RZQG71-100L8Y1
/ŶĨƌĂƐƚƌƵĐƚƵƌĞCooling
FCQHG100FVEB RZQG71L8Y1B 12,6 㸫16 㸫9,6 0,094 0,4 0,221 1,3
FCQG35FVEB x3 RZQG71L8Y1B 12,1 㸫16 㸫9,6 0,094 0,4 0,044 x3 0,3 x3
FCQG50FVEB x2 RZQG71L8Y1B 11,8 㸫16 㸫9,6 0,094 0,4 0,039 x2 0,3 x2
FCQG100FVEB RZQG71L8Y1B 11,9 㸫16 㸫9,6 0,094 0,4 0,117 0,7
FFQ35C2VEB x3 RZQG71L8Y1B 12,5 㸫16 㸫9,6 0,094 0,4 0,050 x3 0,4 x3
FFQ50C2VEB x2 RZQG71L8Y1B 12,0 㸫16 㸫9,6 0,094 0,4 0,050 x2 0,4 x2
FBQ35D2VEB x3 RZQG71L8Y1B 13,3 㸫16 㸫9,6 0,094 0,4 0,089 x3 0,6 x3
FBQ50D2VEB x2 RZQG71L8Y1B 12,5 㸫16 㸫9,6 0,094 0,4 0,089 x2 0,6 x2
FBQ100D2VEB RZQG71L8Y1B 12,3 㸫16 㸫9,6 0,094 0,4 0,127 1,0
FHQ35CAVEB x3 RZQG71L8Y1B 13,3 㸫16 㸫9,6 0,094 0,4 0,060 x3 0,6 x3
FHQ50CAVEB x2 RZQG71L8Y1B 12,5 㸫16 㸫9,6 0,094 0,4 0,060 x2 0,6 x2
FHQ100CAVEB RZQG71L8Y1B 12,6 㸫16 㸫9,6 0,094 0,4 0,150 1,3
FUQ100CVEB RZQG71L8Y1B 12,6 㸫16 㸫9,6 0,094 0,4 0,106 1,3
FAQ100CVEB RZQG71L8Y1B 11,5 㸫16 㸫9,6 0,094 0,4 0,064 0,4
FVQ100CVEB RZQG71L8Y1B 12,5 㸫16 㸫9,6 0,094 0,4 0,238 1,2
FDXS35F2VEB x3 RZQG71L8Y1B 12,1 㸫16 㸫9,6 0,094 0,4 0,034 x3 0,3 x3
FDXS50F2VEB9 x2 RZQG71L8Y1B 12,3 㸫16 㸫9,6 0,094 0,4 0,060 x2 0,5 x2
FCQHG71FVEB x2 RZQG100L8Y1B 17,8 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,091 x2 0,5 x2
FCQHG140FVEB RZQG100L8Y1B 18,3 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,244 1,4
FCQG35FVEB x4 RZQG100L8Y1B 18,0 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,044 x4 0,3 x4
FCQG50FVEB x3 RZQG100L8Y1B 17,6 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,039 x3 0,3 x3
FCQG71FVEB x2 RZQG100L8Y1B 17,5 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,054 x2 0,4 x2
FCQG140FVEB RZQG100L8Y1B 17,8 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,168 1,0
FFQ35C2VEB x4 RZQG100L8Y1B 18,5 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,050 x4 0,4 x4
FFQ50C2VEB x3 RZQG100L8Y1B 18,0 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,050 x3 0,4 x3
FBQ35D2VEB x4 RZQG100L8Y1B 19,5 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,089 x4 0,6 x4
FBQ50D2VEB x3 RZQG100L8Y1B 18,8 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,089 x3 0,6 x3
FBQ71D2VEB x2 RZQG100L8Y1B 17,8 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,070 x2 0,5 x2
FBQ140D2VEB RZQG100L8Y1B 18,4 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,187 1,5
FHQ35CAVEB x4 RZQG100L8Y1B 19,5 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,060 x4 0,6 x4
FHQ50CAVEB x3 RZQG100L8Y1B 18,8 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,060 x3 0,6 x3
FHQ71CAVEB x2 RZQG100L8Y1B 18,5 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,091 x2 0,8 x2
FHQ140CAVEB RZQG100L8Y1B 18,8 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,150 1,8
FUQ71CVEB x2 RZQG100L8Y1B 18,8 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,046 x2 0,9 x2
FAQ71CVEB x2 RZQG100L8Y1B 17,5 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,048 x2 0,4 x2
FVQ140CVEB RZQG100L8Y1B 18,3 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,276 1,4
FDXS35F2VEB x4 RZQG100L8Y1B 18,0 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,034 x4 0,3 x4
FDXS50F2VEB9 x3 RZQG100L8Y1B 18,4 㸫20 㸫14,2 0.094+0.094 0.4+0.4 0,060 x3 0,5 x3
Symbols
MCA: Minimum Circuit Ampere [A]
TOCA: Total overcurrent amps [A]
MFA: Maximum Fuse Ampere [A]
MSC: Maximum current of the starting compressor [A]
RLA: Rated load amps [A]
OFM: Outdoor fan motor
IFM: Indoor fan motor
FLA: Full Load Ampere [A]
KW: Fan motor rated output [kW]
Notes
1. The RLA is based on the following conditions.
Cooling
Indoor temperature 27.0°C DB / 19.0°C WB
Outdoor temperature 35.0°C DB
Heating
Indoor temperature 20.0°C DB
Outdoor temperature 7.0°C DB / 6.0°C WB
2. TOCA is the total value of each overcurrent set.
3. Voltage range
4. The maximum allowable voltage that is unbalanced between phases is 2%.
5. MCA is the maximum input current.
The capacity of the MFA must be greater than that of the MCA.
Select the MFA according to the table.
6. Select the wire size according to the MCA.
7. MFA is used to select the circuit breaker and the ground fault circuit interruptor.
Earth leakage circuit breaker
The units are suitable for use with electrical systems in which the voltage supplied to the unit terminals is not below or above the listed range limits.
3N~ 50Hz
380-415V
Minimum: 342 V
Maximum 456 V
3N~ 50Hz
380-415V
Minimum: 342 V
Maximum 456 V
MSC RLA kW FLA kW FLA
Compressor OFM IFM
Indoor Outdoor Power supply Voltage range MCA TOCA MFA
3D098292