technical data air conditioning systems RQ-B7 Pair/Twin/Triple/Double Twin Application Split Sky Air
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1 technical data RQ-B7 Pair/Twin/Triple/Double Twin Application air conditioning systems Split Sky Air
2 Split - Sky Air ISO14001 assures an effective environmental management system in order to help protect human health and the environment from the potential impact of our activities, products and services and to assist in maintaining and improving the quality of the environment Daikin units comply with the European regulations that guarantee the safety of the product. Daikin Europe N.V. is approved by LRQA for its Quality Management System in accordance with the ISO9001 standard. ISO9001 pertains to quality assurance regarding design, development, manufacturing as well as to services related to the product. 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. Specifications are subject to change without prior notice. Zandvoordestraat 300 B Ostend Belgium EEDE05-1/3 05/2005 Prepared in Belgium by Goekint Graphics
3 TABLE OF CONTENTS RQ-B7 1 Features Specifications Technical Specifications Electrical Specifications Electrical data Safety device settings Options Capacity tables Combination table Cooling capacity tables Cooling capacity tables simultaneous operation Heating capacity tables Heating capacity tables simultaneous operation Dimensional drawing & centre of gravity Dimensional drawing Centre of gravity Piping diagram Wiring diagram Wiring diagram External connection diagram Sound data Sound pressure spectrum Sound power spectrum Operation range Split Sky Air Outdoor Units 1
4 t i l t Outdoor Units R-410A RQ-B7 o a o 07 d 1B 4- puq - RO S1 Features 1 Outdoor units for pair, twin, triple, double twin application 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 a scroll compressor, renowned for low noise and high energy efficiency. The piping connections can be accessed from underneath, front, side or rear. The sevice valves are hidden inside the casing. A special acryl precoated fin for anti-corrosion treatment on the heat exchanger ensures greater resistance against severe weather conditions 2 Split Sky Air Outdoor Units
5 2 Specifications 2-1 TECHNICAL SPECIFICATIONS RQB7V3B RQB7W1B RQB7V3B RQB7W1B RQ125B7W1B Casing Colour Daikin White Material Painted galvanized steel plate Dimensions Packing Height mm Width mm Depth mm Unit Height mm Width mm Depth mm Weight Machine Weight kg Gross Weight kg Heat Exchanger Dimensions Length mm Nr of Rows Fin Pitch mm Nr of Passes Face Area m Nr of Stages Tube type Hi-XSS cooling tube Fin Type Non-symmetric waffle louvre Treatment Anti-corrosion treatment (PE) Fan Type Direct Drive Propeller Discharge direction Horizontal Quantity Air Flow Rate Cooling m 3 /min (nominal) Heating m 3 /min Motor Quantity Model P47L11S Position Lower Motor Speed (nominal Steps at 230V) Fan Motor Output W Drive direct drive Position Upper Motor Speed (nominal Steps 3 at 230V) Fan Motor Output W 65 Drive direct drive Compressor Quantity Motor Model JT90G-V1N JT90G-YE JT125G-V1N JT125G-YE JT160G-YE Type Hermetically sealed scroll compressor Motor Output W Starting Method Direct Crankcase W Heater Operation Range Cooling Min CDB Max CDB Heating Min CWB Max CWB Sound Level (nominal) Cooling Sound Power Sound Pressure dba dba Refrigerant Type R-410A Charge kg Control Expansion valve (electronic type) Nr of Circuits Split Sky Air Outdoor Units 3
6 2 2-1 TECHNICAL SPECIFICATIONS RQB7V3B RQB7W1B RQB7V3B RQB7W1B RQ125B7W1B Refrigerant Oil Type Daphne FVC68D Charged Volume l Piping Liquid (OD) Quantity connections Type Flare connection Diameter (OD) mm Gas Quantity Type Flare connection Diameter (OD) mm Drain Quantity Type Hole Diameter mm (OD) Piping Length Minimum m Maximum m Equivalent m Chargeless m Installation height difference Maximum m Max. internunit level difference m Heat Insulation Both liquid and gas pipes Defrost Method Reversed cycle Defrost Control Sensor for outdoor heat exchanger temperature Capacity Control Method None Safety Devices Reverse phase protector PC board fuse Overcurrent relay (compressor) Low pressure switch High pressure switch Fan motor thermal protector Standard Item Declaration of conformity Accessories Quantity Item Installation manual Quantity Split Sky Air Outdoor Units
7 2 Specifications 2-2 ELECTRICAL SPECIFICATIONS RQB7V3B RQB7W1B RQB7V3B RQB7W1B RQ125B7W1B Power Supply Name V3 W1 V3 W1 W1 Phase 1 3N 1 3N 3N Frequency Hz Voltage V Current Recomended fuses A Voltage range Minimum V Maximum V Wiring connections Power Supply Intake For Power Supply Quantity Remark 3 wires (earth wire included) 5 wires (earth wire included) 3 wires (earth wire included) 5 wires (earth wire included) 5 wires (earth wire included) For connection Quantity with indoor Remark 4 wires (earth wire included) Outdoor unit only 2 1 Sound pressure level is a relative value, depending on the distance and acoustic environment. For more details, please refer to sound level drawings of this chapter. 2 The sound power level is an absolute value indicating the power which a sound source generates. 3 Sound values are measured in a semi-anechoic room. 4 Heating capacity is only applicable for combination with heat pump outdoor unit. 5 In case of drain piping for outdoor unit, drain piping kit (option) is needed. 6 Nominal cooling capacities are based on : indoor temperature : 27 CDB, 19 CWB, outdoor temperature : 35 CDB, equivalent refrigerant piping : 7.5m, level difference : 0m. 7 Nominal heating capacities are based on : indoor temperature : 20 CDB, outdoor temperature : 7 CDB, 6 CWB, equivalent refrigerant piping : 7.5m, level difference : 0m. Split Sky Air Outdoor Units 5
8 2 2 Specifications 2-3 Electrical data Electrical data Unit combination Power supply Comp. OFM IFM Indoor unit Outdoor unit Hz-volts Voltage range MCA TOCA MFA MSC RLA kw FLA kw FLA FCQ RQB7V3B FUQ RQB7V3B Max. 50Hz-2 FHQ RQB7V3B V Min. 50Hz-207V FAQ RQB7V3B FBQ RQB7V3B FCQ RQB7W1B / FUQ RQB7W1B / Max. 50Hz-440/253V FHQ RQB7W1B / Min. 50Hz-0/207V FAQ RQB7W1B / FBQ RQB7W1B / SYMBOLS MCA : Min. Circuit Amps TOCA : Total Over Current Amps MFA : Max. Fuse Amps (See note 7) LRA : Locked Rotor Amps RLA : Rated Load Amps OFM : Outdoor Fan Motor IFM : Indoor Fan Motor FLA : Full Load Amps kw : Fan Motor Rated Output 1 RLA is based on the following conditions: Indoor temperature 27 CDB/19.5 CWB Outdoor temperature 35 CDB 2 TOCA means the total value of each OC set 3 Voltage range 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/MFA MCA = 1.25 x RLA + all FLA MFA 2.25 x RLA + all FLA (next lower standard fuse rating min 16A) 6 Select wire size based on the larger value of MCA or TOCA 7 Instead of fuse, use circuit breaker 8 For more details concerning conditional connections, see select Daikin Documentation and select conditional connection, the requested product type and English from the drop down lists, click the search button. Finally, click on the document title of your choice. 3TW A 6 Split Sky Air Outdoor Units
9 2 Specifications 2-3 Electrical data Electrical data 2 Unit combination Power supply Comp. OFM IFM Indoor unit Outdoor unit Hz-volts Voltage range MCA TOCA MFA MSC RLA kw FLA kw FLA FCQ RQB7V3B FUQ RQB7V3B Max. 50Hz-2 FHQ RQB7V3B V Min. 50Hz-207V FAQ RQB7V3B FBQ RQB7V3B FCQ RQB7W1B / FUQ RQB7W1B / Max. 50Hz-440/253V FHQ RQB7W1B / Min. 50Hz-0/207V FAQ RQB7W1B / FBQ RQB7W1B / SYMBOLS MCA : Min. Circuit Amps TOCA : Total Over Current Amps MFA : Max. Fuse Amps (See note 7) LRA : Locked Rotor Amps RLA : Rated Load Amps OFM : Outdoor Fan Motor IFM : Indoor Fan Motor FLA : Full Load Amps kw : Fan Motor Rated Output 1 RLA is based on the following conditions: Indoor temperature 27 CDB/19.5 CWB Outdoor temperature 35 CDB 2 TOCA means the total value of each OC set 3 Voltage range 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/MFA MCA = 1.25 x RLA + all FLA MFA 2.25 x RLA + all FLA (next lower standard fuse rating min 16A) 6 Select wire size based on the larger value of MCA or TOCA 7 Instead of fuse, use circuit breaker 8 For more details concerning conditional connections, see select Daikin Documentation and select conditional connection, the requested product type and English from the drop down lists, click the search button. Finally, click on the document title of your choice. 3TW B Split Sky Air Outdoor Units 7
10 2 2 Specifications 2-3 Electrical data Electrical data Unit combination Power supply Comp. OFM IFM Indoor unit Outdoor unit Hz-volts Voltage range MCA TOCA MFA MSC RLA kw FLA kw FLA FCQ125 RQ125B7W1B / FUQ125 RQ125B7W1B / FHQ125 RQ125B7W1B /230 Max. 50Hz-440/253V Min. 50Hz-0/207V FBQ125 RQ125B7W1B / FDQ125 RQ125B7W1B / SYMBOLS MCA : Min. Circuit Amps TOCA : Total Over Current Amps MFA : Max. Fuse Amps (See note 7) LRA : Locked Rotor Amps RLA : Rated Load Amps OFM : Outdoor Fan Motor IFM : Indoor Fan Motor FLA : Full Load Amps kw : Fan Motor Rated Output 1 RLA is based on the following conditions: Indoor temperature 27 CDB/19.5 CWB Outdoor temperature 35 CDB 2 TOCA means the total value of each OC set 3 Voltage range 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/MFA MCA = 1.25 x RLA + all FLA MFA 2.25 x RLA + all FLA (next lower standard fuse rating min 16A) 6 Select wire size based on the larger value of MCA or TOCA 7 Instead of fuse, use circuit breaker 8 For more details concerning conditional connections, see select Daikin Documentation and select conditional connection, the requested product type and English from the drop down lists, click the search button. Finally, click on the document title of your choice. 3TW269-9B 8 Split Sky Air Outdoor Units
11 2 Specifications 2-4 Safety device settings R(Q)(R)-125B7 2 Safety device Model Fan motor thermal protector HPS LPS Max discharge temperature Overcurrent relay RQB7V3B RQB7V3B RRB7V3B RRB7V3B RQB7W1B RQB7W1B RQ125B7W1B RRB7W1B RRB7W1B RR125B7W1B Off 135 ± 5 C On 95 ± 15 C Off / Mpa On / Mpa Off / Mpa On / Mpa By thermistor and software control By overcurrent sensor and software control 4TW B Split Sky Air Outdoor Units 9
12 3 Options 3 Available option for RQ-125B7(V3,W1)B and RR-125B7(V3,W1)B Central drain plug Refrigerant branch piping Name of option Kit name RQB7 RQB7 RQ125B7 RRB7 RRB7 RR125B7 KKPJ5F180 Twin KHRQ22M20TA7 Triple - KHRQ127H7 - KHRQ127H7 3TW Split Sky Air Outdoor Units
13 4 Capacity tables 4-1 Combination table Possible combinations and standard capacity for twin and triple operation 4 Possible indoor combination Outdoor models Twin Simultaneous operation Triple OUT OUT IN IN IN IN IN RQB7V3/W1 RRB7V3/W (KHRQ22M20TA7) RQB7V3/W1 RRB7V3/W (KHRQ22M20TA7) (KHRQ22M20TA7) 35- (KHRQ22M20TA7) (KHRQ127H7) RQ125B7W1 RR125B7W (KHRQ22M20TA7) 50- (KHRQ22M20TA7) (KHRQ127H7) 1 Possible indoor types: FCQ 35- FFQ FUQ FHQ 35- FAQ FBQ 35-2 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 remote controller that is equipped with the most functions as the main unit. 4 Between brackets are the required Refnet kits mentioned, that are necessary to install the combination. 5 For unit specification of the outdoor units and the indoor units refer to the unit sepcifications mentioned for pair systems. 6 Nominal cooling capacities are based on the following conditions: indoor air temperature: 27 CDB, 19 CWB, outdoor temperature: 35 CDB. Nominal heating capacities are based on the following conditions: indoor air temperature: 20 CDB, outdoor temperature 7 CDB, 6 CWB. 3TW Split Sky Air Outdoor Units 11
14 4 4 Capacity tables 4-2 Cooling capacity tables FBQ-125B7V3B + RQ-B7V3B / RQ-125B7W1B Cooling capacity table Outdoor Indoor Outdoor temp. ( CDB) EWB EDB ( C) ( C) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI 3TW A SYMBOLS AFR: Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( CWB) EDB: Entering dry bulb temp. ( CDB) DB*: Dry bulb temp. ( CDB) TC: Total cooling/heating capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC and SHC are shown by kw V3: 230 V [50 Hz] W1: 400 V [50 Hz] 1. Ratings shown are net capacities. Influence of fan motor heat is included. 2. Shows nominal capacities 3. SHC is based on each EWB and EDB SHC* = SHC correction for other dry bulb SHC* = 0.29 x 60 x AFR (m 3 /min.) x (1 BF) x (DB* EDB)/860 Add SHC* to SHC if SHC > TC, then TC equal SHC 4. Direct interpolation is permissible. Do not extrapolate. 5. Capacities are based on following conditions: Corresponding refrigerant piping length : 7.5 m Level difference : 0 m 6. Air flow rate and BF are tabulated below. Model 125 FBQ AFR 19 BF 0.11 AFR 27 BF 0.2 AFR 35 BF Add the following corrections to power input of each model. Model Supply FBQ V W1 0 V W W Split Sky Air Outdoor Units
15 4 Capacity tables 4-2 Cooling capacity tables FCQ-125B7V3B + RQ-B7V3B / RQ-B7W1B Cooling capacity 4 Outdoor 125 EWB ( C) Indoor EDB ( C) Outdoor temperature ( CDB) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI SYMBOLS AFR: Air flow rate [m3/min.] BF: Bypass factor EWB: Entering wet bulb temp. [ CWB] EDB: Entering dry bulb temp. [ CDB] DB*: Dry bulb temp. [ CDB] TC: Total capacity cooling [kw] SHC: Sensible heat capacity [kw] PI: Power input (Comp. + indoor + outdoor fan motor) [kw] CAUTION TC and SHC are given in kw. V1/V3: 230V [50 Hz] W1: 400V [50Hz] 1 Ratings shown are net capacities. Influence on fan motor heat is included. 2 shows nominal capacities. 3 SHC is based on each EWB and EDB. SHC* = SHC correction for other dry bulb. = 0.29 x 60 x AFR [m3/min.] x (1-BF) x (DB*-EDB)/860 Add SHC* to SHC if SHC > TC, then TC = SHC. 4 Direct interpolation is permissable. Do not extrapolate. 5 Capacities are based on the folowing conditions. Corresponding refrigerant piping length: 7.5m Level difference: 0m 6 Air flow rate and BF are tabulated below. Model FCQ AFR 18 BF 0.1 AFR 28 BF 0.16 AFR BF Add the following corrections to power input of each model. Model FCQ V W1 0 V W W1 0 3TW Split Sky Air Outdoor Units 13
16 4 4 Capacity tables 4-2 Cooling capacity tables FHQ-125BUV1B + RQ-B7V3B / RQ-125B7W1B Cooling capacity Outdoor 125 EWB ( C) Indoor EDB ( C) Outdoor temperature ( CDB) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI SYMBOLS AFR: Air flow rate [m3/min.] BF: Bypass factor EWB: Entering wet bulb temp. [ CWB] EDB: Entering dry bulb temp. [ CDB] DB*: Dry bulb temp. [ CDB] TC: Total capacity cooling [kw] SHC: Sensible heat capacity [kw] PI: Power input (Comp. + indoor + outdoor fan motor) [kw] CAUTION TC and SHC are given in kw. V1/V3: 230V [50 Hz] W1: 400V [50Hz] 1 Ratings shown are net capacities. Influence on fan motor heat is included. 2 shows nominal capacities. 3 SHC is based on each EWB and EDB. SHC* = SHC correction for other dry bulb. = 0.29 x 60 x AFR [m3/min.] x (1-BF) x (DB*-EDB)/860 Add SHC* to SHC if SHC > TC, then TC = SHC. 4 Direct interpolation is permissable. Do not extrapolate. 5 Capacities are based on the folowing conditions. Corresponding refrigerant piping length: 7.5m Level difference: 0m 6 Air flow rate and BF are tabulated below. Model FHQ AFR 18 BF 0.1 AFR 24 BF 0.14 AFR BF Add the following corrections to power input of each model. Model FHQ V W1 0 V W W1 0 3TW Split Sky Air Outdoor Units
17 4 Capacity tables 4-2 Cooling capacity tables FUQ-125BUV1B + RQ-B7V3B / RQ-125B7W1B 4 Cooling capacity table Outdoor Indoor Outdoor temp. ( CDB) EWB EDB ( C) ( C) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI 3TW A SYMBOLS AFR: Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( CWB) EDB: Entering dry bulb temp. ( CDB) DB*: Dry bulb temp. ( CDB) TC: Total cooling/heating capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC and SHC are shown by kw V1/V3: 230 V [50 Hz] W1: 400 V [50 Hz] 1. Ratings shown are net capacities. Influence of fan motor heat is included. 2. Shows nominal capacities 3. SHC is based on each EWB and EDB SHC* = SHC correction for other dry bulb SHC* = 0.29 x 60 x AFR (m 3 /min.) x (1 BF) x (DB* EDB)/860 Add SHC* to SHC if SHC > TC, then TC equal SHC 4. Direct interpolation is permissible. Do not extrapolate. 5. Capacities are based on following conditions: Corresponding refrigerant piping length : 7.5 m Level difference : 0 m 6. Air flow rate and BF are tabulated below. Model 125 FUQ AFR 19 BF 0.07 AFR 29 BF 0.07 AFR 45 BF Add the following corrections to power input of each model. Model Supply FUQ V W1 0 V W W1 0 Split Sky Air Outdoor Units 15
18 4 Capacity tables Cooling capacity tables FAQ-BUV1B + RQ-B7V3B / RQ-B7W1B Cooling capacity Outdoor EWB ( C) Indoor EDB ( C) Outdoor temperature ( CDB) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI SYMBOLS FR: Air flow rate [m3/min.] BF: Bypass factor EWB: Entering wet bulb temp. [ CWB] EDB: Entering dry bulb temp. [ CDB] DB*: Dry bulb temp. [ CDB] TC: Total capacity cooling [kw] SHC: Sensible heat capacity [kw] PI: Power input (Comp. + indoor + outdoor fan motor) [kw] CAUTION TC and SHC are given in kw. V1/V3: 230V [50 Hz] W1: 400V [50Hz] 1 Ratings shown are net capacities. Influence on fan motor heat is included. 2 shows nominal capacities. 3 SHC is based on each EWB and EDB. SHC* = SHC correction for other dry bulb. = 0.29 x 60 x AFR [m3/min.] x (1-BF) x (DB*-EDB)/860 Add SHC* to SHC if SHC > TC, then TC = SHC. 4 Direct interpolation is permissable. Do not extrapolate. 5 Capacities are based on the folowing conditions. Corresponding refrigerant piping length: 7.5m Level difference: 0m 6 Air flow rate and BF are tabulated below. Model FAQ AFR 19 BF 0.08 AFR 23 BF Add the following corrections to power input of each model. Model FAQ V W1 0 V W1 0 3TW Split Sky Air Outdoor Units
19 4 Capacity tables 4-2 Cooling capacity tables FDQ125B7V3B + RQ125B7W1B Cooling capacity 4 Outdoor 125 EWB ( C) Indoor EDB ( C) Outdoor temperature ( CDB) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI SYMBOLS AFR: Air flow rate [m3/min.] BF: Bypass factor EWB: Entering wet bulb temp. [ CWB] EDB: Entering dry bulb temp. [ CDB] DB*: Dry bulb temp. [ CDB] TC: Total capacity cooling [kw] SHC: Sensible heat capacity [kw] PI: Power input (Comp. + indoor + outdoor fan motor) [kw] CAUTION TC and SHC are given in kw. V1/V3: 230V [50 Hz] W1: 400V [50Hz] 1 Ratings shown are net capacities. Influence on fan motor heat is included. 2 shows nominal capacities. 3 SHC is based on each EWB and EDB. SHC* = SHC correction for other dry bulb. = 0.29 x 60 x AFR [m3/min.] x (1-BF) x (DB*-EDB)/860 Add SHC* to SHC if SHC > TC, then TC = SHC. 4 Direct interpolation is permissable. Do not extrapolate. 5 Capacities are based on the folowing conditions. Corresponding refrigerant piping length: 7.5m Level difference: 0m 6 Air flow rate and BF are tabulated below. Model FDQ AFR BF TW Split Sky Air Outdoor Units 17
20 4 Capacity tables Cooling capacity tables simultaneous operation Simultaneous operation RQ--125B7 and RR--125B7 Cooling capacity Outdoor 125 EWB ( C) Indoor RQ RR Outdoor temperature ( CDB) Outdoor temperature ( CDB) EDB ( C) TC PI TC PI TC PI TC PI TC PI TC PI TC PI TC PI TC PI TC PI TC PI TC PI SYMBOLS EWB: Entering wet bulb temp. [ CWB] EDB: Entering dry bulb temp. [ CDB] TC: Total capacity heating [kw] PI o: Power input of outdoor unit [kw] PI corr1: Correction factor for PI depending on voltage of outdoor [kw] PI corr2: Correction factor for PI depending used indoor units [kw] PI: Total power input [kw] PI = PI o + PI corr1 + PI corr2 e.g. RQB7V3B + FBQB7V3B + FHQ35BUV1B PI = = 4.2 kw 1 Ratings shown are net capacities which include a deduction for indoor fan motor heat. 2 shows nominal capacities. 3 Capacities are based on the folowing conditions. Corresponding refrigerant piping length: 7.5m Level difference: 0m 4 Direct interpolation is permissable. Do not extrapolate. 5 Add the following correction to the power input for the different outdoor units (PI corr1). Outdoor model Power supply V3 W1 RQ RQ RR RR Add the following correction to the power input for each connected indoor unit (PI corr2). Indoor Indoor types model FBQ FHQ FFQ FCQ FAQ FUQ The total capacity does not change with differrent combination of indoor units. 3TW Split Sky Air Outdoor Units
21 4 Capacity tables 4-4 Heating capacity tables FBQ-B7V3B + RQ-B7V3B / RQ-B7W1B Heating capacity 4 Outdoor 125 Indoor Outdoor temperature ( CDB) EDB ( C) TC PI TC PI TC PI TC PI TC PI TC PI SYMBOLS FR: Air flow rate [m3/min.] BF: Bypass factor EWB: Entering wet bulb temp. [ CWB] EDB: Entering dry bulb temp. [ CDB] DB*: Dry bulb temp. [ CDB] TC: Total capacity cooling [kw] SHC: Sensible heat capacity [kw] PI: Power input (Comp. + indoor + outdoor fan motor) [kw] CAUTION TC and SHC are given in kw. V1/V3: 230V [50 Hz] W1: 400V [50Hz] 1 Ratings shown are net capacities. Influence on fan motor heat is included. 2 shows nominal capacities. 3 SHC is based on each EWB and EDB. SHC* = SHC correction for other dry bulb. = 0.29 x 60 x AFR [m3/min.] x (1-BF) x (DB*-EDB)/860 Add SHC* to SHC if SHC > TC, then TC = SHC. 4 Direct interpolation is permissable. Do not extrapolate. 5 Capacities are based on the folowing conditions. Outdoor iar: 85%RH. However, the condition on nominal capacity is 7 CDB/6 CWB. Corresponding refrigerant piping length: 7.5m Level difference: 0m 6 Air flow rate and BF are tabulated below. Model FBQ AFR 19 BF 0.11 AFR 23 BF 0.2 AFR BF Add the following corrections to power input of each model. Model FBQ V3 0 W1 0 V W W1 0 3TW Split Sky Air Outdoor Units 19
22 4 Capacity tables Heating capacity tables FCQ-125B7V3B + RQ-B7V3B / RQ-125B7W1B Heating capacity Outdoor 125 Indoor Outdoor temperature ( CDB) EDB ( C) TC PI TC PI TC PI TC PI TC PI TC PI SYMBOLS FR: Air flow rate [m3/min.] BF: Bypass factor EWB: Entering wet bulb temp. [ CWB] EDB: Entering dry bulb temp. [ CDB] DB*: Dry bulb temp. [ CDB] TC: Total capacity cooling [kw] SHC: Sensible heat capacity [kw] PI: Power input (Comp. + indoor + outdoor fan motor) [kw] CAUTION TC and SHC are given in kw. V1/V3: 230V [50 Hz] W1: 400V [50Hz] 1 Ratings shown are net capacities. Influence on fan motor heat is included. 2 shows nominal capacities. 3 SHC is based on each EWB and EDB. SHC* = SHC correction for other dry bulb. = 0.29 x 60 x AFR [m3/min.] x (1-BF) x (DB*-EDB)/860 Add SHC* to SHC if SHC > TC, then TC = SHC. 4 Direct interpolation is permissable. Do not extrapolate. 5 Capacities are based on the folowing conditions. Outdoor air: 85%RH. However, the condition on nominal capacity is 7 CDB/6 CWB. Corresponding refrigerant piping length: 7.5m Level difference: 0m 6 Air flow rate and BF are tabulated below. Model FCQ AFR 18 BF 0.1 AFR 28 BF 0.16 AFR BF Add the following corrections to power input of each model. Model FCQ V W1 0 V W W1 0 3TW Split Sky Air Outdoor Units
23 4 Capacity tables 4-4 Heating capacity tables FHQ-125BUV1B + RQ-B7V3B / RQ-125B7W1B Heating capacity 4 Outdoor 125 Indoor Outdoor temperature ( CDB) EDB ( C) TC PI TC PI TC PI TC PI TC PI TC PI SYMBOLS FR: Air flow rate [m3/min.] BF: Bypass factor EWB: Entering wet bulb temp. [ CWB] EDB: Entering dry bulb temp. [ CDB] DB*: Dry bulb temp. [ CDB] TC: Total capacity cooling [kw] SHC: Sensible heat capacity [kw] PI: Power input (Comp. + indoor + outdoor fan motor) [kw] CAUTION TC and SHC are given in kw. V1/V3: 230V [50 Hz] W1: 400V [50Hz] 1 Ratings shown are net capacities. Influence on fan motor heat is included. 2 shows nominal capacities. 3 SHC is based on each EWB and EDB. SHC* = SHC correction for other dry bulb. = 0.29 x 60 x AFR [m3/min.] x (1-BF) x (DB*-EDB)/860 Add SHC* to SHC if SHC > TC, then TC = SHC. 4 Direct interpolation is permissable. Do not extrapolate. 5 Capacities are based on the folowing conditions. Outdoor iar: 85%RH. However, the condition on nominal capacity is 7 CDB/6 CWB. Corresponding refrigerant piping length: 7.5m Level difference: 0m 6 Air flow rate and BF are tabulated below. Model FHQ AFR 17 BF 0.1 AFR 24 BF 0.14 AFR BF Add the following corrections to power input of each model. Model FHQ V W1 0 V W W1 0 3TW Split Sky Air Outdoor Units 21
24 4 Capacity tables Heating capacity tables FUQ-125BUV1B + RQ-B7V3B / RQ-125B7W1B Heating capacity Outdoor 125 Indoor Outdoor temperature ( CDB) EDB ( C) TC PI TC PI TC PI TC PI TC PI TC PI SYMBOLS FR: Air flow rate [m3/min.] BF: Bypass factor EWB: Entering wet bulb temp. [ CWB] EDB: Entering dry bulb temp. [ CDB] DB*: Dry bulb temp. [ CDB] TC: Total capacity cooling [kw] SHC: Sensible heat capacity [kw] PI: Power input (Comp. + indoor + outdoor fan motor) [kw] CAUTION TC and SHC are given in kw. V1/V3: 230V [50 Hz] W1: 400V [50Hz] 1 Ratings shown are net capacities. Influence on fan motor heat is included. 2 shows nominal capacities. 3 SHC is based on each EWB and EDB. SHC* = SHC correction for other dry bulb. = 0.29 x 60 x AFR [m3/min.] x (1-BF) x (DB*-EDB)/860 Add SHC* to SHC if SHC > TC, then TC = SHC. 4 Direct interpolation is permissable. Do not extrapolate. 5 Capacities are based on the folowing conditions. Outdoor iar: 85%RH. However, the condition on nominal capacity is 7 CDB/6 CWB. Corresponding refrigerant piping length: 7.5m Level difference: 0m 6 Air flow rate and BF are tabulated below. Model FUQ AFR 19 BF 0.07 AFR 29 BF 0.07 AFR BF Add the following corrections to power input of each model. Model FUQ V W1 0 V W W1 0 3TW Split Sky Air Outdoor Units
25 4 Capacity tables 4-4 Heating capacity tables FAQ-BUV1B + RQ-B7V3B / RQ-B7W1B 4 Heating capacity table Outdoor Indoor outdoor temperature ( CWB) EDB ( C) TC PI TC PI TC PI TC PI TC PI TC PI 3TW A SYMBOLS AFR: Air flow rate (m 3 /min) EDB: Entering dry bulb temp. ( CDB) WB: Wet bulb temperature ( CWB) TC: Total cooling/heating capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC is shown by kw V1/V3: 230 V [50 Hz] W1: 400 V [50 Hz] 1. Ratings shown are net capacities. Influence of fan motor heat is included. 2. Shows nominal capacities 3. Capacities are based on following conditions: * outdoor air : 85 % RH. however, the condition on nominal capacity is 7 CDB/6 CWB * Corresponding refrigerant piping length : 7.5 m Level difference : 0 m 4. Direct interpolation is permissible. Do not extrapolate. 5. Air flow rate and BF are tabulated below. Model FAQ AFR 19 BF 0.08 AFR 23 BF Add the following corrections to power input of each model. Model Supply FAQ V W1 0 V W1 0 Split Sky Air Outdoor Units 23
26 4 Capacity tables Heating capacity tables FDQ125B7V3B + RQ125B7W1B Heating capacity Outdoor 125 Indoor Outdoor temperature ( CDB) EDB ( C) TC PI TC PI TC PI TC PI TC PI TC PI SYMBOLS FR: Air flow rate [m3/min.] BF: Bypass factor EWB: Entering wet bulb temp. [ CWB] EDB: Entering dry bulb temp. [ CDB] DB*: Dry bulb temp. [ CDB] TC: Total capacity cooling [kw] SHC: Sensible heat capacity [kw] PI: Power input (Comp. + indoor + outdoor fan motor) [kw] CAUTION TC and SHC are given in kw. V1/V3: 230V [50 Hz] W1: 400V [50Hz] 1 Ratings shown are net capacities. Influence on fan motor heat is included. 2 shows nominal capacities. 3 SHC is based on each EWB and EDB. SHC* = SHC correction for other dry bulb. = 0.29 x 60 x AFR [m3/min.] x (1-BF) x (DB*-EDB)/860 Add SHC* to SHC if SHC > TC, then TC = SHC. 4 Direct interpolation is permissable. Do not extrapolate. 5 Capacities are based on the folowing conditions. Outdoor air: 85%RH. However, the condition on nominal capacity is 7 CDB/6 CWB. Corresponding refrigerant piping length: 7.5m Level difference: 0m 6 Air flow rate and BF are tabulated below. Model FDQ AFR BF TW Split Sky Air Outdoor Units
27 4 Capacity tables 4-5 Heating capacity tables simultaneous operation Simultaneous operation RQ--125B7 Heating capacity 4 Outdoor 125 Indoor Outdoor temperature ( CWB) EDB ( C) TC PI TC PI TC PI TC PI TC PI TC PI SYMBOLS EWB: Entering wet bulb temp. [ CWB] EDB: Entering dry bulb temp. [ CDB] TC: Total capacity heating [kw] PI o: Power input of outdoor unit [kw] PI corr1: Correction factor for PI depending on voltage of outdoor [kw] PI corr2: Correction factor for PI depending used indoor units [kw] PI: Total power input [kw] PI = PI o + PI corr1 + PI corr2 e.g. RQB7V3B + FBQB7V3B + FHQ35BUV1B PI = = 4.46 kw 1 Ratings shown are net capacities which include a deduction for indoor fan motor heat. 2 shows nominal capacities. 3 Capacities are based on the folowing conditions. Corresponding refrigerant piping length: 7.5m Level difference: 0m Outdoor air: 85% RH However, when outdoor air temperature is 7 CDB, wet bulb temperature is 6 CWB. 4 Direct interpolation is permissable. Do not extrapolate. 5 Add the following correction to the power input for the different outdoor units (PI corr1). Outdoor model Power supply V3 W1 RQ RQ Add the following correction to the power input for each connected indoor unit (PI corr2). Indoor Indoor types model FBQ FHQ FFQ FCQ FAQ FUQ The total capacity does not change with differrent combination of indoor units. 3TW Split Sky Air Outdoor Units 25
28 5 Dimensional drawing & centre of gravity Dimensional drawing RQB7 hole for anchor bolt 4-M12 LEGEND 1 Gas pipe connection ø15.9 flare 2 Liquid pipe connection ø9.5 flare 3 Service port (in the unit) 4 Grounding terminal M5 (in switch box) 5 Refrigerant piping intake 6 Power supply wiring intake (knock out hole ø34) 7 Control wiring intake (knock out hole ø27) 8 Drain outlet 3TW RQB7 hole for anchor bolt 4-M12 LEGEND 1 Gas pipe connection ø15.9 flare 2 Liquid pipe connection ø9.5 flare 3 Service port (in the unit) 4 Grounding terminal M5 (in switch box) 5 Refrigerant piping intake 6 Power supply wiring intake (knock out hole ø34) 7 Control wiring intake (knock out hole ø27) 8 Drain outlet 3TW Split Sky Air Outdoor Units
29 5 Dimensional drawing & centre of gravity 5-1 Dimensional drawing RQ125B7 5 hole for anchor bolt 4-M12 LEGEND 1 Gas pipe connection ø15.9 flare 2 Liquid pipe connection ø9.5 flare 3 Service port (in the unit) 4 Grounding terminal M5 (in switch box) 5 Refrigerant piping intake 6 Power supply wiring intake (knock out hole ø34) 7 Control wiring intake (knock out hole ø27) 8 Drain outlet 3TW264-1 Split Sky Air Outdoor Units 27
30 5 5 Dimensional drawing & centre of gravity 5-2 Centre of gravity R(Q)(R)B7 3TW B R(Q)(R)B7 3TW B 28 Split Sky Air Outdoor Units
31 5 Dimensional drawing & centre of gravity 5-2 Centre of gravity 5 R(Q)(R)125B7 3TW269-5B Split Sky Air Outdoor Units 29
32 6 Piping diagram 6 RQ-125B7 (pair) Solenoid valve Electronic expansion valve One way valve One way valve Filter Filter Heat exchanger One way valve One way valve Strainer Receiver Service port 5/16 Capillary tube One way valve Indoor unit Heat exchanger 4-way valve Filter Low pressure switch High pressure switch Muffler Field piping ø9,5 C 1220T-0 Service port 5/16 Filter Field piping ø15,9 C 1220T-0 Compressor Outdoor unit Stop valve (with service port - 5/16 flare) NOTE 1 The pipes between the branch and the indoor units should have the same size as the indoor connections. Check valve Flexible connection Flare connection Screw connection Flange connection Pinched pipe Spinned pipe 3TW RQ-125B7 (twin) Solenoid valve Electronic expansion valve Indoor unit Heat exchanger One way valve One way valve Filter Filter Heat exchanger One way valve One way valve Field piping Strainer Receiver Filter Field piping Service port 5/16 Capillary tube One way valve 4-way valve Heat exchanger Indoor unit Filter Low pressure switch High pressure switch Muffler Field piping ø9,5 C 1220T-0 Service port 5/16 Field piping ø15,9 C 1220T-0 Compressor Field piping Outdoor unit Filter Field piping Stop valve (with service port - 5/16 flare) Heating Cooling NOTE 1 The pipes between the branch and the indoor units should have the same size as the indoor connections. Check valve Flexible connection Flare connection Screw connection Flange connection Pinched pipe Spinned pipe 3TW Split Sky Air Outdoor Units
33 6 Piping diagram RQ-125B7 (triple) 6 Heat exchanger Indoor unit Solenoid valve Electronic expansion valve One way valve One way valve Filter Field piping Stop valve (with service port - 5/16 flare) Filter One way valve One way valve Heat exchanger Filter Field piping Heat exchanger Indoor unit Strainer Receiver Service port 5/16 Capillary tube One way valve Field piping ø9,5 C 1220T-0 4-way valve Filter Field piping Field piping Filter Low pressure switch High pressure switch Muffler Field piping ø15,9 C 1220T-0 Heat exchanger Indoor unit Branch pipe (option) Service port 5/16 Compressor Outdoor unit - Filter Field piping Field piping NOTE 1 The pipes between the branch and the indoor units should have the same size as the indoor connections. Check valve Flexible connection Flare connection Screw connection Flange connection Pinched pipe Spinned pipe 3TW Split Sky Air Outdoor Units 31
34 7 7 Wiring diagram 7-1 Wiring diagram RQ-B7V3B Power supply 1~50 Hz 230V indoor - class outdoor Switch box (outdoor) NOTE Position of compressor terminal Wire entrance BLK: black BLU: blue ORG: orange Field wiring Terminal RED: red WHT: white YLW: yellow Live Neutral Connector Protective earth (screw) Terminal 1 Confirm the method of setting the dip switch (DS1) by service manual. When the unit is shipped by factory all switches are set to be off. A1P BS1 C1 C3 DS1 E1HC LEGEND Printed circuit board Push button switch (forced defrost-pump down) Capacitor (M1F) Capacitor (M1C) Dip switch Crankcase heater F1U HAP K1M K1R K2R K3R K4R K5R, K6R, Fuse (T6.3/250V) Light emitting diode (service monitor green) Magnetic contactor (M1C) Magnetic relay (K1M) Magnetic relay (Y2S) Magnetic relay (E1HC) Magnetic relay (Y1S) K7R M1C M1F PC Q1DI Q1M R1T R2T R3T Magnetic relay (M1F) Motor compressor Motor fan Power circuit Earth leakage breaker (30 ma) Thermo switch (M1F) Thermistor (Air) Thermistor (Coil) Thermistor (Discharge RC S1PH S1PL SD T1A TC X1M, X2M Y1E pipe) Signal receiver circuit Pressure switch (high) Pressure switch (low) Safety devices input Current transformer Signal transmission circuit Terminal strip Expansion valve Y1S Y2S CT (electronic) 4-way valve Solenoid valve Current transformer 2TW B RQ-B7W1B Switch box (outdoor) indoor - class outdoor Power supply 3N~50 Hz 400V Short circuit connector Field wiring Terminal BLK: black BLU: blue ORG: orange RED: red WHT: white YLW: yellow Position of compressor terminal Live Neutral Connector Protective earth (screw) Wire entrance Terminal A1P BS1 C1 DS1 E1HC F1U, F2U HAP LEGEND Printed circuit board Push button switch (forced defrost-pump down) Capacitor (M1F) Dip switch Crankcase heater Fuse (T6.3/250V) Light emitting diode (service monitor green) K1M Magnetic contactor (M1C) Q1M K1R Magnetic relay (K1M) Q1RP K2R Magnetic relay (Y2S) R1T K3R Magnetic relay (E1HC) R2T K4R Magnetic relay (Y1S) R3T K5R, K6R, K7R Magnetic relay (M1F) RC M1C Motor compressor S1PH M1F Motor fan S1PL PC Power circuit SD Q1DI Earth leakage breaker (30mA) T1A Thermo switch (M1F) Phase reverse circuit Thermistor (Air) Thermistor (Coil) Thermistor (Discharge pipe) Signal receiver circuit Pressure switch (high) Pressure switch (low) Safety devices input Current transformer TC X1M, X2M Y1E Y1S Y2S CT Signal transmission circuit Terminal strip Expansion valve (electronic) 4-way valve Solenoid valve Current transformer NOTE 1 Confirm the method of setting the dip switch (DS1) by service manual. When the unit is shipped by factory all switches are set to be off. 2TW263-1B 32 Split Sky Air Outdoor Units
35 7 Wiring diagram 7-1 Wiring diagram RQ125B7W1B 7 Switch box (outdoor) indoor 125 class outdoor Power supply 3N~50 Hz 400V Field wiring Terminal BLK: black BLU: blue ORG: orange Live Neutral Connector RED: red WHT: white YLW: yellow Protective earth (screw) Terminal Position of compressor terminal Wire entrance A1P BS1 C1 C2 DS1 E1HC F1U, F2U HAP LEGEND Printed circuit board Push button switch (forced defrost-pump down) Capacitor (M1F) Capacitor (M2F) Dip switch Crankcase heater Fuse (T6.3/250V) Light emitting diode K1M K1R K2R K3R K4R K5R, K6R, K7R K8R, K9R, K10R M1C (service monitor green) Magnetic contactor (M1C) Magnetic relay (K1M) Magnetic relay (Y2S) Magnetic relay (E1HC) Magnetic relay (Y1S) Magnetic relay (M1F) Magnetic relay (M2F) Motor compressor M1F, M2F PC Q1DI Q1M Q2M Q1RP R1T R2T R3T RC Motor fan Power circuit Earth leakage breaker (30 ma) Thermo switch (M1F) Thermo switch (M2F) Phase reverse circuit Thermistor (Air) Thermistor (Coil) Thermistor (Discharge pipe) Signal receiver circuit S1PH S1PL SD T1A TC X1M, X2M Y1E Y1S Y2S CT Pressure switch (high) Pressure switch (low) Safety devices input Current transformer Signal transmission circuit Terminal strip Expansion valve (electronic) 4-way valve Solenoid valve Current transformer NOTE 1 Confirm the method of setting the dip switch (DS1) by service manual. When the unit is shipped by factory all switches are set to be off. 2TW266-1B Split Sky Air Outdoor Units 33
36 7 Wiring diagram External connection diagram R(Q)(R)-125B7 I II III M Pair Twin Triple Master S Slave 1 Earth leak detector 2 Fuse 3 Remote controller 4TW Split Sky Air Outdoor Units
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