Performance Data Sheet
HGAB514BAA
General Information
Model HGAB514BAA 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 7830
Watts (Power)
Amps 7.66
Lb/h 107
Btu/h 8050 8560
Watts (Power)
Amps 7.69 7.24
Lb/h 110 117
Btu/h 8500 8490
Watts (Power)
Amps 7.77 7.48
Lb/h 117 116
Btu/h 9320 8690 9060
Watts (Power) 201 285 379
Amps 7.87 7.83 8.96
Lb/h 128 119 124
Btu/h 10300 9290 8990 9550
Watts (Power) 507 604 710 845
Amps 7.92 8.14 9.48 11.0
Lb/h 141 127 123 131
Btu/h 11100 9930 9310 9360
Watts (Power) 626 733 848 992
Amps 7.91 8.32 9.79 11.4
Lb/h 152 136 128 128
Btu/h 11600 10300 9590 9420
Watts (Power) 666 779 899 1050
Amps 7.89 8.39 9.94 11.6
Lb/h 158 142 131 129
Btu/h 13100 11900 10900 10200
Watts (Power) 718 848 986 1150
Amps 7.76 8.53 10.3 12.1
Lb/h 179 163 149 140
Btu/h 14900 13900 12900 12000
5
7.2
10
15
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 1.664691E+04 1.660078E+02 2.103490E+01 2.280856E+02
C2 -8.111686E+01 -1.089416E+01 -2.703406E-01 -1.112134E+00
C3 -9.776130E+01 2.638942E+01 -1.023176E+00 -1.341881E+00
C4 -7.032978E+00 -1.534050E+00 -3.216853E-03 -9.632584E-02
C5 2.170036E+01 4.658809E-01 9.274941E-03 2.973054E-01
C6 -1.310480E+00 -3.670332E-01 2.413300E-02 -1.790052E-02
C7 5.280510E-02 5.163987E-02 -4.210756E-05 7.223267E-04
C8 4.376513E-01 5.145833E-03 1.379118E-05 5.995219E-03
C9 -2.684164E-01 -1.089796E-03 -5.284427E-05 -3.677367E-03
C10 1.925898E-02 3.345876E-03 -1.592305E-04 2.635027E-04
Watts (Power) 700 852 1010 1190
Amps 7.49 8.54 10.5 12.5
Lb/h 203 191 177 164
Btu/h 15800 15000 14100 13100
Watts (Power) 681 842 1010 1200
Amps 7.31 8.49 10.6 12.7
Lb/h 216 206 193 179
Btu/h 17000 16500 15800 14700
Watts (Power) 652 827 1010 1210
Amps 7.04 8.38 10.6 12.8
Lb/h 233 227 216 202
Btu/h 19500 19800 19400 18500
Watts (Power) 613 814 1020 1250
Amps 6.39 8.03 10.5 12.9
Lb/h 268 271 266 254
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