Refrigerant Circuit
SiBE37-701
56
Refrigerant Circuit
1.
Refrigerant Circuit
1.1
REYQ8P, 10P, 12P
No. in
refrigerant
system
diagram
Symbol
Name
Major Function
1
M1C
Inverter compressor (INV)
Inverter compressor is operated on frequencies between 52Hz and 210Hz 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.
REYQ8P : 30 steps, REYQ10, 12P : 37 steps
2
M2C
Standard compressor 1
(STD1)
3
M1F
Inverter fan
Since the system is of air heat exchanging type, the fan is operated at 9-step rotation
speed by using the inverter.
4
M2F
Inverter fan
Since the system is of air heat exchanging type, the fan is operated at 9-step rotation
speed by using the inverter.
5(6)
Y1E
(Y3E)
Electronic expansion valve
(Main: EVM)
While in heating operation, PI control is applied to keep the outlet superheated degree
of air heat exchanger constant.
7(8)
Y2E
(Y5E)
Electronic expansion valve
(Subcool: EVT)
PI control is applied to keep the outlet superheated degree of subcooling heat
exchanger constant.
9
Y4E
Electronic expansion valve
(Refrigerant charge EVJ)
This is used to open/close refrigerant charge port.
10(11)
Y5S
(Y10S)
Solenoid valve (Main bypass
SVE)
This opens in cooling operation.
12
Y4S
Solenoid valve (Hot gas: SVP) Used to prevent the low pressure from transient falling.
13
Y3S
Solenoid valve (Refrigerant
regulator liquid pipe SVL)
This is used to collect refrigerant to the refrigerant regulator.
14
Y1S
Solenoid valve (Refrigerant
regulator gas purging pipe
SVG)
This is used to collect refrigerant to the refrigerant regulator.
15
Y7S
Solenoid valve (Refrigerant
regulator discharge pipe SVO)
This is used to discharge refrigerant from the refrigerant regulator.
16
Y6S
Solenoid valve (Discharge
pipe of refrigerant regulator)
Bypass the high pressure gas to the refrigerant regulator.
17(18)
Y2S
(Y9S)
4 way valve (Heat exchanger
switch 20SA)
This is used to switch outdoor heat exchanger to evaporator or condenser.
19
Y8S
4 way valve (Dual pressure
gas pipe switch 20SB)
This is used to switch dual pressure gas pipe to high pressure or low pressure.
20
S1NPH High pressure sensor
Used to detect high pressure.
21
S2NPL
Low pressure sensor
Used to detect low pressure.
22
S1PH
HP pressure switch (For INV)
This functions when pressure increases to stop operation and avoid high pressure
increase in the fault operation.
23
S2PH
HP pressure switch (For STD)
24
—
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.
25
—
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.
26
—
Subcooling heat exchanger
Apply subcooling to liquid refrigerant.
27
—
Refrigerant regulator
Surplus refrigerant is held according to the operation conditions.
28
—
Capillary tube
Used to return the refrigerating oil separated through the oil separator to the INV compressor.
29
—
Capillary tube
Used to return the refrigerating oil separated through the oil separator to the STD1
compressor.
30
—
Capillary tube
This is used to discharge refrigerant from the refrigerant regulator.
31
R1T
Thermistor (Outdoor air: Ta)
Used to detect outdoor temperature, correct discharge pipe temperature, and others.
32(42)
R8T
(R10T)
Thermistor (Suction pipe: TsA) Used to detect suction pipe temperature.
33
R31T
Thermistor (INV discharge
pipe: Tdi)
Used to detect discharge pipe temperature. Used for compressor temperature
protection control.
34
R32T
Thermistor (STD1 discharge
pipe: Tds1)
35(45)
R4T
(R12T)
Thermistor (Heat exchanger
deicer: Tb)
Used to detect liquid pipe temperature of air heat exchanger. Used to make judgments
on defrosting operation.
36(46)
R2T
(R11T)
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.
37(47)
R7T
(R15T)
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 judgments on the recover or discharge
refrigerants to the refrigerant regulator.
38(48)
R5T
(R13T)
Thermistor (Subcooling heat
exchanger gas pipe: Tsh)
Used to detect gas pipe temperature on the evaporation side of subcooling heat
exchanger. Used to exercise the constant control of superheated degree at the outlet
of supercooled heat exchanger.
39
R6T
Thermistor (Subcooling heat
exchanger liquid pipe Tl)
This detects temperature of liquid pipe between the main expansion valve and
subcooling heat exchanger.
40(50)
R9T
(R14T)
Thermistor (Liquid pipe Tsc)
This detects temperature of liquid pipe between the liquid stop valve and subcooling
heat exchanger.
Содержание VRV III REYQ10PY1B
Страница 1: ...REYQ8 48PY1B R 410A Heat Recovery 50Hz SiBE37 701 ...
Страница 111: ...Refrigerant Flow for Each Operation Mode SiBE37 701 100 Refrigerant Circuit ...
Страница 252: ...SiBE37 701 Troubleshooting by Remote Controller Troubleshooting 241 ...
Страница 395: ...Piping Diagrams SiBE37 701 384 Appendix 1 Piping Diagrams 1 1 Outdoor Unit REYQ8P 10P 12P 3D058154B S1NPH S2NPL ...
Страница 396: ...SiBE37 701 Piping Diagrams Appendix 385 REYQ14P 16P 3D058153B S2NPL S1NPH ...
Страница 397: ...Piping Diagrams SiBE37 701 386 Appendix REMQ8P 3D057743 ...
Страница 398: ...SiBE37 701 Piping Diagrams Appendix 387 REMQ10P 12P 3D057742 ...
Страница 399: ...Piping Diagrams SiBE37 701 388 Appendix REMQ14P 16P 3D057741 ...
Страница 400: ...SiBE37 701 Piping Diagrams Appendix 389 1 2 Indoor Unit FXFQ P ...
Страница 405: ...Piping Diagrams SiBE37 701 394 Appendix 1 3 BS Unit 4D057985A ...
Страница 414: ...SiBE37 701 Wiring Diagrams for Reference Appendix 403 2 3 Indoor Unit FXFQ20P 25P 32P 40P 50P 63P 80P 100P 125PVEB ...
Страница 415: ...Wiring Diagrams for Reference SiBE37 701 404 Appendix FXZQ20M 25M 32M 40M 50MV1 ...
Страница 416: ...SiBE37 701 Wiring Diagrams for Reference Appendix 405 FXCQ20M 25M 32M 63MV3 ...
Страница 417: ...Wiring Diagrams for Reference SiBE37 701 406 Appendix FXCQ40M 50M 80M 125MV3 ...
Страница 420: ...SiBE37 701 Wiring Diagrams for Reference Appendix 409 FXDQ20M 25MV3 ...
Страница 421: ...Wiring Diagrams for Reference SiBE37 701 410 Appendix FXSQ20M 25M 32M 40M 50M 63MV3 ...
Страница 422: ...SiBE37 701 Wiring Diagrams for Reference Appendix 411 FXSQ80M 100M 125MV3 ...
Страница 447: ...Example of connection SiBE37 701 436 Appendix ...
Страница 453: ...Method of Checking the Inverter s Power Transistors and Diode Modules SiBE37 701 442 Appendix ...
Страница 467: ...SiBE37 701 iv Index ...
Страница 471: ...SiBE37 701 viii Drawings Flow Charts ...