Specifications Table for SEHVX-BAW / SERHQ-BAW1

SEHVX20BAW / SERHQ020BAW1 SEHVX32BAW / SERHQ032BAW1 SEHVX40BAW / SERHQ020BAW1 + SERHQ020BAW1 SEHVX64BAW / SERHQ032BAW1 + SERHQ032BAW1
Refrigerant charge Per circuit kg     7.60 9.60
  Refrigerant charge-=-Per circuit-=-TCO2Eq TCO2Eq     15.9 20.0
Compressor Type       Hermetically sealed scroll compressor Hermetically sealed scroll compressor
  Quantity       4 6
Air heat exchanger Type       Air cooled coil Air cooled coil
EER     2.80 2.48
ESEER     4.40 4.05
Refrigerant GWP       2,087.5 2,087.5
  Type       R-410A R-410A
  Circuits Quantity       2 2
  Control       Electronic expansion valve Electronic expansion valve
Cooling capacity Nom. kW     42.3 (1) 63.3 (1)
Water heat exchanger Water volume l     6 9
  Type       Brazed plate Brazed plate
  Water flow rate Min. l/min     46 72
Power input Cooling Nom. kW     15.1 (1) 25.5 (1)
  Heating Nom. kW     13.7 (2) 21.4 (2)
Sound power level Cooling Nom. dBA     81 83
COP     3.03 2.93
Capacity control Minimum capacity %     25 25
  Method       Inverter controlled Inverter controlled
Fan External static pressure Max. Pa     78 78
Heating capacity Nom. kW     41.7 (2) 62.7 (2)
Water circuit Drain valve / fill valve       Yes Yes
  Air purge valve       Yes Yes
  Shut off valve       Yes Yes
  Safety valve bar     3 3
Power supply Phase       3N~ 3N~
  Name       W1 W1
  Frequency Hz     50 50
  Voltage V     400 400
Notes     (1) - Cooling: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C (1) - Cooling: entering evaporator water temp. 12°C; leaving evaporator water temp. 7°C; ambient air temp. 35°C
      (2) - Condition: Ta DB/WB 7°C/6°C - LWC 45°C (Dt=5°C) (2) - Condition: Ta DB/WB 7°C/6°C - LWC 45°C (Dt=5°C)
      (3) - Condition: Ta 35°C - LWE 7°C ( DT = 5°C) (3) - Condition: Ta 35°C - LWE 7°C ( DT = 5°C)
      (4) - Water can be used above 5°C. Between 0°C and 5°C a 30% glycol solution (propylene or ethylene) has to be used. Between 0°C and -10°C a 40% glycol solution (propylene or ethylene) has to be used (see installation manual and information related to OPZL opti (4) - Water can be used above 5°C. Between 0°C and 5°C a 30% glycol solution (propylene or ethylene) has to be used. Between 0°C and -10°C a 40% glycol solution (propylene or ethylene) has to be used (see installation manual and information related to OPZL opti
      (5) - Excluding water volume in the unit. In most applications this minimum water volume will have a satisfying result. In critical processes or in rooms with a high heat load though, extra water volume might be required. Refer to operation range for more info. (5) - Excluding water volume in the unit. In most applications this minimum water volume will have a satisfying result. In critical processes or in rooms with a high heat load though, extra water volume might be required. Refer to operation range for more info.
      (6) - Excluding the water volume in the unit. This volume will guarantee suficient defrost energy for all applications, however, this volume can be multiplied by 0,66 if the heating sepoint is ≥ 45° C (eg. Fan coils) (6) - Excluding the water volume in the unit. This volume will guarantee suficient defrost energy for all applications, however, this volume can be multiplied by 0,66 if the heating sepoint is ≥ 45° C (eg. Fan coils)
      (7) - This is PD between inlet & outlet connections of unit. It includes the water side heat exchanger pressure drop. (7) - This is PD between inlet & outlet connections of unit. It includes the water side heat exchanger pressure drop.
      (8) - Including piping + PHE; excluding expansion vessel (8) - Including piping + PHE; excluding expansion vessel
Energy Efficiency Range Space Heating A+++ ~ D, Water Heating A+ ~ F Space Heating A+++ ~ D, Water Heating A+ ~ F