technical data air conditioning systems RZQ B8W1B Split Sky Air

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1 technical data RZQ B8WB air conditioning systems Split Sky Air

2 Split - Sky Air Daikin s unique position as a manufacturer of air conditioning equipment, compressors and refrigerants has led to its close involvement in environmental issues. For several years Daikin has had the intention to become a leader in the provision of products that have limited impact on the environment. This challenge demands the eco design and development of a wide range of products and an energy management system, resulting in energy conservation and a reduction of waste. ISO400 assures an effective environmental management system in order to help protect human health and the environment from potential impact of our activities, products and services and to assist in maintaining and improving the quality of the environment. Daikin Europe N.V. is approved by LRQA for its Quality Management System in accordance with the ISO900 standard. ISO900 pertains to quality assurance regarding design, development, manufacturing as well as to services related to the product. The present publication is drawn up by way of information only and does not constitute an offer binding upon Daikin Europe N.V.. Daikin Europe N.V. has compiled the content of this publication to the best of its knowledge. No express or implied warranty is given for the completeness, accuracy, reliability or fitness for particular purpose of its content and the products and services presented therein. Specifications are subject to change without prior notice. Daikin Europe N.V. explicitly rejects any liability for any direct or indirect damage, In the broadest sense, arising from or related to the use and/or interpretation of this publication. All content is copyrighted by Daikin Europe N.V.. Daikin units comply with the European regulations that guarantee the safety of the product. Naamloze Vennootschap Zandvoordestraat 300 B-8400 Ostend, Belgium BTW: BE RPR Oostende Daikin Europe N.V. participates in the Eurovent Certification Programme for Air Conditioners (AC), Liquid Chilling Packages (LCP) and Fan Coil units (FC); the certified data of certified models are listed in the Eurovent Directory. EEDEN07 04/2007 Printed in Belgium by Goekint Graphics Copyright Daikin

3 technical data RZQ B8WB air conditioning systems Split Sky Air

4 Outdoor Units R-40A RZQ B8WB TABLE OF CONTENTS RZQ B8WB Features Specifications Nominal Capacity and Nominal Input Technical Specifications Electrical Specifications Electrical data Options Capacity tables Combination table Cooling capacity tables Heating capacity tables Dimensional drawing & centre of gravity Dimensional drawing Centre of gravity Piping diagram Wiring diagram Wiring diagram Sound data Sound pressure spectrum Sound power spectrum Installation Installation method Operation range Split Sky Air Outdoor Units 4

5 i -n y 5 k 2 r - o 0t o 0 i d l t 4 puz - Outdoor Units R-40A RZQ B8WB Features U S A Q SO R Outdoor units for pair, twin, triple, double twin application The Sky Air Inverter is developed for use in shops, restaurants and small offices. This innovative Daikin unit provides a more comfortable environment and offers great savings in energy consumption to shop and office owners. The use of inverter type outdoor units results in an air conditioning system with a high energy efficiency 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 down or heated very quickly. Once the temperature in the room has reached its set point, the low power operation starts to save energy. Daikin outdoor units are neat and sturdy and can be mounted easily on a roof or terrace or simply placed against an outside wall. Outdoor units are fitted with either a swing or scroll compressor, renowned for low noise and high energy efficiency A special acryl precoated fin for anti-corrosion treatment on the heat exchanger ensures greater resistance against severe weather conditions 5 Split Sky Air Outdoor Units

6 2 Specifications Outdoor Units R-40A RZQ B8WB 2- NOMINAL CAPACITY AND NOMINAL INPUT For Indoor Units combination indoor units + outdoor units RZQ00B8WB RZQ25B8WB RZQ40B8WB FCQ00C7VEB FCQ25C7VEB FCQ40C7VEB Cooling Standard kw capacity Heating Standard kw capacity Power Input Cooling Standard kw Heating Standard kw For EER Nominal combination COP Nominal indoor units + Energy Label Cooling A A D outdoor units Heating B C D Annual energy consumption kwh Indoor Units FBQ00B8V3B FBQ25B8V3B FBQ40B8V3B Cooling Standard kw capacity Heating Standard kw capacity Power Input Cooling Standard kw Heating Standard kw For EER Nominal combination COP Nominal indoor units + Energy Label Cooling A B C outdoor units Heating A B C Annual energy consumption kwh Indoor Units FHQ00BUVB FHQ25BUVB FCQH40C7VEB Cooling Standard kw capacity Heating Standard kw capacity Power Input Cooling Standard kw Heating Standard kw For EER Nominal combination COP Nominal indoor units + Energy Label Cooling B C B outdoor units Heating D D B Annual energy consumption kwh Indoor Units FUQ00BUVB FUQ25BUVB Cooling Standard kw capacity Heating Standard kw capacity Power Input Cooling Standard kw Heating Standard kw For EER Nominal combination COP Nominal indoor units + Energy Label Cooling A B outdoor units Heating B C Annual energy consumption kwh Indoor Units FAQ00BUVB FDQ25B8V3B Cooling Standard kw capacity Heating Standard kw capacity Power Input Cooling Standard kw Heating Standard kw Split Sky Air Outdoor Units 6

7 2 Specifications Outdoor Units R-40A RZQ B8WB 2 2- NOMINAL CAPACITY AND NOMINAL INPUT For combination indoor units + outdoor units RZQ00B8WB RZQ25B8WB RZQ40B8WB EER Nominal COP Nominal Energy Label Cooling A B Heating C A Annual energy consumption kwh Indoor Units FCQH00C7VEB FCQH25C7VEB Cooling Standard kw capacity Heating Standard kw capacity Power Input Cooling Standard kw Heating Standard kw For EER Nominal combination COP Nominal indoor units + Energy Label Cooling A A outdoor units Heating A A Annual energy consumption kwh TECHNICAL SPECIFICATIONS RZQ00B8WB RZQ25B8WB RZQ40B8WB Casing Colour Ivory White Material Painted galvanised steel Dimensions Unit Height mm Width mm Depth mm Packing Height mm Width mm Depth mm Weight Unit kg Packed Unit kg Heat Dimensions Length mm Exchanger Nr of Rows Fin Pitch mm Nr of Passes Face m² Area Nr of Stages Tube type Hi-XSS(8) Fin Type WF fin Treatment Anti-corrosion treatment (PE) Fan Type Propeller Discharge direction Horizontal Quantity Air Flow Rate Cooling m³/min (nominal at 230V) Heating m³/min Motor Quantity Model KFD A Motor Speed Steps (nominal) Cooling rpm Heating rpm Fan Motor Output W Compressor Quantity Motor Model JTG-VDYR@T Type Hermetically sealed scroll compressor Motor W Output Crankcase Heater W Split Sky Air Outdoor Units

8 2 Specifications Outdoor Units R-40A RZQ B8WB 2-2 TECHNICAL SPECIFICATIONS RZQ00B8WB RZQ25B8WB RZQ40B8WB Operation Range Sound Level (nominal) Cooling Min CDB Max CDB Heating Min CWB Max CWB Cooling Heating Sound Power Sound Pressure Sound Pressure dba dba dba Sound Level Sound Pressure dba (Night quiet) Refrigerant Type R-40A Charge kg Control Expansion (electronic type) Nr of Circuits Refrigerant Oil Type Daphne FVC68D Charged Volume l Piping Liquid (OD) Quantity connections Type Flare connection Diameter mm (OD) Gas Quantity Type Flare connection Diameter mm (OD) Drain Quantity Type Hole Diameter mm (OD) Piping Length Minimum m Maximum m Equivalent m Chargeless m Additional Refrigerant kg/m Charge see installation manual 4PW242- Installation Maximum m height difference Max. internunit level m difference Heat Insulation Both liquid and gas pipes Defrost Method Pressure equalising Defrost Control Sensor for outdoor heat exchanger temperature Capacity Control Method Inverter controlled Safety Devices High pressure switch Fan motor thermal protector Fuse Standard Item Tie-wraps Accessories Quantity Item Installation manual Quantity Notes Nominal cooling capacities are based on : indoor temperature : 270CDB, 90CWB, outdoor temperature : 350CDB, equivalent refrigerant piping : 7.5m, level difference : 0m. Nominal heating capacities are based on : indoor temperature : 200CDB, outdoor temperature : 70CDB, 60CWB, equivalent refrigerant piping : 7.5m, level difference : 0m 3 2 Split Sky Air Outdoor Units 8

9 2 Specifications Outdoor Units R-40A RZQ B8WB ELECTRICAL SPECIFICATIONS RZQ00B8WB RZQ25B8WB RZQ40B8WB Power Supply Name WB Phase 3N Frequency Hz Voltage V Voltage range Minimum V -0% Maximum V +0% Current Recomended fuses A Wiring connections Power Supply Intake Notes For Power Supply For connection with indoor Remark Remark see installation manual 4PW242- see installation manual 4PW242- Outdoor unit only See separate drawings for electrical data 9 Split Sky Air Outdoor Units

10 3 Electrical data Outdoor Units R-40A RZQ B8WB RZQ-BW Unit combination Power supply Comp. OFM IFM Indoor unit Outdoor unit Hz-volts Voltage range MCA TOCA MFA MSC RLA kw FLA kw FLA 3 3 3D048638C MCA TOCA MFA MSC RLA OFM IFM FLA kw SYMBOLS : Min. Circuit Amps (A) : Total Over Current Amps (A) : Max. Fuse Amps (See note 7) (A) : MSC means the max. current during the starting of compressor. (A) : Rated Load Amps (A) : Outdoor Fan Motor (A) : Indoor Fan Motor : Full Load Amps : Fan Motor Rated Output RLA is based on the following conditions: Power supply: 50Hz 230V Cooling Indoor temperature 27 CDB/9 CWB Outdoor temperature 35 CDB 2 TOCA means the total value of each OC set 3 Voltage range Heating Indoor temperature 20.0 CDB Outdoor temperature 7.0 CDB/6.0 CWB Units are suitable for use on electrical systems where voltage supplied to unit terminals is not below or above listed operation range limits 4 Maximum allowable voltage unbalance between phases is 2% 5 MCA represents maximum input current., MFA represents capacity which may accept MCA (next lower standard fuse rating, min.5a) 6 Select wire size based on the larger value of MCA or TOCA 7 MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker) 8 For more details concerning conditional connections, see select E-Data Books. Finally, click on the document title of your choice. Split Sky Air Outdoor Units 0

11 3 Electrical data Outdoor Units R-40A RZQ B8WB 3 RZQ-BW Unit combination Power supply Comp. OFM IFM Indoor unit Outdoor unit Hz-volts Voltage range MCA TOCA MFA MSC RLA kw FLA kw FLA MCA TOCA MFA MSC RLA OFM IFM FLA kw SYMBOLS : Min. Circuit Amps (A) : Total Over Current Amps (A) : Max. Fuse Amps (See note 7) (A) : MSC means the max. current during the starting of compressor. (A) : Rated Load Amps (A) : Outdoor Fan Motor (A) : Indoor Fan Motor : Full Load Amps : Fan Motor Rated Output RLA is based on the following conditions: Power supply: 50Hz 230V Cooling Indoor temperature 27 CDB/9 CWB Outdoor temperature 35 CDB 2 TOCA means the total value of each OC set 3 Voltage range Heating Indoor temperature 20.0 CDB Outdoor temperature 7.0 CDB/6.0 CWB 3D048638C Units are suitable for use on electrical systems where voltage supplied to unit terminals is not below or above listed operation range limits 4 Maximum allowable voltage unbalance between phases is 2% 5 MCA represents maximum input current., MFA represents capacity which may accept MCA (next lower standard fuse rating, min.5a) 6 Select wire size based on the larger value of MCA or TOCA 7 MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker) 8 For more details concerning conditional connections, see select E-Data Books. Finally, click on the document title of your choice. Split Sky Air Outdoor Units

12 Outdoor Units R-40A RZQ B8WB 4 Options Available option for RZQ-BW Kit name Name of option RZQ00B8WB RZQ25B8WB RZQ40B8WB Central drain plug KKPJ5F80 Refrigerant branch piping Twin KHRQ22M20TA (KHRQ58T): See note Triple KHRQ27H (KHRQ58H): See note Double twin - KHRQ22M20TA(KHRQ58T): See note (3x) Demand adapter kit KRP58M TW26739-E For RZQ00-40B8WB in combination with FCQ35-7C or FCQH7C, use the refrigerant branch piping mentioned between brackets. Split Sky Air Outdoor Units 2

13 5 Capacity tables 5 - Combination table Outdoor Units R-40A RZQ B8WB Possible combinations and standard capacity for twin, triple and double twin application 5 Possible indoor combination Simultaneous operation Twin Triple Double twin Outdoor models Out Out Out In In In In In In In In In RZQ40B8WB 7-7 (See note 5) (See note 6) (See note 7) RZQ00B8WB (See note 5) (See note 6) RZQ25B8WB (See note 5) (See note 6) (See note 7) 3TW A Possible indoor units: FCQ35-7, FFQ35-60, FHQ35-7, FBQ35-7, FAQ7, FUQ7 2 Individual indoor capacities are not given because the combinations are for simultaneous operation (=indoor units installed in same room). 3 When different indoor models are used in combination, designate the infrared remote controller that is equipped with the most functions as the main unit. In note are the indoor units mentioned in order of the possible function (most functions are on FCQ, less functions are on FAQ). 4 Between brackets are the required Refnet kits mentioned, that are necessary to install the combination. 5 In case of FCQ50-7C or FCQH7C: use KHRQ58T7 otherwise, use KHRQ22M20TA8 6 In case of FCQ35-50C: use KHRQ58H7 otherwise, use KHRQ27H8 7 In case of FCQ35C: use 3x KHRQ58T7 otherwise, use 3x KHRQ22M20TA8 3 Split Sky Air Outdoor Units

14 Outdoor Units R-40A RZQ B8WB 5 Capacity tables 5-2 Cooling capacity tables RZQ00BW(Pair + Twin/triple) Cooling Coefficient of power input. 3 5 Cooling capacity Cooling capacity 400V [50Hz] Indoor temp. Outdoor ( CDB) EWB EDB ( C) ( C) SHC SHC SHC SHC D048605A SYMBOLS. 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. On the tables Q show rated capacity and rated coefficient of power input. 4. SHC is based on each EWB and EDB SHC* = SHC correction for other dry bulb SHC* = 0.02 x (m 3 /min.) x ( 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) Corresponding refrigerant piping length : 7.5 m Level difference : 0 m 6. Coefficient of power input is the percentage when the rated is defined as The value contains less than 5% error acording to indoor unit type. 8. Heating capacity include the drop of frost formation. 9. Air flow rate and BF are tabulated below. Pair Model FCQH00C FCQ00C FCQ00D FCQ00B FBQ00 FHQ00 FAQ00 FUQ (0.7) 23.5 (0.6) 30 (0.) 28 (0.6) 27 (0.20) 24 (0.4) 23 (0.0) 29 (0.07) Twin Model FCQ50Cx2 FCQ50Bx2 FFQ50x2 FBQ50x2 FHQ50x2 2.5x2 (0.2x2) 5x2 (0.6x2) 2x2 (0.6x2) 4x2 (0.5x2) 3x2 (0.x2) 0. Rated power input of each model is tabulated below. Pair Model FCQH00C FCQ00C FCQ7D FCQ7B FBQ7 FHQ7 FAQ7 FUQ7 Cooling Heating (Twin) Model FCQ35Cx3 FCQ35Bx3 FFQ35Bx3 FBQ35Bx3 FHQ35Bx3 Cooling Heating : Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( CWB) EDB: Entering dry bulb temp. ( CDB) : Total cooling/heating capacity SHC: Sensible heating capacity PI: Power input (comp.+indoor+outdoor fan motor) : Coefficient of power input. Caution: and SHC are shown by kw Triple Model FCQ35Cx3 FCQ35Bx3 FFQ35x3 FBQ35x3 FHQ35x3 0.5x3 (0.28x3) 4x3 (0.6x3) 0x3 (0.25x3).5x3 (0.5x3) 3x3 (0.2x3) (Twin) Model FCQ50Cx2 FCQ50Bx2 FFQ50x2 FBQ50x2 FHQ50x2 Cooling Heating Split Sky Air Outdoor Units 4

15 5 Capacity tables 5-2 Cooling capacity tables RZQ25BW (Pair + Twin / triple / double twin) Outdoor Units R-40A RZQ B8WB 5 Cooling Coefficient of power input. Capacity range Rated point Cooling capacity Cooling capacity 400V [50Hz] Indoor temp. Outdoor ( CDB) EWB EDB ( C) ( C) SHC SHC SHC SHC D048606B SYMBOLS. 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. On the tables Q show rated capacity and rated coefficient of power input. 4. SHC is based on each EWB and EDB SHC* = SHC correction for other dry bulb SHC* = 0.02 x (m 3 /min.) x ( 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) Corresponding refrigerant piping length : 5.0 m Level difference : 0 m 6. Coefficient of power input is the percentage when the rated is defined as The value contains less than 5% error acording to indoor unit type. 8. Heating capacity include the drop of frost formation. 9. Air flow rate and BF are tabulated below. Pair Model FCQH25C FCQ25C FCQ25D FCQ25B FBQ25 FHQ25 FUQ25 FDQ (0.9) 27.5 (0.9) 30 (0.3) 3 (0.07) 35 (0.4) 30 (0.3) 32 (0.07) 45 (0.25) Twin Model FCQ60Cx2 FCQ60Bx2 FFQ60x2 FBQ60x2 FHQ60x2 3.5x2 (0.2x2) 8x2 (0.x2) 5x2 (0.x2) 9x2 (0.x2) 7x2 (0.2x2) : Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( CWB) EDB: Entering dry bulb temp. ( CDB) : Total cooling/heating capacity SHC: Sensible heating capacity PI: Power input (comp.+indoor+outdoor fan motor) : Coefficient of power input. Caution: and SHC are shown by kw Triple Model FCQ50Cx3 FCQ50Bx3 FFQ50x3 FBQ35x3 FHQ50x3 2.5x3 (0.2x3) 5x3 (0.6x3) 2x3 (0.6x3) 4x3 (0.5x3) 3x3 (0.x3) Double twin Model FCQ35Cx4 FCQ35Bx4 FFQ35x4 FBQ35x4 FHQ35x4 0.5x4 (0.28x4) 4x4 (0.6x4) 0x4 (0.25x4).5x4 (0.5x4) 3x4 (0.2x4) 0. Rated power input of each model is tabulated below. Pair Model FCQH25C FCQ25C FCQ25D FCQ25B FBQ25 FHQ25 FUQ25 FDQ25 Cooling Heating Twin Model FCQ50Cx3 FCQ60Bx2 FFQ60x2 FBQ60x2 FHQ60x2 Cooling Heating Triple Model FCQ50Cx3 FCQ50Bx3 FFQ50x3 FBQ50x3 FHQ50x3 Cooling Heating Double twin Model FCQ35Cx4 FCQ35Bx4 FFQ35x4 FBQ35x4 FHQ35x4 Cooling Heating Split Sky Air Outdoor Units

16 Outdoor Units R-40A RZQ B8WB 5 Capacity tables 5-2 Cooling capacity tables RZQ40BW (Pair + Twin / triple / double twin) Cooling Coefficient of power input. 3 5 Capacity range Cooling capacity Cooling capacity 400V [50Hz] Indoor temp. Outdoor ( CDB) EWB EDB ( C) ( C) SHC SHC SHC SHC D048607A SYMBOLS. 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. On the tables Q show rated capacity and rated coefficient of power input. 4. SHC is based on each EWB and EDB SHC* = SHC correction for other dry bulb SHC* = 0.02 x (m 3 /min.) x ( 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) Corresponding refrigerant piping length : 5.0 m Level difference : 0 m 6. Coefficient of power input is the percentage when the rated is defined as The value contains less than 5% error acording to indoor unit type. 8. Heating capacity include the drop of frost formation. 9. Air flow rate and BF are tabulated below. Pair Model FCQH40C FCQ40C FCQ40D 32.5 (0.20) 27.5 (0.22) 30 (0.07) Twin Model FCQ7Cx2 FCQ7Bx2 FBQ7x2 FHQ7x2 FUQ7x2 FAQ7x2 5.5x2 (0.9x2) 8x2 (0.x2) 9x2 (0.x2) 7x2 (0.x2) 9x2 (0.07x2) 9x2 (0.08x2) Rated point : Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( CWB) EDB: Entering dry bulb temp. ( CDB) : Total cooling/heating capacity SHC: Sensible heating capacity PI: Power input (comp.+indoor+outdoor fan motor) : Coefficient of power input. Caution: and SHC are shown by kw Triple Model FCQ50Cx3 FCQ50Bx3 FFQ50x3 FBQ50x3 FHQ50x3 2.5x3 (0.2x3) 5x3 (0.6x3) 2x3 (0.6x3) 4x3 (0.5x3) 3x3 (0.x3) Double twin Model FCQ35Cx4 FCQ35Bx4 FFQ35x4 FBQ35x4 FHQ35x4 0.5x4 (0.28x4) 4x4 (0.6x4) 0x4 (0.25x4).5x4 (0.5x4) 3x4 (0.2x4) 0. Rated power input of each model is tabulated below. Pair Model FCQH40C FCQ40C FCQ40D Cooling Heating Twin Model FCQ7Cx2 FCQ7Bx2 FBQ7x2 FHQ7x2 FUQ7x2 FAQ7x2 Cooling Heating Triple Model FCQ50Cx3 FCQ50Bx3 FFQ50x3 FBQ50x3 FHQ50x3 Cooling Heating Double twin Model FCQ35Cx4 FCQ35Bx4 FFQ35x4 FBQ35x4 FHQ35x4 Cooling Heating Split Sky Air Outdoor Units 6

17 5 Capacity tables 5-2 Cooling capacity tables RZQ40BW (Pair) Outdoor Units R-40A RZQ B8WB 5 Cooling Coefficient of power input. Cooling capacity 400V [50Hz] Indoor temp. Outdoor ( CDB) EWB EDB ( C) ( C) SHC SHC SHC SHC TW2849- SYMBOLS. This capacity table is only valid for pair combination with FBQ40 2. Ratings shown are net capacities which include a deduction for indoor fan motor heat 3. 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. 4. On the tables Q show rated capacity and rated coefficient of power input. 5. SHC is based on each EWB and EDB SHC* = SHC correction for other dry bulb SHC* = 0.02 x (m 3 /min.) x ( BF) x (DB* EDB) Add SHC* to SHC. 6. 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 : 7.5 m Level difference : 0 m 7. Coefficient of power input is the percentage when the rated is defined as The value contains less than 5% error acording to indoor unit type. 9. Heating capacity include the drop of frost formation. 0. Air flow rate and BF are tabulated below. Pair Model Cooling capacity FBQ40 35 (0.4). Rated power input of each model is tabulated below. Pair Outdoor RZQ40C7 Indoor RZQ40C7 Cooling 4.76kW Heating 4.82kW Capacity range (Rated point) : Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( CWB) EDB: Entering dry bulb temp. ( CDB) : Total cooling/heating capacity SHC: Sensible heating capacity PI: Power input (comp.+indoor+outdoor fan motor) : Coefficient of power input. Caution: and SHC are shown by kw 7 Split Sky Air Outdoor Units

18 Outdoor Units R-40A RZQ B8WB 5 Capacity tables 5-2 Cooling capacity tables RZQ-B/C Capacity in function of field piping length for non-inverter 3 5 Capacity (%) Cooling Heating length (m) 3TW Split Sky Air Outdoor Units 8

19 5 Capacity tables 5-3 Heating capacity tables RZQ00BW (Pair + Twin/triple) Outdoor Units R-40A RZQ B8WB 5 Heating Coefficient of power input. Capacity range Rated point Heating capacity Heating capacity 400V [50Hz] Indoor Outdoor temp. ( CWB) EDB ( C) 6.O O O O D048605A SYMBOLS. 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. On the tables Q show rated capacity and rated coefficient of power input. 4. SHC is based on each EWB and EDB SHC* = SHC correction for other dry bulb SHC* = 0.02 x (m 3 /min.) x ( BF) x (DB* EDB) AddSHC*toSHC. 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 m 6. Coefficient of power input is the percentage when the rated is defined as The value contains less than 5% error acording to indoor unit type. 8. Heating capacity include the drop of frost formation. 9. Air flow rate and BF are tabulated below. Pair Model FCQH00C FCQ00C FCQ00D FCQ00B FBQ00 FHQ00 FAQ00 FUQ (0.7) 23.5 (0.6) 30 (0.) 28 (0.6) 27 (0.20) 24 (0.4) 23 (0.0) 29 (0.07) Twin Model FCQ50Cx2 FCQ50Bx2 FFQ50x2 FBQ50x2 FHQ50x2 2.5x2 (0.2x2) 5x2 (0.6x2) 2x2 (0.6x2) 4x2 (0.5x2) 3x2 (0.x2) : Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( CWB) EDB: Entering dry bulb temp. ( CDB) : Total cooling/heating capacity SHC: Sensible heating capacity PI: Power input (comp.+indoor+outdoor fan motor) : Coefficient of power input. Caution: and SHC are shown by kw Triple Model FCQ35Cx3 FCQ35Bx3 FFQ35x3 FBQ35x3 FHQ35x3 0.5x3 (0.28x3) 4x3 (0.6x3) 0x3 (0.25x3).5x3 (0.5x3) 3x3 (0.2x3) 0. Rated power input of each model is tabulated below. Pair Model FCQH00C FCQ00C FCQ7D FCQ7B FBQ7 FHQ7 FAQ7 FUQ7 Cooling Heating (Twin) Model FCQ35Cx3 FCQ35Bx3 FFQ35Bx3 FBQ35Bx3 FHQ35Bx3 Cooling Heating (Twin) Model FCQ50Cx2 FCQ50Bx2 FFQ50x2 FBQ50x2 FHQ50x2 Cooling Heating Split Sky Air Outdoor Units

20 Outdoor Units R-40A RZQ B8WB 5 Capacity tables 5-3 Heating capacity tables RZQ25BW (Pair + Twin / triple / double twin) Heating Coefficient of power input. 3 5 Capacity range Rated point Heating capacity Heating capacity 400V [50Hz] Indoor Outdoor temp. ( CWB) EDB ( C) 6.O O O O D048606B SYMBOLS. 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. On the tables Q show rated capacity and rated coefficient of power input. 4. SHC is based on each EWB and EDB SHC* = SHC correction for other dry bulb SHC* = 0.02 x (m 3 /min.) x ( 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) Corresponding refrigerant piping length : 5.0 m Level difference : 0 m 6. Coefficient of power input is the percentage when the rated is defined as The value contains less than 5% error acording to indoor unit type. 8. Heating capacity include the drop of frost formation. 9. Air flow rate and BF are tabulated below. Pair Model FCQH25C FCQ25C FCQ25D FCQ25B FBQ25 FHQ25 FUQ25 FDQ (0.9) 27.5 (0.9) 30 (0.3) 3 (0.07) 35 (0.4) 30 (0.3) 32 (0.07) 45 (0.25) Twin Model FCQ60Cx2 FCQ60Bx2 FFQ60x2 FBQ60x2 FHQ60x2 3.5x2 (0.2x2) 8x2 (0.x2) 5x2 (0.x2) 9x2 (0.x2) 7x2 (0.2x2) : Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( CWB) EDB: Entering dry bulb temp. ( CDB) : Total cooling/heating capacity SHC: Sensible heating capacity PI: Power input (comp.+indoor+outdoor fan motor) : Coefficient of power input. Caution: and SHC are shown by kw Triple Model FCQ50Cx3 FCQ50Bx3 FFQ50x3 FBQ35x3 FHQ50x3 2.5x3 (0.2x3) 5x3 (0.6x3) 2x3 (0.6x3) 4x3 (0.5x3) 3x3 (0.x3) Double twin Model FCQ35Cx4 FCQ35Bx4 FFQ35x4 FBQ35x4 FHQ35x4 0.5x4 (0.28x4) 4x4 (0.6x4) 0x4 (0.25x4).5x4 (0.5x4) 3x4 (0.2x4) 0. Rated power input of each model is tabulated below. Pair Model FCQH25C FCQ25C FCQ25D FCQ25B FBQ25 FHQ25 FUQ25 FDQ25 Cooling Heating Twin Model FCQ50Cx3 FCQ60Bx2 FFQ60x2 FBQ60x2 FHQ60x2 Cooling Heating Triple Model FCQ50Cx3 FCQ50Bx3 FFQ50x3 FBQ50x3 FHQ50x3 Cooling Heating Double twin Model FCQ35Cx4 FCQ35Bx4 FFQ35x4 FBQ35x4 FHQ35x4 Cooling Heating Split Sky Air Outdoor Units 20

21 5 Capacity tables 5-3 Heating capacity tables RZQ40BW (Pair + Twin / triple / double twin) Outdoor Units R-40A RZQ B8WB 5 Heating Coefficient of power input. Capacity range Rated point Heating capacity Heating capacity 400V [50Hz] Indoor Outdoor temp. ( CWB) EDB ( C) 6.O O O O D048607A SYMBOLS. 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. On the tables Q show rated capacity and rated coefficient of power input. 4. SHC is based on each EWB and EDB SHC* = SHC correction for other dry bulb SHC* = 0.02 x (m 3 /min.) x ( 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) Corresponding refrigerant piping length : 5.0 m Level difference : 0 m 6. Coefficient of power input is the percentage when the rated is defined as The value contains less than 5% error acording to indoor unit type. 8. Heating capacity include the drop of frost formation. 9. Air flow rate and BF are tabulated below. Pair Model FCQH40C FCQ40C FCQ40D 32.5 (0.20) 27.5 (0.22) 30 (0.07) Twin Model FCQ7Cx2 FCQ7Bx2 FBQ7x2 FHQ7x2 FUQ7x2 FAQ7x2 5.5x2 (0.9x2) 8x2 (0.x2) 9x2 (0.x2) 7x2 (0.x2) 9x2 (0.07x2) 9x2 (0.08x2) 0. Rated power input of each model is tabulated below. Pair Model FCQH40C FCQ40C FCQ40D Cooling Heating Twin Model FCQ7Cx2 FCQ7Bx2 FBQ7x2 FHQ7x2 FUQ7x2 FAQ7x2 Cooling Heating : Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( CWB) EDB: Entering dry bulb temp. ( CDB) : Total cooling/heating capacity SHC: Sensible heating capacity PI: Power input (comp.+indoor+outdoor fan motor) : Coefficient of power input. Caution: and SHC are shown by kw Triple Model FCQ50Cx3 FCQ50Bx3 FFQ50x3 FBQ50x3 FHQ50x3 2.5x3 (0.2x3) 5x3 (0.6x3) 2x3 (0.6x3) 4x3 (0.5x3) 3x3 (0.x3) Double twin Model FCQ35Cx4 FCQ35Bx4 FFQ35x4 FBQ35x4 FHQ35x4 0.5x4 (0.28x4) 4x4 (0.6x4) 0x4 (0.25x4).5x4 (0.5x4) 3x4 (0.2x4) Triple Model FCQ50Cx3 FCQ50Bx3 FFQ50x3 FBQ50x3 FHQ50x3 Cooling Heating Double twin Model FCQ35Cx4 FCQ35Bx4 FFQ35x4 FBQ35x4 FHQ35x4 Cooling Heating Split Sky Air Outdoor Units

22 Outdoor Units R-40A RZQ B8WB 5 Capacity tables 5-3 Heating capacity tables RZQ40BW (Pair) Heating Coefficient of power input. 3 5 Heating capacity Capacity range (Rated point) Heating capacity 400V [50Hz] Indoor Outdoor temp. ( CWB) EDB ( C) 6.O O O O TW2849- SYMBOLS. This capacity table is only valid for pair combination with FBQ40 2. Ratings shown are net capacities which include a deduction for indoor fan motor heat 3. 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. 4. On the tables Q show rated capacity and rated coefficient of power input. 5. SHC is based on each EWB and EDB SHC* = SHC correction for other dry bulb SHC* = 0.02 x (m 3 /min.) x ( BF) x (DB* EDB) Add SHC* to SHC. 6. 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 : 7.5 m Level difference : 0 m 7. Coefficient of power input is the percentage when the rated is defined as The value contains less than 5% error acording to indoor unit type. 9. Heating capacity include the drop of frost formation. 0. Air flow rate and BF are tabulated below. Pair Model FBQ40 35 (0.4). Rated power input of each model is tabulated below. Pair Outdoor RZQ40C7 Indoor RZQ40C7 Cooling 4.76kW Heating 4.82kW : Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( CWB) EDB: Entering dry bulb temp. ( CDB) : Total cooling/heating capacity SHC: Sensible heating capacity PI: Power input (comp.+indoor+outdoor fan motor) : Coefficient of power input. Caution: and SHC are shown by kw Split Sky Air Outdoor Units 22

23 Outdoor Units R-40A RZQ B8WB 6 Dimensional drawing & centre of gravity 6 - Dimensional drawing RZQ BW unit (mm) 6 Hole for anchor bolt 4-M2 Gas pipe connection J5.9 flare 2 Liquid pipe connection - J9.5 flare 3 Service port (in the unit) (2x) 4 Grounding terminal M5 (in switch box) 5 Refrigerant piping intake 6 Power supply wiring intake (knock hole J34) 7 Control wiring intake (knock hole J27) 8 Drain outlet 3TW Split Sky Air Outdoor Units

24 Outdoor Units R-40A RZQ B8WB 6 Dimensional drawing & centre of gravity 6-2 Centre of gravity RZQ-BW 3 6 4TW Split Sky Air Outdoor Units 24

25 Outdoor Units R-40A RZQ B8WB 7 Piping diagram RZQ BW(Pair) 7 One way One way One way Solenoid Capillary tube One way One way Heat exchanger Capillary tube Receiver Strainer Electronic expansion Capillary tube Heat exchanger 4-way Service port 5/6 Low pressure switch High pressure switch Muffler J9.5 C220T-0 J5.9 C220T-0 Compressor Service port 5/6 Indoor unit Stop (with service port 5/6 flare) Outdoor unit Heating Cooling O Check L Flare connection M Screw connection N Flange connection Z Pinched pipe P Spinned pipe 3TW RZQ BW(Twin) One way Heat exchanger One way One way Solenoid Capillary tube One way One way Heat exchanger Capillary tube Electronic expansion Receiver Strainer Capillary tube Indoor unit Service port 5/6 4-way Low pressure switch High pressure switch Muffler Heat exchanger Branch duct connection Option J9.5 C220T-0 J5.9 Service port 5/6 C220T-0 Compressor Indoor unit Stop (with service port 5/6 flare) Outdoor unit Note:. The pipes between the branch and the indoor units should have the same size as the indoor connections. O Check L Flare connection M Screw connection N Flange connection Z Pinched pipe P Spinned pipe Heating Cooling 3TW Split Sky Air Outdoor Units

26 7 Piping diagram Outdoor Units R-40A RZQ B8WB RZQ BW(Triple) Indoor unit Heat exchanger Heat exchanger Indoor unit Stop (with service port 5/6 flare) Solenoid Capillary tube Capillary tube Receiver One way One way One way Strainer One way One way Electronic expansion Capillary tube Heat exchanger 3 7 Service port 5/6 J9.5 4-way C220T-0 J5.9 Low pressure switch High pressure switch Muffler Heat exchanger Indoor unit Branch duct connection Option C220T-0 Compressor Service port 5/6 Note:. The pipes between the branch and the indoor units should have the same size as the indoor connections. Outdoor unit O Check L Flare connection M Screw connection N Flange connection Z Pinched pipe P Spinned pipe RZQ BW(Double twin) Heat exchanger Indoor unit Heating Cooling 3TW One way One way One way Heat exchanger Indoor unit J9.5 J5.9 Solenoid Capillary tube Capillary tube Receiver One way Strainer One way Electronic expansion Capillary tube Heat exchanger Heat exchanger Indoor unit Branch duct connection Option J9.5 C220T-0 J5.9 C220T-0 Low pressure sensor Compressor 4-way High pressure switch Muffler Service port 5/6 Service port 5/6 Heat exchanger J9.5 Outdoor unit Heating Cooling J5.9 Stop (with service port 5/6 flare) Note:. The pipes between the branch and the indoor units should have the same size as the indoor connections. O Check L Flare connection M Screw connection N Flange connection Z Pinched pipe P Spinned pipe 3TW Split Sky Air Outdoor Units 26

27 8 Wiring diagram 8 - Wiring diagram Outdoor Units R-40A RZQ B8WB RZQ BW 8 L N : Live : Neutral : Field wiring : Protective earth (screw) : Wire clamp : Terminal : Connector : Relay connector Indoor Outdoor NOTE. Colours BLK: Black / ORG: Orange / BLU: Blue / WHT: White / RED: Red / YLW:Yellow / BRN: Brown / GRN: Green ON OFF :. Refer to the optional manual, for connection wiring to X6A. 2. Confirm the method of setting the selector switches (DS) by service manual. When the unit is shipped by factory all switches are set to be off. El. comp. assy front View A Reactor box AP A2P BS C-C2-C3 DS FU (A2P) F2U F3U F4U HAP (AP) HAP (A2P) HP (AP) Printed circuit board Printed circuit board (INV) Push button switch (forced defrost / pump down) Capacitor Dip switch Fuse (T 6,3A/250V) Fuse (T 6,3A/250V) Fuse (B 0A/250V) Fuse (B 0A/250V) Light emitting diode (service monitor green) Light emitting diode (service monitor green) Light emitting diode (service monitor red) KM(A2P) KR(AP) K2R(AP) K3R(AP) K4R, K5R LR MC MF PS QDI R-R2 Magnetic contactor Magnetic relay (YS) Magnetic relay (Y2S) Magnetic relay (EHC) Magnetic relay Reactor Motor compressor Motor fan Power circuit Earth leakage breaker (30mA) Resistor RT R2T R3T R4T R5T SPH SNPL RC VR Thermistor (air) Thermistor (coil) Thermistor (discharge pipe) Thermistor (suction pipe) Thermistor (power module) Pressure switch (high) Pressure sensor (low) Signal receiver circuit Signal transmission circuit Power module V2R-V3R VT X6A XM YE YS Y2S ZC, Z2C Z3C, Z4C ZF ZF Diode module IGBT Connector (Option) Terminal strip Expansion 4-way Solenoid Noise filter Noise filter Noise filter (with surge absorber) 2TW Split Sky Air Outdoor Units

28 9 Sound data Outdoor Units R-40A RZQ B8WB 9 - Sound pressure spectrum RZQ00BW - Cooling RZQ00BW - Heating 3 Sound pressure level [db(a)] Sound pressure level [db(a)] 9 3TW Octave band center frequency (Hz) 3TW Octave band center frequency (Hz) Data is valid at free field condition 2 Data is valid at nominal conditions. 3 db(a) = A-weighted sound pressure level (A-scale according to IEC) 4 Reference acoustic pressure 0dB = 20μPa Measuring location (discharge side) Data is valid at free field condition 2 Data is valid at nominal conditions. 3 db(a) = A-weighted sound pressure level (A-scale according to IEC) 4 Reference acoustic pressure 0dB = 20μPa Measuring location (discharge side) RZQ25BW - Cooling RZQ25BW - Heating Sound pressure level [db(a)] Sound pressure level [db(a)] 3TW Octave band center frequency (Hz) 3TW Octave band center frequency (Hz) Data is valid at free field condition 2 Data is valid at nominal conditions. 3 db(a) = A-weighted sound pressure level (A-scale according to IEC) 4 Reference acoustic pressure 0dB = 20μPa Measuring location (discharge side) Data is valid at free field condition 2 Data is valid at nominal conditions. 3 db(a) = A-weighted sound pressure level (A-scale according to IEC) 4 Reference acoustic pressure 0dB = 20μPa Measuring location (discharge side) Split Sky Air Outdoor Units 28

29 9 Sound data 9 - Sound pressure spectrum Outdoor Units R-40A RZQ B8WB RZQ40BW - Cooling RZQ40BW - Heating 9 Sound pressure level [db(a)] Sound pressure level [db(a)] 3TW Octave band center frequency (Hz) 3TW Octave band center frequency (Hz) Data is valid at free field condition 2 Data is valid at nominal conditions. 3 db(a) = A-weighted sound pressure level (A-scale according to IEC) 4 Reference acoustic pressure 0dB = 20μPa Measuring location (discharge side) Data is valid at free field condition 2 Data is valid at nominal conditions. 3 db(a) = A-weighted sound pressure level (A-scale according to IEC) 4 Reference acoustic pressure 0dB = 20μPa Measuring location (discharge side) 29 Split Sky Air Outdoor Units

30 9 Sound data Outdoor Units R-40A RZQ B8WB 9-2 Sound power spectrum RZQ00BW - Cooling RZQ25BW - Cooling 3 Sound pressure level [db(a)] Sound pressure level [db(a)] 9 3TW Octave band center frequency (Hz) 3TW Octave band center frequency (Hz) Data is valid at free field condition 2 Data is valid at nominal conditions. 3 db(a) = A-weighted sound pressure level (A-scale according to IEC) 4 Reference acoustic pressure 0dB = 20μPa Data is valid at free field condition 2 Data is valid at nominal conditions. 3 db(a) = A-weighted sound pressure level (A-scale according to IEC) 4 Reference acoustic pressure 0dB = 20μPa RZQ40BW - Cooling Sound pressure level [db(a)] 3TW Octave band center frequency (Hz) Data is valid at free field condition 2 Data is valid at nominal conditions. 3 db(a) = A-weighted sound pressure level (A-scale according to IEC) 4 Reference acoustic pressure 0dB = 20μPa Split Sky Air Outdoor Units 30

31 Outdoor Units R-40A RZQ B8WB 0 Installation 0 - Installation method RZQ BW 0 A. Non stacked installation Legend Suction side obstacle Discharge side obstacle Left side obstacle Right side obstacle Top side obstacle Obstacle is present In these cases, close the bottom of the installation frame to prevent discharged air from being bypassed. In these cases, only 2 units can be installed. This situation is not allowed. B. Stacked installation Figures between ( ) indicate the dimensions only for the class models.. Obstacles exist in front of the outlet side 2. Obstacles exist in front of the air inlet Do not stack more than one unit. About 00mm is required as the dimension for laying the upper outdoor unit s drain pipe. Get the portion A sealed so that air from the outlet does not bypass. C. Multiple-row installation. Installation of one unit per row 2. Installing multiple units (2 units or more) in lateral connection per row Relation of dimensions of H, A, and L are shown in the table below. L H H < L L A 0<L /2 H 50 (250) /2H<L 200(300) Installation impossible 3TW Split Sky Air Outdoor Units

32 Operation range Outdoor Units R-40A RZQ B8WB RZQ-BW Cooling Model name 3 RZQ00B7WB RZQ25B7WB RZQ40B7WB Outdoor temp. ( CDB) Operation range Allowable range of operation (pull-down) Outdoor temp. ( CWB) Heating Allowable range of operation (warming-up) Operation range Indoor temp. ( CWB) Notes: - Depending on operation and installation conditions, the indoor unit can change over to freeze-up operation (indoor de-icing). - 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. Indoor temp. ( CDB) 3TW26733-A Split Sky Air Outdoor Units 32

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