Daikin FXSQ40P7VEB [67/370] Rtsq14pay1 16pay1

Daikin FXHQ32MVET [67/370] Rtsq14pay1 16pay1
SiBE311209 Refrigerant Circuit
Refrigerant Circuit 58
1.3 RTSQ14PAY1, 16PAY1
No. in
refrigerant
system
diagram
Electric
Symbol
Name Major Function
M1C Inverter compressor
Inverter compressor is operated on frequencies between 52Hz and 266Hz by using the inverter,
while Standard compressor is operated with commercial power supply only. The number of
operating steps is as follows when Inverter compressor is operated in combination with Standard
compressor.
Compressor operation steps : Refer to P.92~93.
M2C
Standard compressor 1 (STD1)
M3C
Standard compressor 2 (STD2)
M1F Inverter fan
Because the system is an air heat exchange type, the fan is operated at 9-step rotation
speed by using the inverter.
M2F Inverter fan
Because the system is an air heat exchange type, the fan is operated at 9-step rotation
speed by using the inverter.
Y1E
Electronic expansion valve
(Main: EVM)
While the outdoor unit heat exchanger is evaporator, PI control is applied to keep the
outlet superheated degree of air heat exchanger constant.
Y2E
Electronic expansion valve
(Refrigerant charge: EVJ)
Used to open/close refrigerant charge port.
Y3E
Electronic expansion valve
(Subcooling: EVT)
PI control is applied to keep the outlet superheated degree of subcooling heat
exchanger constant.
Y1S
Solenoid valve (Refrigerant
regulator gas purging pipe: SVG)
Used to collect refrigerant to the refrigerant regulator.
 Y2S
Four way valve (Dual pressure
gas pipe switch: 20SB)
Used to switch dual pressure gas pipe to high pressure or low pressure.
 Y3S
Four way valve (Heat
exchanger switch: 20SA)
Used to switch outdoor unit heat exchanger to evaporator or condenser.
 Y4S
Solenoid valve (Refrigerant
regulator liquid pipe: SVL)
Used to collect refrigerant to the refrigerant regulator.
 Y5S Solenoid valve (Hot gas: SVP) Used to prevent the low pressure from transient falling.
 Y6S
Solenoid valve (Main bypass: SVE)
This opens in cooling operation.
 Y7S
Solenoid valve (Refrigerant
regulator discharge pipe: SVO)
This is used to discharge refrigerant from the refrigerant regulator.
 Y8S
Solenoid valve (Discharge pipe
of refrigerant regulator: SVT)
This is used to discharge refrigerant from the refrigerant regulator.
 Y9S
Solenoid valve (Hot gas:
SVHG)
Bypass the high pressure gas to the outdoor unit heat exchanger.
 S1NPH High pressure sensor Used to detect high pressure.
 S2NPL Low pressure sensor Used to detect low pressure.
 S1PH
High pressure switch (For
INV. compressor)
This functions when the pressure increases to stop operation and avoid high pressure
increase in the fault operation.
 S2PH
High pressure switch (For
STD compressor 1)
 S3PH
High pressure switch (For
STD compressor 2)

Pressure regulating valve
(Liquid pipe)
This is used when pressure increases, to prevent any damage on components caused
by pressure increase in transport or storage.

Pressure regulating valve
(Refrigerant regulator)
This is used when pressure increases, to prevent any damage on components caused
by pressure increase in transport or storage.
 Subcooling heat exchanger Apply subcooling to liquid refrigerant.
 Refrigerant regulator Surplus refrigerant is held according to the operation conditions.
 Capillary tube
Used to return the refrigerating oil separated through the oil separator to the INV. compressor.
 Capillary tube
Used to return the refrigerating oil separated through the oil separator to the STD1 compressor.
 Capillary tube
Used to return the refrigerating oil separated through the oil separator to the STD2 compressor.
 Capillary tube This is used to discharge refrigerant from the refrigerant regulator.
 R1T Thermistor (Outdoor air: Ta)
Used to detect outdoor air temperature, correct discharge pipe temperature, and others.
 R2T
Thermistor (Heat exchanger
gas pipe: Tg)
This detects temperature of gas pipe for air heat exchanger. Used to exercise the constant
control of superheated degree when an evaporator is used for outdoor unit heat exchanging.
 R31T
Thermistor (INV discharge pipe: Tdi)
Used to detect discharge pipe temperature. Used for compressor temperature
protection control.
 R32T
Thermistor (STD1 discharge pipe: Tds1)
 R33T
Thermistor (STD2 discharge pipe: Tds2)
 R4T
Thermistor (Heat exchanger
deicer: Tb)
Used to detect liquid pipe temperature of air heat exchanger. Used to make
judgements on defrosting operation.
 R5T
Thermistor (Subcooling heat
exchanger gas pipe: Tsh)
This detects temperature of gas pipe on the evaporator side for the subcooling heat exchanger. Used
to exercise the constant control of superheated degree at the outlet of subcooling heat exchanger.
 R6T
Thermistor (Subcooling heat
exchanger liquid pipe: Tl)
This detects temperature of liquid pipe between the main electronic expansion valve
and subcooling heat exchanger.
 R7T
Thermistor (Heat exchanger
liquid pipe: Tf)
This detects temperature of liquid pipe between the air heat exchanger and main electronic expansion
valve. Used to make judgements on the recover or discharge refrigerants to the refrigerant regulator.
 R8T
Thermistor (Suction pipe: TsA)
Used to detect suction pipe temperature.
 R9T Thermistor (Liquid pipe: Tsc)
This detects temperature of liquid pipe between the liquid stop valve and subcooling
heat exchanger.

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