Air Conditioning Technical Data...

47
Air Conditioning Technical Data RZQSG-L3/9V1

Transcript of Air Conditioning Technical Data...

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Air ConditioningTechnical Data

RZQSG-L3/9V1

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TABLE OF CONTENTSRZQSG-L3/9V1

1 Features . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2

2 Specifications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3

Capacity and Power input . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3

Capacity and Power input . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3

Capacity and Power input . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4

Capacity and Power input . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4

Capacity and Power input . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4

Capacity and Power input . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5

Capacity and Power input . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5

Technical Specifications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6

Electrical Specifications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7

3 Electrical data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9

4 Options . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 16

5 Combination table . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17

6 Capacity tables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18

Cooling/Heating Capacity Tables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18

Capacity Correction Factor . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 21

7 Dimensional drawings . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22

8 Centre of gravity . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24

9 Piping diagrams . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 27

Piping Diagrams . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 27

Piping Diagram Twin Application . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 28

Piping Diagram Triple Application . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 29

Piping Diagram Double Twin Application . . . . . . . . . . . . . . . . . . . . . . . . . . . 30

10 Wiring diagrams . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 31

Wiring Diagrams - Single Phase . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 31

11 Sound data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 33

Sound Power Spectrum . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 33

Sound Pressure Spectrum - Cooling . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 35

Sound Pressure Spectrum - Heating . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 37

Sound Pressure Spectrum Quiet Mode . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 39

12 Installation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 41

Installation Method . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 41

13 Operation range . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 44

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1 Features

door Uni it - Sk SG-L3/9V1 r, Twin,

Out Spl RZQ Pai Technology and comfort combined for commercial applications

• Top efficiency: - Energy labels up to A++ (cooling) /A+ (heating) for RZQG71/100L9V1 + FCQG71/100F - compressor that offers substantial efficiency improvements - control logic that optimises efficiency at the most frequently encountered operating conditio

• Replace existing R-22 or R-407C systems without having to replace the piping

• Guarantees operation in both heating and cooling mode down to -15°C

• With a gas cooled PCB reliable cooling is guaranteed as it is not influenced by ambient temperature

• Maximum piping length up to 50m, minimum piping length is 5m.

• Outdoor units for pair, twin, triple, double twin application

• Daikin outdoor units are neat, sturdy and can easily be mounted on a roof or terrace or simply placed against an outside wall

• Units optimized for seasonal efficiency give an indication on how efficient an air conditioner operates over an entire heating or cooling season.

Inverter Auto cooling-heating

changeover

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Notes

(1) Nominal efficiency: cooling at 35°/27° nominal load, heating at 7°/20° nominal load

(2) EER/COP according to Eurovent 2012, for use outside EU only

Annual energy consumption is according to Energy labeling directive 2002/31/EC

SEER and SCOP are according to EN 14825

Notes

EER/COP according to Eurovent 2012, for use outside EU only

Nominal efficiency: cooling at 35°/27° nominal load, heating at 7°/20° nominal load

2-1 Capacity and Power input FBQ71D/RZQSG71L3V1FBQ100D/

RZQSG100L9V1FBQ125D/

RZQSG125L9V1FBQ140D/

RZQSG140L9V1

Indoor unit FBQ71D FBQ100D FBQ125D FBQ140D

Outdoor unit RZQSG71L3V1 RZQSG100L9V1 RZQSG125L9V1 RZQSG140L9V1

Cooling capacity Nom. kW 6.8 (1) 9.5 (1) 12.0 (1) 13.4 (1)

Heating capacity Nom. kW 7.50 (1) 10.80 (1) 13.50 (1) 15.50 (1)

Power input Cooling Nom. kW 1.98 (1) 2.84 (1) 3.72 (1) 4.38 (1)

Heating Nom. kW 1.91 (1) 2.94 (1) 3.72 (1) 4.56 (1)

Seasonal efficiency (according to EN14825)

Cooling Energy label A+ A -

Pdesign kW 6.80 9.50 12.00 -

SEER 5.84 5.61 5.47 -

Annual energy consumption

kWh 408 593 768 -

Heating (Average climate)

Energy label A+ -

Pdesign kW 6.00 7.60 -

SCOP/A 4.01 4.15 4.01 -

Annual energy consumption

kWh 2,095 2,564 2,653 -

Nominal efficiency EER 3.43 (2) 3.35 (2) 3.23 (2) 3.06 (2)

COP 3.92 (2) 3.67 (2) 3.63 (2) 3.40 (2)

Annual energy consumption kWh 991 1,418 1,858 -

Energy label Cooling A -

Heating A -

2-2 Capacity and Power inputFCQHG71F/

RZQSG71L3V1FCQHG100F/

RZQSG100L9V1FCQHG125F/

RZQSG125L9V1FCQHG140F/

RZQSG140L9V1

Cooling capacity Nom. kW 6.8 9.5 12.0 13.4

Heating capacity Nom. kW 7.5 10.8 13.5 15.5

Power input Cooling Nom. kW 1.94 2.57 3.71 4.17

Heating Nom. kW 1.83 2.51 3.60 4.29

Seasonal efficiency (according to EN14825)

Cooling Energy label A++ A -

Pdesign kW 6.80 9.50 12.00 -

SEER 6.50 6.70 5.40 -

Annual energy consumption

kWh 366 497 778 -

Heating (Average climate)

Energy label A+ -

Pdesign kW 7.60 8.03 -

SCOP/A 4.15 4.30 4.10 -

Annual energy consumption

kWh 2,563 2,615 2,742 -

Nominal efficiency EER 3.50 3.70 3.23 3.21

COP 4.10 4.30 3.75 3.61

Annual energy consumption kWh 970 1,285 1,855 -

Energy label Cooling A -

Heating A -

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2 Specifications

Notes

EER/COP according to Eurovent 2012, for use outside EU only

Nominal efficiency: cooling at 35°/27° nominal load, heating at 7°/20° nominal load

Annual energy consumption is according to Energy labeling directive 2002/31/EC

SEER and SCOP are according to EN 14825

Notes

EER/COP according to Eurovent 2012, for use outside EU only

Nominal efficiency: cooling at 35°/27° nominal load, heating at 7°/20° nominal load

2-3 Capacity and Power input FCQG71F/RZQSG71L3V1FCQG100F/

RZQSG100L9V1FCQG125F/

RZQSG125L9V1FCQG140F/

RZQSG140L9V1

Cooling capacity Nom. kW 6.8 9.5 12.0 13.4

Heating capacity Nom. kW 7.5 10.8 13.5 15.5

Power input Cooling Nom. kW 2.12 2.88 3.74 4.45

Heating Nom. kW 2.08 3.05 3.96 4.54

Seasonal efficiency (according to EN14825)

Cooling Energy label A++ A -

Pdesign kW 6.80 9.50 12.00 -

SEER 6.10 6.50 5.30 -

Annual energy consumption

kWh 390 512 793 -

Heating (Average climate)

Energy label A+ B -

Pdesign kW 6.33 7.60 8.03 -

SCOP/A 4.10 4.01 -

Annual energy consumption

kWh 2,162 2,596 2,804 -

Nominal efficiency EER 3.21 3.30 3.21 3.01

COP 3.61 3.54 3.41

Annual energy consumption kWh 1,060 1,440 1,870 -

Energy label Cooling A -

Heating A -

2-4 Capacity and Power input FDQ125C/RZQSG125L9V1

Cooling capacity Nom. kW 12.0

Heating capacity Nom. kW 13.5

Power input Cooling Nom. kW 3.74

Heating Nom. kW 3.85

Seasonal efficiency (according to EN14825)

Cooling Energy label A

Pdesign kW 12.00

SEER 5.20

Annual energy consumption

kWh 808

Heating (Average climate)

Energy label A

Pdesign kW 7.60

SCOP/A 3.90

Annual energy consumption

kWh 2,729

Nominal efficiency EER 3.21

COP 3.51

Annual energy consumption kWh 1,870

Energy label Cooling A

Heating B

2-5 Capacity and Power input FUQ71C/RZQSG71L3V1 FUQ100C/RZQSG100L9V1 FUQ125C/RZQSG125L9V1

Indoor unit - FUQ100C FUQ125C

Outdoor unit - RZQSG100L9V1 RZQSG125L9V1

Cooling capacity Nom. kW 6.80 9.5 12.0

Heating capacity Nom. kW 7.50 10.8 13.5

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Notes

EER/COP according to Eurovent 2012, for use outside EU only

Nominal efficiency: cooling at 35°/27° nominal load, heating at 7°/20° nominal load

Notes

(1) Nominal efficiency: cooling at 35°/27° nominal load, heating at 7°/20° nominal load

EER/COP according to Eurovent 2012, for use outside EU only

Power input Cooling Nom. kW 2.12 2.96 4.53

Heating Nom. kW 2.08 2.99 3.95

Seasonal efficiency (according to EN14825)

Cooling Energy label A+ A

Pdesign kW 6.80 9.50 12.00

SEER 5.81 5.61 5.30

Annual energy consumption

kWh 410 593 793

Heating (Average climate)

Energy label A A+ A

Pdesign kW 6.33 7.60

SCOP/A 3.90 4.01 3.85

Annual energy consumption

kWh 2,273 2,654 2,764

Eurovent Sound power level outdoor

Cooling Nom. dBA 65 70

Sound power level indoor

Cooling Nom. dBA 59 64 65

Nominal efficiency EER 3.21 2.65

COP 3.61 3.41

Annual energy consumption kWh 1,060 1,480 2,265

Energy label Cooling A D

Heating A B

2-6 Capacity and Power input FHQ71CB/RZQSG71L3V1FHQ100CB/

RZQSG100L9V1FHQ125CB/

RZQSG125L9V1FHQ140CB/

RZQSG140L9V1

Cooling capacity Nom. kW 6.8 9.5 12.0 13.4

Heating capacity Nom. kW 7.5 10.8 13.5 15.5

Power input Cooling Nom. kW 1.97 2.96 4.15 4.45

Heating Nom. kW 1.88 2.99 3.73 4.54

Seasonal efficiency (according to EN14825)

Cooling Pdesign kW 6.80 9.50 12.00 -

SEER 5.61 -

Annual energy consumption

kWh 425 593 749 -

Heating (Average climate)

Pdesign kW 7.60 -

SCOP/A 3.90 3.91 4.01 -

Annual energy consumption

kWh 2,727 2,722 2,654 -

Eurovent Sound power level outdoor

Cooling Nom. dBA 65 70 -

Sound power level indoor

Cooling Nom. dBA 55 60 62 -

Nominal efficiency EER 3.46 3.21 2.89 3.01

COP 4.00 3.61 3.62 3.41

Annual energy consumption kWh 983 (1) 1,480 (1) 2,075 (1) 2,225 (1)

2-7 Capacity and Power input FAQ71C9/RZQSG71L3V1 FAQ100C9/RZQSG100L9V1

Cooling capacity Nom. kW 6.8 9.5

Heating capacity Nom. kW 7.5 10.8

Power input Cooling Nom. kW 2.12 3.16

Heating Nom. kW 2.08 3.17

2-5 Capacity and Power input FUQ71C/RZQSG71L3V1 FUQ100C/RZQSG100L9V1 FUQ125C/RZQSG125L9V1

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2 Specifications

Notes

EER/COP according to Eurovent 2012, for use outside EU only

Nominal efficiency: cooling at 35°/27° nominal load, heating at 7°/20° nominal load

Seasonal efficiency (according to EN14825)

Cooling Energy label A+

Pdesign kW 6.8 9.50

SEER 5.81 5.61

Annual energy consumption

kWh 410 593

Heating (Average climate)

Energy label A A+

Pdesign kW 6.33 6.81

SCOP/A 3.90 4.01

Annual energy consumption

kWh 2,273 2,378

Eurovent Sound power level outdoor

Cooling Nom. dBA 65 70

Sound power level indoor

Cooling Nom. dBA 59 65

Nominal efficiency EER 3.21 3.01

COP 3.61 3.41

Annual energy consumption kWh 1,059 1,580

Energy label Cooling A B

Heating A B

2-8 Technical Specifications RZQSG71L3V1 RZQSG100L9V1 RZQSG125L9V1 RZQSG140L9V1

Capacity control Method Inverter controlled

Casing Colour Ivory white

Material Painted galvanized steel plate

Dimensions Unit Height mm 770 990 1,430

Width mm 900 940

Depth mm 320

Packed unit Height mm 900 1,170 1,610

Width mm 980 1,015

Depth mm 420 422

Weight Unit kg 67 72 74 95

Packed unit kg 71 81 83 104

Heat exchanger Fin Type WF fin

Treatment Anti-corrosion treatment (PE)

Compressor Quantity 1

Type Hermetically sealed swing compressor

Starting method Inverter driven

Fan Type Propeller fan

Discharge direction Horizontal

Quantity 1 2

Air flow rate Cooling Nom. m³/min 52 76 77.0 83

Moderate

m³/min - 55 -

Heating Nom. m³/min 48 83 62

Moderate

m³/min - 55 -

Fan motor Quantity 1 2

Model KFD-325-70-8A Brushless DC motor

Output W 70 200 94

Drive Direct drive

Speed Cooling Super low

rpm -

Heating Super low

rpm -

2-7 Capacity and Power input FAQ71C9/RZQSG71L3V1 FAQ100C9/RZQSG100L9V1

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Standard Accessories : Tie-wraps; Quantity : 2;

Standard Accessories : Installation manual; Quantity : 1;

Sound power level Cooling dBA 65 70 69

Heating dBA -

Sound pressure level Cooling Nom. dBA 49 53 54 53

Silent operation dBA 47 -

Heating Nom. dBA 51 57 58 54

Night quiet mode Level 1 dBA - 49

Operation range Cooling Ambient

Min. °CDB -15.0

Max. °CDB 46

Heating Ambient

Min. °CWB -15

Max. °CWB 15.5

Refrigerant Type R-410A

Charge kg 2.75 2.9 4.0

TCO2eq 5.7 6.1 8.4

Control Expansion valve (electronic type)

GWP 2,087.5

Circuits Quantity 1

Piping connections Liquid Quantity 1

Type Flare connection

OD mm 9.52

Gas Quantity 1

Type Flare connection

OD mm 15.9

Drain Quantity 3 5

Type Hole

ID mm -

OD mm 26

Piping length OU - IU Min. m 5

Max. m 50

System Equivalent

m 70

Chargeless

m 30

Additional refrigerant charge kg/m See installation manual

Level difference IU - OU Max. m 15 30.0

IU - IU Max. m 0.5

Heat insulation Both liquid and gas pipes

Refrigerant oil Type FVC50K

Charged volume l 0.75 0.9 1.35

Defrost method Pressure equalising Reversed cycle

Defrost control Sensor for outdoor heat exchanger temperature

Safety devices Item 01 High pressure switch

02 Fan motor thermal protection

Low pressure switch

03 Fuse Fan driver overload protector

04 - Fuse

2-9 Electrical Specifications RZQSG71L3V1 RZQSG100L9V1 RZQSG125L9V1 RZQSG140L9V1

Power supply Name V1

Phase 1~

Frequency Hz 50

Voltage V 220-240

Voltage range Min. % -10 198 -10

Max. % 10 264 10

Current - 50Hz Maximum fuse amps (MFA) A 20 32 -

Current Zmax List - Complies to EN61000-3-11

Recommended fuses A 25 40

2-8 Technical Specifications RZQSG71L3V1 RZQSG100L9V1 RZQSG125L9V1 RZQSG140L9V1

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Notes

See separate drawing for electrical data

European/international technical standard setting the limits for harmonic currents produced by equipment connected to public low-voltage system with input current larger than 16A

and ≤ 75A per phase.

Short-circuit power

Contains fluorinated greenhouse gases

PED: assembly = category l : excluded from scope of PED due to article 1, item 3.6 of 97/23/EC

Minimum Ssc (=Short-circuit power) value: Equipment complying with EN/IEC 61000-3-12: European/International Technical Standard setting the limits for harmonic currents produced

by equipment connected to public low-voltage systems with input current \>16A and ≤ 75A per phase

MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker). For more detailed information on each combination, please refer to the

electrical data drawing.

Nominal cooling capacities are based on: indoor temperature: 27°CDB, 19°CWB, outdoor temperature: 35°CDB, equivalent refrigerant piping: 5m, level difference: 0m. Data for

standard efficiency series

Nominal heating capacities are based on: indoor temperature: 20°CDB, outdoor temperature: 7°CDB, 6°CWB, equivalent refrigerant piping: 5m, level difference: 0m. Data for standard

efficiency series

Current - 60Hz Maximum fuse amps (MFA) A -

Wiring connections For power supply Remark See installation manual outdoor unit

For connection with indoor

Remark See installation manual outdoor unit

Power supply intake Outdoor unit only

2-9 Electrical Specifications RZQSG71L3V1 RZQSG100L9V1 RZQSG125L9V1 RZQSG140L9V1

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3 Electrical data3 - 1 Electrical Data

RZQSG100L8Y1

FCQG100EVEB RZQSG100L8Y1B 14,5 16 11,4 0,2 0,6 0,106 1FCQHG100FVEB RZQSG100L8Y1B 14,8 16 11,4 0,2 0,6 0,221 1,3FCQG35FVEB ×3 RZQSG100L8Y1B 14,3 16 11,4 0,2 0,6 0.044×3 0.3×3FCQG50FVEB ×2 RZQSG100L8Y1B 14,0 16 11,4 0,2 0,6 0.039×2 0.3×2FCQG100FVEB RZQSG100L8Y1B 14,1 16 11,4 0,2 0,6 0,117 0,7FFQ35C2VEB ×3 RZQSG100L8Y1B 14,7 16 11,4 0,2 0,6 0.05×3 0.4×3FFQ50C2VEB ×2 RZQSG100L8Y1B 14,2 16 11,4 0,2 0,6 0.05×2 0.4×2FDXS35F2VEB ×3 RZQSG100L8Y1B 14,3 16 11,4 0,2 0,6 0.034×3 0.3×3FDXS50F2VEB9 ×2 RZQSG100L8Y1B 14,5 16 11,4 0,2 0,6 0.06x2 0.5x2FBQ35C8VEB ×3 RZQSG100L8Y1B 17,7 20 11,4 0,2 0,6 0.140×3 1.2×3FBQ50C8VEB ×2 RZQSG100L8Y1B 16,2 20 11,4 0,2 0,6 0.140×2 1.2×2FBQ100C8VEB RZQSG100L8Y1B 15,2 16 11,4 0,2 0,6 0,350 1,6FAQ100CVEB9 RZQSG100L8Y1B 13,7 16 11,4 0,2 0,6 0,064 0,4FVQ100CVEB RZQSG100L8Y1B 14,7 16 11,4 0,2 0,6 0,238 1,2FHQ35CBVEB x3 RZQSG100L8Y1B 15,5 16 11,4 0,2 0,6 0,060 x 3 0,6 x 3FHQ50CBVEB x2 RZQSG100L8Y1B 14,7 16 11,4 0,2 0,6 0,060 x 2 0,6 x 2FHQ100CBVEB RZQSG100L8Y1B 14,8 16 11,4 0,2 0,6 0,150 1,3FUQ100CVEB RZQSG100L8Y1B 14,8 16 11,4 0,2 0,6 0,106 1,3

SymbolsMCA: Minimum Circuit Ampere [A]

TOCA: Total overcurrent amps [A]MFA: Maximum Fuse Ampere [A]MSC: Maximum current of the starting compressor [A]RLA: Rated load amps [A]

OFM: Outdoor fan motorIFM: Indoor fan motorFLA: Full Load Ampere [A]KW: Fan motor rated output [kW]

Notes1. The RLA is based on the following conditions.

CoolingIndoor temperature 27.0°C DB / 19.0°C WBOutdoor temperature 35.0°C DB

HeatingIndoor temperature 20.0°C DBOutdoor temperature 7.0°C DB / 6.0°C WB

2. TOCA is the total value of each overcurrent set.3. Voltage range

4. The maximum allowable voltage that is unbalanced between phases is 2%.5. MCA is the maximum input current.

The capacity of the MFA must be greater than that of the MCA.Select the MFA according to the table.

6. Select the wire size according to the MCA.7. MFA is used to select the circuit breaker and the ground fault circuit interruptor.

Earth leakage circuit breaker

3N~ 50Hz380-415V

Min

imum

: 342

V

Max

imum

456

V

The units are suitable for use with electrical systems in which the voltage supplied to the unit terminals is not below or above the listed range limits.

MSC RLA kW FLA kW FLA

Compressor OFM IFM

Indoor Outdoor Power supply Voltage range MCA TOCA MFA

3D077811 C

• Split - Sky Air • RZQSG-L3/9V1 9

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3 Electrical data3 - 1 Electrical Data

RZQSG125-140L(8)Y1

FCQG125EVEB RZQSG125L8Y1B 14,6 16 11,4 0,2 0,6 0,106 1,1FCQHG125FVEB RZQSG125L8Y1B 15,0 16 11,4 0,2 0,6 0,244 1,4FCQG35FVEB ×4 RZQSG125L8Y1B 14,7 16 11,4 0,2 0,6 0.044×4 0.3×4FCQG50FVEB ×3 RZQSG125L8Y1B 14,3 16 11,4 0,2 0,6 0.039×3 0.3×3FCQG60FVEB ×2 RZQSG125L8Y1B 14,0 16 11,4 0,2 0,6 0.044×2 0.3×2FCQG125FVEB RZQSG125L8Y1B 14,5 16 11,4 0,2 0,6 0,168 1FFQ35C2VEB ×4 RZQSG125L8Y1B 15,2 16 11,4 0,2 0,6 0.05×4 0.4×4FFQ50C2VEB ×3 RZQSG125L8Y1B 14,7 16 11,4 0,2 0,6 0.05×3 0.4×3FFQ60C2VEB ×2 RZQSG125L8Y1B 14,7 16 11,4 0,2 0,6 0.05×2 0.6×2FDXS35F2VEB ×4 RZQSG125L8Y1B 14,7 16 11,4 0,2 0,6 0.034×4 0.3×4FDXS50F2VEB9 ×3 RZQSG125L8Y1B 15,1 16 11,4 0,2 0,6 0.060x3 0.5x3FDXS60F2VEB ×2 RZQSG125L8Y1B 14,5 16 11,4 0,2 0,6 0.060×2 0.5×2FBQ35C8VEB ×4 RZQSG125L8Y1B 19,2 20 11,4 0,2 0,6 0.140×4 1.2×4FBQ50C8VEB ×3 RZQSG125L8Y1B 17,7 20 11,4 0,2 0,6 0.140×3 1.2×3FBQ60C8VEB ×2 RZQSG125L8Y1B 16,0 20 11,4 0,2 0,6 0.350×2 1.1×2FBQ125C8VEB RZQSG125L8Y1B 15,8 16 11,4 0,2 0,6 0,350 2,1FDQ125C7VEB RZQSG125L8Y1B 15,8 16 11,4 0,2 0,6 0,350 2,1FVQ125CVEB RZQSG125L8Y1B 14,7 16 11,4 0,2 0,6 0,238 1,2FHQ35CBVEB x4 RZQSG125L8Y1B 16,2 20 11,4 0,2 0,6 0,060x4 0.6 x 4FHQ50CBVEB x3 RZQSG125L8Y1B 15,5 16 11,4 0,2 0,6 0,060x3 0.6 x 3FHQ60CBVEB x2 RZQSG125L8Y1B 14,7 16 11,4 0,2 0,6 0,091x2 0.8 x 2FHQ125CBVEB RZQSG125L8Y1B 15,1 16 11,4 0,2 0,6 0,15 1,5FUQ125CVEB RZQSG125L8Y1B 15,0 16 11,4 0,2 0,6 0,106 1,4FCQG71EVEB ×2 RZQSG140L7Y1B 17,5 20 14,2 0.094+0.094 0.4+0.4 0.048×2 0.4×2FCQG140EVEB RZQSG140L7Y1B 17,875 20 14,2 0.094+0.094 0.4+0.4 0,106 1,1FCQHG71FVEB ×2 RZQSG140L7Y1B 17,75 20 14,2 0.094+0.094 0.4+0.4 0.091×2 0.5×2FCQHG140FVEB RZQSG140L7Y1B 18,25 20 14,2 0.094+0.094 0.4+0.4 0,244 1,4FCQG35FVEB ×4 RZQSG140L7Y1B 18 20 14,2 0.094+0.094 0.4+0.4 0.044×4 0.3×4FCQG50FVEB ×3 RZQSG140L7Y1B 17,625 20 14,2 0.094+0.094 0.4+0.4 0.039×3 0.3×3FCQG71FVEB ×2 RZQSG140L7Y1B 17,5 20 14,2 0.094+0.094 0.4+0.4 0.054×2 0.4×2FCQG140FVEB RZQSG140L7Y1B 17,75 20 14,2 0.094+0.094 0.4+0.4 0,168 1FFQ35C2VEB ×4 RZQSG140L7Y1B 18,5 20 14,2 0.094+0.094 0.4+0.4 0.05×4 0.4×4FFQ50C2VEB ×3 RZQSG140L7Y1B 18 20 14,2 0.094+0.094 0.4+0.4 0.05×3 0.4×3FDXS35F2VEB ×4 RZQSG140L7Y1B 18 20 14,2 0.094+0.094 0.4+0.4 0.034×4 0.3×4FDXS50F2VEB9 ×3 RZQSG140L7Y1B 18,375 20 14,2 0.094+0.094 0.4+0.4 0.06x3 0.5x3FBQ35C8VEB ×4 RZQSG140L7Y1B 22,5 25 14,2 0.094+0.094 0.4+0.4 0.140×4 1.2×4FBQ50C8VEB ×3 RZQSG140L7Y1B 21 25 14,2 0.094+0.094 0.4+0.4 0.140×3 1.2×3FBQ71C8VEB ×2 RZQSG140L7Y1B 19,25 20 14,2 0.094+0.094 0.4+0.4 0.350×2 1.1×2FBQ140C8VEB RZQSG140L7Y1B 19,125 20 14,2 0.094+0.094 0.4+0.4 0,35 2,1FAQ71CVEB9 ×2 RZQSG140L7Y1B 17,5 20 14,2 0.094+0.094 0.4+0.4 0.048×2 0.4×2FVQ140CVEB RZQSG140L7Y1B 18,25 20 14,2 0.094+0.094 0.4+0.4 0,276 1,4FHQ35CBVEB x 4 RZQSG140L7Y1B 19,5 20 14,2 0.094+0.094 0.4+0.4 0,060 x 4 0,6 x 4FHQ50CBVEB x 3 RZQSG140L7Y1B 18,8 20 14,2 0.094+0.094 0.4+0.4 0,060 x 3 0,6 x 3FHQ71CBVEB x 2 RZQSG140L7Y1B 18,5 20 14,2 0.094+0.094 0.4+0.4 0,091 x 2 0,8 x 2FHQ140CBVEB RZQSG140L7Y1B 18,8 20 14,2 0.094+0.094 0.4+0.4 0,15 1,8FUQ71CVEB x2 RZQSG140L7Y1B 18,8 20 14,2 0.094+0.094 0.4+0.4 0,046 x 2 0,9 x 2

SymbolsMCA: Minimum Circuit Ampere [A]

TOCA: Total overcurrent amps [A]MFA: Maximum Fuse Ampere [A]MSC: Maximum current of the starting compressor [A]RLA: Rated load amps [A]

OFM: Outdoor fan motorIFM: Indoor fan motorFLA: Full Load Ampere [A]KW: Fan motor rated output [kW]

Notes1. The RLA is based on the following conditions.

CoolingIndoor temperature 27.0°C DB / 19.0°C WBOutdoor temperature 35.0°C DB

HeatingIndoor temperature 20.0°C DBOutdoor temperature 7.0°C DB / 6.0°C WB

2. TOCA is the total value of each overcurrent set.3. Voltage range

4. The maximum allowable voltage that is unbalanced between phases is 2%.5. MCA is the maximum input current.

The capacity of the MFA must be greater than that of the MCA.Select the MFA according to the table.

6. Select the wire size according to the MCA.7. MFA is used to select the circuit breaker and the ground fault circuit interruptor.

Earth leakage circuit breaker

The units are suitable for use with electrical systems in which the voltage supplied to the unit terminals is not below or above the listed range limits.

3N~ 50Hz380-415V

Min

imum

: 342

V

Max

imum

456

V

3N~ 50Hz380-415V

Min

imum

: 342

V

Max

imum

456

V

MSC RLA kW FLA kW FLA

Compressor OFM IFM

Indoor Outdoor Power supply Voltage range MCA TOCA MFA

3D077811 C

• Split - Sky Air • RZQSG-L3/9V1

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• Outdoor Unit • RZQSG-L3/9V1

3 Electrical data3 - 1 Electrical Data

1 2 3 MCA MFA RHz RLA kW FLA kW FLA

OFMIFMFLAkWRHz

COMPRLA

MCAMFA

1

234

COMP OFM IFM

Voltage rangeVoltageHz

OutdoorIndoor

Unit combination restrictions Power supply

Symbols

Minimum Circuit Ampere (A)Maximum Fuse Ampere (A)Rated load amps [A]

Outdoor fan motorIndoor fan motorFull Load Ampere (A)Fan motor rated output [kW]

Notes

The RLA is based on the following conditions.Indoor temperature 27°C DB / 19°C WBOutdoor temperature 35°C DBSelect the wire size according to the MCA.

Use a circuit breaker instead of a fuse.

Rated operating frequency [Hz]

The maximum allowable voltage that is unbalanced between phases is 2%.

Compressor

RZQSG L3/9V1

3D096315C

• Split - Sky Air • RZQSG-L3/9V1 11

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3 Electrical data3 - 1 Electrical Data

RZQSG71-100L3/9V1

FCQHG71FVEB RZQSG71L3V1B 18,8 20 16,2 0,07 0,3 0,091 0,5FCQG35FVEB ×2 RZQSG71L3V1B 18,9 20 16,2 0,07 0,3 0.044×2 0.3×2FCQG71FVEB RZQSG71L3V1B 18,7 20 16,2 0,07 0,3 0,054 0,4FFQ35C2VEB ×2 RZQSG71L3V1B 19,2 20 16,2 0,07 0,3 0.050×2 0.4×2FDXS35F2VEB ×2 RZQSG71L3V1B 18,9 20 16,2 0,07 0,3 0.034×2 0.3×2FBQ35C8VEB ×2 RZQSG71L3V1B 21,2 25 16,2 0,07 0,3 0.140×2 1.2×2FBQ71C8VEB RZQSG71L3V1B 19,5 20 16,2 0,07 0,3 0,350 1,1FAQ71CVEB9 RZQSG71L3V1B 18,7 20 16,2 0,07 0,3 0,048 0,4FVQ71CVEB RZQSG71L3V1B 18,9 20 16,2 0,07 0,3 0,117 0,6FHQ35CBVEB ×2 RZQSG71L3V1B 19,1 20 15,7 0,07 0,3 0,060 x 2 0,6 x 2FHQ71CBVEB RZQSG71L3V1B 18,6 20 15,7 0,07 0,3 0,091 0,8FCQHG100FVEB RZQSG100L9V1B 29,1 32 24,4 0,2 0,6 0,221 1,3FCQG35FVEB ×3 RZQSG100L9V1B 28,6 32 24,4 0,2 0,6 0.044×3 0.3×3FCQG50FVEB ×2 RZQSG100L9V1B 28,3 32 24,4 0,2 0,6 0.039×2 0.3×2FCQG100FVEB RZQSG100L9V1B 28,4 32 24,4 0,2 0,6 0,117 0,7FFQ35C2VEB ×3 RZQSG100L9V1B 29,0 32 24,4 0,2 0,6 0.05×3 0.4×3FFQ50C2VEB ×2 RZQSG100L9V1B 28,5 32 24,4 0,2 0,6 0.05×2 0.4×2FDXS35F2VEB ×3 RZQSG100L9V1B 28,6 32 24,4 0,2 0,6 0.034×3 0.3×3FDXS50F2VEB9 ×2 RZQSG100L9V1B 28,8 32 24,4 0,2 0,6 0.06x2 0.5x2FBQ35C8VEB ×3 RZQSG100L9V1B 32,0 40 24,4 0,2 0,6 0.140×3 1.2×3FBQ50C8VEB ×2 RZQSG100L9V1B 30,5 32 24,4 0,2 0,6 0.140×2 1.2×2FBQ100C8VEB RZQSG100L9V1B 29,5 32 24,4 0,2 0,6 0,350 1,6FAQ100CVEB9 RZQSG100L9V1B 28,0 32 24,4 0,2 0,6 0,064 0,4FVQ100CVEB RZQSG100L9V1B 29,0 32 24,4 0,2 0,6 0,238 1,2FHQ35CBVEB ×3 RZQSG100L9V1B 29,8 32 24,4 0,2 0,6 0,060 x 3 0,6 x 3FHQ50CBVEB ×2 RZQSG100L9V1B 29,0 32 24,4 0,2 0,6 0,060 x 2 0,6 x 2FHQ100CBVEB RZQSG100L9V1B 29,1 32 24,4 0,2 0,6 0,150 1,3FUQ100CVEB RZQSG100L9V1B 29,1 32 24,4 0,2 0,6 0,106 1,3

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50Hz ~220-240V

Min

imum

: 198

V

Max

imum

264

V

50Hz ~220-240V

Min

imum

: 198

V

Max

imum

264

V

MSC RLA kW FLA kW FLA

Compressor OFM IFM

Indoor Outdoor Power supply Voltage range MCA TOCA MFA

YG?X?^>X J

• Split - Sky Air • RZQSG-L3/9V1

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• Outdoor Unit • RZQSG-L3/9V1

3 Electrical data3 - 1 Electrical Data

1 2 3 MCA MFA RHz RLA kW FLA kW FLA

OFMIFMFLAkWRHz

COMP

MCAMFARLA

234

1

COMP OFM IFM

Voltage rangeVoltageHz

OutdoorIndoor

Unit combination restrictions Power supply

Symbols

Minimum Circuit Ampere (A)Maximum Fuse Ampere (A)Rated load amps [A]

Outdoor fan motorIndoor fan motorFull Load Ampere (A)Fan motor rated output [kW]

Notes

The RLA is based on the following conditions.Indoor temperature 27°C DB / 19°C WBOutdoor temperature 35°C DBSelect the wire size according to the MCA.

Use a circuit breaker instead of a fuse.

Rated operating frequency [Hz]

The maximum allowable voltage that is unbalanced between phases is 2%.

Compressor

RZQSG71 125L3/9V1

3D094863B

• Split - Sky Air • RZQSG-L3/9V1 13

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3 Electrical data3 - 1 Electrical Data

RZQSG125-140L9V1

FCQHG125FVEB RZQSG125L9V1B 29,3 32 24,4 0,2 0,6 0,244 1,4FCQG35FVEB ×4 RZQSG125L9V1B 29,0 32 24,4 0,2 0,6 0.044×4 0.3×4FCQG50FVEB ×3 RZQSG125L9V1B 28,6 32 24,4 0,2 0,6 0.039×3 0.3×3FCQG60FVEB ×2 RZQSG125L9V1B 28,3 32 24,4 0,2 0,6 0.044×2 0.3×2FCQG125FVEB RZQSG125L9V1B 28,8 32 24,4 0,2 0,6 0,168 1FFQ35C2VEB ×4 RZQSG125L9V1B 29,5 32 24,4 0,2 0,6 0.05×4 0.4×4FFQ50C2VEB ×3 RZQSG125L9V1B 29,0 32 24,4 0,2 0,6 0.05×3 0.4×3FFQ60C2VEB ×2 RZQSG125L9V1B 29,0 32 24,4 0,2 0,6 0.05×2 0.6×2FDXS35F2VEB ×4 RZQSG125L9V1B 29,0 32 24,4 0,2 0,6 0.034×4 0.3×4FDXS50F2VEB9 ×3 RZQSG125L9V1B 29,4 32 24,4 0,2 0,6 0.06x3 0.5x3FDXS60F2VEB ×2 RZQSG125L9V1B 28,8 32 24,4 0,2 0,6 0.060×2 0.5×2FBQ35C8VEB ×4 RZQSG125L9V1B 33,5 40 24,4 0,2 0,6 0.140×4 1.2×4FBQ50C8VEB ×3 RZQSG125L9V1B 32,0 40 24,4 0,2 0,6 0.140×3 1.2×3FBQ60C8VEB ×2 RZQSG125L9V1B 30,3 32 24,4 0,2 0,6 0.350×2 1.1×2FBQ125C8VEB RZQSG125L9V1B 30,1 32 24,4 0,2 0,6 0,350 2,1FDQ125C7VEB RZQSG125L9V1B 30,1 32 24,4 0,2 0,6 0,350 2,1FVQ125CVEB RZQSG125L9V1B 29,0 32 24,4 0,2 0,6 0,238 1,2FHQ35CBVEB x4 RZQSG125L9V1B 30,5 32 24,4 0,2 0,6 0,060x4 0,6 x 4FHQ50CBVEB x3 RZQSG125L9V1B 29,8 32 24,4 0,2 0,6 0,060x3 0,6 x 3FHQ60CBVEB x2 RZQSG125L9V1B 29 32 24,4 0,2 0,6 0,091x2 0,6 x 2FHQ125CBVEB RZQSG125L9V1B 29,4 32 24,4 0,2 0,6 0,15 1,5FUQ125CVEB RZQSG125L9V1B 29,3 32 24,4 0,2 0,6 0,106 1,4FCQHG71FVEB ×2 RZQSG140L9V1B 28,75 32 24,2 0.094+0.094 0.4+0.4 0.091×2 0.5×2FCQHG140FVEB RZQSG140L9V1B 29,25 32 24,2 0.094+0.094 0.4+0.4 0,244 1,4FCQG35FVEB ×4 RZQSG140L9V1B 29 32 24,2 0.094+0.094 0.4+0.4 0.044×4 0.3×4FCQG50FVEB ×3 RZQSG140L9V1B 28,625 32 24,2 0.094+0.094 0.4+0.4 0.039×3 0.3×3FCQG71FVEB ×2 RZQSG140L9V1B 28,5 32 24,2 0.094+0.094 0.4+0.4 0.054×2 0.4×2FCQG140FVEB RZQSG140L9V1B 28,75 32 24,2 0.094+0.094 0.4+0.4 0,168 1FFQ35C2VEB ×4 RZQSG140L9V1B 29,5 32 24,2 0.094+0.094 0.4+0.4 0.05×4 0.4×4FFQ50C2VEB ×3 RZQSG140L9V1B 29 32 24,2 0.094+0.094 0.4+0.4 0.05×3 0.4×3FDXS35F2VEB ×4 RZQSG140L9V1B 29 32 24,2 0.094+0.094 0.4+0.4 0.034×4 0.3×4FDXS50F2VEB9 ×3 RZQSG140L9V1B 29,375 32 24,2 0.094+0.094 0.4+0.4 0.06x3 0.5x3FBQ35C8VEB ×4 RZQSG140L9V1B 33,5 40 24,2 0.094+0.094 0.4+0.4 0.140×4 1.2×4FBQ50C8VEB ×3 RZQSG140L9V1B 32 40 24,2 0.094+0.094 0.4+0.4 0.140×3 1.2×3FBQ71C8VEB ×2 RZQSG140L9V1B 30,25 32 24,2 0.094+0.094 0.4+0.4 0.350×2 1.1×2FBQ140C8VEB RZQSG140L9V1B 30,125 32 24,2 0.094+0.094 0.4+0.4 0,35 2,1FAQ71CVEB9 ×2 RZQSG140L9V1B 28,5 32 24,2 0.094+0.094 0.4+0.4 0.048×2 0.4×2FVQ140CVEB RZQSG140L9V1B 29,25 32 24,2 0.094+0.094 0.4+0.4 0,276 1,4FHQ35CBVEB x4 RZQSG140L9V1B 30,5 32 24,2 0.094+0.094 0.4+0.4 0,060 x 4 0,6 x 4FHQ50CBVEB ×3 RZQSG140L9V1B 29,8 32 24,2 0.094+0.094 0.4+0.4 0,060 x 3 0,6 x 3FHQ71CBVEB ×2 RZQSG140L9V1B 29,5 32 24,2 0.094+0.094 0.4+0.4 0,091 x 2 0,8 x 2FHQ140CBVEB RZQSG140L9V1B 29,8 32 24,2 0.094+0.094 0.4+0.4 0,15 1,8FUQ71CVEB ×2 RZQSG140L9V1B 29,8 32 24,2 0.094+0.094 0.4+0.4 0.046 x 2 0.9 x 2

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50Hz ~220-240V

Min

imum

: 198

V

Max

imum

264

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50Hz ~220-240V

Min

imum

: 198

V

Max

imum

264

V

MSC RLA kW FLA kW FLA

Compressor OFM IFM

Indoor Outdoor Power supply Voltage range MCA TOCA MFA

YG?X?^>X J

• Split - Sky Air • RZQSG-L3/9V1

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3 Electrical data3 - 1 Electrical Data

1 2 3 MCA MFA RHz RLA kW FLA kW FLA

OFMIFMFLAkWRHz

COMP

MCAMFARLA

234

1

COMP OFM IFM

Voltage rangeVoltageHz

OutdoorIndoor

Unit combination restrictions Power supply

Symbols

Minimum Circuit Ampere (A)Maximum Fuse Ampere (A)Rated load amps [A]

Outdoor fan motorIndoor fan motorFull Load Ampere (A)Fan motor rated output [kW]

Notes

The RLA is based on the following conditions.Indoor temperature 27°C DB / 19°C WBOutdoor temperature 35°C DBSelect the wire size according to the MCA.

Use a circuit breaker instead of a fuse.

Rated operating frequency [Hz]

The maximum allowable voltage that is unbalanced between phases is 2%.

Compressor

RZQSG125 140L9V1

3D094863B

• Split - Sky Air • RZQSG-L3/9V1 15

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4 Options4 - 1 Options

RZQSG-L3/9V1

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5 Combination table5 - 1 Combination Table

RZQSG-L3/9V1RZQSG-L(8)Y1

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18

6 Capacity tables6 - 1 Cooling/Heating Capacity Tables

• Split - Sky Air • RZQSG-L3/9V1

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6 Capacity tables6 - 1 Cooling/Heating Capacity Tables

RZQSG100L(8)Y1RZQSG100L9V1

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Cooling Heating

SymbolsAFR: Air flow rate [m³/min]

BF: Bypass factorEWB: Entering wet-bulb temperature (°C WB)EDB: Entering dry-bulb temperature (°C DB)

TC: Maximum total cooling/heating capacity [kW]SHC: Sensible heat capacity [kW]CPI: Coefficient of the power input

PI: Power input [kW]compressor + indoor and outdoor fan motors

Cooling Heating

Notes1. The ratings shown are net capacities which include a deduction for indoor fan motor heat.2. = Maximum at standard conditions

= Rated capacity and rated coefficient of the power inputThe maximum capacity is not guaranteed except at standard conditions.

3. SHC is based on indoor units EWB & EDB.SHC for other dry-bulb temperatures = SHC + SHC*SHC* = SHC correction for other dry-bulb temperatures

= 0.02 x AFR (m³/min) x (1-BF) x (DB* - EDB)4. The capacities are based on the following conditions:

Outdoor air: 85% RHHowever, the outdoor ambient condition of the rated capacity during heating operation is 7°C DB / 6°C WB.Corresponding refrigerant piping length: 5.0 mLevel difference: 0m

5. CPI is a percentage value compared to the rated value which is 1.00.6. The error rate for this value is less than 5% and depends on the indoor unit type.7. The heating performance takes into account the drop that occurs during defrost operation.8. The air flow rate and bypass factor are mentioned in the table. 9. The rated power input for each model is mentioned in the table below.

Pair PairFCQHG125F FCQG125F FBQ125C FHQG125C FVQ125C FHQ125CB FBQ125D FUQ125C FCQHG125F FCQG125F FBQ125C FHQG125C FVQ125C FHQ125CB FBQ125D FUQ125C

Cooling 3,71 3,74 3,74 4,15 4,27 4,15 3,72 4,53

Heating 3,60 3,96 3,85 3,73 3,96 3,73 3,72 3,96

Twin TwinFCQG60F X 2 FBQ60C X 2 FHQ60CB X 2 FFQ60C X 2 FDXS60F X 2 FBQ60D X 2 FNQ60A X 2 FCQG60F X 2 FBQ60C X 2 FHQ60CB X 2 FFQ60C X 2 FDXS60F X 2 FBQ60D X 2 FNQ60A X 2

Cooling 3,66 3,95 4,34 4,75 4,88 4,24 4,88

Heating 3,88 4,06 4,43 4,33 4,38 4,14 4,38

Triple TripleFCQG50F X 3 FBQ50C X 3 FHQ50CB X 3 FFQ50C X 3 FDXS50F9 X 3 FBQ50D X 3 FNQ50A X 3 FCQG50F X 3 FBQ50C X 3 FHQ50CB X 3 FFQ50C X 3 FDXS50F9 X 3 FBQ50D X 3 FNQ50A X 3

Cooling 3,69 3,95 4,33 4,14 4,07 4,08 4,07

Heating 3,90 4,06 4,42 3,87 3,92 4,09 3,92

Double twin Double twinFCQG35F X 4 FBQ35C X 4 FHQ35CB X 4 FFQ35C X 4 FDXS35F X 4 FBQ35D X 4 FNQ35A X 4 FCQG35F X 4 FBQ35C X 4 FHQ35CB X 4 FFQ35C X 4 FDXS35F X 4 FBQ35D X 4 FNQ35A X 4

Cooling 3,75 3,95 4,31 3,99 4,67 3,95 4,67

Heating 3,96 4,06 4,32 3,59 4,66 4,03 4,668.7 x 4

(0.17 x 4)

15 x 3(0.13 x 3)

16 x 3(0.11 x 3)

AFR(BF)

12.5 x 4(0.4 x 4)

16 x4(0.15 x 4)

14 x 4(0.17 x 4)

10 x 4(0.25 x 4)

8.7 x 4(0.17 x 4)

15 x 4(0.08 x 4)

16 x 2(0.12 x 2)

18 x 2(0.15 x 2)

16 x 2(0.12 x 2)

AFR(BF)

12.6 x 3(0.22 x 3)

16 x 3(0.16 x 3)

15 x 3(0.18 x 3)

12 x 3(0.16 x 3)

16 x 3(0.11 x 3)

28.0(0.16)

31.0(0.14)

34.0(0.06)

32.5(0.19)

AFR(BF)

13.6 x 2(0.2 x 2)

18 x 2(0.15 x 2)

19.5 x 2(0.20 x 2)

14.5 x 2(0.11 x 2)

AFR(BF)

33.5(0.19)

33.0(0.21)

39.0(0.16)

31.0(0.134)

Coef

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Capacity range

Rated point

Capacity range

Rated point

Indoor

Indo

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Outdoor temperature [°C DB] Outdoor temperature [°C WB]

3D076754H

• Split - Sky Air • RZQSG-L3/9V1 19

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6 Capacity tables6 - 1 Cooling/Heating Capacity Tables

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• Outdoor Unit • RZQSG-L3/9V1

6 Capacity tables6 - 2 Capacity Correction Factor

10095908580757065605550454035302520150 5 1060

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3D076247A

• Split - Sky Air • RZQSG-L3/9V1 21

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7 Dimensional drawings7 - 1 Dimensional Drawings

• Split - Sky Air • RZQSG-L3/9V1

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• Outdoor Unit • RZQSG-L3/9V1

7 Dimensional drawings7 - 1 Dimensional Drawings

• Split - Sky Air • RZQSG-L3/9V1 23

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• Outdoor Unit • RZQSG-L3/9V1

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8 Centre of gravity8 - 1 Centre of Gravity

• Split - Sky Air • RZQSG-L3/9V1

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• Outdoor Unit • RZQSG-L3/9V1

8 Centre of gravity8 - 1 Centre of Gravity

• Split - Sky Air • RZQSG-L3/9V1 25

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• Outdoor Unit • RZQSG-L3/9V1

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8 Centre of gravity8 - 1 Centre of Gravity

• Split - Sky Air • RZQSG-L3/9V1

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• Outdoor Unit • RZQSG-L3/9V1

9 Piping diagrams9 - 1 Piping Diagrams

• Split - Sky Air • RZQSG-L3/9V1 27

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9 Piping diagrams9 - 2 Piping Diagram Twin Application

• Split - Sky Air • RZQSG-L3/9V1

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• Outdoor Unit • RZQSG-L3/9V1

9 Piping diagrams9 - 3 Piping Diagram Triple Application

• Split - Sky Air • RZQSG-L3/9V1 29

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• Outdoor Unit • RZQSG-L3/9V1

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9 Piping diagrams9 - 4 Piping Diagram Double Twin Application

• Split - Sky Air • RZQSG-L3/9V1

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• Outdoor Unit • RZQSG-L3/9V1

10 Wiring diagrams10 - 1 Wiring Diagrams - Single Phase

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• Split - Sky Air • RZQSG-L3/9V1 31

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6

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SEE NOTE 7

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• Split - Sky Air • RZQSG-L3/9V1 33

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• Split - Sky Air • RZQSG-L3/9V1 39

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40

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12

• Outdoor Unit • RZQSG-L3/9V1

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• Split - Sky Air • RZQSG-L3/9V1 41

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12

42

12 Installation12 - 1 Installation Method

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• Outdoor Unit • RZQSG-L3/9V1

12 Installation12 - 1 Installation Method

• Split - Sky Air • RZQSG-L3/9V1 43

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• Outdoor Unit • RZQSG-L3/9V1

13

44

13 Operation range13 - 1 Operation Range

• Split - Sky Air • RZQSG-L3/9V1

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