQ200MA 250MAVE 3D039621B...
Страница 403: ...Wiring Diagrams for Reference Si37 701 392 Appendix FXHQ32MA 63MA 100MAVE 3D039801D...
Страница 404: ...Si37 701 Wiring Diagrams for Reference Appendix 393 FXAQ20MA 25MA 32MAVE 40MA 50MA 63MAVE 3D034206D...
Страница 406: ...Si37 701 Wiring Diagrams for Reference Appendix 395 2 4 BS Unit 3D055928C...
Страница 423: ...Piping Installation Point Si37 701 412 Appendix...
Страница 427: ...Example of Connection R 410A Type Si37 701 416 Appendix...
Страница 433: ...Method of Checking the Inverter s Power Transistors and Diode Modules Si37 701 422 Appendix...
Страница 447: ...Si37 701 iv Index...
Страница 451: ...Si37 701 viii Drawings Flow Charts...