Specifications Table for EWFH-TZPSD

EWFH225TZPSD1 EWFH265TZPSD1 EWFH295TZPSD1 EWFH340TZPSD1 EWFH395TZPSD1 EWFH420TZPSD1 EWFH490TZPSD1 EWFH500TZPSD2 EWFH540TZPSD2 EWFH545TZPSD1 EWFH615TZPSD2 EWFH645TZPSD2 EWFH700TZPSD2 EWFH770TZPSD2 EWFH845TZPSD2 EWFH900TZPSD2 EWFH960TZPSD2 EWFHC10TZPSD2 EWFHH10TZPSD2 EWFHH11TZPSD2 EWFHC12TZPSD2
Cooling capacity Nom. kW 314.39 377.84 413.94 481.12 545.38 672.02 716.4 762.26 868.15 709.3 901.97 965.07 1,058.6 1,166.75 1,227.87 1,313.47 1,373.69 1,471.78 1,527.41 1,605.75 588.19
Capacity control Method   Stepless Stepless Stepless Stepless Stepless Stepless Stepless Stepless Stepless Stepless Stepless Stepless Stepless Stepless Stepless Stepless Stepless Stepless Stepless Stepless Stepless
  Minimum capacity % 21.5 19 16.5 27.5 23 21.5 19 10 10 30 15 13.5 12.5 11.5 10.5 10 10 10 10 13.5 13.5
Power input Cooling Nom. kW 66.38 77.51 89.54 93.35 114.38 148.22 142.4 153.37 175.31 142.95 186.01 209.12 227.02 248.93 274.14 293.71 318.72 343.47 314.15 328.91 123.39
EER 4.736 4.875 4.623 5.154 4.768 4.534 5.031 4.97 4.952 4.962 4.849 4.615 4.663 4.687 4.479 4.472 4.31 4.285 4.862 4.882 4.767
IPLV 6.738 6.736 6.579 7.506 7.214 7.271 7.135 6.819 6.956 6.73 7.347 7.226 7.016 7.052 7.143 6.966 6.615 6.787 6.825 6.965 7.041
SEER 6.008 6.095 6.081 6.58 6.397 6.579 6.481 6.199 6.24 5.753 6.646 6.55 5.945 6.46 6.506 6.388 5.929 6.3 5.568 6.031 6.095
Dimensions Unit Depth mm 3640 4720 4720 5800 5800 6880 6880 6880 7960 6880 7960 7960 7960 9040 10120 10120 11200 11200 12280 12280 13360
    Height mm 2553 2553 2553 2553 2553 2553 2553 2553 2553 2553 2553 2553 2553 2553 2553 2553 2553 2553 2553 2553 2553
    Width mm 2238 2238 2238 2238 2238 2238 2238 2238 2238 2238 2238 2238 2238 2238 2238 2238 2238 2238 2238 2238 2238
Weight Operation weight kg 3628 4254 4259 5,223.1 5,233.1 5,813.1 5,939.3 6391 6971 6,618.3 7900 7905 7910 8765 9329 9339 11225 11235 11797 12476 13061
  Unit kg 3307 3846 3846 4720 4720 5229 5315 5336 5846 5984 6358 6358 6358 6957 7519 7519 8341 8341 8892 9561 10070
Casing Colour   Ivory white Ivory white Ivory white Ivory white Ivory white Ivory white Ivory white Ivory white Ivory white Ivory white Ivory white Ivory white Ivory white Ivory white Ivory white Ivory white Ivory white Ivory white Ivory white Ivory white Ivory white
  Material   Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet Galvanized and painted steel sheet
Water heat exchanger - evaporator Type   Brazed plate Brazed plate Brazed plate Brazed plate Brazed plate Brazed plate Brazed plate Shell and tube Shell and tube Brazed plate Shell and tube Shell and tube Shell and tube Shell and tube Shell and tube Shell and tube Shell and tube Shell and tube Shell and tube Shell and tube Shell and tube
  Water volume l 40 48 48 58.1 58.1 58.1 76.3 289 289 76.3 492 492 492 583 546 546 1043 1043 1011 1011 1011
  Water pressure drop Cooling Nom. kPa 7.09 8.03 9.6 11.36 14.61 12.86 14.59 17.06 22.12 14.92 23.78 26.91 25.34 35.85 39.55 23.02 24.93 19.69 20.93 22.71 16.96
Air heat exchanger Type   Microchannel Microchannel Microchannel Microchannel Microchannel Microchannel Microchannel Microchannel Microchannel Microchannel Microchannel Microchannel Microchannel Microchannel Microchannel Microchannel Microchannel Microchannel Microchannel Microchannel Microchannel
Fan Quantity   6 8 8 10 10 12 12 12 14 12 14 14 14 16 18 18 20 20 22 22 24
  Type   Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller Direct propeller
  Air flow rate Cooling Nom. l/s 33765 45020 45020 56275 56275 67530 67530 67530 78785 67530 78785 78785 78785 90040 101295 101295 112550 112550 123805 123805 135060
Fan motor Drive   Brushless Brushless Brushless Brushless Brushless Brushless Brushless Brushless Brushless Brushless Brushless Brushless Brushless Brushless Brushless Brushless Brushless Brushless Brushless Brushless Brushless
Compressor Quantity   1 1 1 1 1 1 1 2 2 1 2 2 2 2 2 2 2 2 2 2 2
  Type   Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor Screw compressor
Operation range Air side Cooling Min. °CDB -20 -20 -20 -20 -20 -20 -20 -20 -20 -20 -20 -20 -20 -20 -20 -20 -20 -20 -20 -20 -20
      Max. °CDB 46 46 46 46 46 46 46 46 46 46 46 46 46 46 46 46 46 46 46 46 46
  Water side Evaporator Min. °CDB 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4
      Max. °CDB 18 18 18 18 18 18 18 18 18 18 18 18 18 18 18 18 18 18 18 18 18
Sound power level Cooling Nom. dBA 97.48 98.1 102.57 95.74 98.68 100.06 104.55 100.6 100.91 98.99 96.61 97.51 99.32 100.95 102.3 104.16 106.51 106.87 105.5 102.36 102.82
Sound pressure level Cooling Nom. dBA 77.74 77.83 82.3 75 77.94 78.89 83.39 79.43 79.35 77.82 75.06 75.95 77.76 79.04 80.05 81.92 83.96 84.32 82.67 79.52 79.71
Refrigerant Type   R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze) R-1234(ze)
  GWP   7 7 7 7 7 7 7 7 7 7 7 7 7 7 7 7 7 7 7 7 7
  Charge kg 30 35 40 45 55 60 65 70 75 75 85 90 95 105 115 125 130 140 150 160 170
  Circuits Quantity   1 1 1 1 1 1 1 2 2 1 2 2 2 2 2 2 2 2 2 2 2
Piping connections Evaporator water inlet/outlet (OD)   88.9 88.9 88.9 139.7 139.7 139.7 139.7 168.3 168.3 139.7 219.1 219.1 219.1 219.1 219.1 219.1 273 273 273 273 273
Power supply Phase   3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3
  Frequency Hz 50 50 50 50 50 50 50 50 50 50 50 50 50 50 50 50 50 50 50 50 50
  Voltage V 400 400 400 400 400 400 400 400 400 400 400 400 400 400 400 400 400 400 400 400 400
  Voltage range Min. % -10 -10 -10 -10 -10 -10 -10 -10 -10 -10 -10 -10 -10 -10 -10 -10 -10 -10 -10 -10 -10
    Max. % 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10
Unit Starting current Max A 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0
  Running current Max A 183 214 235 258 301 330 367 375 406 425 432 458 505 558 609 647 694 731 779 875 923
  Max unit current for wires sizing A 201 235 258 283 331 363 404 412 444 467 476 503 556 614 670 712 764 804 857 962 1015
Notes (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol (1) - Cooling: EW 30°C; LW 20°C; ambient conditions: 35°CDB; 25% Ethylene glycol
  (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187 (2) - Performances referring to chiller with option 187
  (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1 (3) - Performance data calculated as Chiller Configurator - 2.2.1
  (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow. (4) - Seasonal Energy Efficiency Ratio as defined in EN14825, part load condition in cooling for Air to Water units, fan coil application, variable outlet, variable flow.
  (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition (5) - IPLV based on AHRI condition
  (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C (6) - Sound power level measured in accordance with ISO9614, referred to unit operating at Standard Rating Conditions for Air to water chillers according to EN14511:2 Outdoor Heat exchanger inlet dry bulb temperature 35°; Indoor heat exchanger inlet water temperature 12°C, outlet water temperature 7°C
  (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%. (7) - Performance referred to 400V/50Hz power supply. ±10% tolerance on Voltage, Voltage unbalance between phases must be within ± 3%.