dvm plus3 1 outdoor units
DESCRIPTION
DVM PLUS3 1 Outdoor UnitsTRANSCRIPT
Outdoor Units
Outdoor Units
Outdoor Units
Outdoor Units
SAMSUNG DVM Air Conditioner
DVM PLUS III
2010
High Ambient
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Outdoor Units
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Outdoor Units
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2
123
Outdoor units
Indoor units
Accessories
I. Products6
9
11
1234567 8
Specifications
Dimensional drawing
PCB connector layout
Electrical wiring diagram
Sound pressure level
Operation limit
Cycle operation mode
Cycle function parts
II. Outdoor units14
21
22
24
25
26
27
34
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Outdoor units
Products
Installation
III. Installation38
39
43
44
46
48
54
56
12345678
Outdoor unit combinations
Space requirements
Placing the outdoor units
Electric specifications
Wiring works
Refrigerant piping works
Option switches & function keys
Error codes
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DVM PLUS III
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Products
I. Products
1 Outdoor units .............................................6
2 Indoor units ................................................9
3 Accessories .............................................11
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1 Outdoor units
1-1. Nomenclature
Classification
Outdoor unit RD DVMJ FJMD CAC
Capacity*
×1/10 HP(3 digits)
Airflow direction
TROPICAL H/P Q
TROPICAL C/O T
H/P H
C/O C
H/R R
Type
General V
Unitary (RoofTop) R
DVM SLIM S
DVM MINI M
GHP G
Water DVM D
Model name
RVXRD
HV T TQ X
100100 FG
EA
Rating voltage
220V, 60Hz B
220~240V, 50Hz E
380~415V, 50Hz, 3 phase G
380V, 60Hz, 3 phase H
460V, 60Hz, 3 phase J
Version
Export A~Z
Refrigerant
R410A X
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Products
TON 20.8 22.4 24.0 25.5 27.0 28.5
HP 26 28 30 32 34 36
Model Name RD260/280/300/320/340/360VQXGA
1-2. Line-up
TON 6.4 8.0 9.5
HP 8 10 12
Model Name RD080/100/120VQXGA
TON 12.8 14.4 16.0 17.5 19.0
HP 16 18 20 22 24
Model Name RD160/180/200/220/240VQXGA
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1 Outdoor units
1-3. Outdoor unit combinations
1) Basic models
2) Combinations
Classification Capacity (Ton) Capacity (HP) Model
Single unit
6.4 8 RD080VQXGA
8.0 10 RD100VQXGA
9.5 12 RD120VQXGA
Classification Capacity (Ton) Capacity (HP)Basic model
RD080VQXGA RD100VQXGA RD120VQXGA
Module unit
12.8 16 2
14.4 18 1 1
16.0 20 2
17.5 22 1 1
19.0 24 2
20.8 26 2 1
22.4 28 1 2
24.0 30 3
25.5 32 2 1
27.0 34 1 2
28.5 36 3
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Products
Indoor units
Model name
Classification
Indoor unit (R410A) AVX
Classification by product group
Cassette type C
Duct type D
Wall mounted type W
Convertible type T
Mode
Heat Pump/Heat Recovery H
Product notation
Cassette type
Slim 1way S
2way 2
Mini 4way M
4way 4
Duct typeSlim S
Middle Static Pressure U
Wall mounted typeMB B
Neo Forte N
Capacity*
×1/10 kW (3 digits)
Rating voltage
1Ø, 220V, 60Hz B
1Ø, 208V~230V, 60Hz C
1Ø, 220V~240V, 50Hz E
Version
Export A~Z
* Index
Notation Cooling Heating022 2.2 2.5028 2.8 3.2036 3.6 4.0045 4.5 5.0056 5.6 6.3060 6.0 6.8071 7.1 8.0090 9.0 10.0112 11.2 12.5128 12.8 13.8140 14.0 16.0
RVXAVX
VC
HS TH
100022 FE
EE
2-1. Nomenclature
2
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2 Indoor units
2-2. Line-up
2.2kW 2.8kW 3.6kW 4.5kW 5.6kW 6.0kW 7.1kW 9.0kW 11.2kW 12.8kW 14.0kW
Slim 1 way
cassette
Mini 4 way
cassette
4 way cassette
Slim duct
MSP duct
Neo-Forte
CapacityType
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Products
Accessories3
Classification Product Model Image Application model
Integrated management system
Controller
DMS MIM-D00A DVM Series, FJM, CAC
S-NET 3 MST-P3P DVM Series, FJM, CAC
S-NET mini MST-S3W DVM Series, FJM, CAC
Interface module SiM MIM-B12 DVM Series, FJM
Centralized control system
Controller
Centralized controller MCM-A202B DVM Series, FJM, CAC
Function controller MCM-A100 DVM Series, FJM, CAC
Operation mode selection switch MCM-C200 DVM Series
Interface module
Centralized controller interface module
MIM-B13B Mini DVM(R410A), DVM PLUS III, FJM
Individual control system Controller Controller
Wireless remote controller MR-CH01 Cassette, Duct(Receiver needed)
Wired remote controller(Premium) MWR-WS0T Cassette, Wall-mounted, Duct, Console
Wired remote controller (Multi function)
MWR-WE00 Cassette, Wall-mounted, Duct, Console
Wired remote controller MWR-WH00 Cassette, Wall-mounted, Duct, Console
Simplified wired remote controller MWR-SH00 Cassette, Wall-mounted, Duct, Console
Wireless signal receiver kit
Wireless signal receiver
MRK-A00 Duct (For wireless remote controller)
Receiver wire MRW-10A Duct (For wireless remote controller)
7-day scheduler MWR-BS00 Cassette, Wall-mounted, Duct
Building managementsystem
Lonworks interface module MIM-B07 DVM Series, FJM
Guest room management system
Key-tag interface module MIM-B02 DVM Series, FJM
External contact interface module MIM-B14 Mini DVM(R410A), DVM PLUS III,
FJM(Non MHTTTFKEA)
DVM Series : Mini DVM, DVM PLUS III
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Accessories3
Classification Feature Model Description Relevant unit Remark
Y-joint
MXJ-YA1509K 15.0 kW and below
DVM PLUS III Requisite
MXJ-YA2512K Over 15.0 ~ 40.6 kW and below
MXJ-YA2812K Over 40.6 ~ 46.4 kW and below
MXJ-YA2815K Over 46.4 ~ 69.6 kW and below
MXJ-YA3119K Over 69.6 ~ 98.6 kW and below
MXJ-YA3819K Over 98.6 ~ 100.5 kW and below
Outdoor joint (Outdoor
Connection)MXJ-T3819K Below 36 HP DVM PLUS III Requisite
Header joint
MXJ-HA2512K Below 46.4 kW
DVM PLUS III RequisiteMXJ-HA3115K Below 69.6 kW
MXJ-HA3819K Over 69.7 kW
EEV kits
MXD-A13K116ABelow 3.6 kW (1 Room) +5.6 kW ~9.0 kW (1Room)
Wall-mounted (For 2 indoor
units)
Option
MXD-A13K200A Below 3.6 kW (2 Rooms)
MXD-A16K200A 5.6 kW~9.0 kW (2Rooms)
MXD-A22K200A Over 9.0 kW (2Rooms)
MXD-A13K216ABelow 3.6 kW (2 Rooms) +5.6 kW ~ 9.0 kW (1Room)
Wall-mounted(For 3 indoor
units)
MXD-A13K300A Below 3.6 kW (3 Rooms)
MXD-A16K213ABelow 3.6 kW (1 Room) +
5.6 kW ~ 9.0 kW (2Rooms)
MXD-A16K300A 5.6 kW ~ 9.0 kW (3Rooms)
MEV-A13SA Below 3.6 kW (1 Room) Wall-mounted (For single unit)MEV-A16SA 5.6 kW ~ 9.0 kW (1Room)
Drain pump
MDP-E075SEE Slim Duct (2.2 ~ 7.1) kW
- Option
MDP-E075SEE1 Slim Duct (9.0 ~ 14.0) kW
MDP-M075SGU1 MSP Duct (9.0/11.2) kW
MDP-M075SGU2 MSP Duct (12.8/14.0) kW
MDP-M075SGU3 MSP Duct (5.6/7.1) kW
Front panel
PSSMA Slim 1 way cassette
- RequisitePMSMA Mini 4 way cassette
P4SMA 4 way cassette
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Outdoor units
II. Outdoor units
1 Specifications ......................................... 14
2 Dimensional drawing ...............................21
3 PCB connector layout ..............................22
4 Electrical wiring diagram .........................24
5 Sound pressure level ...............................25
6 Operation limit ..........................................26
7 Cycle operation mode .............................27
8 Cycle function parts .................................34
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1 Specifications
Type
Model Name Basic RD080VQXGA RD010VQXGA RD120VQXGAPower Supply Ø/ V/ Hz 3/ 380~415/ 50 3/ 380~415/ 50 3/ 380~415/ 50Mode*1) - Heat Pump Heat Pump Heat Pump
Performance
Horse Power HP 8 10 12
Capacity
Cooling*2)
kW 22.4 28.0 33.5 Btu/h 76,400 95,500 114,300
TR 6.4 8.0 9.5
Cooling*3)
kW 22.4 25.0 28.5 Btu/h 76,400 85,300 97,200
TR 6.4 7.1 8.1
Heating*4)
kW 25.0 31.5 37.5 Btu/h 85,300 107,500 128,000
TR 7.1 9.0 10.7
Power
Nominal InputCooling*2)
kW5.09 7.36 10.00
Cooling*3) 8.09 8.93 11.02 Heating 5.74 7.18 9.06
Nominal Running Current
Cooling*2)
A8.5 13.1 19.1
Cooling*3) 14.3 15.7 20.5 Heating 10.9 12.7 17.9
Circuit Breaker (MCCB/ELB/ELCB) A 25 30 40
COPCooling*2) - 4.40 3.40 2.85 Cooling*3) - 2.77 2.80 2.59 Heating - 4.36 4.39 4.14
Compressor
Model - ZPD72KCE-TFD
ZP72KCE-TFD ZPD72KCE-TFD
ZP72KCE-TFD ZPD83KCE-TFD
ZP83KCE-TFD
Type - Digital Scroll Fixed Scroll Digital Scroll Fixed Scroll Digital Scroll Fixed ScrollNumber EA 1 1 1 1 1 1Piston Displacement cc/Rev 67.1 67.1 67.1 67.1 77.2 77.2Output kW 5.75 5.65 5.75 5.65 6.65 6.4
LubricantType - 3MAF POE 3MAF POE 3MAF POE
Charging cc 1,981 1,981 1,981 1,981 1,981 1,981
Fan
Type / Control - Propeller/BLDC Propeller/BLDC Propeller/BLDCMotor Output W 630 630 630Airflow Rate m3/min 170 170 200
External Static Pressure Max.
mmAq 8 8 8Pa 78.5 78.5 78.5
Safety Devices
Mechanical Type- High Pressure Switch High Pressure Switch High Pressure Switch- Crank Case Heater Crank Case Heater Crank Case Heater- Fuse for PCB Fuse for PCB Fuse for PCB
Electronic Type
- Over Voltage Protection Over Voltage Protection Over Voltage Protection- Current Transformer Current Transformer Current Transformer
- Fan Motor Overheat/Current protector
Fan Motor Overheat/Current protector
Fan Motor Overheat/Current protector
Piping Connections
Liquid Ø, mm 9.52 9.52 12.70 Gas Ø, mm 19.05 22.23 28.58 Oil (Flare) Ø, mm 6.35 6.35 6.35
Installation Limitation
Max. Length m 200 200 200 Max. Height m 50 (40) 50 (40) 50 (40)
RefrigerantType - R410A R410A R410AFactory Charging kg 8.5 8.5 8.5
Sound4) Sound Pressure dB(A) 57 58 60
Set Size
Net Weight kg 280 280 280Shipping Weight kg 297 297 297Net Dimensions (WxHxD) mm 1200 x 1668 x 765 1200 x 1668 x 765 1200 x 1668 x 765Shipping Dimensions (WxHxD) mm 1268 x 1868 x 832 1268 x 1868 x 832 1268 x 1868 x 832
CableMain Power (Below 50m) mm2 CV 2.5 CV 2.5 CV 4Communication mm2 0.75~1.5 0.75~1.5 0.75~1.5
Operating Temp. Range
Cooling °C -5~50 -5~50 -5~50Heating °C -20~24 -20~24 -20~24
*1) Mode HP : Heat Pump, HR : Heat Recovery*2) Nominal cooling capacities are based on;
Indoor temperature : 27°C DB, 19°C WB / Outdoor temperature : 35°C DB, Equivalent refrigerant piping : 7.5m , Level differences : 0m *3) Nominal cooling capacities are based on; Indoor temperature : 27°C DB, 19°C WB / Outdoor temperature : 46°C DB, Equivalent refrigerant piping : 7.5m , Level differences : 0m*4) Nominal heating capacities are based on;
Indoor temperature : 20°C DB, 15°C WB / Outdoor temperature : 7°C DB, 6°C WB, Equivalent refrigerant piping : 7.5m, Level differences : 0m *5) Sound level was acquired in a dead room. Thus actual noise level may be different depending on the installation conditions. *6) Specifications are subject to change without prior notice for product improvement.
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Outdoor units
Type
Model Name
Basic RD160VQXGA RD180VQXGA
BasicRD080VQXGA 2 1RD100VQXGA 1RD120VQXGA
Power Supply Ø/ V/ Hz 3/ 380~415/ 50 3/ 380~415/ 50Mode*1) - Heat Pump Heat Pump
Performance
Horse Power HP 16 18
Capacity
Cooling*2)kW 44.8 50.4
Btu/h 152,800 171,900TR 12.7 14.3
Cooling*3)kW 44.8 47.4
Btu/h 152,800 161,700TR 12.7 13.5
Heating*4)kW 50.0 56.5
Btu/h 170,600 192,800TR 14.2 16.1
Power
Nominal InputCooling*2)
kW10.18 12.45
Cooling*3) 16.18 17.02Heating 11.48 12.92
Nominal Running Current
Cooling*2)
A17.0 21.6
Cooling*3) 28.6 30.0Heating 21.8 23.6
Circuit Breaker (MCCB/ELB/ELCB) A 50 60
COPCooling*2) - 4.40 4.05Cooling*3) - 2.77 2.78Heating - 4.36 4.37
Compressor
Model - ZPD72T ZPD83T ZP72T ZP83T ZPD72T ZPJ83T ZP72T ZPI83T
Type - Digital Scroll Fixed Scroll Digital Scroll Fixed ScrollNumber EA 2 2 2 2Piston Displacement cc/Rev 67.1 67.1 67.1 67.1Output kW 5.75 5.65 5.75 5.65
LubricantType - 3MAF POE 3MAF POE
Charging cc 1,981 1,981 1,981 1,981
Fan
Type / Control - Propeller/BLDC Propeller/BLDCMotor Output W 630 x 2 630 x 2Airflow Rate m3/min 170 x 2 170 x 2External Static Pressure Max.
mmAq 8 8Pa 78.5 78.5
Safety Devices
Mechanical Type- High Pressure Switch High Pressure Switch- Crank Case Heater Crank Case Heater- Fuse for PCB Fuse for PCB
Electronic Type- Over-voltage Protection Over-voltage Protection- Current Transformer Current Transformer- Fan Motor Overheat/Current Protector Fan Motor Overheat/Current Protector
Piping Connections
Liquid Ø, mm 15.88 15.88Gas Ø, mm 28.58 28.58Discharge Gas Ø, mm - -Oil (Flare) Ø, mm 6.35 6.35
Installation Limitation
Max. Lengthm 200 200ft 656 656
Max. Heightm 50 (40) 50 (40)ft 164 (131) 164 (131)
RefrigerantType - R410A R410AFactory Charging kg 8.5 x 2 8.5 x 2
Sound4) Sound Pressure dB(A)
Set Size
Net Weight kg 280 x 2 280 x 2Shipping Weight kg 297 x 2 297 x 2Net Dimensions (WxHxD) mm (1200 x 1668 x 765) x 2 (1200 x 1668 x 765) x 2Shipping Dimensions (WxHxD) mm (1268 x 1888 x 832) x 2 (1268 x 1888 x 832) x 2
CableMain Power (Below 50m) mm2 CV 6 CV 10Communication mm2 0.75~1.5 0.75~1.5
Operating Temp. Range
Cooling °C -5~50 -5~50Heating °C -20~24 -20~24
*1) Mode HP : Heat Pump, HR : Heat Recovery*2) Nominal cooling capacities are based on;
Indoor temperature : 27°C DB, 19°C WB / Outdoor temperature : 35°C DB, Equivalent refrigerant piping : 7.5m , Level differences : 0m *3) Nominal cooling capacities are based on; Indoor temperature : 27°C DB, 19°C WB / Outdoor temperature : 46°C DB, Equivalent refrigerant piping : 7.5m , Level differences : 0m*4) Nominal heating capacities are based on;
Indoor temperature : 20°C DB, 15°C WB / Outdoor temperature : 7°C DB, 6°C WB, Equivalent refrigerant piping : 7.5m, Level differences : 0m *5) Sound level was acquired in a dead room. Thus actual noise level may be different depending on the installation conditions. *6) Specifications are subject to change without prior notice for product improvement.
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1
Type
Model Name
Basic RD200VQXGA RD220VQXGA
BasicRD080VQXGARD100VQXGA 2 1RD120VQXGA 1
Power Supply Ø/ V/ Hz 3/ 380~415/ 50 3/ 380~415/ 50Mode*1) - Heat Pump Heat Pump
Performance
Horse Power HP 20 22
Capacity
Cooling*2)kW 56.0 61.6
Btu/h 191,000 210,100TR 15.9 17.5
Cooling*3)kW 50.0 53.5
Btu/h 170,600 182,500TR 14.2 15.2
Heating*4)kW 63.0 69.0
Btu/h 215,000 235,500TR 17.9 19.6
Power
Nominal InputCooling*2)
kW14.72 17.36
Cooling*3) 17.86 19.95Heating 14.36 16.24
Nominal Running Current
Cooling*2)
A26.2 32.2
Cooling*3) 31.4 36.2Heating 25.4 30.6
Circuit Breaker (MCCB/ELB/ELCB) A 60 60
COPCooling*2) - 3.80 3.55Cooling*3) - 2.80 2.68Heating - 4.39 4.25
Compressor
Model - ZPD72T ZPJ83T ZP72T ZPI83T ZPD72T ZPD83T ZP72T ZP83T
Type - Digital Scroll Fixed Scroll Digital ScrollNumber EA 2 2 1 1 1 1Piston Displacement cc/Rev 67.1 67.1 67.1 77.2 67.1 77.2Output kW 5.75 5.65 5.75 6.65 5.65 6.4
LubricantType - 3MAF POE 3MAF POE
Charging cc 1,981 1,981 1,981 1,981 1,981 1,981
Fan
Type / Control - Propeller/BLDC Propeller/BLDCMotor Output W 630 x 2 630 x 2Airflow Rate m3/min 170 x 2 170 x 1 + 200 x 1External Static Pressure Max.
mmAq 8 8Pa 78.5 78.5
Safety Devices
Mechanical Type- High Pressure Switch High Pressure Switch- Crank Case Heater Crank Case Heater- Fuse for PCB Fuse for PCB
Electronic Type- Over-voltage Protection Over-voltage Protection- Current Transformer Current Transformer- Fan Motor Overheat/Current Protector Fan Motor Overheat/Current Protector
Piping Connections
Liquid Ø, mm 15.88 15.88Gas Ø, mm 28.58 28.58Discharge Gas Ø, mm - -Oil (Flare) Ø, mm 6.35 6.35
Installation Limitation
Max. Lengthm 200 200ft 656 656
Max. Heightm 50 (40) 50 (40)ft 164 (131) 164 (131)
RefrigerantType - R410A R410AFactory Charging kg 8.5 x 2 8.5 x 2
Sound4) Sound Pressure dB(A)
Set Size
Net Weight kg 280 x 2 280 x 2Shipping Weight kg 297 x 2 297 x 2Net Dimensions (WxHxD) mm (1200 x 1668 x 765) x 2 (1200 x 1668 x 765) x 2Shipping Dimensions (WxHxD) mm (1268 x 1888 x 832) x 2 (1268 x 1888 x 832) x 2
CableMain Power (Below 50m) mm2 CV 10 CV 10Communication mm2 0.75~1.5 0.75~1.5
Operating Temp. Range
Cooling °C -5~50 -5~50Heating °C -20~24 -20~24
Specifications
*1) Mode HP : Heat Pump, HR : Heat Recovery*2) Nominal cooling capacities are based on;
Indoor temperature : 27°C DB, 19°C WB / Outdoor temperature : 35°C DB, Equivalent refrigerant piping : 7.5m , Level differences : 0m *3) Nominal cooling capacities are based on; Indoor temperature : 27°C DB, 19°C WB / Outdoor temperature : 46°C DB, Equivalent refrigerant piping : 7.5m , Level differences : 0m*4) Nominal heating capacities are based on;
Indoor temperature : 20°C DB, 15°C WB / Outdoor temperature : 7°C DB, 6°C WB, Equivalent refrigerant piping : 7.5m, Level differences : 0m *5) Sound level was acquired in a dead room. Thus actual noise level may be different depending on the installation conditions. *6) Specifications are subject to change without prior notice for product improvement.
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Outdoor units
Type
Model Name
Basic RD240VQXGA RD260VQXGA
BasicRD080VQXGA 2RD100VQXGA 1RD120VQXGA 2
Power Supply Ø/ V/ Hz 3/ 380~415/ 50 3/ 380~415/ 50Mode*1) - Heat Pump Heat Pump
Performance
Horse Power HP 24 26
Capacity
Cooling*2)kW 67.2 72.8
Btu/h 229,200 248,300TR 19.1 20.7
Cooling*3)kW 57.0 69.8
Btu/h 194,400 238,100TR 16.2 19.8
Heating*4)kW 75.0 81.5
Btu/h 256,000 278,100TR 21.3 23.2
Power
Nominal InputCooling*2)
kW20.00 17.54
Cooling*3) 22.04 25.11Heating 18.12 18.66
Nominal Running Current
Cooling*2)
A38.2 30.1
Cooling*3) 41.0 44.3Heating 35.8 34.5
Circuit Breaker (MCCB/ELB/ELCB) A 75 75
COPCooling*2) - 3.36 4.15Cooling*3) - 2.59 2.78Heating - 4.14 4.37
Compressor
Model - ZPD72T ZPD83T ZP72T ZP83T ZPD72T ZPD83T ZP72T ZP83T
Type - Digital Scroll Fixed Scroll Digital Scroll Fixed ScrollNumber EA 2 2 3 3Piston Displacement cc/Rev 77.2 77.2 67.1 67.1Output kW 6.65 6.4 5.75 5.65
LubricantType - 3MAF POE 3MAF POE
Charging cc 1,981 1,981 1,981 1,981
Fan
Type / Control - Propeller/BLDC Propeller/BLDCMotor Output W 630 x 2 630 x 3Airflow Rate m3/min 200 x 2 170 x 3External Static Pressure Max.
mmAq 8 8Pa 78.5 78.5
Safety Devices
Mechanical Type- High Pressure Switch High Pressure Switch- Crank Case Heater Crank Case Heater- Fuse for PCB Fuse for PCB
Electronic Type- Over-voltage Protection Over-voltage Protection- Current Transformer Current Transformer- Fan Motor Overheat/Current Protector Fan Motor Overheat/Current Protector
Piping Connections
Liquid Ø, mm 19.05 19.05Gas Ø, mm 31.75 31.75Discharge Gas Ø, mm - -Oil (Flare) Ø, mm 6.35 6.35
Installation Limitation
Max. Lengthm 200 200ft 656 656
Max. Heightm 50 (40) 50 (40)ft 164 (131) 164 (131)
RefrigerantType - R410A R410AFactory Charging kg 8.5 x 2 8.5 x 3
Sound4) Sound Pressure dB(A)
Set Size
Net Weight kg 280 x 2 280 x 3Shipping Weight kg 297 x 2 297 x 3Net Dimensions (WxHxD) mm (1200 x 1668 x 765) x 2 (1200 x 1668 x 765) x 3Shipping Dimensions (WxHxD) mm (1268 x 1888 x 832) x 2 (1268 x 1888 x 832) x 3
CableMain Power (Below 50m) mm2 CV 10 CV 16Communication mm2 0.75~1.5 0.75~1.5
Operating Temp. Range
Cooling °C -5~50 -5~50Heating °C -20~24 -20~24
*1) Mode HP : Heat Pump, HR : Heat Recovery*2) Nominal cooling capacities are based on;
Indoor temperature : 27°C DB, 19°C WB / Outdoor temperature : 35°C DB, Equivalent refrigerant piping : 7.5m , Level differences : 0m *3) Nominal cooling capacities are based on; Indoor temperature : 27°C DB, 19°C WB / Outdoor temperature : 46°C DB, Equivalent refrigerant piping : 7.5m , Level differences : 0m*4) Nominal heating capacities are based on;
Indoor temperature : 20°C DB, 15°C WB / Outdoor temperature : 7°C DB, 6°C WB, Equivalent refrigerant piping : 7.5m, Level differences : 0m *5) Sound level was acquired in a dead room. Thus actual noise level may be different depending on the installation conditions. *6) Specifications are subject to change without prior notice for product improvement.
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1 Specifications
Type
Model Name
Basic RD280VQXGA RD300VQXGA
BasicRD080VQXGA 1RD100VQXGA 2 3RD120VQXGA
Power Supply Ø/ V/ Hz 3/ 380~415/ 50 3/ 380~415/ 50Mode*1) - Heat Pump Heat Pump
Performance
Horse Power HP 28 30
Capacity
Cooling*2)kW 78.4 84.0
Btu/h 267,400 286,500TR 22.3 23.9
Cooling*3)kW 72.4 75.0
Btu/h 247,000 255,900TR 20.6 21.3
Heating*4)kW 88.0 94.5
Btu/h 300,300 322,500TR 25.0 26.9
Power
Nominal InputCooling*2)
kW19.81 22.08
Cooling*3) 25.95 26.79Heating 20.10 21.54
Nominal Running Current
Cooling*2)
A34.7 39.3
Cooling*3) 45.7 47.1Heating 36.3 38.1
Circuit Breaker (MCCB/ELB/ELCB) A 75 100
COPCooling*2) - 3.96 3.80Cooling*3) - 2.79 2.80Heating - 4.38 4.39
Compressor
Model - ZPD72T ZPD83T ZP72T ZP83T ZPD72T ZPD83T ZP72T ZP83T
Type - Digital Scroll Fixed Scroll Digital Scroll Fixed ScrollNumber EA 3 3 3 3Piston Displacement cc/Rev 67.1 67.1 67.1 67.1Output kW 5.75 5.65 5.75 5.65
LubricantType - 3MAF POE 3MAF POE
Charging cc 1,981 1,981 1,981 1,981
Fan
Type / Control - Propeller/BLDC Propeller/BLDCMotor Output W 630 x 3 630 x 3Airflow Rate m3/min 170 x 3 170 x 3External Static Pressure Max.
mmAq 8 8Pa 78.5 78.5
Safety Devices
Mechanical Type- High Pressure Switch High Pressure Switch- Crank Case Heater Crank Case Heater- Fuse for PCB Fuse for PCB
Electronic Type- Over-voltage Protection Over-voltage Protection- Current Transformer Current Transformer- Fan Motor Overheat/Current Protector Fan Motor Overheat/Current Protector
Piping Connections
Liquid Ø, mm 19.05 19.05Gas Ø, mm 31.75 31.75Discharge Gas Ø, mm - -Oil (Flare) Ø, mm 6.35 6.35
Installation Limitation
Max. Lengthm 200 200ft 656 656
Max. Heightm 50 (40) 50 (40)ft 164 (131) 164 (131)
RefrigerantType - R410A R410AFactory Charging kg 8.5 x 3 8.5 x 3
Sound4) Sound Pressure dB(A)
Set Size
Net Weight kg 280 x 3 280 x 3Shipping Weight kg 297 x 3 297 x 3Net Dimensions (WxHxD) mm (1200 x 1668 x 765) x 3 (1200 x 1668 x 765) x 3Shipping Dimensions (WxHxD) mm (1268 x 1888 x 832) x 3 (1268 x 1888 x 832) x 3
CableMain Power (Below 50m) mm2 CV 16 CV 16Communication mm2 0.75~1.5 0.75~1.5
Operating Temp. Range
Cooling °C -5~50 -5~50Heating °C -20~24 -20~24
*1) Mode HP : Heat Pump, HR : Heat Recovery*2) Nominal cooling capacities are based on;
Indoor temperature : 27°C DB, 19°C WB / Outdoor temperature : 35°C DB, Equivalent refrigerant piping : 7.5m , Level differences : 0m *3) Nominal cooling capacities are based on; Indoor temperature : 27°C DB, 19°C WB / Outdoor temperature : 46°C DB, Equivalent refrigerant piping : 7.5m , Level differences : 0m*4) Nominal heating capacities are based on;
Indoor temperature : 20°C DB, 15°C WB / Outdoor temperature : 7°C DB, 6°C WB, Equivalent refrigerant piping : 7.5m, Level differences : 0m *5) Sound level was acquired in a dead room. Thus actual noise level may be different depending on the installation conditions. *6) Specifications are subject to change without prior notice for product improvement.
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Outdoor units
Type
Model Name
Basic RD320VQXGA RD340VQXGA
BasicRD080VQXGARD100VQXGA 2 1RD120VQXGA 1 2
Power Supply Ø/ V/ Hz 3/ 380~415/ 50 3/ 380~415/ 50Mode*1) - Heat Pump Heat Pump
Performance
Horse Power HP 32 34
Capacity
Cooling*2)kW 89.6 95.2
Btu/h 305,600 324,700TR 25.5 27.1
Cooling*3)kW 78.5 82.0
Btu/h 267,800 279,700TR 22.3 23.3
Heating*4)kW 100.5 106.5
Btu/h 343,000 363,500TR 28.6 30.3
Power
Nominal InputCooling*2)
kW24.72 27.36
Cooling*3) 28.88 30.97Heating 23.42 25.30
Nominal Running Current
Cooling*2)
A45.3 51.3
Cooling*3) 51.9 56.7Heating 43.3 48.5
Circuit Breaker (MCCB/ELB/ELCB) A 100 100
COPCooling*2) - 3.62 3.48Cooling*3) - 2.72 2.65Heating - 4.29 4.21
Compressor
Model - ZPD72T ZPD83T ZP72T ZP83T ZPD72T ZPD83T ZP72T ZP83T
Type - Digital Scroll Fixed Scroll Digital Scroll Fixed ScrollNumber EA 2 1 2 1 1 2 1 2Piston Displacement cc/Rev 67.1 77.2 67.1 77.2 67.1 77.2 67.1 77.2Output kW 5.75 6.65 5.65 6.4 5.75 6.65 5.65 6.4
LubricantType - 3MAF POE 3MAF POE
Charging cc 1,981 1,981 1,981 1,981 1,981 1,981 1,981 1,981
Fan
Type / Control - Propeller/BLDC Propeller/BLDCMotor Output W 630 x 3 630 x 3Airflow Rate m3/min 170 x 2 + 200 x 1 170 x 1 + 200 x 2
External Static Pressure Max.
mmAq 8 8Pa 78.5 78.5
Safety Devices
Mechanical Type- High Pressure Switch High Pressure Switch- Crank Case Heater Crank Case Heater- Fuse for PCB Fuse for PCB
Electronic Type- Over-voltage Protection Over-voltage Protection- Current Transformer Current Transformer- Fan Motor Overheat/Current Protector Fan Motor Overheat/Current Protector
Piping Connections
Liquid Ø, mm 19.05 19.05Gas Ø, mm 31.75 31.75Discharge Gas Ø, mm - -Oil (Flare) Ø, mm 6.35 6.35
Installation Limitation
Max. Lengthm 200 200ft 656 656
Max. Heightm 50 (40) 50 (40)ft 164 (131) 164 (131)
RefrigerantType - R410A R410AFactory Charging kg 8.5 x 3 8.5 x 3
Sound4) Sound Pressure dB(A)
Set Size
Net Weight kg 280 x 3 280 x 3Shipping Weight kg 297 x 3 297 x 3Net Dimensions (WxHxD) mm (1200 x 1668 x 765) x 3 (1200 x 1668 x 765) x 3Shipping Dimensions (WxHxD) mm (1268 x 1888 x 832) x 3 (1268 x 1888 x 832) x 3
CableMain Power (Below 50m) mm2 CV 16 CV 16Communication mm2 0.75~1.5 0.75~1.5
Operating Temp. Range
Cooling °C -5~50 -5~50Heating °C -20~24 -20~24
*1) Mode HP : Heat Pump, HR : Heat Recovery*2) Nominal cooling capacities are based on;
Indoor temperature : 27°C DB, 19°C WB / Outdoor temperature : 35°C DB, Equivalent refrigerant piping : 7.5m , Level differences : 0m *3) Nominal cooling capacities are based on; Indoor temperature : 27°C DB, 19°C WB / Outdoor temperature : 46°C DB, Equivalent refrigerant piping : 7.5m , Level differences : 0m*4) Nominal heating capacities are based on;
Indoor temperature : 20°C DB, 15°C WB / Outdoor temperature : 7°C DB, 6°C WB, Equivalent refrigerant piping : 7.5m, Level differences : 0m *5) Sound level was acquired in a dead room. Thus actual noise level may be different depending on the installation conditions. *6) Specifications are subject to change without prior notice for product improvement.
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Specifications1
Type
Model Name
Basic RD360VQXGA
BasicRD080VQXGARD100VQXGARD120VQXGA 3
Power Supply Ø/ V/ Hz 3/ 380~415/ 50Mode*1) - Heat Pump
Performance
Horse Power HP 36
Capacity
Cooling*2)kW 100.8
Btu/h 343,800TR 28.7
Cooling*3)kW 85.5
Btu/h 291,600TR 24.3
Heating*4)kW 112.5
Btu/h 384,000TR 32.0
Power
Nominal InputCooling*2)
kW30.00
Cooling*3) 33.06Heating 27.18
Nominal Running Current
Cooling*2)
A57.3
Cooling*3) 61.5Heating 53.7
Circuit Breaker (MCCB/ELB/ELCB) A 100
COPCooling*2) - 3.36Cooling*3) - 2.59Heating - 4.14
Compressor
Model - ZPD72T ZPD83T ZP72T ZP83T
Type - Digital Scroll Fixed ScrollNumber EA 3 3Piston Displacement cc/Rev 77.2 77.2Output kW 6.65 6.4
LubricantType - 3MAF POE
Charging cc 1,981 1,981
Fan
Type / Control - Propeller/BLDCMotor Output W 630 x 3Airflow Rate m3/min 200 x 3External Static Pressure Max.
mmAq 8Pa 78.5
Safety Devices
Mechanical Type- High Pressure Switch- Crank Case Heater- Fuse for PCB
Electronic Type- Over-voltage Protection- Current Transformer- Fan Motor Overheat/Current Protector
Piping Connections
Liquid Ø, mm 19.05Gas Ø, mm 38.10Discharge Gas Ø, mm -Oil (Flare) Ø, mm 6.35
Installation Limitation
Max. Lengthm 200ft 656
Max. Heightm 50 (40)ft 164 (131)
RefrigerantType - R410AFactory Charging kg 8.5 x 3
Sound4) Sound Pressure dB(A)
Set Size
Net Weight kg 280 x 3Shipping Weight kg 297 x 3Net Dimensions (WxHxD) mm (1200 x 1668 x 765) x 3Shipping Dimensions (WxHxD) mm (1268 x 1888 x 832) x 3
CableMain Power (Below 50m) mm2 CV 25Communication mm2 0.75~1.5
Operating Temp. Range
Cooling °C -5~50Heating °C -20~24
*1) Mode HP : Heat Pump, HR : Heat Recovery*2) Nominal cooling capacities are based on;
Indoor temperature : 27°C DB, 19°C WB / Outdoor temperature : 35°C DB, Equivalent refrigerant piping : 7.5m , Level differences : 0m *3) Nominal cooling capacities are based on; Indoor temperature : 27°C DB, 19°C WB / Outdoor temperature : 46°C DB, Equivalent refrigerant piping : 7.5m , Level differences : 0m*4) Nominal heating capacities are based on;
Indoor temperature : 20°C DB, 15°C WB / Outdoor temperature : 7°C DB, 6°C WB, Equivalent refrigerant piping : 7.5m, Level differences : 0m *5) Sound level was acquired in a dead room. Thus actual noise level may be different depending on the installation conditions. *6) Specifications are subject to change without prior notice for product improvement.
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Outdoor units
2-1. RD080/100/120VQXGA
No. Name Description No. Name Description
1 Gas pipe connection Ø57.10, knock-out hole 10 Power & communication wiring conduit Ø34.50, knock-out hole hole-side
2 High pressure gas pipe connection Ø57.10, knock-out hole 11 Power & communication wiring conduit Ø34.50, knock-out hole hole-side
3 Liquid pipe connection Ø37.10, knock-out hole 12 Power & communication wiring conduit Ø34.50, knock-out hole hole-side
4 Oil balance pipe connection between units Ø32.10, knock-out hole 13 Power & communication wiring conduit Ø34.50, knock-out hole hole-side
5 Power & communication wiring conduit Ø34.50, knock-out hole hole-front 14 Power & communication wiring conduit Ø27.80, knock-out hole hole-side
6 Power & communication wiring conduit Ø34.50, knock-out hole hole-front 15 Power & communication wiring conduit Ø34.50, knock-out hole hole-side
7 Power & communication wiring conduit Ø43.70, knock-out hole hole-front 16 Pipe connection through base Pipes connection opening with cover
8 Power & communication wiring conduit Ø43.70, knock-out hole hole-front 17 Condensate drain holes Ø20mm-2 holes
9 Power & communication wiring conduit Ø43.70, knock-out hole hole-front 18 Foundation bolts positions 4-12 x 20 slit-hole
Unit : mm
Dimensional drawing2
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PCB connector layout3
3-1. Main PCB
1 6 7 8 923
45
10
11
12
132324252627282932
31 35
16202122 171819 1415
3330
34
3637
No. CN # COLOR FUNCTION
1 CN901 Red Power Trans Out (AC 17V)
2 CN13 Black 5V for Interface Module
3 CN31 Red CommunicationwithIndoorUnits(COM1)
4 CN32 Yellow Communication with Outdoor units
5 CN12 Blue 12V for Interface Module
6 CN92 Black Sub MICOM Download
7 CN91 Black Main MICOM Download
8 CN10 White Main MICOM Download (N/A)
9 CN100 White Main MICOM Download (N/A)
10 CN83 Yellow 3 Phase Detection
11 OPT1 White Mode Selector (Cooling/Heating)
12 CN51 Red CT Sensor
13 CN70 Black AC 230V Input
14 CN76 Yellow Comp.1 CCH, Comp.2 CCH
15 CN15 White Comp.3 CCH, Accum. CCH
16 CN81 Black Oil Valve 1
17 CN82 Yellow Oil Valve 2
18 CN80 Red Oil Valve 3
19 CN72 Blue Compressor Control
No. CN # COLOR FUNCTION
20 CN74 Red Hot gas Bypass Valve
21 CN71 White PWM Valve
22 CN73 Yellow 4 Way Valve
23 CN84 Blue Main Cooling Valve (HR Only)
24 CN85 Yellow Outdoor Unit EEV Valve
25 CN75 White EVI Bypass Valve
26 CN86 Blue Liquid Bypass Valve
27 CN41 Blue Low Pressure Sensor
28 CN42 Red High Pressure Sensor
29 CN49 White Sump Sensor, Ambient Sensor
30 CN48 Red EVI-In Sensor, EVI-Out Sensor
31 CN47 White Oil Balance Sensor, Cond. OutSensor, Liquid Tube Sensor
32 CN44 White Comp. Discharge 1,2,3 Sensor,Suction Sensor
33 CN64 Blue EVI EEV
34 CN63 Yellow Main EEV2
35 CN65 Black HR EEV (HR Only)
36 CN62 Blue Main EEV1
37 CN99 White Main-BLDC Driver PCB Connector
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Outdoor units
3-2. BLDC Driver PCB
3-3. Noise filter PCB
3-4. CT PCB
43
38
34
35
37
36
39
41
40 42
No. CN # COLOR FUNCTION
34 CN701 Blue AC 230V Input
35 GT2 White Power Trans In (AC 230V)
36 CN703 Black AC 230V Output
37 CN501 White Main-BLDC Driver PCB Connector
38 CN101 White Motor Signal
39 CN301 White Motor Power
No. CN # COLOR FUNCTION
40 L/N Silver AC 230V Input
41 CN702 White Earth
42 CN701 Blue AC 230V Output
No. CN # COLOR FUNCTION
43 CN61 Red Comp. 1,2 CT Output
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4 Electrical wiring diagram
K13 K14 Unit option
On On MAIN unit
On Off SUB 1 unit
Off On SUB 2 unit
Off Off SUB 3 unit
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Outdoor units
Sound pressure level5
5-1. Operation sound level
1m
Microphone
Front
These operation values were obtained in a dead room. Sound pressure level will vary depending on a range of factors such as the construction of the particular room where the equipment is installed.
Operation sound level may differ depending on operation and ambient conditions.
Note
Model HighRD080VQXGA 57RD100VQXGA 58RD120VQXGA 60
Unit: dB(A)
5-2. NC curves (Heat Pump)
1) RD080VQXGA
3) RD120VQXGA
2) RD100VQXGA
Sou
nd p
ress
ure
leve
l (dB
)
Octave band center frequency(Hz)
70
NC 65
65
60
55
50
45
40
35
30
2563 125 250 500 1000 2000 4000 8000
NC 60
NC 55
NC 50
NC 45
NC 40
NC 35
NC 30
Sou
nd p
ress
ure
leve
l (dB
)
Octave band center frequency(Hz)
70
NC 65
65
60
55
50
45
40
35
30
2563 125 250 500 1000 2000 4000 8000
NC 60
NC 55
NC 50
NC 45
NC 40
NC 35
NC 30
Sou
nd p
ress
ure
leve
l (dB
)
Octave band center frequency(Hz)
70
NC 65
65
60
55
50
45
40
35
30
2563 125 250 500 1000 2000 4000 8000
NC 60
NC 55
NC 50
NC 45
NC 40
NC 35
NC 30
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6 Operation limit
6-1. Cooling 6-2. Heating
50
10 15 20 25 30
45
40
35
30
25
20
15
10
5
0
-5
Out
door
tem
pera
ture
(ºF
DB
)
Ran
ge fo
r op
erat
ion
Ran
ge fo
r pu
ll do
wn
oper
atio
n
Indoor temperature(ºF WB)
10 15 20 25 30
25
20
15
10
5
0
-5
-10
-15
-20
Out
door
tem
pera
ture
(ºF
DB
)
Ran
ge fo
r w
arm
ing
up o
pera
tion
Indoor temperature(ºF WB)
Range forcontinuousoperation
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Outdoor units
Cycle operation mode7
7-1. Description of cycle function parts
No Classification Description
1 A DVI (Digital Vapor Injection) compressor
2 B FVI (Fixed Vapor Injection) compressor 1
3 C FVI (Fixed Vapor Injection) compressor 2
4 D PWM solenoid valve
5 E Discharge temperature sensor of DVI compressor
6 F Discharge temperature sensor of FVI compressor 1
7 G Discharge temperature sensor of FVI compressor 2
8 H Oil separator
9 I Capillary tube from oil separator
10 J High pressure switch
11 K Hot gas bypass solenoid valve
12 L Check valve
13 M High pressure sensor
14 N Reversing solenoid valve (4way valve)
15 O Heat exchanger of outdoor unit (Condensing unit)
16 P Ambient air temperature sensor
17 Q Cond_out temperature sensor
18 R Main EEV 1 ( For heating operation)
19 S Main EEV 2 ( For heating operation)
20 T Check valve
21 U Liquid bypass solenoid valve
22 V EVI EEV
23 W Turbo Intercooler
24 X EVI_in temperature sensor
25 Y EVI_out temperature sensor
26 Z Liquid tube temperature sensor
27 a EVI bypass pilot solenoid valve
28 b Suction temperature sensor
29 c Accumulator
30 d Accumulator CCH (Crank Case Heater)
31 e Oil solenoid valve 1
32 f Oil solenoid valve 2
33 g Oil solenoid valve 3
34 h Oil balancing service valve between units
35 i Low pressure sensor
36 j Check valve
37 k Crank case heater of DVI compressor
38 m Crank case heater of FVI compressor 1
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7 Cycle operation mode
No Classification Description
39 n Crank case heater of FVI compressor 2
40 o Sump(Base) temperature sensor
41 p Oil temperature sensor
42 q Capillary tube from hot gas bypass valve
43 r Capillary tube from liquid bypass valve
44 s High pressure liquid service valve
45 t Low pressure gas service valve only for HR/MCU unit
46 u EEV of indoor unit
47 v Eva_in temperature sensor
48 w Heat exchanger of indoor unit (Evaporating unit)
49 x Eva_out temperature sensor
50 y HR check valve
51 z Main cooling check valve
52 a Main cooling pilot solenoid valve
53 b Outdoor pilot solenoid valve
54 c HR EEV
55 d HR EEV check valve
56 eHigh pressure gas service valve in HR/MCU unitLow pressure gas service valve in HP unit (Heat Pump)
57 f Heating solenoid valve
58 g Cooling solenoid valve
59 h MCU liquid bypass solenoid valve
60 i MCU main heating pilot solenoid valve
61 j MCU EEV
62 k Sub cooler_in temperature sensor
63 m Sub cooler
64 n Sub cooler_out temperature sensor
65 o Sub cooler EEV
66 p Liquid service valve between MCU & Indoor unit
67 q Gas service valve between MCU & Indoor unit
68 r EEV bypass service valve
69 s EEVs for wall mount & ceiling unit in MCU
7-1. Description of cycle function parts
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Outdoor units
Category Description
1 SensorTemperature Temperature sensor
Pressure High / Low Pressure sensor
2 Valve
Solenoidss
Solenoid valve
Pilot Solenoidsss
Pilot solenoid valve
ExpansionEE
Electronic Expansion Valve (EEV)
Reversing Reversing valve
Check Check valve
Service Service valve (Angle & ball type)
3 Switch & HeaterPressure Switch High pressure switch (Mechanical type)
Heater HH Electric heater
4 Others
Compressor DVI (Digital Vapor Injection) CompressorFVI (Fixed Vapor Injection) Compressor
Accumulator Accumulator
Heat Exchanger Condensing or Evaporating unit
Sub cooler Turbo Intercooler or Sub cooler
Capillary Capillary tube
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Cycle operation mode7
7-2. Cycle diagrams
1) RD080/100/120/VQXGT(DVM PLUS III - 8/10/12HP )
g
B
HH
A
kH
s
s
DE F
H IT W
Y
Zb
f
h
j
o
d
p
K
C
U
r
q
O
P
Q G
UV
S
e
t
E R
N
M
LJ
s
s
sa
c
i
m
s
s
E V
X
s
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31
Outdoor units
2) EEV kits & Indoor units
(1) MXD series
(3) Indoor units
(2) MEV series
s
E
E
eq
p
u
E
vwxq
p
vwxq
p
sE
p
s
E
E
E
eq
p
2 rooms
Indoor units with built-in EEV Indoor units without EEV (Wall mounted)
3 rooms Single room
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7 Cycle operation mode
7-2. Cycle diagrams
3) Cooling operation
Unit Outdoor unit Indoor unit Outdoor unitCooling operation
Heating operation
EEEEE E
Co
olin
g
Co
olin
g
Co
olin
g
Co
olin
g
Co
olin
g
Co
olin
g
⑤⑥
⑦
②
③
①
④
⑧
HH H
s
s
H
E
s
s
s
s s
E
Low
tem
pera
ture
& p
ress
ure
liqui
dH
igh
tem
pera
ture
& p
ress
ure
gas
Hig
h te
mpe
ratu
re &
pre
ssur
e liq
uid
Low
tem
pera
ture
& p
ress
ure
gas
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Outdoor units
4) Heating operation
Unit Outdoor unit Indoor unit Outdoor unitCooling operation
Heating operation
EEEEE E
Hea
tin
g
Hea
tin
g
Hea
tin
g
Hea
tin
g
Hea
tin
g
Hea
tin
g
①
⑧
HH H
s
s
H
E
s
s
s
s s
E
Low
tem
pera
ture
& p
ress
ure
liqui
dH
igh
tem
pera
ture
& p
ress
ure
gas
Hig
h te
mpe
ratu
re &
pre
ssur
e liq
uid
Low
tem
pera
ture
& p
ress
ure
gas
③
④
②
⑤
⑥
⑦
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8 Cycle function parts
8-1. RD080/100/120VQXGT
DVI compressor
Oil separatorHigh pressure sensorLow pressure sensor
Accumlator
PWM valve
Ambient air temp. sensor
Liquid service valve
Low pressure gas service valve
Cond_out temp. sensor
EVI EEV
Liquid bypass valve
Turbo intercooler
FVI compressor
Hot gas bypass valve
High pressure switch
Discharge temp. sensor
Oil valve
Sump temp. sensor
Oil service valve
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Outdoor units
8-2. A description of cycle function parts
No Cycle parts Functions
1 DVI compressor Digital Vapor Injection)
DVI compressor coupled with vapor injection controls the capacity 10 to 100% of its ca-pacity.It enhances cooling and heating performance and COP with using vapor injection.
2 FVI compressor (Fixed Vapor Injection)
FVI compressor coupled with vapor injection is fixed compressor. It enhances cooling, heating performance and COP with using vapor injection.
3 PWM valve |t is used for variation of digital compressor’s capacity. When the valve is open, the DVI compressor keeps the unloading state, otherwise loading state.
4 Discharge temp. sensor It measures the temperature of compressor outlet. The main function of it is to protect compressor from overheating.
5 Oil separator It separates oil and refrigerant discharged from the compressor and returns the oil into compressor again.
6 High pressure switch It protects the system from abnormal high pressure. (Open : 4.1Mpa, Close : 3.5 Mpa)
7 Hot gas bypass valve When the suction pressure becomes abnormal low pressure, it opens. During the oil balance operation, it makes high pressure for the shell of compressor
8 High pressure sensor The main function of it controls the capacity of compressor in pursuit of target of high pressure in heating operation by measuring the value of the system.
9 4way valve It enables to change operating mode into cooling and heating mode.
10 Ambient air temp. sensor It measures the temperature of ambient.
11 Cond_out temp. sensor It has application to know subcooling and the complete point of defrost.
12 Main EEV 1, 2 It controls the amount of refrigerant entering outdoor’s heat exchanger in heating operation.
13 Liquid bypass valve When the compressor is overheating, it opens to make discharge temperature low.
14 EVI EEV It enables to secure sufficient subcooling and control the amount of vapor entering into vapor port of compressor.
15 Turbo intercooler Through turbo intercooler, heat is exchanged each other between saturated liquid refrigerant and a little expanded refrigerant.
16 EVI_in temp. sensorThese temperature sensors enable to control EVI EEV’s step to secure superheat.
17 EVI_out temp. sensor
18 Liquid tube temp. sensor It is used to know subcooling. (Subcooling = The saturated temp. of high pressure - Liquid tube temp.)
19 EVI bypass valve This valve closes during application of vapor injection.
20 Suction temp. sensor This is applied to know superheat in heating mode with the low pressure sensor.
21 Accumulator Ambient air temperature sensor (Tair)
22 Oil valve When oil balance operation happens, this valve opens.
23 Low pressure sensor The main function of it is to control the capacity of compressor in pursuit of target of low pressure in cooling operation by measuring the low pressure.
24 Sump(Base) temp. sensor With checking sump temperature of compressor, it prevents the compressor from liquid back and overheating.
25 Oil temp. sensor While the oil balance is operating, it make a self-diagnosis of the oil valve.
26 Main cooling valve Through this valve, the high pressure gas of refrigerant is discharged into indoor unit which needs heating operation in main cooling operation.
27 Outdoor EEV valveIn order to prevent outdoor heat exchanger from refrigerant accumulation in main cooling operation,this valve closes, otherwise Main EEV controls the amount of refrigerant.
28 HR EEV It controls the amount of liquid refrigerant between outdoor unit and indoor unit in main heating operation.
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DVM PLUS III
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Installation
III. Installation
1 Outdoor unit combinations ......................38
2 Space requirements ................................39
3 Placing the outdoor units .........................43
4 Electric specifications ..............................44
5 Wiring works.............................................46
6 Refrigerant piping works ..........................48
7 Option switches & function keys .............54
8 Error codes ..............................................56
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1 Outdoor unit combinations
1-1. Basic model
1-2. Compact combinations
Classification Capacity (Ton) Capacity (HP) ModelTotal capacities of the connectable
indoor units (kW)
Maximum number of connectable indoor
units
Single unit6.4 8 RD080VQXGA 11.2 ~ 29.1 108.0 10 RD100VQXGA 14.0 ~ 36.4 109.5 12 RD120VQXGA 16.8 ~ 43.6 14
Classification Capacity (Ton)
Capacity (HP) RD080VQXGA RD100VQXGA RD120VQXGA
Total capacities of the connectable Indoor
units(kW)
Maximum number of connectable Indoor units
Compactcombinations
12.8 16 2 22.4 ~ 58.2 16
14.4 18 1 1 25.2 ~ 65.5 18
16.0 20 2 28.0 ~ 72.8 20
17.5 22 1 1 30.8 ~ 80.0 24
19.0 24 2 33.5 ~ 87.1 28
20.8 26 2 1 36.4 ~ 94.6 30
22.4 28 1 2 39.2 ~ 101.9 32
24.0 30 3 42.0 ~ 109.2 34
25.5 32 2 1 44.8 ~ 116.4 36
27.0 34 1 2 47.5 ~ 123.5 40
28.5 36 3 50.3 ~ 130.7 43
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Installation
2 Space requirements
2-1. Single installation
2-2. Group installation
300 or more(S2) 300 or more
200 or more
500 or more(S1)
10 or more
10 or more
Front
300 or more (S2)
500 or more (S1)
10 or more
10 or more
10 or more
10 or more
20 or more 20 or more
20 or more 20 or more
20 or more
600 or more 10 or more
300 or more
300 or more
300 or more500
ormore
500 or more 10 or more
20 or more
300 or more
200 or more400 or more
Front
Front Front
FrontFront
Front
Wall height unrestricted
Wall height unrestricted
Front wall height 1500 mm and less Rear wall height 500 mm and less Side wall height Height unrestricted Front : S1 + h1/2, Rear : S2 + h2/2
The suggested installation above has concerned minimum installation space.
To secure enough service space and performance of system, take account of more sufficient space.
The required minimum space between outdoor units for service and performance of system is 100 mm at least.
Note
(Unit: mm)
(Unit: mm)
If the height of the wall exceeds the above value, more space should be added to the front and rear space individually.
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2 Space requirements
2-3. Installing duct for horizontal exhaust discharge
It is necessary to install an air-discharge duct (field supply) to direct exhaust from the fan horizontally if it is difficult to provide a minimum space of 2m between the air-discharge duct outlet and a nearby obstacle.
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Installation
2-4. Installing the outdoor unit in harsh environments
In abnormally harsh environments such as cold and/or windy areas, sufficient countermeasures to guard against excessive wind and snow should be taken to ensure the unit's correct operation. Snow-proof duct (field supply) should be fitted to the unit and direct exposure to the wind should be avoided as much as possible. When the unit is expected to operate in cooling mode in condition under 10ºC, in snowy areas, in environments subject to strong winds or rain, install air inlet and outlet ducting as shown in the below example
The frame/foundation should be higher than expected snowfall.
The foundation must be solid and the unit must be secured with anchor bolts.
Be sure to install unit in a place strong enough to withstand its weight.
When installing on a roof subject to strong wind, countermeasures must be taken to prevent the unit form being overturned.
Any lack of strength may cause unit to fall down, resulting in a personal injury.
For more detail information about installation, refer to installation manual.
Caution
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2 Space requirements
2-5. Dimensional drawing of snow-proof duct
1) RD080/100/120VQXGA (Unit: mm)
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Installation
3 Placing the outdoor units
3-1. Anchor bolts position
3-2. Removing fasteners of compressor’s leg
A(Unit: mm)
B
Anchor bolt(4-ø15)
67
745
67
(1) Open the front cabinet near the bottom.
The compressors are fastened with nuts at 6 places.
(2) Remove nut washer, washer and stopper nut from compressors with a tool.
(3) Refasten them with the nut washer only.
Stopper Nut Washer Nut Washer
Remove
Pay your attention not to touch the copper pipes as detaching the fasteners.
The stopper nut and washer should be removed. If this work is not conducted correctly, it can cause outdoor unit to vibrate and make much noise.
Caution
Model A B
RD080/100/120VQXGA 1200 1058
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Electric specifications4
4-1. Basic models
Classification Capacity (Ton) Capacity (HP) Model MCCB(A) ELB
Single unit
6.4 8 RD080VQXGA 25 25A, 30mA 0.1 Second or less
8.0 10 RD100VQXGA 30 30A, 30mA 0.1 Second or less
9.5 12 RD120VQXGA 40 40A, 30mA 0.1 Second or less
ModelUnits Power supply Comp. OFM
Hz Volts Min. Max. MCA MFA RLA kW FLA
RD080VQXGA 50 380~415 380 415 25 1.1 4.9
RD100VQXGA 50 380~415 380 415 30 1.1 4.9
RD120VQXGA 50 380~415 380 415 40 1.1 4.9
All wiring, components and materials to be procured on the site must comply with the applicable local and national codes.
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Installation
4-2. Combinations
ModelUnits Power supply Comp. OFM
Hz Volts Min. Max. MCA MFA RLA kW FLA
RD160VQXGA 50 380~415 380 415 50 2.2 9.8
RD180VQXGA 50 380~415 380 415 55 2.2 9.8
RD200VQXGA 50 380~415 380 415 60 2.2 9.8
RD220VQXGA 50 380~415 380 415 70 2.2 9.8
RD240VQXGA 50 380~415 380 415 80 2.2 9.8
RD260VQXGA 50 380~415 380 415 80 3.3 14.7
RD280VQXGA 50 380~415 380 415 85 3.3 14.7
RD300VQXGA 50 380~415 380 415 90 3.3 14.7
RD320VQXGA 50 380~415 380 415 100 3.3 14.7
RD340VQXGA 50 380~415 380 415 110 3.3 14.7
RD360VQXGA 50 380~415 380 415 120 3.3 14.7
The relationship between the starting time and the starting current (Digital Scroll Comp. + Fixed Scroll Comp)
RLA is based on the following conditions. - Indoor temp. : 27˚C DB/ 19˚C WB - Outdoor temp. : 35˚C DB
Voltage range Units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
Maximum allowable voltage variation between phases is 2%. Select wire size based on the larger value of MCA. MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
Abbreviations - MCA: Min. Circuit Amps. (A)
MCA = 1.25 X LOAD1 + LOAD2 (LOAD1: RLA of Digital Comp. / LOAD2: RLA of Fixed Comp. + FLA of Fan Motor)
- MFA: Max. Fuse Amps. (A) - RLA: Rated Load Amps. (A) - OFM: Outdoor Fan Motor - FLA: Full Load Amps. (A) - kW : Rated Motor Output (kW)
Star
ting
curre
nt
Starting time
RLA
Classification Capacity(Ton) Capacity(HP)Basic model
MCCB(A) ELBRVXVHT075FE RVXVHT100FE RVXVHT125FE
Module unit
12.8 16 2 25+25
14.4 18 1 1 25+30
16.0 20 2 30+30
17.5 22 1 1 30+40
19.0 24 2 40+40
20.8 26 1 2 25+25+30
22.4 28 3 25+30+30
24.0 30 2 1 30+30+30
25.5 32 1 2 30+30+40
27.0 34 3 30+40+40
28.5 36 40+40+40
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5 Wiring works
5-1. External connection diagram of DVM PLUS III
1) 3 phase 4 wires
R S T NR S T NOF1 OF2 OF1 OF2
3 phase 4 wires(380~415V)
3 phase 4 wires(380~415V)
Communication cable among outdoor units
220~230V 220~230VIndoor Outdoor Outdoor
Communication cable between indoor and outdoor units
Earth
Earth
Earth
Earth
Main unit Sub unit
Indoor
MCCB+ELB
or ELCB
MCCB+ELB
or ELCB
•ConnectthepowercableoftheoutdoorunitaftercheckingthatR-S-T-N(3phase4wires)isproperlyconnected. •Thecommunicationcablebetweenindoorandoutdoorunitshasnopolarity. •Arrangethecablesusingcableties.
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Installation
5-2. Caution of wiring work
3 phase 4 wires, 380~415V
MCCB
ELB
To sub unit communication cable
Outdoor Unit
1. Be sure to connect the suitable length of power wiring to the power wiring terminal block using ring terminal above the figures.
2. Make sure to fix wiring using cable tie like above the figures.3. After wiring, reinstall the housing cover which has an isolator into the middle frame.
Connecting the ring terminal of 3 phase cable (CV) Connecting the ring terminal of 3 phase cable (FCV)
ABC
A B C
AB
250mmC
A B C
Make sure that all wiring should not contact with piping line during the field wiring work. If not, the vibration of compressor can make a damage to wiring and piping. It may result in fire.
Make sure to pass electrical wiring of the power cable (3 phase 4 wires) through a conduit hole of the front side.
CAUTION
Base line Base lineMiddle frame
Housing cover
A B C
30mm 60mm 90mm
A B C
30mm 60mm 90mm
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6 Refrigerant piping works
6-1. Notice & Cautions
Cautions Correct piping work Wrong piping work
The refrigerant piping should be the same level or lower than connecting position of piping to outdoor units.
Piping work should be run with side direction for better uniform distribution of refrigerant and oil like next diagram.
Outdoor joint kits should be installed in a horizontal direction, even it is a low pressure pipe.
When the piping length between outdoor and branch joints is 2m or more, a vertical trap has to be installed like right diagram.
Less than 1m
2m or more
2m or more
200~300mm
Horizontal length = over 100mm Minimum 100mm
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Installation
Example of piping layouts for DVM PLUS III
6-2. Example of piping layouts
UsingY-joint
UsingHeader joint
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6 Refrigerant piping works
6-3. Piping examples
*2) As an outdoor unit is located in a lower position than indoor unit, level difference is 40m.
The refrigerant amount of the system must be less than 100kg. For more detail, refer to the page 760.
Classification Branch with Y-joint Branch with Y and Header joint Branch with Header joint
One outdoor unit installed
Multiple outdoor units installed
Items Examples Remarks
Max. piping length
Outdoor ~
Indoor unit
Piping (Equivalent
piping)
200m below (220m below)
Branch with Y-joint a+b+c+d+e+f+g+p ≤ 200m (220m) Equivalent pipe length
Y-joint:0.5m, Header:1mBranch with Y-joint and Header joint
a+i+k ≤ 200m (220m)a+b+h ≤ 200m (220m)
Branch with header joint a+i ≤ 200m (220m)
Total piping 1000m below
Branch with Y-joint a+b+c+d+e+f+g+p+h+i+j+k+l+m+n≤ 1000
Branch with Y-joint and Header joint
a+b+c+d+e+f+g+p+h+i+j+k≤ 1000m
Branch with Header joint a+b+c+d+e+f+g+p+h+i ≤ 1000m
Outdoor ~
Outdoor unit
Piping 10m below r ≤ 10, s ≤ 10, t ≤ 10mEquivalent
piping 13m below r ≤ 13, s ≤ 13, t ≤ 13m
Level difference
Outdoor ~ Indoor unit Piping 50m / 40m*2) H1 ≤ 50m / 40m
Indoor ~ Indoor unit Piping 15m below H2 ≤ 15m
Outdoor ~ Outdoor unit Piping 5m below H3 ≤ 5m
Allowable length after
branch
The first branch
~ the farthest indoor unit
Piping 45m below b+c+d+e+f+g+p ≤ 45 m, i ≤ 45m
Piping 90m below*1) It needs to satisfy required conditions Only apply DVM PLUS III
Distribution kit Model Remarks
Allowable
From distribution kit to indoor unit 3m MEV-A13SA / MEV-A16SA (For 1 indoor unit)
For wall-mountedindoor unitFrom distribution kit to
indoor unit 20m
MXD-A13K116A / MXD-A13K200A / MXD-A16K200A / MXD-A22K200A (For 2 indoor units)
MXD-A13K216A / MXD-A13K300A / MXD-A16K213A / MXD-A16K300A (For 3 indoor units)
Required condition ExampleThe first branch
joint ~ the farthest indoor unit
If the sum of pipe length (b+c+d+e+f+g+p) is over 45m, (but not exceed : 90m) increase pipe size of b,c,d,e,f,g (b,c,d,e,f,g : pipe 1 size up)
Total pipe length
If main pipe size is not increased,a+bx2+cx2+dx2+ex2+fx2+gx2+h+i+j+k+l+m+n+p≤1000mIf main pipe size is not increased, ax2+bx2+cx2+dx2+ex2+fx2+gx2+h+i+j+k+l+m+n+p≤1000m
Each Y-joint ~ each indoor h,I,j,..p≤45m
Between indoor units
The difference between the distance of the outdoor unit to the farthest indoor unit and the distance of the outdoor unit to the farthest indoor unit ≤ 45m (a+b+c+d+e+f+g+p)-(a+h) ≤ 45m
GF
h i j k l m n
b
a
c d e f g p
ba
c d e f g h
ik
j
b
a
c d e f g hi
GF
h i j k l m n
b
a
c d e f g p
ba
c d e f g h
ik
j
b
a
c d e f g hi
GF
h i j k l m n
b
a
c d e f g p
*1) Required condition
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Installation
Outdoor unit connection pipe size : (A1), (A2), (A3) Branch joint : (D), (E), (F)
Indoor unit’s capacity Pipe size (O.D. mm)
Liquid pipe Gas pipe
2.2~5.6 kW ø6.35 ø12.70
7.1~14.0 kW ø9.52 ø15.88
Model Capacity of outdoor
MXJ-T3819K Below 36 HP
A1 : Select the pipes according to the outdoor unit capacity with following table.
A2 : Select the pipes according to sum of outdoor unit capacities behind the outdoor joint with following table.
A3 : Select the main pipe of outdoor units with the following table.
Pipe size between branch joints : (B)
Pipe size between branch joints and indoor unit (C)
Outdoor multi connection
branch joint (D)
Select the pipe size according to the indoor's capacity.
Branch joint of outdoor unit’s multi connection (D)
Model Total indoor unit’ capacity
MXJ-YA1509K 15.0 kW and below
MXJ-YA2512K Over 15.0~40.6 kW and below
MXJ-YA2812K Over 40.6~46.4 kW and below
MXJ-YA2815K Over 46.4~69.6 kW and below
MXJ-YA3119K Over 69.6~98.6 kW and below
MXJ-YA3819K Over 98.6~100.5 kW and below
Y-joint(F)
First branch joint (E)Select branch joint according to the outdoor unit's capacity
Branch joint (F)Select the pipe size according to the capacity sum ofindoor units which are connected below this pipe.1) Y-joint
Select the pipe size according to the capacity sum of indoor units which are connected below this pipe.
6-4. Pipe selection
*A1 : Pipes to the outdoor unit (Liquid, Gas)*A2 : Pipes between outdoor joint kits (Liquid, Gas)*A3 : Main pipes (Liquid, Gas)
(B)
(A)(B)
8Hp
(A1)
(A1) (A2)
(A1)
(F)(D)
(A3)
(E)
(C)
10Hp 12Hp
Example) 26HP of compact combinations
HP Mark Pipe size(O. D. mm)Liquid Gas
12 HP (A1)
16 HP (A1)
26 HP (A2)
Total Indoor unit’s capacity Pipe size (O. D. mm)
Liquid pipe Gas pipe
15.0 kW and below ø15.88
Over 15.0~23.2 kW and below ø9.52 ø19.05
Over 23.2~29.0 kW and below ø22.23
Over 29.0~40.6 kW and below ø12.70
ø25.40
Over 40.6~46.4 kW and below ø28.58
Over 46.4~69.6 kW and below ø15.88
Over 69.6~98.6 kW and below ø19.05
ø31.75
Over 98.6~100.5 kW and below ø38.10
Model
Total Indoor The connectable unit’s quantity of capacity indoor units
MXJ-HA2512K 46.4 kW and below 4
MXJ-HA3115K Over 46.4kW ~ 69.6 kW 8
MXJ-HA3819K Over 69.6 kW 8
Headerjoint(F)
2) Header joint
Y-joint(E)
Outdoor unit Model
8, 10, 12HP MXJ-YA2512K
16 HP MXJ-YA2812K
18, 20, 22, 24HP MXJ-YA2815K
26, 28, 30, 32, 34HP MXJ-YA3119K
36HP MXJ-YA3819K
Outdoor unitPipe size (O.D. mm) Oil balancing
pipe sizeLiquid Gas8HP
ø9.52ø19.05
ø6.35
10HP ø22.2312HP
ø12.70ø25.40
16HP
ø28.5818HP
ø15.8820HP22HP24HP
26~30HPø19.05
ø31.7532~34HP36~48HP ø38.10
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6 Refrigerant piping works
6-4. Pipe selection
Main pipe 1 size increment
Main pipe
Main pipe : from outdoor unit to the first branch joint
Equivalent pipe length between outdoor unit and the farthest indoor unit
When the equivalent pipe length from outdoor unit to the farthest indoor unit is over than 90m, the main pipe (both liquid and gas pipe) has to be increased with 1 size like below table.
Equivalent length calculation method Equivalent length = actual pipe length(m) + number of ‘Y-joint' X 0.5(m) + number
of 'Header joint' X 1.0(m) + number of elbows X equivalent length of each elbow
Outdoor unitThickness(mm)
(O. D. mm)Material
ø6.35 0.7C1220T-O
(Annealed)
9.52 0.7ø12.70 0.8ø15.88 1.0ø19.05
0.9
C1220T-1/2H
(Half-hard)
ø22.23ø25.40 1.0ø28.58
1.1ø31.75ø38.10 1.35ø44.45 1.6ø50.80 2.0
The pipe length between outdoor and the farthest indoor unitbelow 90 m 90m and over
ø 9.52 ø 12.70ø 12.70 ø 15.88ø 15.88 ø 19.05ø 19.05 ø 22.23ø 22.23 ø 25.40ø 25.40 ø 28.58ø 28.58 ø 31.75ø 31.75 ø 38.10ø 38.10 ø 44.45ø 44.45 ø 50.80ø50.80 2.0
ElbowPipe size (O. D. mm) Equivalent length (m)
ø 9.52 0.18ø 12.70 0.20ø 15.88 0.25ø 19.05 0.35ø 22.23 0.40ø 25.40 0.45ø 28.58 0.50ø 31.75 0.55ø 38.10 0.60ø 41.30 0.70ø 44.45 0.75ø 50.80 0.80
Type Equivalent length (m)Y joint 0.5
Header joint 1.0
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Installation
Additional refrigerant charging
Total refrigerant amount of the system must be less then 100kg. If total refrigerant amount of system is over 100kg more, the system has to be divided into smaller system, each containing less than 100kg.
Caution
Additional refrigerant charging of distribution kit (kg/m)
Remarks
Regardless of the liquid pipe size, additional refrigerant charging is 0.01kg per meter after distribution kit.
0.01For wall-mounted
Indoor unit
ø12.70(5m)
ø9.52(5m)
ø9.52(7m)
ø9.52(8m)
ø9.52(5m)
ø6.35(5m)
ø6.35(5m)
ø6.35(5m)
ø19.05(5m)
ø15.88(10m)
ø15.88(15m)
ø12.70(15m)
ø12.70(1m)
Liquid pipe size (O.D.)
Additional refrigerant charging
Ø6.35 0.02Ø9.52 0.06Ø12.70 0.125Ø15.88 0.18Ø19.05 0.28Ø22.23 0.35Ø25.40 0.53
Basic modelFactory
charging(kg)
RD080VQXGA 8.5RD100VQXGA 8.5RD120VQXGA 8.5
Liquid pipe size (O.D. mm) Ø6.35 Ø9.52 Ø12.70 Ø15.88 Ø19.05Length (m) 15 25 21 25 5
When the equivalent pipe length from outdoor unit to the farthest indoor unit is over than 90m, the main pipe (both liquid and gas pipe) has to be increased with 1 size like below table.
Example of additional refrigerant charging Pipe length is as below without distribution kit
Additional refrigerant = 15 x 0.02 + 25 x 0.06 + 21 x 0.125 + 25 x 0.18 + 5 x 0.27 = 10.275 kg
EX) Additional refrigerant charging
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Option switches & function keys7
7-1. Option switches
0123456789ABCD
EF
Switch Setting Function Remarks
SW01/SW02Setting total quantity of Installed indoor units Main unit required only SW01 : The tens digit, SW02 : The units digit
Main unit required onlyEx) As 12 indoor units were installed,
SW01:1, SW02: 2
SW03K5 On Manual address setting
Off Auto address setting
SW04
K9 K10 Target evaporating temperature (°C)
Cooling capacity compensationOn On 7~9On Off 5~7Off On 9~11Off Off 10~12
SW04
K11 K12 Target high pressure (kgf/cm2, psig, kPa)On On 30.0, 426, 2941
Heating capacity compensationOn Off 31.5, 448, 3089Off On 33.0, 469, 3236Off Off 27.0, 384, 2647
SW05
K13 K14 Outdoor unit’s addressOn On Outdoor unit’s address : No 1 Main unitOn Off Outdoor unit’s address : No 2 Sub I unitOff On Outdoor unit’s address : No 3 Sub 2 unitOff Off Outdoor unit’s address : No 4 Sub 3 unitK15 K16 Maximum current controlOn On Standard Factory defaultOn Off 90% of standard peak current valueOff On 80% of standard peak current valueOff Off Not use
SW06
K17On Since supplying power, first oil return operation happens after 5hrs and then 7 hrs.Off Since supplying power, first oil return operation happens after 2hrs and then 2 hrs.
K18On Standard
Defrost period settingOff Shorten defrost period by 20% approximately
K19On Standard fan stepOff Fan step compensation (Maximum step) 8/10 HP : 19 Steps, 12HP : 23 Steps
K20On NormalOff Night’s quiet mode
SW09 - Setting total quantity of installed MCU Main unit required onlyEx) As 12 MCUs were installed. SW09 : “C”
Factory default SW01, SW02, SW09 : ‘0’ SW03 ~ SW06 : ON
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Installation
0123456789ABCD
EF
K1
K2
K3
K4
LED display alphabet SEG 1 SEG 2 SEG 3 SEG 4
K1 Key function Display LEDPush 1st time Refrigerant charging in heating operation “K” “1” “BLANK” “BLANK”Push 2nd time Test run in heating mode “K” “2” “BLANK” “BLANK”Push 3rd time Pump out operation in heating mode (Outdoor unit’s address : NO 1) “K” “3” “BLANK” “1”Push 4th time Pump out operation in heating mode (Outdoor unit’s address : NO 2) “K” “3” “BLANK” “2”Push 5th time Pump out operation in heating mode (Outdoor unit’s address : NO 3) “K” “3” “BLANK” “3”Push 6th time Pump out operation in heating mode (Outdoor unit’s address : NO 4) “K” “3” “BLANK” “4”Push 7th time Open all valve of outdoor unit for vacuum preparation (Outdoor unit’s address : NO 1) “K” “4” “BLANK” “1”Push 8th time Open all valve of outdoor unit for vacuum preparation (Outdoor unit’s address : NO 2) “K” “4” “BLANK” “2”Push 9th time Open all valve of outdoor unit for vacuum preparation (Outdoor unit’s address : NO 3) “K” “4” “BLANK” “3”Push 10th time Open all valve of outdoor unit for vacuum preparation (Outdoor unit’s address : NO 4) “K” “4” “BLANK” “4”Push 11th time Open all valve for vacuum preparation (Total outdoor units, indoor unit and MCU units) “K” “4” “BLANK” “4”Push 12th time Return to normal view mode -
K2 Key function Display LEDPush 1st time Refrigerant charging in cooling operation “K” “5” “BLANK” “BLANK”Push 2nd time Test run in cooling mode “K” “6” “BLANK” “BLANK”Push 3rd time Pump down operation in cooling mode (All outdoor units) “K” “7” “BLANK” “BLANK”
Push 4th time Pipe checking (Check whether the pipe connection of MCU correspond with indoor unit’s address in HR system.) “K” “8” “BLANK” “BLANK”
Push 5th time Judgment system of refrigerant amount “K” “9” “BLANK” “BLANK”Push 6th time Return to normal view mode -
K3 Key function Display LEDPush 1st time Reset -
K4 Key functionDisplay LED
SEG 1 SEG 2, 3, 4Push 1st time Outdoor capacity 1 Ex) 16 HP Off, 1, 6Push 2nd time Digital comp loading time 2 Ex) Loading 13 sec Off, 1, 3Push 3rd time High pressure (kg/cm2) 3 Ex) High pressure 15.2 (kg/cm2) 1, 5, 2Push 4th time Low pressure (kg/cm2) 4 Ex) Low pressure 4.3 (kg/cm2) 0, 4, 3Push 5th time Discharge temperature of compressor 1 5 Ex) 87°C 0, 8, 7Push 6th time Discharge temperature of compressor 2 6 Ex) 87°C 0, 8, 7Push 7th time Discharge temperature of compressor 3 7 Ex) 87°C 0, 8, 7Push 8th time CT sensor value of compressor 1 8 Ex) 2A 0, 0, 2Push 9th time CT sensor value of compressor 2 9 Ex) 2A 0, 0, 2Push 10th time CT sensor value of compressor 3 A Ex) 2A 0, 0, 2Push 11th time Suction temperature B Ex) -5 °C -, 0, 5Push 12th time Cond_out temperature C Ex) 35 °C 0, 3, 5Push 13th time Liquid tube temperature D Ex) 35 °C 0, 3, 5Push 14th time Oil temperature sensor on oil balancing pipe E Ex) 35 °C 0, 3, 5Push 15th time Sump temperature of compressor 1 F Ex) 35 °C 0, 3, 5Push 16th time Ambient air temperature G Ex) 35 °C 0, 3, 5Push 17th time EVI_in temperature H Ex) 35 °C 0, 3, 5Push 18th time EVI_out temperature I Ex) 35 °C 0, 3, 5Push 19th time Main EEV1 step J Ex) 2000 steps 2, 0, 0Push 20th time Main EEV2 step K Ex) 2000 steps 2, 0, 0Push 21th time EVI EEV step L Ex) 300 steps 3, 0, 0Push 22th time HR EEV step M Ex) 300 steps 3, 0, 0Push 23th time Fan step ( SSR or BLDC ) N Ex) 13 steps Off, 1, 3Push 24th time Version
7-2. Function keys
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8 Error codes
0123456789ABCD
EF
Display alphabet at Description
E It displays from error 101 to error 700.
P It displays from error 701 to error 800.
U It displays the address of outdoor unit.Ex) U200 : Outdoor unit 1, U201: Outdoor unit 2, U202: Outdoor unit 3, U203 : Outdoor unit 4
A It displays the address of indoor unit. Ex) A000 : Indoor address 1, A001: Indoor address 1, A002 : Indoor address 2
No. Error code Description
1 E-101 Communication error in indoor unit. It displays when the indoor unit receives no data from the outdoor unit.
2 E-102 Communication error between indoor and outdoor unit. It displays in indoor unit.
3 E-121 Room temperature sensor of indoor unit. (Open or Short)
4 E-122 Eva_in temperature sensor of indoor unit. (Open or Short)
5 E-123 Eva_out temperature sensor of indoor unit. (Open or Short)
6 E-124 Communication error between indoor and outdoor unit. It displays in outdoor unit.
7 E-125 Mid 2 temperature sensor of indoor unit. (Open or Short)
8 E-128 Eva_in temperature sensor is detached from eva_in pipe of indoor unit.
9 E-129 Eva_out temperature sensor is detached from eva_out pipe of indoor unit.
10 E-130 Eva_in and Eva_out temperature sensors are detached from eva_in and out pipes of indoor unit at the same time.
11 E-137 VOC sensor of ERV product. (Open or Short)
12 E-138 Gas sensor of ERV product. (Open or Short)
13 E-139 CO2 sensor of ERV product. (Open or Short )
14 E-151 EEV opening error of indoor unit (2nd detection)
15 E-152 EEV closing error of indoor unit (2nd detection)
16 E-153 Floating switch error of indoor unit (2nd detection)
17 E-154 RPM feed back error of indoor unit.
18 E-155 RPM feed back error of indoor unit. (The second motor of indoor unit)
19 E-161Mixed operation mode of indoor units. It occurs when outdoor unit is operating or going to operate in cooling mode(or heating mode) and then other indoor unit is going to operate in heating mode (or cooling mode).
20 E-162 EEPROM error of MICOM. (Physical damage)
21 E-163 Option code error of indoor unit’s EEPROM.
22 E-167 Option setting error of indoor unit’s dip switch.
23 E-170 Temperature display setting error for USA market product. (Mixed setting with Celsius and Fahrenheit temperature)
24 E-180 Opening error of cooling and heating solenoid valve simultaneously in MCU (1st detection)
25 E-181 Opening error of cooling and heating solenoid valve simultaneously in MCU (2nd detection)
26 E-185 Cross wiring error between communication and power of indoor unit.
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Installation
No. Error code Description
27 E-190 No matching between indoor unit’s address and eva_in sensor in pipe checking operation.
28 E-191 No matching between indoor unit’s address and eva_out sensor in pipe checking operation.
29 E-199 It displays when pipe checking operation is not operated.
30 E-201 Communication error between indoor and outdoor unit (Tracking failure or the setting quantity of indoor unit on outdoor unit’s PCB differs from the quantity of installed indoor unit.)
31 E-202 Communication error between indoor and outdoor unit. (After tracking is completed, and then no response from indoor unit)
32 E-203 Communication error between main and sub outdoor unit
33 E-204 The setting quantity of MCU on outdoor unit’s PCB differs from the quantity of installed MCU.
34 E-210 Communication error between MCU and outdoor unit.
35 E-211 Indoor unit’s address overlapped on the MCU.
35 E-213 No matching between installed indoor unit’s address and indoor unit’s address on the MCU.
35 E-214 Setting error of MCU’s quantity in outdoor unit’s PCB
36 E-215 Indoor unit’s address setting error on the MCU. (There is same address among the MCUs)
37 E-216 Setting error of indoor unit activating dip switch on MCU’s PCB. (The indoor unit is not connected with the MCU’s port but indoor unit activating dip switch on MCU’s PCB turns on.)
38 E-217 Setting error of indoor unit activating dip switch on MCU’s PCB. (The indoor unit is connected with the MCU’s port but indoor unit activating dip switch on MCU’s PCB turns off.)
39 E-218 Setting error of indoor unit’s quantity on MCU’s PCB. (The quantity of installed indoor units exceeds the setting number of the MCU’s PCB.)
40 E-221 Ambient air temperature sensor of outdoor unit. (Open or Short)
41 E-226 Ambient air temperature sensor is detached from outdoor unit.
42 E-231 Cond_out temperature sensor of main outdoor unit. (Open or Short)
43 E-236 Cond_out temperature sensor of the outdoor unit. (Open or Short)
44 E-237 Cond temperature sensor of outdoor unit. (Open or Short)
45 E-241 Cond_mid temperature sensor is detached from sensor hold of the pipe.
46 E-246 Cond_out 1 temperature sensor is detached from sensor hold of the pipe.
47 E-251 Discharge temperature sensor of compressor 1. (Open or Short)
48 E-256 Discharge temperature sensor of compressor 1. (Open or Short)
49 E-257 Discharge temperature sensor of compressor 2. (Open or Short)
50 E-258 Discharge temperature sensor of compressor 3. (Open or Short)
51 E-261 Discharge temperature sensor of compressor 1 is detached from the sensor hold of the pipe.
52 E-262 Discharge temperature sensor of compressor 1 is detached from the sensor hold of the pipe.
53 E-263 Discharge temperature sensor of compressor 2 is detached from the sensor hold of the pipe.
54 E-264 Discharge temperature sensor of compressor 3 compressor is detached from the sensor hold of the pipe.
55 E-265 Sump(Base) temperature sensor of main unit’s compressor is detached from the base of the compressor.
56 E-266 Sump(Base) temperature sensor of sub1 unit’s compressor is detached from the base of the compressor.
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8 Error codes
No. Error code Description
57 E-267 Sump(Base) temperature sensor of sub2 unit’s compressor is detached from the base of the compressor.
58 E-268 Sump(Base) temperature sensor of sub3 unit’s compressor is detached from the base of the compressor.
58 E-269 Suction temperature sensor is detached from the sensor hold of the pipe.
59 E-271 Sump(Base) temperature sensor of compressor 1. (Open or Short)
60 E-276 Sump(Base) temperature sensor of compressor 1. (Open or Short)
61 E-277 Sump(Base) temperature sensor of compressor 2. (Open or Short)
62 E-278 Sump(Base) temperature sensor of compressor 3. (Open or Short)
63 E-291 High pressure sensor. (Open or Short)
64 E-296 Low pressure sensor. (Open or Short)
65 E-307 Oil balance temperature sensor. (Open or Short)
66 E-308 Suction temperature sensor. (Open or Short)
67 E-311 Double tube / Liquid temperature sensor. (Open or Short)
68 E-312 Main cooling solenoid valve opening error.
69 E-321 EVI_in temperature sensor. (Open or Short)
70 E-322 EVI_out temperature sensor. (Open or Short)
71 E-407 Compressor stop by high pressure’s protection control.
72 E-410 Compressor stop by low pressure’s protection control.
73 E-413 Protection control by sump sensor.
74 E-416 Compressor stop by discharge temperature’s protection control.
75 E-425 Reverse phase or phase open. (3ø Wiring of outdoor unit, R-S-T-N)
76 E-428 Compressor stop by abnormal compression ratio.
77 E-431 Self-diagnosis of oil solenoid valve. (Open and Close error)
78 E-438 EVI EEV opening error.
79 E-440 Prohibition of heating operation when the ambient air temperature is over 30°C
80 E-442 Prohibition of refrigerant charging with heating operation when outdoor ambient air temperature is over 15°C.
81 E-443 Prohibition of operating when the high pressure of system is too low.
82 E-452 Power failure temporarily or zero crossing error.
83 E-453 Overload error of outdoor unit’s motor (by temperature).
84 E-454 RPM error of outdoor unit’s motor
85 E-455 IPM overload error of outdoor unit’s motor (by temperature)
86 E-456 Over Current error of outdoor unit’s motor
87 E-457 Backlash error of outdoor unit’s motor
88 E-458 Over current of CT sensor. (Or outdoor’s motor locking of inverter system.)
89 E-461 Low current of CT sensor. (Or compressor starting failure of inverter system.)
90 E-477 Liquid refrigerant incoming protection error in digital / 1st fixed scroll compressor with sump temperature sensor.
91 E-559 Indoor unit stop by unidentified error from outdoor units.
92 E-560 Option switch setting error of outdoor unit. (napplicable option switch turns on.)
93 E-561 Fan RPM error of ERV SA (Supply air).
94 E-562 Fan RPM error of ERV RA (Return air).
95 E-563 Model mismatching of Indoor unit.
96 E-601 Communication error between remote controller and indoor unit.
97 E-602 Communication error between master and slave wired remote controller.
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Installation
No. Error code Description
98 E-603 Communication packet error (Baud rate error)
99 E-604 Tracking failure error between wired remote controller and indoor unit.
100 E-605 Communication error. (7-day scheduler Wired remote controller or 7-day scheduler Centralized controller)
101 E-606 COM1/COM2 communication setting error. (Wired remote controller)
102 E-607 Two masters of wired remote controllers were installed in one COM2 communication line.
103 E-608 Can’t detect ERV controller.
104 E-609 Indoor unit is not detected for synchronous control.
105 E-610 Communication error between centralized controller and interface module.
106 E-611 Communication error between DMS and centralized controller.
107 E-613 Communication error between DMS and SIM interface module.
108 E-614 Communication error between SIM and power meter.
109 E-615 Communication error between interface module and indoor unit.
110 E-616 Communication error between interface module and outdoor unit.
111 E-618 The connected indoor units to ERV exceeded 16 units.
112 E-619 Mixed temperature display setting of indoor units which was connected to MWR-WS00 (Celsius/Fahrenheit)
113 E-620 Temperature display setting error of MWR-WS00 (Celsius/Fahrenheit)
114 E-621 Option switch setting error of wired remote controller (Master/Slave)
115 E-652 Two wired remote controllers were set to the master mode. (COM 1 wiring)
116 E-653 Room temperature sensor in the wired remote controller. (Open or Short)
117 E-654 Memory data error in the wired remote controller. (MWR-WS00)
118 P-701 Floating switch error of indoor unit. (1st detection)
119 P-702 EEV closing error of indoor unit. (1st detection)
120 P-703 EEV opening error of indoor unit. (1st detection)
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DVMDVM Technical Data Book
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Outdoor Units
Outdoor Units
Outdoor Units
Outdoor Units
Specification may be subject to change without prior notice for the continuous product improvement.
Samsung Electronics Co., LTD.Digital Air Solution Business Team, SE Dept.
Head Office (Suwon Korea) 416, Maetan-3Dong, Yeongtong-Gu, Suwon City, Gyeonggi-Do, Korea 443-742TEL : 82-31-200-6119 Website : www.dvmsystem.com Email: [email protected]
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