Specifications Table for SB.RKXYQ-T8

SB.RKXYQ5T8Y1B SB.RKXYQ5T8V1B SB.RKXYQ5T8
Capacity range HP 5   5
Operation range Cooling Max. °CDB     46.0
    Min. °CDB     -5.0
  Heating Min. °CWB     -20.0
ηs,c %     200.1
Maximum number of connectable indoor units 10 (3)   10 (3)
Space cooling B Condition (30°C - 27/19) Pdc kW     10.3
  D Condition (20°C - 27/19) Pdc kW     4.8
  A Condition (35°C - 27/19) Pdc kW     14.0
  C Condition (25°C - 27/19) Pdc kW     6.6
Refrigerant GWP       2,087.5
  Type   R-410A R-410A R-410A
System Compressor unit   RKXYQ5T8   RKXYQ5T8
  Heat exchanger unit   RDXYQ5T8   RDXYQ5T8
Power input - 50Hz Heating Nom. 6°CWB kW     3.5 (2)
Indoor index connection Nom.   125
  Min.   63   62.5
  Max.   163   162.5
Cooling capacity Prated,c kW     14.0 (1)
COP at nom. capacity 6°CWB kW/kW     4.0
Space heating (Average climate) TOL Pdh (declared heating cap) kW     10.4
    Tol (temperature operating limit) °C     -10.0
  D Condition (12°C) Pdh (declared heating cap) kW     4.1
  B Condition (2°C) Pdh (declared heating cap) kW     5.6
  C Condition (7°C) Pdh (declared heating cap) kW     3.6
  A Condition (-7°C) Pdh (declared heating cap) kW     9.2
  TBivalent Pdh (declared heating cap) kW     10.4
    Tbiv (bivalent temperature) °C     -10.0
Piping connections Between Compressor module (CM) and indoor units (IU) Level difference CM below IU m 30.0
      CM above IU m 30.0
    Liquid OD mm 9.52   9.52
    Gas OD mm 15.9   15.9
  Total piping length System Actual m 140 (6)   140 (6)
  Level difference IU - IU Max. m 15
  Between Compressor module (CM) and heat exchanger module (HM) Gas OD mm 19.1   19.1
    Liquid OD mm 12.7   12.7
    Level difference CM above HM m 10.0
      CM below HM m 10.0
    Piping length Max. m 30.0   30.0
Sound power level Cooling Nom. dBA     77.0 (4)
ηs,h %     149.3
Fan External static pressure Max. Pa 150   150
Heating capacity Nom. 6°CWB kW     14.0 (2)
  Prated,h kW     10.4
Notes (1) - Nominal cooling capacities are based on: indoor temperature: 27°CDB, 19°CWB, outdoor temperature: 35°CDB, equivalent refrigerant piping: 5m, level difference: 0m. Data for standard efficiency series. Nominal air flow rate, ESP 30 Pa. (1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m (1) - Cooling: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB; equivalent piping length: 7.5m; level difference: 0m
  (2) - Nominal heating capacities are based on: indoor temperature: 20°CDB, outdoor temperature: 7°CDB, 6°CWB, equivalent refrigerant piping: 5m, level difference: 0m. Data for standard efficiency series. Nominal air flow rate, ESP 30 Pa. (2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m (2) - Heating: indoor temp. 20°CDB; outdoor temp. 7°CDB, 6°CWB; equivalent refrigerant piping: 7.5m; level difference: 0m
  (3) - Actual number of units depends on the indoor unit type (VRV DX indoor, etc.) and the connection ratio restriction for the system (being; 50% ≤ CR ≤ 130%). (3) - Actual number of units depends on the indoor unit type (VRV DX indoor, etc.) and the connection ratio restriction for the system (being; 50% ≤ CR ≤ 130%). (3) - Actual number of units depends on the indoor unit type (VRV DX indoor, etc.) and the connection ratio restriction for the system (being; 50% ≤ CR ≤ 130%).
  (4) - The sound power level is an absolute value indicating the power which a sound source generates. (4) - Sound power level is an absolute value that a sound source generates. (4) - Sound power level is an absolute value that a sound source generates.
  (5) - Sound pressure level is a relative value, depending on the distance and acoustic environment. For more details, please refer to sound level drawings. Nominal air flow rate, ESP 60 Pa. (5) - Sound pressure level is a relative value, depending on the distance and acoustic environment. For more details, please refer to the sound level drawings. (5) - Sound pressure level is a relative value, depending on the distance and acoustic environment. For more details, please refer to the sound level drawings.
  (6) - Refer to refrigerant pipe selection or installation manual (6) - Refer to refrigerant pipe selection or installation manual (6) - Refer to refrigerant pipe selection or installation manual
  (7) - In accordance with EN/IEC 61000-3-12, it may be necessary to consult the distribution network operator to ensure that the equipment is connected only to a supply wih Ssc ≥ minimum Ssc value (7) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB (7) - RLA is based on following conditions: indoor temp. 27°CDB, 19°CWB; outdoor temp. 35°CDB
  (8) - Sound values are measured in a semi-anechoic room. (8) - MSC means the maximum current during start up of the compressor. This unit uses only inverter compressors. Starting current is always ≤ max. running current. (8) - MSC means the maximum current during start up of the compressor. This unit uses only inverter compressors. Starting current is always ≤ max. running current.
    (9) - In accordance with EN/IEC 61000-3-12, it may be necessary to consult the distribution network operator to ensure that the equipment is connected only to a supply wih Ssc ≥ minimum Ssc value (9) - In accordance with EN/IEC 61000-3-12, it may be necessary to consult the distribution network operator to ensure that the equipment is connected only to a supply wih Ssc ≥ minimum Ssc value
    (10) - MCA must be used to select the correct field wiring size. The MCA can be regarded as the maximum running current. (10) - MCA must be used to select the correct field wiring size. The MCA can be regarded as the maximum running current.
    (11) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker). (11) - MFA is used to select the circuit breaker and the ground fault circuit interrupter (earth leakage circuit breaker).
    (12) - TOCA means the total value of each OC set. (12) - TOCA means the total value of each OC set.
    (13) - FLA means the nominal running current of the fan (13) - FLA means the nominal running current of the fan
    (14) - Maximum allowable voltage range variation between phases is 2%. (14) - Maximum allowable voltage range variation between phases is 2%.
    (15) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits. (15) - Voltage range: units are suitable for use on electrical systems where voltage supplied to unit terminal is not below or above listed range limits.
    (16) - Sound values are measured in a semi-anechoic room. (16) - Sound values are measured in a semi-anechoic room.
    (17) - EN/IEC 61000-3-12: European/international technical standard setting the limits for harmonic currents produced by equipment connected to public low-voltage system with input current > 16A and ≤ 75A per phase (17) - EN/IEC 61000-3-12: European/international technical standard setting the limits for harmonic currents produced by equipment connected to public low-voltage system with input current > 16A and ≤ 75A per phase
    (18) - Ssc: Short-circuit power (18) - Ssc: Short-circuit power
    (19) - For detailed contents of standard accessories, see installation/operation manual (19) - For detailed contents of standard accessories, see installation/operation manual
Operation range Heating Max. °CWB     15.5
Space cooling B Condition (30°C - 27/19) EERd       4.0
  D Condition (20°C - 27/19) EERd       9.4
  A Condition (35°C - 27/19) EERd       2.4
  C Condition (25°C - 27/19) EERd       6.5
SCOP     3.8
Recommended combination     4 x FXSQ32A2VEB
Space heating (Average climate) TOL COPd (declared COP)       2.2
  D Condition (12°C) COPd (declared COP)       5.2
  B Condition (2°C) COPd (declared COP)       3.3
  C Condition (7°C) COPd (declared COP)       7.1
  A Condition (-7°C) COPd (declared COP)       2.4
  TBivalent COPd (declared COP)       2.2
SEER     5.1