Performance Data Sheet
THA0347YXA
General Information
Model THA0347YXA Refrigerant R134a
Test Condition ARI Test Voltage 115V ~ 60HZ
Return Gas 18.3°C (65°F) RETURN GAS Motor Type RSIR
Performance Information
Evap Temp (°F)
20
25
30
35
40
45
50
Condensing Temperature (°F)
80 90 100 110 120 130 140 150
Btu/h 730 670 609 550 490 431 372 314
Watts 91.0 92.8 94.5 96.2 98.0 99.9 102 104
Amps 1.38 1.38 1.39 1.40 1.41 1.43 1.44 1.45
Lb/h 9.99 9.44 8.90 8.36 7.83 7.31 6.81 6.31
Btu/h 829 762 695 629 563 497 432 367
Watts 92.0 94.6 97.1 99.6 102 105 107 110
Amps 1.38 1.40 1.41 1.43 1.44 1.46 1.47 1.49
Lb/h 11.2 10.6 10.1 9.49 8.94 8.39 7.84 7.31
Btu/h 934 860 787 714 642 569 498 426
Watts 92.7 96.2 99.7 103 106 110 113 116
Amps 1.39 1.41 1.43 1.45 1.47 1.49 1.51 1.53
Lb/h 12.5 11.9 11.4 10.8 10.2 9.63 9.05 8.49
Btu/h 1040 965 885 806 726 648 569 491
Watts 93.1 97.6 102 106 110 114 119 122
Amps 1.39 1.42 1.45 1.47 1.50 1.52 1.55 1.57
Lb/h 14.0 13.4 12.8 12.2 11.6 11.0 10.4 9.83
Btu/h 1160 1080 989 903 817 732 647 563
Watts 92.9 98.5 104 109 114 119 124 129
Amps 1.39 1.43 1.46 1.49 1.53 1.56 1.59 1.62
Lb/h 15.5 15.0 14.4 13.8 13.2 12.6 12.0 11.3
Btu/h 1290 1190 1100 1010 914 822 731 640
Watts 92.1 98.8 105 112 118 124 130 135
Amps 1.39 1.43 1.47 1.51 1.55 1.59 1.62 1.66
Lb/h 17.2 16.6 16.1 15.5 14.9 14.3 13.6 13.0
Btu/h 1420 1320 1220 1120 1020 919 821 723
Watts 90.5 98.5 106 114 121 128 135 141
Amps 1.38 1.43 1.48 1.52 1.57 1.62 1.66 1.70
Lb/h 19.0 18.4 17.9 17.3 16.7 16.1 15.4 14.8
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 6.728696E+02 9.875172E+01 1.438353E+00 1.053674E+01
C2 2.480481E+01 -1.012971E+00 -6.522231E-03 1.367592E-01
C3 -3.476758E+00 -1.760482E-01 -1.346433E-03 -4.963718E-02
C4 1.170127E-01 -4.732822E-03 -3.134993E-05 2.679307E-03
C5 -1.285015E-01 1.761992E-02 1.163309E-04 -2.413202E-04
C6 -8.420086E-04 1.618104E-04 8.395159E-07 3.225169E-06
C7 7.795414E-05 -1.684072E-04 -1.017890E-06 -1.420132E-05
C8 -2.934418E-05 1.529964E-04 9.301999E-07 1.354610E-05
C9 -3.252017E-06 -4.407176E-05 -2.694846E-07 -4.085949E-06
C10 7.942921E-06 2.683779E-06 1.773036E-08 3.575856E-07
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