SiUS30-604
Troubleshooting (OP: Unified ON/OFF Controller)
Troubleshooting
251
(
∗
1)
Faulty hot
gas bypass
control
[In cooling only]
(
∗
2)
Faulty indoor unit
electronic
expansion valve
Faulty control
Faulty outside
unit electronic
expansion valve
Clogged hot gas passage
←
Are the coil resistance and insulation normal?
←
Are the coil resistance and insulation
normal?
←
Are the voltage characteristics normal?
←
Is the connector properly connected?
Are the thermistor resistance
characteristics normal?
←
Does the pressure value of the Service
Checker match the reading of the
pressure sensor?
←
Is the temperature of piping connected to the
four-way changeover valve normal?
←
Are the coil resistance and insulation normal?
←
Are the coil resistance and insulation normal?
←
Are the voltage characteristics normal?
←
Is the connector properly connected?
Are the thermistor resistance characteristics
normal?
←
Does the pressure value of the Service Checker
match the reading of the pressure sensor?
←
Refer to [CHECK 6] on page 254.
←
Is the piping length in the permissible range?
←
Conduct visual checks for pipe conditions.
←
Eliminate moisture by vacuum break.
←
Check to be sure the stop valve is open.
∗
1 : For hot gas bypass control, refer to “Low Pressure Protection Control” on page 71.
∗
2 : For subcooling electronic expansion valve, refer to page 67.
∗
3 : In cooling, the indoor unit electronic expansion valve is used for “superheated degree control”. (Refer to page 89.)
∗
4 : In heating, the outside unit electronic expansion valve (Y1E) is used for “superheated degree control.” (Refer to page 67.)
∗
5 : Reference values for superheated degree to be used in the judgment of overheat operation
Suction gas superheated degree: 50
°
F or more
Discharge gas superheated degree: 113
°
F or more, excluding
when it is immediately after startup, under drop control or other specific conditions.
(The values above must be used only for reference purposes. Even it is operated within the range above,operation
may be normal in other conditions.)
[CHECK 3] Check for causes of overheat operation
Referring to the Fault Tree Analysis (FTA) shown below, identify the faulty points.
Rise in
discharge
pipe
temperature
Faulty subcooling
electronic
expansion valve
(Y3E) control
Faulty
subcooling
electronic
expansion valve
Faulty
control
Faulty four-way
changeover
valve function
Faulty
discharge
pipe
temperature
control
Superheated
compressor
[In cooling]
If the indoor unit
electronic
expansion valve
excessively
throttled
(
∗
3)
Faulty
superheated
degree
control
Inadequate refrigerant
quantity
High pipe resistance
[In heating]
If the outside unit
electronic
expansion valve
excessively
throttled
(
∗
4)
Faulty control
Abnormal pipe length
Bent or Crush of pipe
Stop valve closed
(Including moisture choke)
Faulty solenoid valve coil
Faulty solenoid valve body
Faulty control PCB
Faulty valve coil
Faulty control PCB
Faulty valve body
Faulty low pressure sensor
Faulty subcooling heat
exchanger outlet thermistor
Four-way changeover valve is
located in an intermediate position
Leakage from hot gas bypass valve
Superheat caused by
axis damage
Superheat caused by
faulty compressor
Faulty valve coil
Faulty valve body
Faulty control PCB
Faulty gas pipe
thermistor of indoor unit
Faulty liquid pipe
thermistor of indoor unit
Faulty valve coil
Faulty valve body
Faulty low pressure sensor
Faulty suction pipe thermistor
Faulty control PCB
←
Is the connector properly connected?
Are the thermistor resistance characteristics
normal?
←
Is the connector properly connected?
Are the thermistor resistance characteristics
normal?
Summary of Contents for BSVQ36MVJU
Page 1: ...SiUS30 604 Water Cooled Inverter Series Heat Pump Heat Recovery 60Hz ...
Page 7: ...SiUS30 604 vi Table of Contents Index i Drawings Flow Charts v ...
Page 13: ...Introduction SiUS30 604 xii ...
Page 27: ...Capacity Range SiUS30 604 14 General Information ...
Page 49: ...Specifications SiUS30 604 36 Specifications ...
Page 61: ...Refrigerant Flow for Each Operation Mode SiUS30 604 48 Refrigerant Circuit ...
Page 276: ...SiUS30 604 Piping Diagrams Appendix 263 1 3 BS Unit BSVQ36MVJU BSVQ60MVJU 4D045338 ...
Page 283: ...Wiring Diagrams SiUS30 604 270 Appendix FXLQ12M 18M 24MVJU FXNQ12M 18M 24MVJU 3D045644A ...
Page 284: ...SiUS30 604 Wiring Diagrams Appendix 271 2 4 BS Unit BSVQ36M 60MVJU 3D045069A ...
Page 305: ...Precautions for New Refrigerant R 410A SiUS30 604 292 Precautions for New Refrigerant R 410A ...
Page 309: ...SiUS39 601 iv Index ...