Performance Data Sheet
HGA5513BAA
General Information
Model HGA5513BAA Refrigerant R-410A
Test Condition ASHRAE Performance Test Voltage 115V ~ 60HZ
Return Gas 35°C (95°F) RETURN GAS Motor Type PSC
Performance Information
Evap
Temp (°C)
-25
-23.3
-20
-15
-10
-6.7
-5
0
Condensing Temperature (°C)
30 40 50 60
Btu/h 7540
Watts (Power)
Amps 9.09
Lb/h 103
Btu/h 7750 8240
Watts (Power)
Amps 9.15 8.61
Lb/h 106 113
Btu/h 8190 8180
Watts (Power)
Amps 9.25 8.91
Lb/h 112 112
Btu/h 8980 8370 8720
Watts (Power) 256 363 482
Amps 9.40 9.36 10.7
Lb/h 123 115 120
Btu/h 9950 8950 8660 9190
Watts (Power) 644 767 902 1070
Amps 9.47 9.75 11.4 13.1
Lb/h 136 123 119 126
Btu/h 10700 9560 8970 9020
Watts (Power) 795 931 1080 1260
Amps 9.47 9.96 11.7 13.6
Lb/h 147 131 123 124
Btu/h 11100 9960 9240 9080
Watts (Power) 846 989 1140 1330
Amps 9.45 10.0 11.9 13.9
Lb/h 152 136 127 124
Btu/h 12600 11400 10500 9850
Watts (Power) 912 1080 1250 1460
Amps 9.30 10.2 12.3 14.5
Lb/h 172 157 144 135
Btu/h 14300 13400 12500 11500
5
7.2
10
15
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 1.603102E+04 2.109168E+02 2.521292E+01 2.196309E+02
C2 -7.811442E+01 -1.383967E+01 -3.218360E-01 -1.069340E+00
C3 -9.414114E+01 3.352454E+01 -1.226617E+00 -1.291474E+00
C4 -6.772949E+00 -1.948894E+00 -3.937526E-03 -9.279840E-02
C5 2.089755E+01 5.918397E-01 1.104902E-02 2.862428E-01
C6 -1.262073E+00 -4.662650E-01 2.893199E-02 -1.724782E-02
C7 5.086142E-02 6.560536E-02 -4.851235E-05 6.975746E-04
C8 4.214602E-01 6.537296E-03 1.717854E-05 5.773304E-03
C9 -2.584863E-01 -1.384226E-03 -6.275654E-05 -3.540631E-03
C10 1.854699E-02 4.250526E-03 -1.909122E-04 2.537759E-04
Watts (Power) 890 1080 1280 1510
Amps 8.97 10.2 12.6 15.0
Lb/h 196 184 171 158
Btu/h 15200 14500 13600 12600
Watts (Power) 865 1070 1280 1530
Amps 8.77 10.2 12.7 15.2
Lb/h 208 198 186 172
Btu/h 16400 15900 15200 14200
Watts (Power) 829 1050 1280 1540
Amps 8.44 10.0 12.7 15.3
Lb/h 224 218 208 195
Btu/h 18800 19000 18700 17900
Watts (Power) 779 1030 1290 1580
Amps 7.66 9.62 12.6 15.4
Lb/h 258 261 256 245
Value = C1 + C2 * Te + C4 * Te^2 + C7 * Te^3 + (C3 + C5 * Te + C8 * Te^2) * Tc + (C6 + C9 * Te) * Tc^2 + C10 * Tc^3
Te = Evaporator Temperature
Tc = Condensing Temperature