Refrigerant Circuit
Si39-407
52
Refirgerant Circuit
1.2
RXYQ8MA, 10MA, 12MA
No. in
refrigerant
system
diagram
Symbol
Name
Major Function
A
M1C
Inverter compressor (INV)
Inverter compressor is operated on frequencies between 52 Hz and 210 Hz 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.
RXYQ8, 10, 12MA: 37 steps
B
M2C
Standard compressor 1
(STD1)
D
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.
E
Y1E
Electronic expansion valve
(Main: EV1)
While in heating operation, PI control is applied to keep the outlet superheated degree
of air heat exchanger constant.
F
Y2E
Electronic expansion valve
(Subcool: EV2)
PI control is applied to keep the outlet superheated degree of subcooling heat
exchanger constant.
G
Y1S
Solenoid valve (Hot gas: SVP) Used to prevent the low pressure from transient falling.
J
Y2S
Solenoid valve (Receiver gas
discharging: SVG)
Used to collect refrigerant to receiver.
L
Y3S
Solenoid valve (Non-operating
unit liquid pipe closing: SVSL)
Used to prevent the accumulation of refrigerant in non-operating outdoor units in the
case of multi-outdoor unit system.
M
Y4S
4-way valve
Used to switch the operation mode between cooling and heating.
N
S1NPH High pressure sensor
Used to detect high pressure.
O
S1NPL Low pressure sensor
Used to detect low pressure.
P
S1PH
HP pressure switch (For INV
compressor)
In order to prevent the increase of high pressure when a malfunction occurs, this
switch is activated at high pressure of 4.0 MPA or more to stop the compressor
operation.
Q
S2PH
HP pressure switch (For STD
compressor 2)
S
—
Fusible plug
In order to prevent the increase of pressure when abnormal heating is caused by fire
or others, the fusible part of the plug is molten at a temperature of 70 to 75°C to
release the pressure into the atmosphere.
U
—
Pressure regulating valve 2
(Liquid pipe to receiver)
This valve opens at a pressure of 2 to 2.7 MPa for prevention of pressure increase,
thus resulting in no damage of functional parts due to the increase of pressure in
transportation or storage.
V
—
Piping heat exchanger
Used to heat the gas refrigerant from the liquid receiver.
W
—
Capillary tube
Used to return the refrigerating oil separated through the oil separator to the INV
compressor.
X
—
Capillary tube
Used to return the refrigerating oil separated through the oil separator to the STD1
compressor.
1
R1T
Thermistor (Outdoor air: Ta)
Used to detect outdoor temperature, correct discharge pipe temperature, and others.
2
R2T
Thermistor (Suction pipe: Ts)
Used to detect suction pipe temperature, keep the suction superheated degree
constant in heating operation, and others.
3
R31T
Thermistor (INV discharge
pipe: Tdi)
Used to detect discharge pipe temperature, make the temperature protection control of
compressor, and others.
4
R32T
Thermistor (STD1 discharge
pipe: Tds1)
6
R4T
Thermistor (Heat exchanger
deicer: Tb)
Used to detect liquid pipe temperature of air heat exchanger, determine defrosting
operation, and others.
7
R5T
Thermistor (Subcooling heat
exchanger gas pipe: Tsh)
Used to detect gas pipe temperature on the evaporation side of subcooling heat
exchanger, keep the superheated degree at the outlet of subcooling heat exchanger
constant, and others.
8
R6T
Thermistor (Receiver outlet
liquid pipe: Tl)
Used to detect receiver outlet liquid pipe temperature, prevent the drift between
outdoor units while in heating operation in the case of multiple-outdoor-unit system,
and others.
Содержание RXYQ5-48MAY1
Страница 1: ...RXYQ5 48MAY1 R410A Heat Pump 50Hz Si39 407...
Страница 20: ...Si39 407 Specifications 9 Part 2 Specifications 1 Specifications 10 1 1 Outdoor Units 10 1 2 Indoor Units 21...
Страница 59: ...Specifications Si39 407 48 Specifications...
Страница 62: ...Si39 407 Refrigerant Circuit Refirgerant Circuit 51 RXYQ5MA 3D048203 2 4 3 5 K J S E D M T N P A G O 1 W V...
Страница 83: ...Refrigerant Flow for Each Operation Mode Si39 407 72 Refirgerant Circuit...
Страница 173: ...Field Setting Si39 407 162 Test Operation...
Страница 184: ...Si39 407 Troubleshooting by Remote Controller Troubleshooting 173...
Страница 277: ...Troubleshooting OP Unified ON OFF Controller Si39 407 266 Troubleshooting...
Страница 279: ...Piping Diagrams Si39 407 268 Appendix 1 Piping Diagrams 1 1 Outdoor Unit RXYQ5MAY1 3D048203...
Страница 280: ...Si39 407 Piping Diagrams Appendix 269 RXYQ8MAY1 RXYQ10MAY1 RXYQ12MAY1 3D048033A...
Страница 281: ...Piping Diagrams Si39 407 270 Appendix RXYQ14MAY1 RXYQ16MAY1 3D048034A...
Страница 285: ...Piping Diagrams Si39 407 274 Appendix FXUQ BEVQ Indoor unit Connection Unit 4D037995E 4D034127B...
Страница 286: ...Si39 407 Piping Diagrams Appendix 275 FXAQ BEVQ Indoor unit Connection Unit 4D047084 4D034127B...
Страница 287: ...Piping Diagrams Si39 407 276 Appendix FXLQ BEVQ Indoor unit Connection Unit 4D047084 4D034127B...
Страница 288: ...Si39 407 Wiring Diagrams for Reference Appendix 277 2 Wiring Diagrams for Reference 2 1 Outdoor Unit RXYQ5MAY1 3D047087C...
Страница 289: ...Wiring Diagrams for Reference Si39 407 278 Appendix RXYQ8MAY1 RXYQ10MAY1 RXYQ12MAY1 3D047088C...
Страница 290: ...Si39 407 Wiring Diagrams for Reference Appendix 279 RXYQ14MAY1 RXYQ16MAY1 3D047089C...
Страница 294: ...Si39 407 Wiring Diagrams for Reference Appendix 283 2 3 Indoor Unit FXCQ20M 25M 32M 63MVE 3D039556A...
Страница 295: ...Wiring Diagrams for Reference Si39 407 284 Appendix FXCQ40M 50M 80M 125MVE 3D039557A...
Страница 296: ...Si39 407 Wiring Diagrams for Reference Appendix 285 FXZQ20M 25M 32M 40M 50MVE 3D038359...
Страница 297: ...Wiring Diagrams for Reference Si39 407 286 Appendix FXFQ25M 32M 40M 50M 63M 80M 100M 125MVE 3D039600A...
Страница 298: ...Si39 407 Wiring Diagrams for Reference Appendix 287 FXKQ25M 32M 40M 63MVE 3D039564A...
Страница 299: ...Wiring Diagrams for Reference Si39 407 288 Appendix FXDQ20N 25N 32N 40N 50N 63NVE 3D045500A...
Страница 300: ...Si39 407 Wiring Diagrams for Reference Appendix 289 FXSQ20M 25M 32M 40M 50M 63M 80M 100M 125MVE 3D039561A...
Страница 301: ...Wiring Diagrams for Reference Si39 407 290 Appendix FXMQ40M 50M 63M 80M 100M 125MVE 3D039620A...
Страница 302: ...Si39 407 Wiring Diagrams for Reference Appendix 291 FXMQ200M 250MVE 3D039621A...
Страница 303: ...Wiring Diagrams for Reference Si39 407 292 Appendix FXHQ32M 63M 100MVE 3D039801C...
Страница 304: ...Si39 407 Wiring Diagrams for Reference Appendix 293 FXAQ20M 25M 32MVE 40M 50M 63MVE 3D034206A...
Страница 306: ...Si39 407 Wiring Diagrams for Reference Appendix 295 FXUQ71M 100M 125MV1 3D044973...
Страница 307: ...Wiring Diagrams for Reference Si39 407 296 Appendix FXAQ20MH 25MH 32MH 40MH 50MHV1 3D046348A...
Страница 308: ...Si39 407 Wiring Diagrams for Reference Appendix 297 FXLQ20MH 25MH 32MH 40MH 50MHV1 3D046787A...
Страница 309: ...Wiring Diagrams for Reference Si39 407 298 Appendix FXMQ125MF 200MF 250MFV1 3D044996B...
Страница 310: ...Si39 407 Wiring Diagrams for Reference Appendix 299 BEVQ50MVE 3D046579A Notes...
Страница 311: ...Wiring Diagrams for Reference Si39 407 300 Appendix BEVQ71M 100M 125MVE 3D044901A Notes...
Страница 335: ...Method of Replacing The Inverter s Power Transistors and Diode Modules Si39 407 324 Appendix...
Страница 349: ...Si39 407 iv Index...
Страница 352: ...Printed in Singapore 03 2005 COS...