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• Outdoor Units • R-410A • RZQS-DV1

1

5

• Split Sky Air • Outdoor Units

15

5

Capacity tables

5 - 2

Cooling capacity tables

RZQS140DV1

Cooling

Cooling capacity

Indoor

Outdoor temp. (°CDB)

EWB

EDB

25

30

35

40

(°C)

(°C)

TC

(kW)

SHC

(kW)

CPI

(-)

TC

(kW)

SHC

(kW)

CPI

(-)

TC

(kW)

SHC

(kW)

CPI

(-)

TC

(kW)

SHC

(kW)

CPI

(-)

3TW31742-2

SYMBOLS

AFR:

Air flow rate

(m

3

/min)

BF:

Bypass factor

EWB:

Entering wet bulb temp.

(°CWB)

EDB:

Entering dry bulb temp.

(°CDB)

TC:

Total cooling capacity

(kW)

SHC:

Sensible heating capacity

(kW)

PI:

Power input

(kW)

(comp.+outdoor fan motor)

CPI:

Coefficient of power input.

(-)

Caution:
TC and SHC are shown by kW

NOTES

1. Ratings shown are net capacities which include a deduction for indoor fan motor heat
2. On the figure the mark

j

show the max. at standard conditions.

On the figure the mark

Q

show rated capacity and rated coefficient of power input.

However the max. capacity is not guaranteed, except at standard condition.

3. SHC is based on each EWB and EDB

SHC* = SHC correction for other dry bulb
SHC* = 0.02 x AFR (m

3

/min.) x (1

BF) x (DB*

EDB)

Add SHC* to SHC.

4. Capacities are based on following conditions:

Outdoor air : 85 % RH. however, the condition on nominal capacity is 7° CDB/6° CWB (heating)
Corresponding refrigerant piping length

: 5.0 m

Level difference

: 0 m

5. Coefficient of power input is the percentage when the rated valve is defined as 1.00.
6. The value contains less than 5% error acording to indoor unit type.
7. Air flow rate and BF are tabulated below.

(Pair)

Model

FCQH140D

FCQ140C

AFR

(BF)

34

(0.20)

27.5

(0.22)

(Twin)

Model

FCQH71Dx2 FCQ71Cx2

FBQ71Cx2

FHQ71x2

FAQ71x2

AFR

(BF)

21x2

(0.17x2)

15.5x2

(0.19x2)

18x2

(0.08x2)

17x2

(0.1x2)

19x2

(0.08x2)

(Triple)

Model

FCQ50Cx3

FFQ50x3

FBQ50Cx3

FHQ50x3

AFR

(BF)

12.5x3

(0.21x3)

12x3

(0.16x3)

16x3

(0.15x3)

13x3

(0.1x3)

8. Rated power input of each model is tabulated below.

(Pair)

Model

FCQH140D

FCQ140C

Cooling

4.65

5.36

(Twin)

Model

FCQH71Dx2 FCQ71Cx2

FBQ71Cx2

FHQ71x2

FAQ71x2

Cooling

4.99

5.12

4.95

5.10

5.01

(Triple)

Model

FCQ50Cx3

FFQ50x3

FBQ50x3

FHQ50x3

Cooling

5.12

4.89

4.95

5.10

Capacity range

Rated point

Cooling capacity (kW)

Coefficient

of

power

input.

(-)

(Double Twin)

Model

FCQ35Cx4

FFQ35x4

FBQ35Cx4

FHQ35x4

AFR

(BF)

10.5x4

(0.28x4)

10x4

(0.25x4)

16x4

(0.15x4)

13x4

(0.2x4)

(Double Twin)

Model

FCQ35Cx4

FFQ35x4

FBQ35x4

FHQ35x4

Cooling

5.12

4.89

4.95

5.10

Summary of Contents for RZQS100D7V1B

Page 1: ...technical data Split Sky Air air conditioning systems RZQS DV1 EEDEN09 100...

Page 2: ...rovent Directory Daikin s unique position as a man ufacturer of air conditioning equip ment compressors and refrige rants has led to its close involve ment in environmental issues For several years Da...

Page 3: ...technical data Split Sky Air air conditioning systems RZQS DV1 EEDEN09 100...

Page 4: ...s 8 3 Electrical data 9 4 Options 10 5 Capacity tables 11 Combination table 11 Cooling capacity tables 12 Heating capacity tables 18 6 Dimensional drawing centre of gravity 23 Dimensional drawing 23 C...

Page 5: ...iency and very low sound level An inverter driven compressor allows the capacity to be adjusted precisely to match variations in room and outside temperatures During start up the room can be cooled do...

Page 6: ...pacity Standard kW 7 1 10 0 12 5 13 4 Heating capacity Standard kW 8 0 11 2 14 0 15 0 Power Input Cooling Standard kW 2 18 3 03 3 98 4 77 Heating Standard kW 2 25 3 07 4 11 4 67 For combination indoor...

Page 7: ...r Discharge direction Horizontal Quantity 1 2 2 2 Air Flow Rate nominal at 230V Cooling m min 52 96 100 97 Heating m min 48 90 90 90 Motor Quantity 1 2 2 2 Model KFD 325 70 8A Brushless DC Motor Brush...

Page 8: ...tem Tie wraps Quantity 2 2 2 2 Item Installation manual Quantity 1 1 1 1 Notes Nominal cooling capacities are based on indoor temperature 27 CDB 19 CWB outdoor temperature 35 CDB equivalent refrigeran...

Page 9: ...owing conditions Power supply 50Hz 230V Cooling Indoor temperature 27 CDB 19 CWB Outdoor temperature 35 CDB Heating Indoor temperature 20 0 CDB Outdoor temperature 7 0 CDB 6 0 CWB 2 TOCA means the tot...

Page 10: ...D7V1B RZQS125D7V1B RZQS140D7V1B RZQ100B8W1B RZQ125B8W1B RZQ140B8W1B Central drain plug EKDK04 Refrigerant branch piping Twin KHRQ22M20TA KHRQ58T see note Triple KHRQ127H KHRQ58H see note Double twin K...

Page 11: ...C7VEB FBQ71C7VEB FBQ100C7VEB FBQ125C7VEB FBQ140C7VEB FHQ35BVV1B FHQ50BVV1B FHQ60BVV1B FHQ71BVV1B FHQ100BVV1B FHQ125BVV1B FUQ71BVV1B FUQ100BVV1B FUQ125BVV1B FAQ71BVV1B FAQ100BVV1B FDQ125B8V3B FVQ71BV1B...

Page 12: ...xcept at standard condition 3 SHC is based on each EWB and EDB SHC SHC correction for other dry bulb SHC 0 02 x AFR m 3 min x 1 BF x DB EDB Add SHC to SHC 4 Capacities are based on following condition...

Page 13: ...bulb SHC 0 02 x AFR m 3 min x 1 BF x DB EDB Add SHC to SHC 4 Capacities are based on following conditions Outdoor air 85 RH however the condition on nominal capacity is 7 CDB 6 CWB heating Correspond...

Page 14: ...ng conditions Outdoor air 85 RH however the condition on nominal capacity is 7 CDB 6 CWB heating Corresponding refrigerant piping length 5 0 m Level difference 0 m 5 Coefficient of power input is the...

Page 15: ...C 4 Capacities are based on following conditions Outdoor air 85 RH however the condition on nominal capacity is 7 CDB 6 CWB heating Corresponding refrigerant piping length 5 0 m Level difference 0 m 5...

Page 16: ...ax at standard conditions On the figure the mark Q show rated capacity and rated coefficient of power input However the max capacity is not guaranteed except at standard condition 3 SHC is based on ea...

Page 17: ...RZQS DV1 1 5 Split Sky Air Outdoor Units 17 5 Capacity tables 5 2 Cooling capacity tables 3TW31712 1 RZQS71 140DV1 Capacity Field piping length m Cooling Heating Capacity in function of field piping l...

Page 18: ...ed coefficient of power input 4 SHC is based on each EWB and EDB SHC SHC correction for other dry bulb SHC 0 02 x AFR m 3 min x 1 BF x DB EDB Add SHC to SHC 5 Capacities are based on following conditi...

Page 19: ...ry bulb SHC 0 02 x AFR m 3 min x 1 BF x DB EDB Add SHC to SHC 5 Capacities are based on following conditions Outdoor air 85 RH however the condition on nominal capacity is 7 CDB 6 CWB heating Correspo...

Page 20: ...ever the condition on nominal capacity is 7 CDB 6 CWB heating Corresponding refrigerant piping length 5 0 m Level difference 0 m 5 Coefficient of power input is the percentage when the rated valve is...

Page 21: ...SHC 5 Capacities are based on following conditions Outdoor air 85 RH however the condition on nominal capacity is 7 CDB 6 CWB heating Corresponding refrigerant piping length 5 0 m Level difference 0...

Page 22: ...d rated coefficient of power input However the max capacity is not guaranteed except at standard condition 3 On the tables Q show rated capacity and rated coefficient of power input 4 SHC is based on...

Page 23: ...igerant piping intake 6 Power supply wiring intake knock out hole J34 7 Control wiring intake Knock out hole J27 8 Drain outlet RZQS71DV1 Hole for anchor bolt 4 M12 3TW26364 1 1 Gas pipe connection J1...

Page 24: ...3 1 6 Split Sky Air Outdoor Units 24 Outdoor Units R 410A RZQS DV1 6 Dimensional drawing centre of gravity 6 2 Centre of gravity 4TW30469 3 RZQS71DV1 4TW29169 4 RZQS100 125 140DV1...

Page 25: ...ure switch Filter Low pressure sensor 3TW29165 2 RZQS71 140DV1 Twin Indoor unit Field piping J15 9 Field piping J9 5 Low pressure sensor Heat exchanger Filter Stop valve with service port 5 16 flare F...

Page 26: ...branch and the indoor units should have the same size as the indoor connections 3TW29165 4 RZQS125 140DV1 Double twin Indoor unit Field piping J15 9 Field piping J9 5 Low pressure sensor Heat exchang...

Page 27: ...f compressor terminal Back Outdoor Note4 2TW29166 2 A1P Printed circuit board Main A2P Printed circuit board Inverter A3P Printed circuit board Noise filter A4P Printed circuit board BS1 BS4 Push butt...

Page 28: ...nal conditions 3 dB A A weighted sound pressure level A scale according to IEC 4 Reference acoustic pressure 0dB 20 Pa Measuring location discharge side 3TW31727 1 Sound pressure level dB Octave band...

Page 29: ...inal conditions 3 dB A A weighted sound pressure level A scale according to IEC 4 Reference acoustic pressure 0dB 20 Pa Measuring location discharge side 3TW29177 1 Sound pressure level dB Octave band...

Page 30: ...V1 NOTES 1 dB A A weighted sound pressure level A scale according to IEC 2 Reference acoustic intensity 0dB 10E 6 W m2 3 Measured according to ISO 3744 3TW29167 3 Sound power level dB Octave band cent...

Page 31: ...ow RZQS71 140DV1 A Non stacked installation 2 Obstacles exist in front of the air inlet B Stacked installation Legend C Multiple row installation Relation of dimensions of H A and L are shown in the t...

Page 32: ...n change over to freeze up operation indoor de icing 2 To reduce the freeze up operation indoor de icing frequency it is recommended to install the outdoor unit in a location not exposed to wind Outdo...

Page 33: ......

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