Performance Data Sheet
HGA5512CXC
General Information
Model HGA5512CXC Refrigerant R-407C
Test Condition ASHRAE Performance Test Voltage 240V ~ 50HZ
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 5000
Watts (Power)
Amps 2.52
Lb/h 68.4
Btu/h 5140 5470
Watts (Power)
Amps 2.54 2.40
Lb/h 70.3 74.8
Btu/h 5430 5420
Watts (Power)
Amps 2.57 2.49
Lb/h 74.4 74.2
Btu/h 5950 5550 5790
Watts (Power) 167 237 315
Amps 2.62 2.62 3.00
Lb/h 81.5 76.0 79.2
Btu/h 6600 5930 5740 6100
Watts (Power) 421 502 590 702
Amps 2.65 2.73 3.18 3.69
Lb/h 90.3 81.3 78.7 83.5
Btu/h 7100 6340 5950 5980
Watts (Power) 520 609 704 824
Amps 2.65 2.79 3.29 3.83
Lb/h 97.2 86.9 81.4 81.9
Btu/h 7380 6600 6120 6020
Watts (Power) 553 647 747 870
Amps 2.65 2.82 3.34 3.90
Lb/h 101 90.5 83.9 82.4
Btu/h 8340 7580 6950 6530
Watts (Power) 596 704 819 955
Amps 2.61 2.87 3.46 4.08
Lb/h 114 104 95.3 89.4
Btu/h 9490 8890 8260 7650
5
7.2
10
15
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 1.063030E+04 1.378263E+02 7.086030E+00 1.455810E+02
C2 -5.179778E+01 -9.046429E+00 -8.905305E-02 -7.089357E-01
C3 -6.242432E+01 2.191217E+01 -3.450615E-01 -8.527212E-01
C4 -4.491232E+00 -1.273700E+00 -1.163418E-03 -6.155524E-02
C5 1.385735E+01 3.868536E-01 3.061142E-03 1.898098E-01
C6 -8.369205E-01 -3.047692E-01 8.139280E-03 -1.151289E-02
C7 3.372325E-02 4.287729E-02 -1.315954E-05 4.638447E-04
C8 2.794761E-01 4.271866E-03 5.788364E-06 3.828275E-03
C9 -1.714048E-01 -9.050744E-04 -1.731125E-05 -2.347844E-03
C10 1.229884E-02 2.778245E-03 -5.373160E-05 1.687965E-04
Watts (Power) 581 707 838 990
Amps 2.52 2.87 3.54 4.22
Lb/h 130 122 113 105
Btu/h 10100 9580 8990 8350
Watts (Power) 565 699 838 997
Amps 2.46 2.86 3.56 4.26
Lb/h 138 131 123 114
Btu/h 10900 10600 10100 9420
Watts (Power) 542 687 836 1010
Amps 2.37 2.82 3.57 4.31
Lb/h 149 145 138 129
Btu/h 12500 12600 12400 11800
Watts (Power) 509 676 845 1030
Amps 2.15 2.70 3.53 4.33
Lb/h 171 173 170 162
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