DVM PLUS3 1 Outdoor Units

June 4, 2016 | Author: Sattar Al-Jabair | Category: N/A
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Short Description

DVM PLUS3 1 Outdoor Units...

Description

SAMSUNG DVM Air Conditioner

2010

Outdoor Outdoor Units Units DVM PLUS III High Ambient

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Outdoor Units

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I. Products

1 2 3

Outdoor units

6

Indoor units

9

Accessories

11

II. Outdoor units

1 2 3 4 5 6 7 8

Specifications

14

Dimensional drawing

21

PCB connector layout

22

Electrical wiring diagram

24

Sound pressure level

25

Operation limit

26

Cycle operation mode

27

Cycle function parts

34

2

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Products

III. Installation 38

Space requirements

39

Placing the outdoor units

43

Electric specifications

44

Wiring works

46

Refrigerant piping works

48

Option switches & function keys

54

Error codes

56

Installation

Outdoor unit combinations

Outdoor units

1 2 3 4 5 6 7 8

3

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DVM PLUS III

4

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Products

I. Products 1 Outdoor units..............................................6 2 Indoor units.................................................9 3 Accessories..............................................11

5

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1 Outdoor units 1-1. Nomenclature Model name

RD RVX

100 100

VH

QT

XT

GF

AE















 Classification Outdoor unit

 Refrigerant R

D J D

DVM FJM CAC

R410A

X

 Rating voltage  Capacity* ×1/10 HP(3 digits)

 Type General

V

Unitary (RoofTop)

R

DVM SLIM

S

DVM MINI

M

GHP

G

Water DVM

D

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

 Airflow direction TROPICAL H/P

Q

TROPICAL C/O

T

H/P

H

C/O

C

H/R

R

6

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1-2. Line-up Products

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

TON

20.8

22.4

HP

26

28

Model Name

24.0

25.5

27.0

28.5

30

32

34

36

RD260/280/300/320/340/360VQXGA

7

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1 Outdoor units 1-3. Outdoor unit combinations 1) Basic models Classification

Single unit

Capacity (Ton)

Capacity (HP)

Model

6.4

8

RD080VQXGA

8.0

10

RD100VQXGA

9.5

12

RD120VQXGA

Capacity (Ton)

Capacity (HP)

12.8

16

2

14.4

18

1

16.0

20

2

17.5

22

1

19.0

24

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

2) Combinations Classification

Module unit

Basic model RD080VQXGA

RD100VQXGA

RD120VQXGA

1

1 2

3

8

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2 Indoor units 2-1. Nomenclature Products

Model name

AVX RVX

CV

SH

HT

022 100

EF

EE















 Capacity*

 Classification Indoor unit (R410A)

×1/10 kW (3 digits)

AVX

* Index

 Classification by product group Cassette type

C

Duct type

D

Wall mounted type

W

Convertible type

T

 Product notation Slim 1way Cassette type

Duct type Wall mounted type

S

Notation 022 028 036 045 056 060 071 090 112 128 140

Cooling 2.2 2.8 3.6 4.5 5.6 6.0 7.1 9.0 11.2 12.8 14.0

Heating 2.5 3.2 4.0 5.0 6.3 6.8 8.0 10.0 12.5 13.8 16.0

2way

2

Mini 4way

M

4way

4

 Rating voltage

Slim

S

1Ø, 220V, 60Hz

B

Middle Static Pressure

U

1Ø, 208V~230V, 60Hz

C

MB

B

1Ø, 220V~240V, 50Hz

E

Neo Forte

N

 Mode Heat Pump/Heat Recovery

 Version H

Export

A~Z

9

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2 Indoor units 2-2. Line-up Capacity Type

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 NeoForte

10

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3 Accessories Classification

Controller

Interface module

Controller Centralized control system

Interface module

Individual control Controller system Controller

Model

Guest room management system

Application model

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

SiM

MIM-B12

DVM Series, FJM

Centralized controller

MCM-A202B

DVM Series, FJM, CAC

Function controller

MCM-A100

DVM Series, FJM, CAC

Operation mode selection switch

MCM-C200

DVM Series

Centralized controller interface module

MIM-B13B

Mini DVM(R410A), DVM PLUS III, FJM

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 MRK-A00 receiver

Building management system

Image

Products

Integrated management system

Product

Wireless signal receiver kit Receiver MRW-10A wire

Duct (For wireless remote controller)

7-day scheduler

MWR-BS00

Cassette, Wall-mounted, Duct

Lonworks interface module

MIM-B07

DVM Series, FJM

Key-tag interface module

MIM-B02

DVM Series, FJM

External contact interface module

MIM-B14

Mini DVM(R410A), DVM PLUS III, FJM(Non MHTTTFKEA)

Duct (For wireless remote controller)

 DVM Series : Mini DVM, DVM PLUS III

11

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3 Accessories Classification

Feature

Y-joint

Outdoor joint (Outdoor Connection)

Header joint

EEV kits

Drain pump

Front panel

Model

Description

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

MXJ-T3819K

Below 36 HP

MXJ-HA2512K

Below 46.4 kW

MXJ-HA3115K

Below 69.6 kW

MXJ-HA3819K

Over 69.7 kW

MXD-A13K116A

Below 3.6 kW (1 Room) + 5.6 kW ~9.0 kW (1Room)

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-A13K216A

Below 3.6 kW (2 Rooms) + 5.6 kW ~ 9.0 kW (1Room)

MXD-A13K300A

Below 3.6 kW (3 Rooms)

MXD-A16K213A

Below 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)

MEV-A16SA

5.6 kW ~ 9.0 kW (1Room)

MDP-E075SEE

Slim Duct (2.2 ~ 7.1) kW

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

PSSMA

Slim 1 way cassette

PMSMA

Mini 4 way cassette

P4SMA

4 way cassette

Relevant unit

Remark

DVM PLUS III

Requisite

DVM PLUS III

Requisite

DVM PLUS III

Requisite

Wall-mounted (For 2 indoor units)

Wall-mounted (For 3 indoor units)

Option

Wall-mounted (For single unit)

-

Option

-

Requisite

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II. Outdoor units 1 Specifications.......................................... 14 Outdoor units

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 Power Supply Mode*1) Horse Power Cooling*2) Performance

Capacity

Cooling*3)

Heating*4) Cooling*2) Cooling*3) Heating Cooling*2) Nominal Running Cooling*3) Current Heating Circuit Breaker (MCCB/ELB/ELCB) Cooling*2) Cooling*3) Heating Nominal Input Power

COP

Model

Compressor

Fan

Type Charging

Type / Control Motor Output Airflow Rate External Static Pressure

kW

A A -

Type Number Piston Displacement Output Lubricant

Ø/ V/ Hz HP kW Btu/h TR kW Btu/h TR kW Btu/h TR

Max.

Mechanical Type Safety Devices Electronic Type

EA cc/Rev kW cc W m3/min mmAq Pa -

Piping Connections

Liquid Gas Oil (Flare) Installation Limitation

Max. Length Max. Height

Type Factory Charging Sound4) Sound Pressure Net Weight Shipping Weight Set Size Net Dimensions (WxHxD) Shipping Dimensions (WxHxD) Main Power (Below 50m) Cable Communication Cooling Operating Temp. Range Heating Refrigerant

Ø, mm Ø, mm Ø, mm m m kg dB(A) kg kg mm mm mm2 mm2 °C °C

RD080VQXGA 3/ 380~415/ 50 Heat Pump 8 22.4 76,400 6.4 22.4 76,400 6.4 25.0 85,300 7.1 5.09 8.09 5.74 8.5 14.3 10.9 25 4.40 2.77 4.36 ZPD72KCE- ZP72KCE-TFD TFD Digital Scroll Fixed Scroll 1 1 67.1 67.1 5.75 5.65 3MAF POE 1,981 1,981 Propeller/BLDC 630 170 8 78.5 High Pressure Switch Crank Case Heater Fuse for PCB Over Voltage Protection Current Transformer Fan Motor Overheat/Current protector 9.52 19.05 6.35 200 50 (40) R410A 8.5 57 280 297 1200 x 1668 x 765 1268 x 1868 x 832 CV 2.5 0.75~1.5 -5~50 -20~24

RD010VQXGA 3/ 380~415/ 50 Heat Pump 10 28.0 95,500 8.0 25.0 85,300 7.1 31.5 107,500 9.0 7.36 8.93 7.18 13.1 15.7 12.7 30 3.40 2.80 4.39 ZPD72KCE- ZP72KCE-TFD TFD Digital Scroll Fixed Scroll 1 1 67.1 67.1 5.75 5.65 3MAF POE 1,981 1,981 Propeller/BLDC 630 170 8 78.5 High Pressure Switch Crank Case Heater Fuse for PCB Over Voltage Protection Current Transformer Fan Motor Overheat/Current protector 9.52 22.23 6.35 200 50 (40) R410A 8.5 58 280 297 1200 x 1668 x 765 1268 x 1868 x 832 CV 2.5 0.75~1.5 -5~50 -20~24

RD120VQXGA 3/ 380~415/ 50 Heat Pump 12 33.5 114,300 9.5 28.5 97,200 8.1 37.5 128,000 10.7 10.00 11.02 9.06 19.1 20.5 17.9 40 2.85 2.59 4.14 ZPD83KCE- ZP83KCE-TFD TFD Digital Scroll Fixed Scroll 1 1 77.2 77.2 6.65 6.4 3MAF POE 1,981 1,981 Propeller/BLDC 630 200 8 78.5 High Pressure Switch Crank Case Heater Fuse for PCB Over Voltage Protection Current Transformer Fan Motor Overheat/Current protector 12.70 28.58 6.35 200 50 (40) R410A 8.5 60 280 297 1200 x 1668 x 765 1268 x 1868 x 832 CV 4 0.75~1.5 -5~50 -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.

14

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Type Basic Model Name

Basic

Power Supply Mode*1) Horse Power Cooling*2)

Capacity

Cooling*3)

Heating*4) Cooling*2) Cooling*3) Heating Cooling*2) Nominal Running Cooling*3) Current Heating Circuit Breaker (MCCB/ELB/ELCB) Cooling*2) Cooling*3) Heating Model Type Number Piston Displacement Output Type Lubricant Charging Type / Control Motor Output Airflow Rate External Static Max. Pressure Nominal Input Power

COP

Compressor

Fan

Mechanical Type Safety Devices Electronic Type

Piping Connections

Liquid Gas Discharge Gas Oil (Flare) Installation Limitation

Max. Length Max. Height

Type Refrigerant Factory Charging Sound4) Sound Pressure Net Weight Shipping Weight Set Size Net Dimensions (WxHxD) Shipping Dimensions (WxHxD) Main Power (Below 50m) Cable Communication Cooling Operating Temp. Range Heating

kW

A A EA cc/Rev kW cc W m3/min mmAq Pa Ø, mm Ø, mm Ø, mm Ø, mm m ft m ft kg dB(A) kg kg mm mm mm2 mm2 °C °C

RD160VQXGA 2

RD180VQXGA 1 1

3/ 380~415/ 50 Heat Pump 16 44.8 152,800 12.7 44.8 152,800 12.7 50.0 170,600 14.2 10.18 16.18 11.48 17.0 28.6 21.8 50 4.40 2.77 4.36 ZPD72T ZPD83T ZP72T ZP83T Digital Scroll Fixed Scroll 2 2 67.1 67.1 5.75 5.65 3MAF POE 1,981 1,981 Propeller/BLDC 630 x 2 170 x 2 8 78.5 High Pressure Switch Crank Case Heater Fuse for PCB Over-voltage Protection Current Transformer Fan Motor Overheat/Current Protector 15.88 28.58 6.35 200 656 50 (40) 164 (131) R410A 8.5 x 2

3/ 380~415/ 50 Heat Pump 18 50.4 171,900 14.3 47.4 161,700 13.5 56.5 192,800 16.1 12.45 17.02 12.92 21.6 30.0 23.6 60 4.05 2.78 4.37 ZPD72T ZPJ83T ZP72T ZPI83T Digital Scroll Fixed Scroll 2 2 67.1 67.1 5.75 5.65 3MAF POE 1,981 1,981 Propeller/BLDC 630 x 2 170 x 2 8 78.5 High Pressure Switch Crank Case Heater Fuse for PCB Over-voltage Protection Current Transformer Fan Motor Overheat/Current Protector 15.88 28.58 6.35 200 656 50 (40) 164 (131) R410A 8.5 x 2

280 x 2 297 x 2 (1200 x 1668 x 765) x 2 (1268 x 1888 x 832) x 2 CV 6 0.75~1.5 -5~50 -20~24

280 x 2 297 x 2 (1200 x 1668 x 765) x 2 (1268 x 1888 x 832) x 2 CV 10 0.75~1.5 -5~50 -20~24

Outdoor units

Performance

RD080VQXGA RD100VQXGA RD120VQXGA Ø/ V/ Hz HP kW Btu/h TR kW Btu/h TR kW Btu/h TR

*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.

15

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1 Specifications Type Basic Model Name

Basic

Power Supply Mode*1) Horse Power Cooling*2) Performance

Capacity

Cooling*3)

Heating*4) Cooling*2) Cooling*3) Heating Cooling*2) Nominal Running Cooling*3) Current Heating Circuit Breaker (MCCB/ELB/ELCB) Cooling*2) Cooling*3) Heating Model Type Number Piston Displacement Output Type Lubricant Charging Type / Control Motor Output Airflow Rate External Static Max. Pressure Nominal Input

Power

COP

Compressor

Fan

Mechanical Type Safety Devices Electronic Type

Piping Connections

Liquid Gas Discharge Gas Oil (Flare) Installation Limitation

Max. Length Max. Height

Type Refrigerant Factory Charging Sound4) Sound Pressure Net Weight Shipping Weight Set Size Net Dimensions (WxHxD) Shipping Dimensions (WxHxD) Main Power (Below 50m) Cable Communication Cooling Operating Temp. Range Heating

RD080VQXGA RD100VQXGA RD120VQXGA Ø/ V/ Hz HP kW Btu/h TR kW Btu/h TR kW Btu/h TR kW

A A EA cc/Rev kW cc W m3/min mmAq Pa Ø, mm Ø, mm Ø, mm Ø, mm m ft m ft kg dB(A) kg kg mm mm mm2 mm2 °C °C

RD200VQXGA

RD220VQXGA

2 3/ 380~415/ 50 Heat Pump 20 56.0 191,000 15.9 50.0 170,600 14.2 63.0 215,000 17.9 14.72 17.86 14.36 26.2 31.4 25.4 60 3.80 2.80 4.39 ZPD72T ZPJ83T ZP72T ZPI83T Digital Scroll Fixed Scroll 2 2 67.1 67.1 5.75 5.65 3MAF POE 1,981 1,981 Propeller/BLDC 630 x 2 170 x 2 8 78.5 High Pressure Switch Crank Case Heater Fuse for PCB Over-voltage Protection Current Transformer Fan Motor Overheat/Current Protector 15.88 28.58 6.35 200 656 50 (40) 164 (131) R410A 8.5 x 2

1 1 3/ 380~415/ 50 Heat Pump 22 61.6 210,100 17.5 53.5 182,500 15.2 69.0 235,500 19.6 17.36 19.95 16.24 32.2 36.2 30.6 60 3.55 2.68 4.25 ZPD72T ZPD83T ZP72T ZP83T Digital Scroll 1 1 1 1 67.1 77.2 67.1 77.2 5.75 6.65 5.65 6.4 3MAF POE 1,981 1,981 1,981 1,981 Propeller/BLDC 630 x 2 170 x 1 + 200 x 1 8 78.5 High Pressure Switch Crank Case Heater Fuse for PCB Over-voltage Protection Current Transformer Fan Motor Overheat/Current Protector 15.88 28.58 6.35 200 656 50 (40) 164 (131) R410A 8.5 x 2

280 x 2 297 x 2 (1200 x 1668 x 765) x 2 (1268 x 1888 x 832) x 2 CV 10 0.75~1.5 -5~50 -20~24

280 x 2 297 x 2 (1200 x 1668 x 765) x 2 (1268 x 1888 x 832) x 2 CV 10 0.75~1.5 -5~50 -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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Type RD240VQXGA

Basic Model Name

Basic

Power Supply Mode*1) Horse Power Cooling*2)

Capacity

Cooling*3)

Heating*4) Cooling*2) Cooling*3) Heating Cooling*2) Nominal Running Cooling*3) Current Heating Circuit Breaker (MCCB/ELB/ELCB) Cooling*2) Cooling*3) Heating Model Type Number Piston Displacement Output Type Lubricant Charging Type / Control Motor Output Airflow Rate External Static Max. Pressure Nominal Input Power

COP

Compressor

Fan

Mechanical Type Safety Devices Electronic Type

Piping Connections

Liquid Gas Discharge Gas Oil (Flare) Installation Limitation

Max. Length Max. Height

Type Refrigerant Factory Charging Sound4) Sound Pressure Net Weight Shipping Weight Set Size Net Dimensions (WxHxD) Shipping Dimensions (WxHxD) Main Power (Below 50m) Cable Communication Cooling Operating Temp. Range Heating

kW

A A EA cc/Rev kW cc W m3/min mmAq Pa Ø, mm Ø, mm Ø, mm Ø, mm m ft m ft kg dB(A) kg kg mm mm mm2 mm2 °C °C

RD260VQXGA 2 1

2 3/ 380~415/ 50 Heat Pump 24 67.2 229,200 19.1 57.0 194,400 16.2 75.0 256,000 21.3 20.00 22.04 18.12 38.2 41.0 35.8 75 3.36 2.59 4.14 ZPD72T ZPD83T ZP72T ZP83T Digital Scroll Fixed Scroll 2 2 77.2 77.2 6.65 6.4 3MAF POE 1,981 1,981 Propeller/BLDC 630 x 2 200 x 2 8 78.5 High Pressure Switch Crank Case Heater Fuse for PCB Over-voltage Protection Current Transformer Fan Motor Overheat/Current Protector 19.05 31.75 6.35 200 656 50 (40) 164 (131) R410A 8.5 x 2

3/ 380~415/ 50 Heat Pump 26 72.8 248,300 20.7 69.8 238,100 19.8 81.5 278,100 23.2 17.54 25.11 18.66 30.1 44.3 34.5 75 4.15 2.78 4.37 ZPD72T ZPD83T ZP72T ZP83T Digital Scroll Fixed Scroll 3 3 67.1 67.1 5.75 5.65 3MAF POE 1,981 1,981 Propeller/BLDC 630 x 3 170 x 3 8 78.5 High Pressure Switch Crank Case Heater Fuse for PCB Over-voltage Protection Current Transformer Fan Motor Overheat/Current Protector 19.05 31.75 6.35 200 656 50 (40) 164 (131) R410A 8.5 x 3

280 x 2 297 x 2 (1200 x 1668 x 765) x 2 (1268 x 1888 x 832) x 2 CV 10 0.75~1.5 -5~50 -20~24

280 x 3 297 x 3 (1200 x 1668 x 765) x 3 (1268 x 1888 x 832) x 3 CV 16 0.75~1.5 -5~50 -20~24

Outdoor units

Performance

RD080VQXGA RD100VQXGA RD120VQXGA Ø/ V/ Hz HP kW Btu/h TR kW Btu/h TR kW Btu/h TR

*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.

17

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1 Specifications Type Basic Model Name

Basic

Power Supply Mode*1) Horse Power Cooling*2) Performance

Capacity

Cooling*3)

Heating*4) Cooling*2) Cooling*3) Heating Cooling*2) Nominal Running Cooling*3) Current Heating Circuit Breaker (MCCB/ELB/ELCB) Cooling*2) Cooling*3) Heating Model Type Number Piston Displacement Output Type Lubricant Charging Type / Control Motor Output Airflow Rate External Static Max. Pressure Nominal Input Power

COP

Compressor

Fan

Mechanical Type Safety Devices Electronic Type

Piping Connections

Liquid Gas Discharge Gas Oil (Flare) Installation Limitation

Max. Length Max. Height

Type Refrigerant Factory Charging Sound4) Sound Pressure Net Weight Shipping Weight Set Size Net Dimensions (WxHxD) Shipping Dimensions (WxHxD) Main Power (Below 50m) Cable Communication Cooling Operating Temp. Range Heating

RD080VQXGA RD100VQXGA RD120VQXGA Ø/ V/ Hz HP kW Btu/h TR kW Btu/h TR kW Btu/h TR kW

A A EA cc/Rev kW cc W m3/min mmAq Pa Ø, mm Ø, mm Ø, mm Ø, mm m ft m ft kg dB(A) kg kg mm mm mm2 mm2 °C °C

RD280VQXGA 1 2

RD300VQXGA

3/ 380~415/ 50 Heat Pump 28 78.4 267,400 22.3 72.4 247,000 20.6 88.0 300,300 25.0 19.81 25.95 20.10 34.7 45.7 36.3 75 3.96 2.79 4.38 ZPD72T ZPD83T ZP72T ZP83T Digital Scroll Fixed Scroll 3 3 67.1 67.1 5.75 5.65 3MAF POE 1,981 1,981 Propeller/BLDC 630 x 3 170 x 3 8 78.5 High Pressure Switch Crank Case Heater Fuse for PCB Over-voltage Protection Current Transformer Fan Motor Overheat/Current Protector 19.05 31.75 6.35 200 656 50 (40) 164 (131) R410A 8.5 x 3

3/ 380~415/ 50 Heat Pump 30 84.0 286,500 23.9 75.0 255,900 21.3 94.5 322,500 26.9 22.08 26.79 21.54 39.3 47.1 38.1 100 3.80 2.80 4.39 ZPD72T ZPD83T ZP72T ZP83T Digital Scroll Fixed Scroll 3 3 67.1 67.1 5.75 5.65 3MAF POE 1,981 1,981 Propeller/BLDC 630 x 3 170 x 3 8 78.5 High Pressure Switch Crank Case Heater Fuse for PCB Over-voltage Protection Current Transformer Fan Motor Overheat/Current Protector 19.05 31.75 6.35 200 656 50 (40) 164 (131) R410A 8.5 x 3

280 x 3 297 x 3 (1200 x 1668 x 765) x 3 (1268 x 1888 x 832) x 3 CV 16 0.75~1.5 -5~50 -20~24

280 x 3 297 x 3 (1200 x 1668 x 765) x 3 (1268 x 1888 x 832) x 3 CV 16 0.75~1.5 -5~50 -20~24

3

*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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Type Basic Model Name

Basic

Power Supply Mode*1) Horse Power Cooling*2)

Capacity

Cooling*3)

Heating*4) Cooling*2) Cooling*3) Heating Cooling*2) Nominal Running Cooling*3) Current Heating Circuit Breaker (MCCB/ELB/ELCB) Cooling*2) Cooling*3) Heating Model Type Number Piston Displacement Output Type Lubricant Charging Type / Control Motor Output Airflow Rate Nominal Input Power

COP

Compressor

Fan

External Static Pressure

Max.

Mechanical Type Safety Devices Electronic Type

Piping Connections

Liquid Gas Discharge Gas Oil (Flare) Installation Limitation

Max. Length Max. Height

Type Refrigerant Factory Charging Sound4) Sound Pressure Net Weight Shipping Weight Set Size Net Dimensions (WxHxD) Shipping Dimensions (WxHxD) Main Power (Below 50m) Cable Communication Cooling Operating Temp. Range Heating

kW

A A EA cc/Rev kW cc W m3/min mmAq Pa Ø, mm Ø, mm Ø, mm Ø, mm m ft m ft kg dB(A) kg kg mm mm mm2 mm2 °C °C

RD320VQXGA

RD340VQXGA

2 1 3/ 380~415/ 50 Heat Pump 32 89.6 305,600 25.5 78.5 267,800 22.3 100.5 343,000 28.6 24.72 28.88 23.42 45.3 51.9 43.3 100 3.62 2.72 4.29 ZPD72T ZPD83T ZP72T ZP83T Digital Scroll Fixed Scroll 2 1 2 1 67.1 77.2 67.1 77.2 5.75 6.65 5.65 6.4 3MAF POE 1,981 1,981 1,981 1,981 Propeller/BLDC 630 x 3 170 x 2 + 200 x 1 8 78.5 High Pressure Switch Crank Case Heater Fuse for PCB Over-voltage Protection Current Transformer Fan Motor Overheat/Current Protector 19.05 31.75 6.35 200 656 50 (40) 164 (131) R410A 8.5 x 3

1 2 3/ 380~415/ 50 Heat Pump 34 95.2 324,700 27.1 82.0 279,700 23.3 106.5 363,500 30.3 27.36 30.97 25.30 51.3 56.7 48.5 100 3.48 2.65 4.21 ZPD72T ZPD83T ZP72T ZP83T Digital Scroll Fixed Scroll 1 2 1 2 67.1 77.2 67.1 77.2 5.75 6.65 5.65 6.4 3MAF POE 1,981 1,981 1,981 1,981 Propeller/BLDC 630 x 3 170 x 1 + 200 x 2 8 78.5 High Pressure Switch Crank Case Heater Fuse for PCB Over-voltage Protection Current Transformer Fan Motor Overheat/Current Protector 19.05 31.75 6.35 200 656 50 (40) 164 (131) R410A 8.5 x 3

280 x 3 297 x 3 (1200 x 1668 x 765) x 3 (1268 x 1888 x 832) x 3 CV 16 0.75~1.5 -5~50 -20~24

280 x 3 297 x 3 (1200 x 1668 x 765) x 3 (1268 x 1888 x 832) x 3 CV 16 0.75~1.5 -5~50 -20~24

Outdoor units

Performance

RD080VQXGA RD100VQXGA RD120VQXGA Ø/ V/ Hz HP kW Btu/h TR kW Btu/h TR kW Btu/h TR

*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 RD360VQXGA

Basic Model Name

Basic

Power Supply Mode*1) Horse Power Cooling*2) Performance

Capacity

Cooling*3)

Heating*4) Cooling*2) Cooling*3) Heating Cooling*2) Nominal Running Cooling*3) Current Heating Circuit Breaker (MCCB/ELB/ELCB) Cooling*2) Cooling*3) Heating Model Type Number Piston Displacement Output Type Lubricant Charging Type / Control Motor Output Airflow Rate External Static Max. Pressure Nominal Input Power

COP

Compressor

Fan

Mechanical Type Safety Devices Electronic Type

Piping Connections

Liquid Gas Discharge Gas Oil (Flare) Installation Limitation

Max. Length Max. Height

Type Refrigerant Factory Charging Sound4) Sound Pressure Net Weight Shipping Weight Set Size Net Dimensions (WxHxD) Shipping Dimensions (WxHxD) Main Power (Below 50m) Cable Communication Cooling Operating Temp. Range Heating

RD080VQXGA RD100VQXGA RD120VQXGA Ø/ V/ Hz HP kW Btu/h TR kW Btu/h TR kW Btu/h TR

3 3/ 380~415/ 50 Heat Pump 36 100.8 343,800 28.7 85.5 291,600 24.3 112.5 384,000 32.0 30.00 33.06 27.18 57.3 61.5 53.7 100 3.36 2.59 4.14

kW

A A EA cc/Rev kW cc W m3/min mmAq Pa Ø, mm Ø, mm Ø, mm Ø, mm m ft m ft kg dB(A) kg kg mm mm mm2 mm2 °C °C

ZPD72T

ZPD83T

ZP72T

Digital Scroll

ZP83T Fixed Scroll

3 77.2 6.65

3 77.2 6.4 3MAF POE

1,981

1,981

Propeller/BLDC 630 x 3 200 x 3 8 78.5 High Pressure Switch Crank Case Heater Fuse for PCB Over-voltage Protection Current Transformer Fan Motor Overheat/Current Protector 19.05 38.10 6.35 200 656 50 (40) 164 (131) R410A 8.5 x 3 280 x 3 297 x 3 (1200 x 1668 x 765) x 3 (1268 x 1888 x 832) x 3 CV 25 0.75~1.5 -5~50 -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.

20

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2 Dimensional drawing 2-1. RD080/100/120VQXGA Unit : mm

Outdoor units

No.

Description

No.

1

Gas pipe connection

Name

Ø57.10, knock-out hole

10

Power & communication wiring conduit Ø34.50, knock-out hole hole-side

Name

Description

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

21

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3 PCB connector layout 3-1. Main PCB

1

3

2

4

5

6

7

8

9

10 37

11

36 34 30

12 33

32 29 28 27 31

No.

CN #

1

CN901

Red

2

CN13

Black

3

CN31

Red

4

CN32

Yellow

5

CN12

6 7

26 25 24 23 22 21 20

19

18 17 16

15

14

13

35

COLOR

FUNCTION

No.

CN #

Power Trans Out (AC 17V)

20

CN74

Red

5V for Interface Module

21

CN71

White

PWM Valve

CommunicationwithIndoorUnits(COM1)

22

CN73

Yellow

4 Way Valve

Communication with Outdoor units

23

CN84

Blue

Blue

12V for Interface Module

24

CN85

Yellow

Outdoor Unit EEV Valve

CN92

Black

Sub MICOM Download

25

CN75

White

EVI Bypass Valve

CN91

Black

Main MICOM Download

26

CN86

Blue

Liquid Bypass Valve

8

CN10

White

Main MICOM Download (N/A)

27

CN41

Blue

Low Pressure Sensor

9

CN100

White

Main MICOM Download (N/A)

28

CN42

Red

High Pressure Sensor

10

CN83

Yellow

3 Phase Detection

29

CN49

White

Sump Sensor, Ambient Sensor

Mode Selector (Cooling/Heating)

30

CN48

Red

EVI-In Sensor, EVI-Out Sensor

31

CN47

White

Oil Balance Sensor, Cond. Out Sensor, 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

11

OPT1

White

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

COLOR

FUNCTION Hot gas Bypass Valve

Main Cooling Valve (HR Only)

22

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3-2. BLDC Driver PCB

39

34 35

No.

37

38

COLOR

FUNCTION

34 CN701

Blue

AC 230V Input

35

White

Power Trans In (AC 230V)

36 CN703

Black

AC 230V Output

37 CN501

White

Main-BLDC Driver PCB Connector

GT2

38 CN101

White

Motor Signal

39 CN301

White

Motor Power

Outdoor units

36

CN #

3-3. Noise filter PCB

42

40

41

No.

CN #

COLOR

FUNCTION

40

L/N

Silver

AC 230V Input

41 CN702

White

Earth

42 CN701

Blue

AC 230V Output

3-4. CT PCB

43 No.

CN #

COLOR

FUNCTION

43

CN61

Red

Comp. 1,2 CT Output

23

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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

24

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5 Sound pressure level 5-1. Operation sound level 1m Microphone Unit: dB(A)

Front

High 57 58 60

Outdoor units

Model RD080VQXGA RD100VQXGA RD120VQXGA

 Note  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.

5-2. NC curves (Heat Pump) 1) RD080VQXGA

2) RD100VQXGA 70

70 65

65

60 NC 60 55 NC 55

50

NC 50

45

NC 45

40

NC 40

35

NC 65

Sound pressure level (dB)

Sound pressure level (dB)

NC 65

60 NC 60 55 NC 55

50

NC 50

45

NC 45

40

NC 40

35

NC 35

30

NC 35

30 NC 30

25

63

125

250

500

1000

2000

4000

NC 30 25

8000

Octave band center frequency(Hz)

63

125

250

500

1000

2000

4000

8000

Octave band center frequency(Hz)

3) RD120VQXGA 70 65

Sound pressure level (dB)

NC 65 60 NC 60 55 NC 55

50

NC 50

45

NC 45

40

NC 40

35

NC 35

30

NC 30 25

63

125

250

500

1000

2000

4000

8000

Octave band center frequency(Hz)

25

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6 Operation limit 6-1. Cooling

6-2. Heating

50

20

30 25 20 15 10 5 0

-5 10 15 20 25 30 Indoor temperature(ºF WB)

15 10 5 0 -5 -10 -15 -20 10

Range for warming up operation

35 Outdoor temperature (ºF DB)

25

Range for pull down operation

40

Range for operation

Outdoor temperature (ºF DB)

45

15

Range for continuous operation

20

25

30

Indoor temperature(ºF WB)

26

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7 Cycle operation mode 7-1. Description of cycle function parts 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

Outdoor units

No

27

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7 Cycle operation mode 7-1. Description of cycle function parts No

Classification

39

n

Description 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

e

High pressure gas service valve in HR/MCU unit Low 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

28

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Category 1

Description Temperature

Temperature sensor

Pressure

High / Low Pressure sensor

Sensor

Solenoid

Expansion 2

3

E

Pilot solenoid valve Electronic Expansion Valve (EEV)

Valve Reversing

Reversing valve

Check

Check valve

Service

Service valve (Angle & ball type)

Pressure Switch

High pressure switch (Mechanical type)

Switch & Heater Heater

4

s

Solenoid valve

Outdoor units

Pilot Solenoid

s

H

Electric heater

Compressor

DVI (Digital Vapor Injection) Compressor FVI (Fixed Vapor Injection) Compressor

Accumulator

Accumulator

Heat Exchanger

Condensing or Evaporating unit

Sub cooler

Turbo Intercooler or Sub cooler

Capillary

Capillary tube

Others

29

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7 Cycle operation mode 7-2. Cycle diagrams 1) RD080/100/120/VQXGT(DVM PLUS III - 8/10/12HP )

V O

Q

U

G

P E

N

R

S

M

p

J s

K

L

I

H

E

s

j

B

k

U

b

d

a s

Z

H

H

c

s

t

s

s

f

e

X

Y i

V

m

H

g

s

F

A

o

W

s

r

D E

T

q

C

h

30

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2) EEV kits & Indoor units (1) MXD series

(2) MEV series

2 rooms

3 rooms

e

q

E

Single room

e E

p

E

s

Outdoor units

p

p

q

E

E

E

s

s

(3) Indoor units Indoor units with built-in EEV

q p

x w

v E

u

Indoor units without EEV (Wall mounted)

q

x w

v

p

31

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7 Cycle operation mode 7-2. Cycle diagrams

E

Cooling

Cooling

E





E

Cooling

E

Cooling

E

Cooling

E

Cooling

3) Cooling operation

E

H s



H

H

s



H

s

Low temperature & pressure gas Low temperature & pressure liquid High temperature & pressure gas High temperature & pressure liquid

s



s



s





E

s

Unit

Outdoor unit

Indoor unit

Outdoor unit

Cooling operation

   

 

 

Heating operation

32

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Unit

Heating operation

DVM PLUS3_고온향_01_Outdoor units.indd 33

s

H

s

H

s

s



s

Low temperature & pressure gas Low temperature & pressure liquid High temperature & pressure gas High temperature & pressure liquid

H

H

s









E





Outdoor units



E

Heating

E

Heating

E

Heating

E

Heating

E

Heating

E

Heating

4) Heating operation

E

Cooling operation

Outdoor unit

Indoor unit

Outdoor unit

 

 

   

33

2010-03-08 오후 5:18:42

s

8 Cycle function parts 8-1. RD080/100/120VQXGT

Low pressure sensor High pressure sensor Oil separator

Accumlator DVI compressor PWM valve FVI compressor

Ambient air temp. sensor

Hot gas bypass valve

High pressure switch

EVI EEV

Discharge temp. sensor Liquid bypass valve

Turbo intercooler

Oil valve

Sump temp. sensor

Cond_out temp. sensor

Liquid service valve

Low pressure gas service valve

Oil service valve

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8-2. A description of cycle function parts No

Cycle parts

Functions

DVI compressor Digital Vapor Injection)

DVI compressor coupled with vapor injection controls the capacity 10 to 100% of its capacity. It enhances cooling and heating performance and COP with using vapor injection.

2

FVI compressor (Fixed Vapor Injection)

 VI compressor coupled with vapor injection is fixed compressor. It enhances cooling, F 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

 hen the suction pressure becomes abnormal low pressure, it opens. W During the oil balance operation, it makes high pressure for the shell of compressor

8

High pressure sensor

 he main function of it controls the capacity of compressor in pursuit of target of high T pressure in heating operation by measuring the value of the system.

Outdoor units

1

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

 hrough turbo intercooler, heat is exchanged each other between saturated liquid T refrigerant and a little expanded refrigerant.

16

EVI_in temp. sensor

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

 he main function of it is to control the capacity of compressor in pursuit of target of low T 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 valve

In 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.

These temperature sensors enable to control EVI EEV’s step to secure superheat.

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DVM PLUS III

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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 Installation

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 Classification

Capacity (Ton)

Capacity (HP)

Model

Total capacities of the connectable indoor units (kW)

Single unit

6.4 8.0 9.5

8 10 12

RD080VQXGA RD100VQXGA RD120VQXGA

11.2 ~ 29.1 14.0 ~ 36.4 16.8 ~ 43.6

Maximum number of connectable indoor units 10 10 14

1-2. Compact combinations Classification

Compact combinations

Capacity Capacity RD080VQXGA RD100VQXGA RD120VQXGA (Ton) (HP) 12.8

16

2

14.4

18

1

16.0

20

2

17.5

22

1

19.0

24

20.8

26

2

22.4

28

1

24.0

1

Total capacities of the connectable Indoor units(kW)

Maximum number of connectable Indoor units

22.4 ~ 58.2

16

25.2 ~ 65.5

18

28.0 ~ 72.8

20

1

30.8 ~ 80.0

24

2

33.5 ~ 87.1

28

1

36.4 ~ 94.6

30

2

39.2 ~ 101.9

32

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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2 Space requirements 2-1. Single installation (Unit: mm) Wall height unrestricted 300 or more(S2)

Front

10 or more

300 or more

500 or more(S1)

200 or more

10 or more

2-2. Group installation (Unit: mm) Wall height unrestricted 300 or more (S2)

Installation

300 or more

Front Front

10 or more

20 or more

20 or more

10 or more

500 or more (S1)

20 or more

200 or more

20 or more 300 or more

300 or more

Front

Front

600 or more

10 or more

500 or more

10 or more

Front

20 or more

500 or more

Front

10 or more 300 or more

10 or more 20 or more

Front wall height Rear wall height Side wall height If the height of the wall exceeds the above value, more space should be added to the front and rear space individually.



400 or more

1500 mm and less 500 mm and less Height unrestricted Front : S1 + h1/2, Rear : S2 + h2/2

Note

 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.

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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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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

Installation

Caution  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.

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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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3 Placing the outdoor units 3-1. Anchor bolts position (Unit: mm) A

Model

A

B

RD080/100/120VQXGA

1200

1058

67

745

67

B

Anchor bolt(4-ø15)

3-2. Removing fasteners of compressor’s leg Installation

(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. Remove

Stopper Nut

Washer

Nut Washer

(3) Refasten them with the nut washer only.

Caution  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.

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4 Electric specifications 4-1. Basic models Classification

Capacity (Ton)

Capacity (HP)

Model

MCCB(A)

ELB

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

Single unit

Model

Units

Power supply

Hz

Volts

Min.

Max.

RD080VQXGA

50

380~415

380

415

RD100VQXGA

50

380~415

380

RD120VQXGA

50

380~415

380

MCA

MFA

Comp. RLA

OFM kW

FLA

25

1.1

4.9

415

30

1.1

4.9

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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4-2. Combinations Classification Capacity(Ton)

Module unit

12.8 14.4 16.0 17.5 19.0 20.8 22.4 24.0 25.5 27.0 28.5

Model

Basic model RVXVHT075FE

16 18 20 22 24 26 28 30 32 34 36 Units Volts 380~415 380~415 380~415 380~415 380~415 380~415 380~415 380~415 380~415 380~415 380~415

RVXVHT100FE

2 1

1 2 1

1

Min. 380 380 380 380 380 380 380 380 380 380 380

Max. 415 415 415 415 415 415 415 415 415 415 415

2 3 2 1

Power supply MCA MFA 50 55 60 70 80 80 85 90 100 110 120

RVXVHT125FE

1 2

1 2 3

Comp. RLA

MCCB(A)

ELB

25+25 25+30 30+30 30+40 40+40 25+25+30 25+30+30 30+30+30 30+30+40 30+40+40 40+40+40 OFM kW 2.2 2.2 2.2 2.2 2.2 3.3 3.3 3.3 3.3 3.3 3.3

FLA 9.8 9.8 9.8 9.8 9.8 14.7 14.7 14.7 14.7 14.7 14.7

Installation

RD160VQXGA RD180VQXGA RD200VQXGA RD220VQXGA RD240VQXGA RD260VQXGA RD280VQXGA RD300VQXGA RD320VQXGA RD340VQXGA RD360VQXGA

Hz 50 50 50 50 50 50 50 50 50 50 50

Capacity(HP)

 The relationship between the starting time and the starting current (Digital Scroll Comp. + Fixed Scroll Comp)

Starting current

 RLA is based on the following conditions. - Indoor temp. : 27˚C DB/ 19˚C WB - Outdoor temp. : 35˚C DB RLA  Voltage range Units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits. Starting time  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)

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5 Wiring works 5-1. External connection diagram of DVM PLUS III 1) 3 phase 4 wires 3 phase 4 wires (380~415V)

3 phase 4 wires (380~415V) MCCB +ELB or ELCB

MCCB +ELB or ELCB

Earth Earth

Main unit

Indoor Outdoor OF1 OF2

Sub unit

220~230V

R

220~230V Indoor Outdoor S

T

N

Earth

Communication cable between indoor and outdoor units



OF1 OF2

R

S

T

Communication cable among outdoor units

N

Earth

• Connect the power cable of the outdoor unit after checking that R-S-T-N(3 phase 4 wires) is properly connected. • The communication cable between indoor and outdoor units has no polarity. • Arrange the cables using cable ties.

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5-2. Caution of wiring work

3 phase 4 wires, 380~415V

To sub unit communication cable MCCB ELB

Outdoor Unit

CAUTION

Installation

 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.

Connecting the ring terminal of 3 phase cable (CV)

Connecting the ring terminal of 3 phase cable (FCV) Housing cover Middle frame

Base line

A

B

A B C

250mm

A B C

Base line

A

C

B

C

A

B

C

A

B

C

30mm

60mm

90mm

30mm

60mm

90mm

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.

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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.

Horizontal length = over 100mm

Minimum 100mm

When the piping length between outdoor and branch joints is 2m or more, a vertical trap has to be installed like right diagram. 200~300mm Less than 1m

2m or more

2m or more

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6-2. Example of piping layouts

Example of piping layouts for DVM PLUS III

Using Y-joint

Installation

Using Header joint

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6 Refrigerant piping works 6-3. Piping examples Classification One outdoor unit installed

Branch with Y-joint b

c

d

e

i

j

k

f

F

g

Branch with Y and Header joint

h

l

m

i

p

G

a

a

Branch with Header joint

k a

j

b

n c

d

e

g

f

b

h

c

d

e

g

f

h i

Multiple outdoor units installed

b

c

d

e

i

j

k

f

F

g

h

l

m

i

p

G

a

a

k a

j

b

n c

d

e

f

g

b

h

c

d

e

g

f

h i

Items

Examples Remarks Branch with Y-joint a+b+c+d+e+f+g+p ≤ 200m (220m) Branch with Y-joint a+i+k ≤ 200m (220m) Equivalent pipe length Piping 200m below and Header joint a+b+h ≤ 200m (220m) Y-joint:0.5m, Header:1m (Equivalent (220m below) piping) Branch with a+i ≤ 200m (220m) header joint Outdoor ~ a+b+c+d+e+f+g+p+h+i+j+k+l+m+n Branch with Y-joint Max. Indoor unit ≤ 1000 piping Branch with Y-joint a+b+c+d+e+f+g+p+h+i+j+k Total length 1000m below and Header joint piping ≤ 1000m Branch with a+b+c+d+e+f+g+p+h+i ≤ 1000m Header joint Piping 10m below r ≤ 10, s ≤ 10, t ≤ 10m Outdoor ~ Equivalent 13m below r ≤ 13, s ≤ 13, t ≤ 13m Outdoor unit piping Outdoor ~ H1 ≤ 50m / 40m Piping 50m / 40m*2) Indoor unit Indoor ~ Level H2 ≤ 15m Piping 15m below difference Indoor unit Outdoor ~ 5m below H3 ≤ 5m Piping Outdoor unit b+c+d+e+f+g+p ≤ 45 m, i ≤ 45m Piping 45m below The first Allowable branch length ~ Only apply after Piping 90m below*1) It needs to satisfy required conditions the farthest DVM PLUS III branch indoor unit Distribution kit From distribution kit to indoor unit Allowable

Model 3m

From distribution kit to 20m indoor unit

Remarks

MEV-A13SA / MEV-A16SA (For 1 indoor unit) For wall-mounted indoor unit

MXD-A13K116A / MXD-A13K200A / MXD-A16K200A / MXD-A22K200A (For 2 indoor units) MXD-A13K216A / MXD-A13K300A / MXD-A16K213A / MXD-A16K300A (For 3 indoor units)

*1) Required condition Required condition The first branch If the sum of pipe length (b+c+d+e+f+g+p) is over 45m, (but not joint ~ exceed : 90m) increase pipe size of b,c,d,e,f,g (b,c,d,e,f,g : pipe 1 size the farthest up) indoor unit If main pipe size is not increased, a+bx2+cx2+dx2+ex2+fx2+gx2+h+i+j+k+l+m+n+p≤1000m Total pipe length If 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 ~ h,I,j,..p≤45m each indoor The difference between the distance of the outdoor unit to the farthest Between indoor unit and the distance of the outdoor unit to the farthest indoor indoor units unit ≤ 45m (a+b+c+d+e+f+g+p)-(a+h) ≤ 45m

Example

b

c

d

e

i

j

k

f

F

g

p

G

a h

l

m

n

*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.

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6-4. Pipe selection

Outdoor unit connection pipe size : (A1), (A2), (A3) 8Hp

(A1) (A1)

10Hp

12Hp

(E)

(A1) (A2)

(A) (B)

(D)

(B)

(A3)

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.

(F)

Outdoor unit

(C)

 Example) 26HP of compact combinations HP

Mark

12 HP

(A1)

16 HP

(A1)

26 HP

(A2)

Pipe size(O. D. mm) Liquid Gas

ø28.58

ø15.88

Oil balancing pipe size

ø6.35

Outdoor multi connection branch joint (D)

Model

Capacity of outdoor

MXJ-T3819K

Below 36 HP

 First branch joint (E) Select branch joint according to the outdoor unit's capacity

Outdoor unit

Model



8, 10, 12HP

MXJ-YA2512K

Y-joint (E)

16 HP

MXJ-YA2812K

18, 20, 22, 24HP

MXJ-YA2815K



26, 28, 30, 32, 34HP

MXJ-YA3119K



36HP

MXJ-YA3819K

ø31.75

ø19.05

 Branch joint (F)

ø38.10

Select the pipe size according to the capacity sum of

*A1 : Pipes to the outdoor unit (Liquid, Gas) *A2 : Pipes between outdoor joint kits (Liquid, Gas) *A3 : Main pipes (Liquid, Gas)

indoor units which are connected below this pipe. 1) Y-joint

Pipe size between branch joints : (B) Select the pipe size according to the capacity sum of indoor units which are connected below this pipe. Total Indoor unit’s capacity

 Branch joint of outdoor unit’s multi connection (D)

Pipe size (O. D. mm) Liquid pipe Gas pipe

15.0 kW and below

Over 15.0~23.2 kW and below

ø9.52

ø15.88



Model

Total indoor unit’ capacity 15.0 kW and below



MXJ-YA1509K

Y-joint (F)

MXJ-YA2512K Over 15.0~40.6 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

MXJ-YA2812K Over 40.6~46.4 kW and below

ø19.05

Over 23.2~29.0 kW and below

ø22.23

2) Header joint

Over 29.0~40.6 kW and below

ø25.40

Total Indoor The connectable quantity of Model unit’s capacity indoor units Header 46.4 kW MXJ-HA2512K 4 joint and below (F) MXJ-HA3115K Over 46.4kW ~ 8 69.6 kW MXJ-HA3819K Over 69.6 kW 8

ø12.70 Over 40.6~46.4 kW and below Over 46.4~69.6 kW and below

ø15.88

Over 69.6~98.6 kW and below ø19.05 Over 98.6~100.5 kW and below

Installation

8HP 10HP 12HP 16HP 18HP 20HP 22HP 24HP 26~30HP 32~34HP 36~48HP

Pipe size (O.D. mm) Liquid Gas ø19.05 ø9.52 ø22.23 ø25.40 ø12.70

Branch joint : (D), (E), (F)

ø28.58 ø31.75 ø38.10

Pipe size between branch joints and indoor unit (C) Select the pipe size according to the indoor's capacity. 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

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6 Refrigerant piping works 6-4. Pipe selection

Main pipe 1 size increment 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. The pipe length between outdoor and the farthest indoor unit

Main pipe

Equivalent pipe length between outdoor unit and the farthest indoor unit

 Main pipe : from outdoor unit to the first branch joint Outdoor unit ø6.35 9.52 ø12.70 ø15.88 ø19.05 ø22.23 ø25.40 ø28.58 ø31.75 ø38.10 ø44.45 ø50.80

Thickness(mm) (O. D. mm) 0.7 0.7 0.8 1.0

Material C1220T-O (Annealed)

0.9

1.35 1.6 2.0

90m and over ø 12.70 ø 15.88 ø 19.05 ø 22.23 ø 25.40 ø 28.58 ø 31.75 ø 38.10 ø 44.45 ø 50.80 2.0

 Equivalent length calculation method

1.0 1.1

below 90 m ø 9.52 ø 12.70 ø 15.88 ø 19.05 ø 22.23 ø 25.40 ø 28.58 ø 31.75 ø 38.10 ø 44.45 ø50.80

C1220T-1/2H

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

(Half-hard)

Elbow Pipe size (O. D. mm) ø 9.52 ø 12.70 ø 15.88 ø 19.05 ø 22.23 ø 25.40 ø 28.58 ø 31.75 ø 38.10 ø 41.30 ø 44.45 ø 50.80

Equivalent length (m) 0.18 0.20 0.25 0.35 0.40 0.45 0.50 0.55 0.60 0.70 0.75 0.80

Type

Equivalent length (m)

Y joint Header joint

0.5 1.0

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Additional refrigerant charging

EX) Additional refrigerant charging

 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.

ø12.70(1m) ø19.05(5m)

ø12.70(5m)

ø15.88(10m)

ø9.52(5m) ø15.88(15m)

Liquid pipe size (O.D.)

Additional refrigerant charging

Ø6.35 Ø9.52 Ø12.70 Ø15.88 Ø19.05 Ø22.23 Ø25.40

0.02 0.06 0.125 0.18 0.28 0.35 0.53

Basic model

Factory charging(kg)

RD080VQXGA RD100VQXGA RD120VQXGA

8.5 8.5 8.5

ø9.52(7m)

ø9.52(8m)

Remarks

Installation

Additional refrigerant charging of distribution kit (kg/m) Regardless of the liquid pipe size, additional refrigerant charging is 0.01kg per meter after distribution kit.

ø12.70(15m)

For wall-mounted Indoor unit

0.01

ø6.35(5m) ø6.35(5m) ø6.35(5m) ø9.52(5m)

 Example of additional refrigerant charging Pipe length is as below without distribution kit Liquid pipe size (O.D. mm) Length (m)

Ø6.35 15

Ø9.52 25

Ø12.70 21

Ø15.88 25

Ø19.05 5

 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

Caution 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.

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7 Option switches & function keys 7-1. Option switches

D BC E

3456

F012

789A

Switch

Setting

SW01/SW02 SW03

SW04

SW04

SW05

K5 K9 On On Off Off K11 On On Off Off K13 On On Off Off K15 On On Off Off K17 K18

SW06 K19 K20 SW09

On Off K10 On Off On Off K12 On Off On Off K14 On Off On Off K16 On Off On Off On Off On Off On Off On Off -

Function Remarks Setting total quantity of Installed indoor units Main unit required only Main unit required only Ex) A  s 12 indoor units were installed, SW01 : The tens digit, SW02 : The units digit SW01:1, SW02: 2 Manual address setting Auto address setting Target evaporating temperature (°C) 7~9 5~7 Cooling capacity compensation 9~11 10~12 Target high pressure (kgf /cm2, psig, kPa) 30.0, 426, 2941 31.5, 448, 3089 Heating capacity compensation 33.0, 469, 3236 27.0, 384, 2647 Outdoor unit’s address Outdoor unit’s address : No 1 Main unit Outdoor unit’s address : No 2 Sub I unit Outdoor unit’s address : No 3 Sub 2 unit Outdoor unit’s address : No 4 Sub 3 unit Maximum current control Standard Factory default 90% of standard peak current value 80% of standard peak current value Not use Since supplying power, first oil return operation happens after 5hrs and then 7 hrs. Since supplying power, first oil return operation happens after 2hrs and then 2 hrs. Standard Defrost period setting Shorten defrost period by 20% approximately Standard fan step Fan step compensation (Maximum step) 8/10 HP : 19 Steps, 12HP : 23 Steps Normal Night’s quiet mode Main unit required only Setting total quantity of installed MCU Ex) As 12 MCUs were installed. SW09 : “C”

 Factory  default SW01, SW02, SW09 : ‘0’ SW03 ~ SW06 : ON

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7-2. Function keys K1 K2

 LED display alphabet

SEG 1 SEG 2

SEG 3 SEG 4

D BC E

K3

3456

F012

789A

K4

Push 4th time th

Push 5 time Push 6th time K3 Push 1st time

Key function Refrigerant charging in heating operation Test run in heating mode Pump out operation in heating mode (Outdoor unit’s address : NO 1) Pump out operation in heating mode (Outdoor unit’s address : NO 2) Pump out operation in heating mode (Outdoor unit’s address : NO 3) Pump out operation in heating mode (Outdoor unit’s address : NO 4) Open all valve of outdoor unit for vacuum preparation (Outdoor unit’s address : NO 1) Open all valve of outdoor unit for vacuum preparation (Outdoor unit’s address : NO 2) Open all valve of outdoor unit for vacuum preparation (Outdoor unit’s address : NO 3) Open all valve of outdoor unit for vacuum preparation (Outdoor unit’s address : NO 4) Open all valve for vacuum preparation (Total outdoor units, indoor unit and MCU units) Return to normal view mode Key function Refrigerant charging in cooling operation Test run in cooling mode Pump down operation in cooling mode (All outdoor units) Pipe checking (Check whether the pipe connection of MCU correspond with indoor unit’s address in HR system.) Judgment system of refrigerant amount Return to normal view mode Key function Reset

K4 Push 1st time Push 2nd time Push 3rd time Push 4th time Push 5th time Push 6th time Push 7th time Push 8th time Push 9th time Push 10th time Push 11th time Push 12th time Push 13th time Push 14th time Push 15th time Push 16th time Push 17th time Push 18th time Push 19th time Push 20th time Push 21th time Push 22th time Push 23th time Push 24th time

Key function Outdoor capacity Digital comp loading time High pressure (kg/cm2) Low pressure (kg/cm2) Discharge temperature of compressor 1 Discharge temperature of compressor 2 Discharge temperature of compressor 3 CT sensor value of compressor 1 CT sensor value of compressor 2 CT sensor value of compressor 3 Suction temperature Cond_out temperature Liquid tube temperature Oil temperature sensor on oil balancing pipe Sump temperature of compressor 1 Ambient air temperature EVI_in temperature EVI_out temperature Main EEV1 step Main EEV2 step EVI EEV step HR EEV step Fan step ( SSR or BLDC ) Version

SEG 1 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N

Display LED “K” “1” “BLANK” “BLANK” “K” “2” “BLANK” “BLANK” “K” “3” “BLANK” “1” “K” “3” “BLANK” “2” “K” “3” “BLANK” “3” “K” “3” “BLANK” “4” “K” “4” “BLANK” “1” “K” “4” “BLANK” “2” “K” “4” “BLANK” “3” “K” “4” “BLANK” “4” “K” “4” “BLANK” “4” Display LED “K” “5” “BLANK” “BLANK” “K” “6” “BLANK” “BLANK” “K” “7” “BLANK” “BLANK”

Installation

K1 Push 1st time Push 2nd time Push 3rd time Push 4th time Push 5th time Push 6th time Push 7th time Push 8th time Push 9th time Push 10th time Push 11th time Push 12th time K2 Push 1st time Push 2nd time Push 3rd time

“K” “8” “BLANK” “BLANK” “K” “9” “BLANK” “BLANK” Display LED -

Display LED SEG 2, 3, 4 Ex) 16 HP  Off, 1, 6 Ex) Loading 13 sec  Off, 1, 3 Ex) High pressure 15.2 (kg/cm2)  1, 5, 2 Ex) Low pressure 4.3 (kg/cm2)  0, 4, 3 Ex) 87°C  0, 8, 7 Ex) 87°C  0, 8, 7 Ex) 87°C  0, 8, 7 Ex) 2A  0, 0, 2 Ex) 2A  0, 0, 2 Ex) 2A  0, 0, 2 Ex) -5 °C  -, 0, 5 Ex) 35 °C  0, 3, 5 Ex) 35 °C  0, 3, 5 Ex) 35 °C  0, 3, 5 Ex) 35 °C  0, 3, 5 Ex) 35 °C  0, 3, 5 Ex) 35 °C  0, 3, 5 Ex) 35 °C  0, 3, 5 Ex) 2000 steps  2, 0, 0 Ex) 2000 steps  2, 0, 0 Ex) 300 steps  3, 0, 0 Ex) 300 steps  3, 0, 0 Ex) 13 steps  Off, 1, 3

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8 Error codes

D BC E

3456

F012

789A

 

 

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-161

Mixed 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.

56

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No. Error code

Description

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.

Installation

27

57

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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.

58

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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.

E-615

Communication error between interface module and indoor unit.

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)

Installation

109 110

59

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DVM Technical Data Book

DVM DVM PLUS3_고온향_01_Outdoor units.indd 60

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Outdoor Outdoor UnitsUnits

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 443-742 TEL : 82-31-200-6119 Website : www.dvmsystem.com Email: [email protected]  Specification may be subject to change without prior notice for the continuous product improvement.

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