Tecumseh AKA9462EXD Performance Data Sheet

Performance Data Sheet
AKA9462EXD
General Information
Model AKA9462EXD Refrigerant R-22 Test Condition ASHRAE Performance Test Voltage 230V ~ 60HZ Return Gas 4.4°C (40°F) RETURN GAS Motor Type CSR
Performance Information
0
5
10
15
20
25
30
Condensing Temperature (°F)
80 90 100 110 120 130 140
Btu/h 4290 4940 4960 4620 4200 3970 4220 Watts 703 766 830 889 937 968 978 Amps 3.67 3.97 4.21 4.39 4.50 4.54 4.48
Lb/h 48.5 61.4 65.1 63.5 60.5 59.9 65.6
Btu/h 5170 5780 5740 5320 4800 4460 4570 Watts 753 796 843 889 927 951 957 Amps 3.87 4.11 4.31 4.47 4.58 4.63 4.61
Lb/h 59.8 72.4 75.5 73.1 69.0 67.0 71.0
Btu/h 5960 6540 6450 5970 5360 4910 4890 Watts 815 846 884 923 958 982 991 Amps 4.04 4.24 4.43 4.59 4.71 4.79 4.82
Lb/h 69.9 82.4 85.3 82.2 77.2 74.0 76.5
Btu/h 6800 7360 7230 6690 6000 5450 5310 Watts 870 895 930 970 1010 1040 1060 Amps 4.20 4.38 4.56 4.73 4.88 5.01 5.10
Lb/h 80.5 93.2 95.9 92.5 86.7 82.6 83.8
Btu/h 7800 8350 8190 7600 6840 6200 5950 Watts 895 920 960 1010 1060 1100 1140 Amps 4.34 4.52 4.71 4.91 5.11 5.30 5.47
Lb/h 93.2 106 109 106 99.3 94.4 94.7
Btu/h 9100 9650 9470 8830 8010 7290 6940 Watts 867 901 951 1010 1080 1140 1200 Amps 4.47 4.66 4.88 5.13 5.39 5.67 5.94
Lb/h 110 123 127 123 117 111 111
Btu/h 10800 11400 11200 10500 9640 8840 8390 Watts 766 814 882 964 1050 1150 1230 Amps 4.60 4.82 5.09 5.40 5.74 6.11 6.50
Lb/h 132 146 150 147 140 135 134
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 -5.670905E+04 9.269107E+02 4.253172E-01 -8.464723E+02 C2 1.141948E+02 6.619130E+01 2.656911E-01 1.092294E+00
C3 1.713365E+03 -1.779277E+01 4.033336E-02 2.461490E+01 C4 -5.536304E+00 -3.750988E-01 -3.218268E-03 -9.393870E-02 C5 2.564036E+00 -9.915569E-01 -4.167446E-03 4.023293E-02 C6 -1.555987E+01 2.645878E-01 1.148195E-04 -2.192686E-01 C7 1.651526E-01 -2.917178E-02 6.482372E-06 2.231110E-03 C8 1.818042E-02 1.359177E-02 3.323953E-05 4.551951E-04 C9 -2.004469E-02 3.143976E-03 1.713896E-05 -2.836527E-04
C10 4.592921E-02 -9.636707E-04 -1.398973E-06 6.427418E-04
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
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