technical data air conditioning systems RYP-L7/B7 Pair Application Split Sky Air

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1 technical data RYP-L7/B7 Pair Application air conditioning systems Split Sky Air

2 Split - Sky Air ISO400 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 ISO900 standard. ISO900 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 Internet: EEDE05-/2 05/2005 Prepared in Belgium by Goekint Graphics

3 Pair Application R-407C RYP7-25L7V/W RYP B7W TABLE OF CONTENTS RYP-L7/B7 Features Specifications... 3 Technical specifications Electrical specifications 3 Capacity tables Dimensional drawings Operation range Piping diagrams Wiring diagrams Sound level Sound level data Sound pressure spectrum Accessories... 4 Optional accessories 0 Center of gravity Safety device settings Installation... 44

4 Pair Application R-407C RYP7-25L7V/W RYP B7W Features Outdoor units for pair 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. + They 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 service 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

5 Pair Application R-407C RYP7-25L7V/W RYP B7W 2 Specifications TECHNICAL SPECIFICATIONS OUTDOOR UNITS RYP7L7V/W RYP00L7V/W RYP25L7W RYP200B7W RYP250B7W DIMENSIONS Unit H mm 770,70,220,440 W mm ,290 D mm WEIGHT kg 80/79 02/ MATERIAL Unit Painted galvanised steel plate COLOUR Unit Ivory white SOUND LEVEL Sound pressure () high db(a) 50/52 53/56 53/56 57/57 57/57 (cooling/heating) Sound power (2) high db(a) /78 77/78 (cooling) FAN Air flow rate (cooling/heating) high m 3 /min 48/43 55/50 89/80 70/- 75/- Speed steps 3 steps step Qty x model xp47ls 2xP47LS xp55jf Qty x motor output W x 65 x x (320+90) HEAT EXCHANGER Type Hi-XSS cooling tube, non sym. waffle fin J8 Hi-XA tube assymetric louvre Rows x stages x fin pitch mm 2 x 34 x x 52 x x 52 x x 40 x x 50 x 2.0 Face area m REFRIGERANT CIRCUIT Refrigerant type R-407C Refrigerant charge kg Minimum/maximum allowable distance between indoor and outdoor m 5/70 - / 50 (70m equivalent) Maximum allowable level difference m 30 Additional refrigerant charge g/m Please refer to installation 00 g/m for total piping length > 30 m 40 g/m for total piping length > 30 m Refrigerant control Expansion valve (electronic type) Expansion valve COMPRESSOR Type Hermetically sealed scroll type Qty x model xjt90fa-vn xjt25fa-vnx xjt60fa-ye xjt236da-ye@2 xjt300da-ye@2 Motor output x no W 2,200 x 3,000 x 3,750 x 5,500 x 7,500 x Speed rpm ,900 2,900 Oil type DAPHNE FVC68D Oil charge volume!,200, Crankcase heater W PIPING CONNECTIONS liquid mm φ9.5 φ2.7 x 0.90 φ5.9 x 0.95 gas mm φ5.9 φ φ x φ x.5 drain mm φ26x3 26φ x6 26φ x6 INSULATION MATERIAL Heat insulation Both liquid and gas pipes Safety devices High and low pressure switch, thermal protection for indoor and outdoor fan motor, overcurrent relay (compressor), fuse High and low pressure switch, thermal protector for indoor and outdoor fan motor, overcurrent relay (compressor), reverse phase protector, fuse 2 3TW254-B 3TW258-B 3TW2525-A 3TW259-A 3TW2520-A 3TW2363-A 3TW2364-A 3

6 Pair Application R-407C RYP7-25L7V/W RYP B7W 2 Specifications 2 ELECTRICAL SPECIFICATIONS OUTDOOR UNITS RYP7L7V/W RYP00L7V/W RYP25L7W RYP200B7W RYP250B7W CURRENT Nominal running current cooling/heating A Please refer to electrical data Max. running current cooling/heating A Please refer to electrical data Starting current cooling/heating A Please refer to electrical data POWER SUPPLY V/W V/W W W W NOMINAL DISTRIBUTION Phase /3N /3N 3N 3N 3N SYSTEM VOLTAGE Frequency Hz Voltage V 230/ / The sound pressure level is measured in an anechoic room at m distance from the unit. It is a relative value, depending on the distance and acoustic environment. For measuring conditions: please refer to item 8 of this chapter. 2 The sound power level is an absolute value indicating the power which a sound source generates. 4

7 Pair Application R-407C RYP7-25L7V/W RYP B7W 2 Specifications ELECTRICAL DATA 2 RYP7L7 Unit combination Power supply Compressor OFM IFM Indoor unit Outdoor unit Hz-Volts Voltage range MCA TOCA MFA LRA RLA kw FLA kw FLA FHYCP7 RYP7L7V FUYP7 RYP7L7V FHYP7 RYP7L7V FHYKP7 RYP7L7V Max. 50Hz-264V Min. 50Hz-98V FAYP7 RYP7L7V 50/ FHYBP7 RYP7L7V FDYMP7 RYP7L7V FHYCP7 RYP7L7W / FUYP7 RYP7L7W / FHYP7 RYP7L7W / FHYKP7 RYP7L7W /230 Max. 50Hz-440/253V Min. 50Hz-360/97V FAYP7 RYP7L7W / FHYBP7 RYP7L7W / FDYMP7 RYP7L7W / TW 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 : Rated motor output. RLA is based on the following conditions: Indoor temp.: 27 CDB/9.5 CWB Outdoor temp. : 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 =.25 x RLA + all FLA, MFA = < 2.25 x RLA + all FLA (next lower standard fuse rating Min. 6A) 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. 5

8 Pair Application R-407C RYP7-25L7V/W RYP B7W 2 Specifications 2 ELECTRICAL DATA RYP00L7 Unit combination Power supply Compressor OFM IFM Indoor unit Outdoor unit Hz-Volts Voltage range MCA TOCA MFA LRA RLA kw FLA kw FLA FHYCP00 RYP00L7V FUYP00 RYP00L7V FHYP00 FAYP00 RYP00L7V RYP00L7V Max. 50Hz-264V Min. 50Hz-98V FHYBP00 RYP00L7V FDYMP00 RYP00L7V FHYCP00 RYP00L7W / FUYP00 RYP00L7W / FHYP00 FAYP00 RYP00L7W RYP00L7W / /230 Max. 50Hz-440/253V Min. 50Hz-360/97V FHYBP00 RYP00L7W / FDYMP00 RYP00L7W / TW 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 : Rated motor output. RLA is based on the following conditions: Indoor temp.: 27 CDB/9.5 CWB Outdoor temp. : 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 =.25 x RLA + all FLA, MFA = < 2.25 x RLA + all FLA (next lower standard fuse rating Min. 6A) 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. 6

9 Pair Application R-407C RYP7-25L7V/W RYP B7W 2 Specifications ELECTRICAL DATA 2 RYP25L7 Unit combination Power supply Compressor OFM IFM Indoor unit Outdoor unit Hz-Volts Voltage range MCA TOCA MFA LRA RLA kw FLA kw FLA FHYCP25 RYP25L7W / FUYP25 RYP25L7W / FHYP25 RYP25L7W / Max. 50Hz-440/253V Min. 50Hz-360/97V FHYBP25 RYP25L7W / FDYMP25 RYP25L7W / FDYP25 RYP25L7W / TW 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 : Rated motor output. RLA is based on the following conditions: Indoor temp.: 27 CDB/9.5 CWB Outdoor temp. : 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 =.25 x RLA + all FLA, MFA = < 2.25 x RLA + all FLA (next lower standard fuse rating Min. 6A) 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. 7

10 Pair Application R-407C RYP7-25L7V/W RYP B7W 2 Specifications 2 ELECTRICAL DATA RYP B7 Unit combination Power supply Compressor OFM IFM Indoor unit Outdoor unit Hz-Volts Voltage range MCA MFA LRA RLA kw FLA kw FLA Min. 360V FDYP200B7V RYP200B7W (Outdoor) + 6 (Indoor) Max. 440V FDYP250B7V RYP250B7W Min. 360V Max. 440V (Outdoor) + 6 (Indoor) , TW236-2 MCA MFA LRA RLA OFM IFM FLA KW SYMBOLS : Min. Circuit Amps : Max. Fuse Amps : Locked Rotor Amps : Rated Load Amps (A) : Outdoor Fan Motor : Indoor Fan Motor : Full Load Amps : Rated motor output (W). RLA is based on the following conditions: Indoor temp.: 27 CDB/9.0 CWB Outdoor temp. : 35 CDB 2. 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 3. Maximum allowable voltage unbalance between phases is 2%. 4. MCA/MFA MCA=.25xRLA+eaFLA MFA=<2.25xRLA+eaFLA (next lower standard fuse rating min 6A) 5. Select wire size based on the larger value of MCA or TOCA 6. Instead of fuse, use circuit breaker 7. 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. 8

11 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables FHYKP7BV + RYP7L7V RYP7L7W 3 Cooling capacity V/T: 230V [50Hz] W: 400V [50Hz] Outdoor 7 Indoor 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 TW2542-7A 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 capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC and SHC are shown by kw. 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 =0.29x60xAFR(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: Level difference: 6. Air flow rate and BF are tabulated below. Model FHYKP AFR 7 7 BF Add the following corrections to power input of each model. Model Supply FHYKP V W m 0 m 9

12 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables 3 FHYKP7BV + RYP7L7V RYP7L7W Heating capacity Outdoor 7 V: 230V [50Hz] W: 400V [50Hz] Indoor Outdoor temperature ( CDB) EDB ( C) TC PI TC PI TC PI TC PI TC PI TC PI TW2542-3A 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 capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC is shown by kw. 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 (heating) 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 FHYKP AFR 7 7 BF Add the following corrections to power input of each model. Model Supply FHYKP V W 0 0

13 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables FAYP7-00BV + RYP7-00L7V RYP7-00L7W 3 Cooling capacity V/T: 230V [50Hz] W: 400V [50Hz] Outdoor 7 00 Indoor 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 TW2542-6A 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 capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC and SHC are shown by kw. 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 =0.29x60xAFR(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: Level difference: 6. Air flow rate and BF are tabulated below. Model FAYP AFR 9 7 BF 0. AFR BF Add the following corrections to power input of each model. Model Supply FAYP 7 V 0.2 W 0 00 V 0.04 W m 0 m

14 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables 3 FAYP7-00BV + RYP7-00L7V RYP7-00L7W Heating capacity Outdoor 7 00 V: 230V [50Hz] W: 400V [50Hz] Indoor Outdoor temperature ( CWB) EDB ( C) TC PI TC PI TC PI TC PI TC PI TC PI TW2542-2A SYMBOLS AFR: Air flow rate (m 3 /min) EDB: Entering dry bulb temp. ( CDB) WB: Wet bulb temperature ( CWB) TC: Total cooling capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC is shown by kw. 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 (heating) 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 FAYP AFR 9 7 BF 0. AFR BF Add the following corrections to power input of each model. Model Supply FAYP 7 V 0.4 W 0 00 V 0.03 W 0 2

15 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables FHYCP7-25B7V + RYP7-00L7V RYP7-25L7W 3 Cooling capacity V/T: 230V [50Hz] W: 400V [50Hz] Outdoor Indoor 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 TW2542-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 capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC and SHC are shown by kw. 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 =0.29x60xAFR(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: Level difference: 6. Air flow rate and BF are tabulated below. Model FHYCP AFR 9 7 BF 0. AFR BF 0.6 AFR BF Add the following corrections to power input of each model. Model Supply FHYCP 7 V 0.06 W 0 00 V 0.27 W 0 25 W m 0 m 3

16 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables 3 FHYCP7-25B7V + RYP7-00L7V RYP7-25L7W Heating capacity Outdoor V: 230V [50Hz] W: 400V [50Hz] Indoor Outdoor temperature ( CWB) EDB ( C) TC PI TC PI TC PI TC PI TC PI TC PI TW2542-9A SYMBOLS AFR: Air flow rate (m 3 /min) EDB: Entering dry bulb temp. ( CDB) WB: Wet bulb temperature ( CWB) TC: Total cooling capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC is shown by kw. 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 (heating) 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 FHYCP AFR 9 7 BF 0.0 AFR BF 0.6 AFR BF Add the following corrections to power input of each model. Model Supply FHYCP 7 V 0.05 W 0 00 V 0.09 W 0 25 W 0 4

17 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables FHYBP7-25B7V + RYP7-00L7V RYP7-25L7W 3 Cooling capacity V/T: 230V [50Hz] W: 400V [50Hz] Outdoor Indoor 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 TW2542-2A 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 capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC and SHC are shown by kw. 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 =0.29x60xAFR(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: Level difference: 6. Air flow rate and BF are tabulated below. Model FHYBP AFR 9 7 BF 0. AFR BF 0.2 AFR BF Add the following corrections to power input of each model. Model Supply FHYBP 7 V 0.06 W 0 00 V 0.22 W 0 25 W m 0 m 5

18 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables 3 FHYBP7-25B7V + RYP7-00L7V RYP7-25L7W Heating capacity Outdoor V: 230V [50Hz] W: 400V [50Hz] Indoor Outdoor temperature ( CWB) EDB ( C) TC PI TC PI TC PI TC PI TC PI TC PI TW2542-0A SYMBOLS AFR: Air flow rate (m 3 /min) EDB: Entering dry bulb temp. ( CDB) WB: Wet bulb temperature ( CWB) TC: Total cooling capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC is shown by kw. 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 (heating) 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 FHYBP AFR 9 7 BF 0. AFR BF 0.2 AFR BF Add the following corrections to power input of each model. Model Supply FHYBP 7 V 0 W 0 00 V 0.04 W 0 25 W 0 6

19 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables FHYP7-25BV + RYP7-00L7V RYP7-25L7W 3 Cooling capacity V/T: 230V [50Hz] W: 400V [50Hz] Outdoor Indoor 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 TW2542-4A 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 capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC and SHC are shown by kw. 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 =0.29x60xAFR(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: Level difference: 6. Air flow rate and BF are tabulated below. Model FHYP AFR 7 7 BF 0. AFR BF 0.4 AFR BF Add the following corrections to power input of each model. Model PI FHYP 7 V 0.05 W 0 00 V 0.03 W 0 25 W m 0 m 7

20 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables 3 FHYP7-25BV + RYP7-00L7V RYP7-25L7W Heating capacity Outdoor V: 230V [50Hz] W: 400V [50Hz] Indoor Outdoor temperature ( CWB) EDB ( C) TC PI TC PI TC PI TC PI TC PI TC PI TW2542-8A SYMBOLS AFR: Air flow rate (m 3 /min) EDB: Entering dry bulb temp. ( CDB) WB: Wet bulb temperature ( CWB) TC: Total cooling capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC is shown by kw. 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 (heating) 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 FHYP AFR 7 7 BF 0.0 AFR BF 0.4 AFR BF Add the following corrections to power input of each model. Model Supply FHYP 7 V 0.05 W 0 00 V 0.05 W 0 25 W 0 8

21 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables FUYP7-25BV + RYP7-00L7V RYP7-25L7W 3 Cooling capacity V/T: 230V [50Hz] W: 400V [50Hz] Outdoor Indoor 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 TW2542-5A 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 capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC and SHC are shown by kw. 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 =0.29x60xAFR(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: Level difference: 6. Air flow rate and BF are tabulated below. Model FUYP AFR 9 7 BF 0.07 AFR BF 0.07 AFR BF Add the following corrections to power input of each model. Model Supply FUYP 7 V 0.05 W 0 00 V 0.05 W 0 25 W m 0 m 9

22 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables 3 FUYP7-25BV + RYP7-00L7V RYP7-25L7W Heating capacity Outdoor V: 230V [50Hz] W: 400V [50Hz] Indoor Outdoor temperature ( CWB) EDB ( C) TC PI TC PI TC PI TC PI TC PI TC PI TW2542-A SYMBOLS AFR: Air flow rate (m 3 /min) EDB: Entering dry bulb temp. ( CDB) WB: Wet bulb temperature ( CWB) TC: Total cooling capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC is shown by kw. 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 (heating) 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 FUYP AFR 9 7 BF 0.07 AFR BF 0.07 AFR 32 AFR BF Add the following corrections to power input of each model. Model Supply FUYP 7 V 0.4 W 0 00 V 0.03 W 0 25 W 0 20

23 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables FDYMP7-25L7V + RYP7-00L7V RYP7-25L7W 3 Cooling capacity V/T: 230V [50Hz] W: 400V [50Hz] Outdoor Indoor 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 TW2542-3A 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 capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC and SHC are shown by kw. 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 =0.29x60xAFR(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: Level difference: 6. Air flow rate and BF are tabulated below. Model FDYMP AFR 9 7 BF 0. AFR BF 0.2 AFR BF Add the following corrections to power input of each model. Model Supply FDYMP 7 V 0.08 W 0 00 V 0. W 0 25 W m 0 m 2

24 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables 3 FDYP25B7V + RYP25L7W Cooling capacity V/T: 230V [50Hz] W: 400V [50Hz] Outdoor 25 Indoor 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 TW 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) ( CDB) TC: Total cooling capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC and SHC are shown by kw FDYP25B7V + RYP25L7W. 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 = 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: Level difference: 6. Air flow rate and BF are tabulated below. Model FDYP AFR BF m 0 m Heating capacity Outdoor 25 V: 230V [50Hz] W: 400V [50Hz] Indoor Outdoor temperature ( CDB) EDB ( C) TC PI TC PI TC PI TC PI TC PI TC PI TW 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) ( CDB) TC: Total cooling capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC is shown by kw. 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 (heating) 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 FDYP AFR BF

25 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables FDYP B7V + RYP B7W Cooling capacity V: 230V [50Hz] W: 3 400V [50Hz] 3 Outdoor RYP200 RYP250 Indoor 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 TW23632-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) ( CDB) TC: Total cooling capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC and SHC are shown by kw. Ratings shown are net capacities which include a deduction for indoor fan motor heat 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(m 3 /min) x (-BF) x (DB -EDB) 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 FDYP200 FDYP250 AFR BF

26 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables 3 FDYP B7V + RYP B7W Heating capacity V: 230V [50Hz] W: 3 400V [50Hz] Outdoor RYP200 RYP250 Indoor Outdoor temperature ( CDB) EWB EDB ( C) ( C) TC PI TC PI TC PI TC PI TC PI TC PI TW 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) ( CDB) TC: Total cooling capacity (kw) SHC: Sensible heating capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC is shown by kw. Ratings shown are net capacities which include a deduction for indoor fan motor heat 2. Shows nominal capacities 3. Capacities are based on following conditions: Corresponding refrigerant piping length: 7.5 m Level difference: 0 m Outdoor air : 85 % RH. however, the condition on nominal capacity is 7 CDB/6 CWB (heating) 4. Direct interpolation is permissible. Do not extrapolate. 5. Air flow rate and BF are tabulated below. Model FDYP200 FDYP250 AFR BF

27 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables FDYMP7-25L7V + RYP7-00L7V RYP7-25L7W 3 Heating capacity Outdoor V: 230V [50Hz] W: 400V [50Hz] Indoor Outdoor temperature ( CWB) EDB ( C) TC PI TC PI TC PI TC PI TC PI TC PI TW2542-4A SYMBOLS AFR: Air flow rate (m 3 /min) EDB: Entering dry bulb temp. ( CDB) WB: Wet bulb temperature ( CWB) TC: Total cooling capacity (kw) PI: Power input (kw) (comp.+indoor+outdoor fan motor) Caution: TC is shown by kw. 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 (heating) 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 FDYMP AFR 9 7 BF 0. AFR BF 0.2 AFR BF Add the following corrections to power input of each model. Model Supply FDYMP 7 V 0 W 0 00 V 0.09 W 0 25 W 0 25

28 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables Cooling capacity in low latent heat application Method and illustration The capacity will be increased when the dip switch DS2-4, mounted on the outdoor PCB, is set to ON. Detail dip switch setting OFF (factory setting) ON OFF ON ON OFF Capacity result at low temperature The capacity increases when outdoor temperature drops below 2 C as indicated on table below Dip switch OFF (factory setting) Dip switch ON Capacity low temperature 00%* % *This is a relative comparisson to indicate an increase of 50 to 00% capacity with the dipswitch ON. Caution + Finally the capacity result will depend on the total condition of the installation site. This is the responsibility of the customer. + There is additional limitation for the relative humidity when operating this switch. Finally, it will depend on the total condition of the installation site and is responsibility of the customer. + Evaluation is necessary for each installation site by a professional responsible installer. + Only use the switch for capacity increase in the area indicated on the graph of page 4. + Do not set the switch in combination with the option EKRPER, this is only for use of Daikin indoor units. Reason for limitation When operating with switch ON, there will be a change of freeze protection control see table on next page. By this there will be some risk of + Ice building up at indoor heat exchanger. + Water blown off from the unit into the room. 26

29 Pair Application R-407C RYP7-25L7V/W RYP B7W 3 Capacity tables 3-2 Details about software change L-type B-type Dip switch OFF (factory setting) Dip switch ON Function: capacity increase at low temperature Not present Not activated Activated + Intelligent control + Indoor decision + Indoor decision + 25min integrated coil temp - C + 25min integrated coil temp - C + 25min integrated coil temp - C + coil temp A C continuous min ORH H H OR + coil temp A C continuous min OR + coil temp A C continuous min + 20min continuous comp operation time + 20min continuous comp operation time & IN condition + 20min continuous comp operation time + coil temp - C continuous min Freeze protection (partly) H &H + coil temp - C continuous min H & + coil temp - C continuous min A : depend on each indoor type A : depend on each indoor type A : depend on each indoor type Ex.:FHY...-3 C Ex.:FHY...-3 C Ex.: FHY...-3 C FHYC...-5 C FHYC...-5 C FHYC...-5 C OUT condition Coil temp >0 C continuous 0min X Coil temp >7 C continuous 3min Discharge temp (TK) control limitation Air TK acceptable area TK acceptable area Humidity limitation TK acceptable area Air >2 C:Normal Air 2 C: 3-2 Details about software change 3 Capacity tables Pair Application R-407C RYP7-25L7V/W RYP B7W Only use the switch for capacity increase in this area

30 Pair Application R-407C RYP7-25L7V/W RYP B7W 4 Dimensional drawings 4 RYP7L7 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) 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 unit (mm) 3TW2544- RYP00L7 Hole for anchor bolt 4-M2 Gas pipe connection J9. flare 2 Liquid pipe connection - J9.5 flare 3 Service port (in the unit) 4 Grounding terminal M5 (in switch box) 5 Refrigerant piping intake 6 Power supply wiring intake (knock hole J34) 7 Control wiring intake (knock hole J27) 8 Drain outlet unit (mm) 3TW

31 Pair Application R-407C RYP7-25L7V/W RYP B7W 4 Dimensional drawings RYP25L7 unit (mm) 4 Hole for anchor bolt 4-M2 Gas pipe connection J9. flare 2 Liquid pipe connection - J9.5 flare 3 Service port (in the unit) 4 Grounding terminal M5 (in switch box) 5 Refrigerant piping intake 6 Power supply wiring intake (knock hole J34) 7 Control wiring intake (knock hole J27) 8 Drain outlet 3TW RYP200B7 unit (mm) (Distance between anchor bolt holes) Foundation hole (Distance between anchor bolt holes) Liquid piping connection opening 2 Gas piping connection opening 3 Ground terminal 4 Power supply wiring outlet Pipes connected to the side Knock hole for lower piping (pipes connected to the front) NOTE: The dimensions marked with z refer to distances after fixing the accessory pipes. 3TW2484-C 29

32 Pair Application R-407C RYP7-25L7V/W RYP B7W 4 Dimensional drawings 4 RYP250B7 unit (mm) Pipes connected to the side (Distance between anchor bolt holes) Foundation hole (Distance between anchor bolt holes) Liquid piping connection opening 2 Gas piping connection opening 3 Ground terminal 4 Power supply wiring outlet Knock hole for lower piping (pipes connected to the front) NOTE: The dimensions marked with z refer to distances after fixing the accessory pipes. 3TW2494-C 30

33 Pair Application R-407C RYP7-25L7V/W RYP B7W 5 Operation range RYP7-25L7 Cooling Model name 5 RYP7L7V RYP00L7V RYP25L7W RYP7L7W RYP00L7W Heating Outdoor temp. ( CDB) Operation range Allowable range of operation (pull-down) Outdoor temp. ( CWB) 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 temperature ( CDB) 3TW2543-A RYP B7 Cooling Notes: The graph is based on the following conditions:. Equivalent piping length 70 m 2. Level difference 30 m 3. Indoor air flow rate 72m 3 /min (200 class) 90m 3 /min (250 class) Outdoor temp. ( CDB) Allowable range of operation (pull-down) Outdoor temp. ( CWB) Heating Warming up period Indoor temp. ( CWB) Indoor temperature ( CDB) 3TW

34 Pair Application R-407C RYP7-25L7V/W RYP B7W 6 Piping diagrams 6 RYP7L7 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 /4 One way valve Heat exchanger 4-way valve Low pressure switch High pressure switch Muffler Filter Field piping J9.5 C22OT-O Field piping J5.9 C22OT-O Filter Compressor Service port /4 Indoor unit Stop valve (with service port /4 flare) Outdoor unit Heating Cooling O Check valve L Flare connection M Screw connection N Flange connection Z Pinched pipe P Spinned pipe 3TW2545- RYP00-25L7 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 /4 One way valve Heat exchanger 4-way valve Filter Low pressure switch High pressure switch Muffler Filter Field piping J9.5 C22OT-O Field piping J5.9 C22OT-O Compressor Service port /4 Indoor unit Stop valve (with service port /4 flare) Outdoor unit Heating Cooling O Check valve L Flare connection M Screw connection N Flange connection Z Pinched pipe P Spinned pipe 3TW

35 Pair Application R-407C RYP7-25L7V/W RYP B7W 6 Piping diagrams RYP B7 6 One way valve One way valve Outdoor heat exchanger One way valve One way valve Indoor heat exchanger Solenoid valve Propeller fan Receiver Fan Filter Electronic expansion valve Filter 4-way valve Service port /4 Filter Muffler Field piping A Low pressure switch High pressure switch Field piping B Compressor Indoor unit Stop valve (with service port /4 flare) Outdoor unit O Check valve L Flare connection M Screw connection N Flange connection Z Pinched pipe P Spinned pipe 3TW

36 Pair Application R-407C RYP7-25L7V/W RYP B7W 7 Wiring diagrams 7 RYP7-00L7V Indoor Outdoor NOTE ON OFF ON OFF :. Confirm the method of setting the selector switches by service. When the unit is shipped by factory all switches are set to be off. 2. Do not operate the unit by short-circuiting SLP It will cause compressor failure. Switch box (Outdoor) g Field wiring D : Terminal F : Connector : Wire clamp b : Protective earth (screw) L : Live N : Neutral Colours BLK: Black/ BLU: Blue/ WHT: White/ RED: Red/ ORG: Orange/ YLW:Yellow Position of compressor terminal Wire entrance AP Printed circuit board BS Push button (forced defrost-pump down) CR Capacitor (MF) C3R Capacitor (MC) C4 Starting capacitor (MC) DS, DS2 Selector switch FU, F2U Fuse (250V, 0A, jb ) F3U Field fuse HAP Light emitting diode (service monitor green) KM Magnetic contactor (MC) KR Magnetic relay (KM) K3R Magnetic relay (YS) K4R Magnetic relay (Y2S) K8R,K9R,K0R Magnetic relay (MF) KR Starting relay MC Motor compressor MF Motor fan QM Q3E RT R2T R3T R4C RC SPH Thermo switch (MF) Earth leak detector Thermistor (air) Thermistor (coil) Thermistor (discharge pipe) Resistor Signal receiver circuit Pressure switch (high) SLP Pressure switch (low) SD Safety devices input TA Current transformer TR Transformer ( V/24.9V) TC Signal transmission circuit XM,X2M Terminal strip YE Expansion valve (electronic type) YS 4-way valve Y2S Solenoid valve 2TW2546- RYP7-00L7W Switch box (Outdoor) Indoor NOTE Outdoor :. Do not operate the unit by short-circuiting SLP It will cause compressor failure. 2. Confirm the method of setting the selector switches by service. When the unit is shipped by factory all switches are set to be off. ON OFF ON OFF g Field wiring D : Terminal F : Connector : Wire clamp b : Protective earth (screw) L : Live N : Neutral Position of compressor terminal Colours BLK: Black/ BLU: Blue/ WHT: White/ RED: Red/ ORG: Orange/ YLW:Yellow Wire entrance AP Printed circuit board BS Push button (forced defrost-pump down) CR Capacitor (MF) DS, DS2 Selector switch FU, F2U Fuse (250V, 0A, jb ) F3U Field fuse HAP Light emitting diode (service monitor green) KM Magnetic contactor (MC) KR Magnetic relay (KM) K3R Magnetic relay (YS) K4R Magnetic relay (Y2S) K8R,K9R,K0R Magnetic relay (MF) MC Motor compressor MF Motor fan PRC Phase reverse circuit QM Thermo switch (MF) Q3E RT R2T R3T RC SPH SLP SD TA Earth leak detector Thermistor (air) Thermistor (coil) Thermistor (discharge pipe) Signal receiver circuit Pressure switch (high) Pressure switch (low) Safety devices input Current transformer TR Transformer ( V/24.9V) TC Signal transmission circuit XM,X2M Terminal strip X3M YE Expansion valve (electronic type) YS 4-way valve Y2S Solenoid valve 2TW

37 Pair Application R-407C RYP7-25L7V/W RYP B7W 7 Wiring diagrams RYP25L7W 7 Switch box (Outdoor) Indoor NOTE Outdoor :. Do not operate the unit by short-circuiting SLP It will cause compressor failure. 2. Confirm the method of setting the selector switches by service. When the unit is shipped by factory all switches are set to be off. ON OFF ON OFF g Field wiring D : Terminal F : Connector : Wire clamp b : Protective earth (screw) L : Live N : Neutral Position of compressor terminal Colours BLK: Black/ BLU: Blue/ WHT: White/ RED: Red/ ORG: Orange/ YLW:Yellow Wire entrance AP Printed circuit board BS Push button (forced defrost-pump down) CR Capacitor (MF) C2R Capacitor (M2F) DS, DS2 Selector switch FU, F2U Fuse (250V, 0A, jb ) F3U Field fuse HAP Light emitting diode (service monitor green) KM Magnetic contactor (MC) KR Magnetic relay (KM) K3R Magnetic relay (YS) K4R Magnetic relay (Y2S) K5R,K6R,K7R Magnetic relay (M2F) K8R,K9R,K0R Magnetic relay (MF) MC Motor compressor MF Motor fan M2F Motor fan 2 PRC Phase reverse circuit QM Q2M Q3E RT R2T R3T RC SPH SLP Thermo switch (MF) Thermo switch (M2F) Earth leak detector Thermistor (air) Thermistor (coil) Thermistor (discharge pipe) Signal receiver circuit Pressure switch (high) Pressure switch (low) SD Safety devices input TA Current transformer TR Transformer ( V/24.9V) TC Signal transmission circuit XM,X2M Terminal strip X3M YE Expansion valve (electronic type) YS 4-way valve Y2S Solenoid valve 2TW2596- RYP B7W Note: Do not operate the unit by short-circuiting SLP Indoor g Field wiring D Terminal F : Connector : Wire clamp b : Protective earth (screw) L : Live N : Neutral Colours BLK: Black/ BLU: Blue/ WHT: White/ RED: Red/ ORG: Orange/ YLW:Yellow Switch box Outdoor L-RED L2-WHT L3-BLK N-BLU AP,A2P,A3P Printed circuit board BS Push button (forced defrost-pump down) CR,C2R Capacitor (MF-M2F) DS Selector switch (defrost) DS2 Selector switch (various see PCB) DS3 Selector switch (emergency) FC Overcurrent relay FU,F2U Fuse (250V, 0A) F3U Field fuse HAP Light emitting diode (service monitor green) HP,H2P Light emitting diode (service monitor red) JHC Crankcase heater KM Magnetic contactor (MC) MC Motor (compressor) MF,M2F Motor (fan) PRC Phase reverse circuit QL,Q2L Thermo switch (MF) Q3E Earth leak detector RT R2T R3T RC RyC RyCH RyF-2 RyR RyS Thermistor (air) Thermistor (coil) Thermistor (discharge pipe) Signal receiver circuit Magnetic relay (KM) Magnetic relay (JHC) Magnetic relay (MF-M2F) Magnetic relay (YS) Magnetic relay (YR) SLP SPH SD TR TC XM YE YR YS Pressure switch (low) Pressure switch (high) Safety devices input Transformer (230V/20.V) Signal transmission circuit Terminal strip Expansion valve 4-way valve Solenoid valve 2TW23636-B 35

38 Pair Application R-407C RYP7-25L7V/W RYP B7W 7 Wiring diagrams 7 RYP7-25L7 Field wire Symbol explication I = Pair II = Twin III = Triple M = Master S = Slave = Earth leak detector 2 = Fuse 3 = Remote control 4TW

39 Pair Application R-407C RYP7-25L7V/W RYP B7W 8 Sound level 8- Sound level data Model H (cooling) 230V, 50Hz H (heating) Sound pressure level Measuring location Sound power level (H) (cooling) 8 8- RYP7L RYP00L RYP25L RYP200B RYP250B Sound pressure spectrum RYP7L7 RYP7L7 Cooling Heating Sound pressure level (db) Sound pressure level (db) 3TW2547-A Octave band center frequency (Hz) 3TW2547-2A 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 5 Curve for RYP7-25L7V/W in cooling mode 37

40 Pair Application R-407C RYP7-25L7V/W RYP B7W 8 Sound level Sound pressure spectrum RYP00L7 Cooling RYP00L7 Heating 8-2 Sound pressure level [db(a)] Sound pressure level [db(a)] 3TW2557-A Octave band center frequency (Hz) 3TW2557-2A Octave band center frequency (Hz) RYP25L7 Cooling RYP25L7 Heating Sound pressure level [db(a)] Sound pressure level [db(a)] 3TW25207-A Octave band center frequency (Hz) 3TW A 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 5 Curve for RYP7-25L7V/W in cooling mode 38

41 Pair Application R-407C RYP7-25L7V/W RYP B7W 8 Sound level 8-2 Sound pressure spectrum RYP200B7 Cooling RYP200B7 Heating 8 Sound pressure level [db(a)] Sound pressure level [db(a)] 8-2 3TW Octave band center frequency (Hz) 3TW Octave band center frequency (Hz) RYP250B7W Cooling RYP250B7W 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 db(a) = A-weighted sound pressure level (A-scale according to IEC) 3 Reference acoustic pressure 0dB = 20Pa 39

42 Pair Application R-407C RYP7-25L7V/W RYP B7W 8 Sound level Sound pressure spectrum RYP7L7 Cooling RYP00L7 Cooling 8-2 Sound pressure level [db(a)] Sound pressure level [db(a)] 3TW Octave band center frequency (Hz) 3TW Octave band center frequency (Hz) RYP25L7 Cooling Sound pressure level [db(a)] 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 5 Curve for RYP7-25L7V/W in cooling mode 3TW Octave band center frequency (Hz) 40

43 Pair Application R-407C RYP7-25L7V/W RYP B7W 9 Accessories 9- Standard accessories RYP B7 Gas pipes Optional accessories Available options for RYP7-25L7V,W Name of option RYP7L RYP00L RYP25L Central drain plug KKPJ5F80 Refrigerant branch piping Connection to Air handling unit Available options for RYP B7W Twin KHRQ22M20TA7 Triple KHRP27HB7 Option RYP200B7 RYP250B7 Fan motor size up NFM22C5 Refnet KHRQ22M20TA7* Refnet KHRQ22M64T7* Refnet KHRP27HB7* * Table with possible indoor combinations = combination matrix 3TW2369-A See chapter RYP-L7/B7, twin/triple/double twin application EKRPER 3TW2549-A 3TW2389-A 3TW2369-2A 4

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