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| | | 6. VRV®III COOLING ONLY | | |
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| | | | | | | | | | | | | | | | | | | RXQ-P(A) 1 RXQ5P7W1B | RXQ8P7W1B | RXQ10P7W1B | RXQ12P7W1B | RXQ14P7W1BA | RXQ16P7W1BA | RXQ18P7W1BA | | | | Nominal capacity kW | 140 | 22.4 | 28.0 | 33.5 | 40.0 | 45.0 | 49.0 | | | | COP | 3.98 | 4.03 | 3.77 | 3.48 | 3.23 | 3.17 | 3.02 | | | | Capacity range | HP | 5 | 8 | 10 | 12 | 14 | 16 | 18 | | | | Powerlnput (nominal) | kW | 3.52 | 5.56 | 7.42 | 9.62 | 12.4 | 14.2 | 16.2 | | | | Max n° of indoor units to be connected | 8 | 13 | 16 | 19 | 23 | 26 | 29 | | | | Indoorlndex connection | minimum | 62.5 | 100 | 125 | 150 | 175 | 200 | 225 | | | | maximum | 162.5 | 260 | 325 | 390 | 455 | 520 | 585 | | | | Casing | colour | Daikin White | | | | material | Painted galvanised steel | | | | Dimensions | unit | height | mm | 1,680 | 1,680 | 1,680 | 1,680 | 1,680 | 1,680 | 1,680 | | | | width | mm | 635 | 930 | 930 | 930 | 1,240 | 1,240 | 1,240 | | | | depth | mm | 765 | 765 | 765 | 765 | 765 | 765 | 765 | | | | Weight | unit | kg | 157 | 185 | 238 | 238 | 314 | 314 | 322 | | | | Fan | type | Propeller | | | | air Flow Rate (nominal at 230V) | nWmin | 95 171 185 196 233 233 239 | | | | external static pressure (MAX) | Pa | 78Pa in high static pressure | | | | Compressor | type | Hermetically sealed scroll compressor | | | | Operation range | minimum | °CDB | -5.0 | -5.0 | -5.0 | -5.0 | -5.0 | -5.0 | -5.0 | | | | maximum | °CDB | 43.0 | 43.0 | 43.0 | 43.0 | 43.0 | 43.0 | 43.0 | | | | Soundlevel (nominal) | sound power | dBA | 72 | 78 | 78 | 80 | 80 | 80 | 83 | | | | sound pressure | dBA | 54 | 57 | 58 | 60 | 60 | 60 | 63 | | | | Refrigerant | type | R-410A | | | | charge | kg | 6.2 7.7 8.4 8.6 11.3 1 1.5 11.7 | | | | control | Expansion valve (electronic type) | | | | Refrigerant Oil | type | Synthetic (ether) oil | | | | charged volume 11 | 1.7 2.1 3.9 3.9 5.7 5.7 5.8 | | | | Piping Connections | liquid | type | Braze connection | | | | diameter (OD) | mm | 9.52 9.52 9.52 1 2.7 12.7 1 2.7 1 5.9 | | | | gas | type | Braze connection | | | | diameter (OD) | mm | 15.9 19.1 22.2 28.6 28.6 28.6 28.6 | | | | heatlnsulatlon | Both liquid and gas pipes | | | | Capacity control method | Inverter controlled | | | | Capacity control [°/o] | ~ 100 ~ 100 ~ 100 ~ 100 ~ 100 ~ 100 ~ 100 | | | | Safety devices | HPS, fan motor driver overload protector, overcurrent relay, inverter overload protector, PC board fuse | | | | Power supply | name | W1 | W1 | W1 | W1 | W1 | W1 | W1 | | | | phase | 3N~ | 3N~ | 3N~ | 3N~ | 3N~ | 3N~ | 3N~ | | | | frequency | Hz | 50 | 50 | 50 | 50 | 50 | 50 | 50 | | | | voltage |v | 400 | 400 | 400 | 400 | 400 | 400 | 400 | | | | | | | | | | | | | | | | | | |
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| | | Notes: Nominal cooling capacities are based on : indoor temperature: 27QCDB, 19Q(WB, outdoor temperature : 35QG)B, equivalent refrigerant piping: 7.5m, level difference : Dm. Sound power level is an absolute value that a sound source generates. Sound pressure level is a relative value, depending on the distance and acoustic environment. Sound values are measured in a semi-anechoic room. | | |
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