technical data air conditioning systems RKS-F2V1B Split Sky Air
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1 technical data RKS-F2VB air conditioning systems Split Sky Air
2 Split - Sky Air 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.. Het 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. Daikin units comply with the European regulations that guarantee the safety of 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. Naamloze Vennootschap Zandvoordestraat 300 B-8400 Oostende, Belgium BTW: BE RPR Oostende EEDEN07 03/2007 Printed in Belgium by Goekint Graphics Copyright Daikin
3 technical data RKS-F2VB air conditioning systems Split Sky Air
4 Outdoor Units R-40A RKS-F2VB TABLE OF CONTENTS RKS-F2VB Features Specifications Nominal Capacity and Nominal Input Technical Specifications Electrical Specifications Electrical data Capacity tables capacity tables Dimensional drawing & centre of gravity Dimensional drawing Centre of gravity Piping diagram Wiring diagram Wiring diagram Sound data Sound pressure spectrum Operation range Split Sky Air Outdoor Units 4
5 Outdoor Units R-40A RKS-F2VB Split Sky Air Outdoor Units 5 Features O u t d o o r U n i S p l i t S k y R K S - F 2 V B R a
6 2 Specifications Outdoor Units R-40A RKS-F2VB 2- NOMINAL CAPACITY AND NOMINAL INPUT RKS25F2VB RKS35F2VB RKS50F2VB RKS60F2VB RKS7FVB For combination indoor units + outdoor units Units FVXS25FVB FVXS35FVB FTKS50FVB FTKS60FVB FTKS7FVB Minimum kw capacity Standard kw Maximum kw Nominal input Minimum kw Standard kw Maximum kw For combination indoor units + outdoor units EER Nominal Energy Labeling Directive A A A B B Annual energy consumption kwh Units FCQ35C7VEB FVXS50FVB FDKS60CVMB Minimum kw capacity Standard kw Maximum kw Nominal input Minimum kw Standard kw Maximum kw For combination indoor units + outdoor units EER Nominal Energy Labeling Directive A A C Annual energy consumption kwh Units FDKS50CVMB FCQ60C7VEB Minimum kw capacity Standard kw Maximum kw Nominal input Minimum kw 0.44 Standard kw Maximum kw.93 For combination indoor units + outdoor units EER Nominal Energy Labeling Directive B A Annual energy consumption kwh Units FLKS50BAVMB FFQ60B8VB Minimum kw.7 capacity Standard kw Maximum kw 5.3 Nominal input Minimum kw 0.44 Standard kw Maximum kw.95 For combination indoor units + outdoor units EER Nominal Energy Labeling Directive C D Annual energy consumption kwh Units FTKS50D2VW FBQ60B8V Minimum kw.7 capacity Standard kw Maximum kw 5.2 Nominal input Minimum kw 0.44 Standard kw Maximum kw Split Sky Air Outdoor Units 6
7 2 Specifications Outdoor Units R-40A RKS-F2VB 2 2- NOMINAL CAPACITY AND NOMINAL INPUT RKS25F2VB RKS35F2VB RKS50F2VB RKS60F2VB RKS7FVB For combination indoor units + outdoor units EER Nominal Energy Labeling Directive B E Annual energy consumption kwh Units FTKS50D2VL FHQ60BVVB Minimum kw.7.7 capacity Standard kw Maximum kw Nominal input Minimum kw Standard kw Maximum kw For combination indoor units + outdoor units EER Nominal Energy Labeling Directive B E Annual energy consumption kwh Units FCQ50C7VEB Minimum kw 0.9 capacity Standard kw 5.0 Maximum kw 5.6 Nominal input Standard kw.4 For combination indoor units + outdoor units EER Nominal 3.55 Energy Labeling Directive A Annual energy consumption kwh 705 Units FBQ50B8V Standard kw 5.0 capacity Nominal input Standard kw.92 For combination indoor units + outdoor units EER Nominal 2.60 Energy Labeling Directive E Annual energy consumption kwh 960 Units FFQ50B8VB Standard kw 4.7 capacity Nominal input Standard kw.80 For combination indoor units + outdoor units EER Nominal 2.6 Energy Labeling Directive D Annual energy consumption kwh 900 Units FHQ50BVVB Minimum kw.7 capacity Standard kw 5.0 Maximum kw 5.6 Nominal input Minimum kw 0.44 Standard kw.83 Maximum kw 2.02 For combination indoor units + outdoor units EER Nominal 2.73 Energy Labeling Directive D Annual energy consumption kwh 95 7 Split Sky Air Outdoor Units
8 2 Specifications Outdoor Units R-40A RKS-F2VB 2-2 TECHNICAL SPECIFICATIONS RKS25F2VB RKS35F2VB RKS50F2VB RKS60F2VB RKS7FVB Casing Colour Ivory White 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 Stages Tube type Hi-Xa(7) Hi-Xa(7) Hi-Xa(8) Hi-Xa(8) Hi-Xa(7) Fin Type Waffle fin Treatment Anti-corrosion treatment (PE) Fan Type Propeller Turbo fan Propeller Propeller Propeller Quantity Air Flow Rate (nominal at 230V) m³/min Motor Quantity Model D23B-28 D23B-28 KFD A KFD A KFD A Motor Speed rpm 860(H) - 620(L) 860(H) - 620(L) (nominal) Fan Motor Output W Compressor Quantity Motor Model YC23NXD#C YC23NXD#C 2YC36BXD#C 2YC36BXD#C 2YC63BXD#D Type Hermetically sealed swing compressor Motor W Output Operation Min CDB Range Max CDB Sound Level (nominal) Sound Power Sound Pressure dba dba 46(H) - 43(L) 47(H) - 44(L) 47(H)/44(L) 49(H) - 46(SL) 52 Sound Level (Night quiet) Sound Pressure dba 49 Refrigerant Type R-40A Charge kg Refrigerant Oil Type FVC50K Charged Volume l Piping connections Liquid (OD) Quantity Diameter (OD) mm Gas Quantity Diameter (OD) mm Drain Quantity Diameter mm (OD) Piping Length Maximum m Chargele ss m Additional Refrigerant Charge kg/m 0.02/>0m 0.02/0m 0.02/>0 0.02/>0m 0.02/>0m Installation height difference Maximum m Heat Insulation Both liquid and gas pipes 3 2 Split Sky Air Outdoor Units 8
9 2 Specifications Outdoor Units R-40A RKS-F2VB TECHNICAL SPECIFICATIONS RKS25F2VB RKS35F2VB RKS50F2VB RKS60F2VB RKS7FVB Standard Accessories Notes Item Installation manual Quantity Nominal cooling capacities are based on : indoor temperature : 270CDB, 90CWB, outdoor temperature : 350CDB, equivalent refrigerant piping : 7.5m, level difference : 0m. 2-3 ELECTRICAL SPECIFICATIONS RKS25F2VB RKS35F2VB RKS50F2VB RKS60F2VB RKS7FVB Power Supply Name V Phase Frequency Hz Voltage V / / Current Nominal running current (RLA) (A) A Wiring connections Starting current (cooling/ A heating) Maximum Running Current A For Power Supply For connection with indoor Quantity Quantity Remark (including earth wiring) 9 Split Sky Air Outdoor Units
10 3 Electrical data Outdoor Units R-40A RKS-F2VB MCA MFA RHz RLA OFM IFM FLA W Representative unit combination Power supply Comp. OFM IFM unit Outdoor unit Hz-volts Voltage range MCA MFA RHz RLA W FLA W FLA Max. 50Hz 264V FVXS25FVB RKS25F2VB Min. 50Hz 98V : Min. Circuit Amps (A) : Max. Fuse Amps (A) : Rated operating frequency (Hz) : Rated Load Amps (A) : Outdoor Fan Motor : Fan Motor : Full Load Amps (A) : Rated motor output (W) 3D05500B. RLA is based on the following conditions: temp.: 27 CDB/9.0 CWB Outdoor temp. : 35 CDB 2. Maximum allowable voltage unbalance between phases is 2% 3. Select wire size based on the larger value of MCA. 4. Instead of fuse, use circuit breaker. 5. For more details concerning conditional connections, see select E-Data Books. Finally, click on the document title of your choice. 3 3 Representative unit combination Power supply Comp. OFM IFM unit Outdoor unit Hz-volts Voltage range MCA MFA RHz RLA W FLA W FLA Max. 50Hz 264V FVXS35FVB RKS35F2VB Min. 50Hz 98V D MCA MFA RHz RLA OFM IFM FLA W : Min. Circuit Amps (A) : Max. Fuse Amps (A) : Rated operating frequency (Hz) : Rated Load Amps (A) : Outdoor Fan Motor : Fan Motor : Full Load Amps (A) : Rated motor output (W). RLA is based on the following conditions: temp.: 27 CDB/9.0 CWB Outdoor temp. : 35 CDB 2. Maximum allowable voltage unbalance between phases is 2% 3. Select wire size based on the larger value of MCA. 4. Instead of fuse, use circuit breaker. 5. 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 RKS-F2VB 3 Representative unit combination Power supply Comp. OFM IFM unit Outdoor unit Hz-volts Voltage range MCA MFA RHz RLA W FLA W FLA FTKS50FVB RKS50F2VB Max. 50Hz 264V Min. 50Hz 98V FTKS60FVB RKS60F2VB Max. 50Hz 264V Min. 50Hz 98V FTKS7FVB RKS7FVB Max. 50Hz 264V Min. 50Hz 98V D056032A MCA MFA RHz RLA OFM IFM FLA W : Min. Circuit Amps (A) : Max. Fuse Amps (A) : Rated operating frequency (Hz) : Rated Load Amps (A) : Outdoor Fan Motor : Fan Motor : Full Load Amps (A) : Rated motor output (W). RLA is based on the following conditions: temp.: 27 CDB/9.0 CWB Outdoor temp. : 35 CDB 2. Maximum allowable voltage unbalance between phases is 2% 3. Select wire size based on the larger value of MCA. 4. Instead of fuse, use circuit breaker. 5. 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 RKS-F2VB 4 Capacity tables 4 - capacity tables FVXS25FVB+RKS25F2VB AFR V [50Hz] BF 0.0 Outdoor temperature ( CDB) EWB EDB ( C) ( C) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI 3 4 3D AFR: Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( C) EDB: Entering dry bulb temp. ( C) TC: Total capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw). Capacities are based on the following conditions: () Corresponding refrigerant piping length: 7.5 m (2) Level difference: 0 m 2. shows nominal (rated) capacities and power input. FVXS35FVB+RKS35F2VB AFR V [50Hz] BF 0. Outdoor temperature ( CDB) EWB EDB ( C) ( C) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI 3D AFR: Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( C) EDB: Entering dry bulb temp. ( C) TC: Total capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw). Capacities are based on the following conditions: () Corresponding refrigerant piping length: 7.5 m (2) Level difference: 0 m 2. shows nominal (rated) capacities and power input. Split Sky Air Outdoor Units 2
13 4 Capacity tables 4 - capacity tables Outdoor Units R-40A RKS-F2VB 4 FCQ35C7VEB+RKS35F2VB AFR V [50Hz] BF 0.28 Outdoor temperature ( CDB) EWB EDB ( C) ( C) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI 3D AFR: Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( C) EDB: Entering dry bulb temp. ( C) TC: Total capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw). Capacities are based on the following conditions: () Corresponding refrigerant piping length: 5 m (2) Level difference: 0 m 2. shows nominal (rated) capacities and power input. FTKS50FVB+RKS50F2VB AFR V [50Hz] BF 0.28 Outdoor temperature ( CDB) EWB EDB ( C) ( C) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI 3D05926A AFR: Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( C) EDB: Entering dry bulb temp. ( C) TC: Total capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) Ratings shown are net capacities which include a deduction for indoor fan motor heat 2 shows nominal (rated) capacities and power input. 3 TC, PI and SHC must be calculated by interpolation using the figures in the above tables. (Figures out of the tables should not be used for calculation.) 4 About SHC which are not mentioned on the table, please calculate them with around values in direct proportion. 5 Capacities are based on following conditions: Corresponding refrigerant piping length: 7.5 m Level difference: 0 m 6 Air flow rate (AFR) and Bypass factor (BF) are taburated above. 3 Split Sky Air Outdoor Units
14 Outdoor Units R-40A RKS-F2VB 4 Capacity tables 4 - capacity tables FVXS50FVB+RKS50F2VB AFR V [50Hz] BF 0.3 Outdoor temperature ( CDB) EWB EDB ( C) ( C) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI 3 4 3D AFR: Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( C) EDB: Entering dry bulb temp. ( C) TC: Total capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw). Capacities are based on the following conditions: () Corresponding refrigerant piping length: 7.5 m (2) Level difference: 0 m 2. shows nominal (rated) capacities and power input. Split Sky Air Outdoor Units 4
15 4 Capacity tables 4 - capacity tables Outdoor Units R-40A RKS-F2VB 4 FFQ50B8VB+RKS50F2VB AFR V [50Hz] BF 0.6 Outdoor temperature ( CDB) EWB EDB ( C) ( C) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI 3D04022 AFR: Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( C) EDB: Entering dry bulb temp. ( C) TC: Total capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) Ratings shown are net capacities which include a deduction for indoor fan motor heat 2 shows nominal (rated) capacities and power input. 3 TC, PI and SHC must be calculated by interpolation using the figures in the above tables. (Figures out of the tables should not be used for calculation.) 4 SHC is based on each EWB and EDB SHC* = SHC correction for other dry bulb =0.02*AFR(m3/min.)*(-BF)*(DB*-EDB) Add SHC* to SHC. 5 Capacities are based on following conditions: Corresponding refrigerant piping length: 7.5 m Level difference: 0 m 6 Air flow rate (AFR) and Bypass factor (BF) are taburated above. 5 Split Sky Air Outdoor Units
16 Outdoor Units R-40A RKS-F2VB 4 Capacity tables 4 - capacity tables FBQ50B8V+RKS50F2VB Outdoor V [50Hz] Outdoor temperature ( CDB) EWB EDB ( C) ( C) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI 3 4 3TW252-B 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 capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) Ratings shown are net capacities which include a deduction for indoor fan motor heat 2 shows nominal (rated) capacities and power input. 3 SHC is based on each EWB and EDB SHC* = SHC correction for other dry bulb = 0.29 x 60 x AFR [m 3 /min.] x (-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 (AFR) and Bypass factor (BF) are taburated above. Model FBQ AFR.5 BF 0.5 AFR 4 BF 0.5 AFR 9 BF 0. Split Sky Air Outdoor Units 6
17 4 Capacity tables 4 - capacity tables Outdoor Units R-40A RKS-F2VB 4 FCQ50C7VEB+RKS50F2VB AFR V [50Hz] BF 0.2 Outdoor temperature ( CDB) EWB EDB ( C) ( C) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI 3D AFR: Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( C) EDB: Entering dry bulb temp. ( C) TC: Total capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw). Capacities are based on the following conditions: () Corresponding refrigerant piping length: 5 m (2) Level difference: 0 m 2. shows nominal (rated) capacities and power input. FTKS60FVB+RKS60F2VB AFR V [50Hz] BF 0.29 Outdoor temperature ( CDB) EWB EDB ( C) ( C) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI 3D05927A AFR: Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( C) EDB: Entering dry bulb temp. ( C) TC: Total capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) Ratings shown are net capacities which include a deduction for indoor fan motor heat 2 shows nominal (rated) capacities and power input. 3 TC, PI and SHC must be calculated by interpolation using the figures in the above tables. (Figures out of the tables should not be used for calculation.) 4 About SHC which are not mentioned on the table, please calculate them with around values in direct proportion. 5 Capacities are based on following conditions: Corresponding refrigerant piping length: 7.5 m Level difference: 0 m 6 Air flow rate (AFR) and Bypass factor (BF) are taburated above. 7 Split Sky Air Outdoor Units
18 Outdoor Units R-40A RKS-F2VB 4 Capacity tables 4 - capacity tables FFQ60B8VB+RKS60F2VB AFR V [50Hz] BF 0. Outdoor temperature ( CDB) EWB EDB ( C) ( C) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI 3 4 3D04027 AFR: Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( C) EDB: Entering dry bulb temp. ( C) TC: Total capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) Ratings shown are net capacities which include a deduction for indoor fan motor heat 2 shows nominal (rated) capacities and power input. 3 TC, PI and SHC must be calculated by interpolation using the figures in the above tables. (Figures out of the tables should not be used for calculation.) 4 SHC is based on each EWB and EDB SHC* = SHC correction for other dry bulb =0.02*AFR(m3/min.)*(-BF)*(DB*-EDB) Add SHC* to SHC. 5 Capacities are based on following conditions: Corresponding refrigerant piping length: 7.5 m Level difference: 0 m 6 Air flow rate (AFR) and Bypass factor (BF) are taburated above. Split Sky Air Outdoor Units 8
19 4 Capacity tables 4 - capacity tables Outdoor Units R-40A RKS-F2VB 4 FBQ60B8V+RKS60F2VB Outdoor V [50Hz] Outdoor temperature ( CDB) EWB EDB ( C) ( C) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI 3TW252-B 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 capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) Ratings shown are net capacities which include a deduction for indoor fan motor heat 2 shows nominal (rated) capacities and power input. 3 SHC is based on each EWB and EDB SHC* = SHC correction for other dry bulb = 0.29 x 60 x AFR [m 3 /min.] x (-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 (AFR) and Bypass factor (BF) are taburated above. Model FBQ AFR.5 BF 0.5 AFR 4 BF 0.5 AFR 9 BF 0. 9 Split Sky Air Outdoor Units
20 Outdoor Units R-40A RKS-F2VB 4 Capacity tables 4 - capacity tables FCQ60C7VEB+RKS60F2VB AFR V [50Hz] BF 0.2 Outdoor temperature ( CDB) EWB EDB ( C) ( C) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI 3 4 3D05725 AFR: Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( C) EDB: Entering dry bulb temp. ( C) TC: Total capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw). Capacities are based on the following conditions: () Corresponding refrigerant piping length: 5 m (2) Level difference: 0 m 2. shows nominal (rated) capacities and power input. FTKS7FVB+RKS7FVB AFR V [50Hz] BF 0.30 Outdoor temperature ( CDB) EWB EDB ( C) ( C) TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI TC SHC PI 3D05603 AFR: Air flow rate (m 3 /min) BF: Bypass factor EWB: Entering wet bulb temp. ( C) EDB: Entering dry bulb temp. ( C) TC: Total capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw). Capacities are based on the following conditions: () Corresponding refrigerant piping length: 7.5 m (2) Level difference: 0 m 2. shows nominal (rated) capacities and power input. Split Sky Air Outdoor Units 20
21 Outdoor Units R-40A RKS-F2VB 5 Dimensional drawing & centre of gravity 5 - Dimensional drawing RKS25-35F2VB unit (mm) 5 Drain outlet (I.D. J 5.9 hose for connection) 4 x holes for anchor bolts (M8 or M0) Minimum space for air passage Wall height on air outlet side = less than 200 Handle Brand name label Manufacturer s label Wiring inlet Liquid stop valve (J 6.4 CuT) Outdoor air thermistor Service port In case of removing stop valve cover Gas stop valve (J 2.7 CuT) 3D RKS50-60 FE Drain outlet (I.D. J 5.9 hose for connection) Minimum space for air passage Wall height on air outlet side = less than 200 unit (mm) 4 x holes for anchor bolts (M8 or M0) Brand name label Name plate Wiring inlet In case of removing stop valve cover Terminal strip with earth terminal Outdoor air temperature thermistor Liquid stop valve (J 6.4 CuT) Service port Gas stop valve (J 2.7 CuT) 3D05657D 2 Split Sky Air Outdoor Units
22 Outdoor Units R-40A RKS-F2VB 5 Dimensional drawing & centre of gravity 5 - Dimensional drawing RKS7FVB unit (mm) 3 4-cuts for anchor bolts (M2) Minimum space for air passage Wall height on air outlet side = less than Drain outlet I.D. J 25 hose for connection Name plate Gas stop valve Terminal strip with earth terminal Liquid stop valve Outdoor air thermistor Gas pipe (J5.9 single union) Interconnecting piping and wiring inlet Liquid pipe (J6.4 single union) 3D054589A Split Sky Air Outdoor Units 22
23 Outdoor Units R-40A RKS-F2VB 5 Dimensional drawing & centre of gravity 5-2 Centre of gravity RKS25-35F2VB 5 4D05635 RKS50-60F2VB The position of foundation bolt 4D05638C 23 Split Sky Air Outdoor Units
24 Outdoor Units R-40A RKS-F2VB 5 Dimensional drawing & centre of gravity 5-2 Centre of gravity RKS7FVB 3 5 Position of anchor bolt 4D053630B Split Sky Air Outdoor Units 24
25 6 Piping diagram Outdoor Units R-40A RKS-F2VB RKS25-35F 6 Outdoor unit Heat exchanger Heat exchanger thermistor Outdoor temperature thermistor Motor operated valve Muffler with filter Muffler with filter Propeller fan Muffler with filter Four way valve normally: OFF Field piping Muffler Liquid stop valve Discharge pipe thermistor Compressor Accumulator Muffler Gas stop valve Field piping Refrigerant flow 3D04738D RKS50-60F2VB Outdoor unit Heat exchanger Outdoor temperature thermistor Capillary tube Capillary tube 2 Capillary tube 3 Muffler with filter Refrigerant flow Heat exchanger thermistor Capillary tube 4 Propeller fan Motor operated valve Four way valve normally: OFF Muffler with filter Muffler Muffler Field piping Discharge pipe thermistor Liquid stop valve Field piping Compressor Gas stop valve with service port 3D05636D 25 Split Sky Air Outdoor Units
26 6 Piping diagram Outdoor Units R-40A RKS-F2VB RKS7FVB 3 Header Outdoor unit Heat exchanger Outdoor temperature thermistor 6 Heat exchanger (condenser) thermistor Receiver DC fan motor Propeller fan Capillary tube Distributor Filter Motor operated Filter valve Four way valve normally: OFF Liquid line stop valve Muffler Discharge pipe thermistor Field piping Liquid (6.4 CuT) Refrigerant flow Compressor Accumulator Accumulator Gas line stop valve Field piping Gas (5.9 CuT) 3D054596A Split Sky Air Outdoor Units 26
27 7 Wiring diagram 7 - Wiring diagram RKS25-35F2VB Outdoor Units R-40A RKS-F2VB 7 g Field wiring NOTE. Refer to the nameplate for the power requirements. Outdoor R : Protective earth C74,C75 C94,C95,C00 : Capacitor DB,DB2 : Diode bridge FU,FU2,FU3 : Fuse IC : Triac IPM : Intelligent power module L : Live L : Coil LR : Reactor MC : Compressor motor MF : Fan motor MRCW,MRM0,MRM20 : Magnetic relay In case of cooling only type N : Neutral PCB,PCB2 : Printed circuit board QL : Overload protector RT,R2T,R3T,R2T : Thermistor S0,S,S20 S30,S40,S70 S80,S90,S9 HC3,HC4,HL3,HN3: Connector In case of heat pump type SA V,V2,V3 XM YE YR ZC,Z2C (outdoor) (discharge) (Condenser) : Surge arrester : Varistor : Terminal strip : Electronic expansion valve coil : Reversing solenoide valve coil : Ferrite core 3D046707H RKS50F2VB Power supply To indoor unit Sheet metal g Field wiring R : Protective earth ZC Z4C : Ferrite core XM,X2M : Terminal strip YE : Electronic expansion valve coil V2,V3,V5,V6,V : Varistor SA2 : Surge arrester FU,F2U,FU3 : Fuse AC,AC2 U,V,W,XA E,E2 HR,HR2 : Connector MRM0, MRM20, MRC/W : Magnetic relay RT R3T S2 S02 LEDA L N SW S4W : Thermistor : Connector : Pilot lamp : Live : Neutral : Forced operation on/off switch (SW) : Local setting SW (SW4) Outdoor MC MF LR QL PM PCB, 2 Sheet metal (outdoor) (discharge) (Condenser) : Compressor motors : Fan motor : Reactor : Overload protector : Power module : Printed circuit board : Terminal strip fixed plate 3D Split Sky Air Outdoor Units
28 Outdoor Units R-40A RKS-F2VB 7 Wiring diagram 7 - Wiring diagram RKS60F2VB Power supply 3 7 To indoor unit Sheet metal g Field wiring R : Protective earth ZC Z4C : Ferrite core XM,X2M : Terminal strip YE : Electronic expansion valve coil V2,V3,V5,V6,V : Varistor SA2 : Surge arrester FU,F2U,FU3 : Fuse AC,AC2 U,V,W,XA E,E2 HR,HR2 : Connector MRM0, MRM20, MRC/W : Magnetic relay RT R3T S2 S02 LEDA L N SW S4W : Thermistor : Connector : Pilot lamp : Live : Neutral : Forced operation on/off switch (SW) : Local setting SW (SW4) Outdoor MC MF LR QL PM PCB, 2 Sheet metal (outdoor) (discharge) (Condenser) : Compressor motors : Fan motor : Reactor : Overload protector : Power module : Printed circuit board : Terminal strip fixed plate 3D05098F RKS7FVB Power supply To indoor unit Sheet metal g Field wiring R : Protective earth ZC Z4C : Ferrite core XM,X2M : Terminal strip YE : Electronic expansion valve coil V2,V3,V5,V6,V : Varistor SA2 : Surge arrester FU,F2U,FU3 : Fuse AC,AC2 U,V,W,XA E,E2 HR,HR2 : Connector MRM0, MRM20, MRC/W : Magnetic relay RT R3T S2 S02 LEDA L N SW S4W : Thermistor : Connector : Pilot lamp : Live : Neutral : Forced operation on/off switch (SW) : Local setting SW (SW4) Outdoor MC MF LR QL PM PCB, 2 Sheet metal (outdoor) (discharge) (Condenser) : Compressor motors : Fan motor : Reactor : Overload protector : Power module : Printed circuit board : Terminal strip fixed plate 3D053930B Split Sky Air Outdoor Units 28
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