Tecumseh AEA9415YXA Performance Data Sheet

Performance Data Sheet
AEA9415YXA
General Information
Model AEA9415YXA Refrigerant R-134a Test Condition ARI Performance Test Voltage 115V ~ 60HZ Return Gas 4.4°C (40°F) RETURN GAS Motor Type CSIR
Performance Information
0
5
10
15
20
25
30
Condensing Temperature (°F)
80 90 100 110 120 130 140
Btu/h 1310 1210 1110 1000 897 785 670 Watts 246 248 250 251 251 251 249 Amps 3.48 3.51 3.52 3.53 3.53 3.52 3.52
Lb/h 17.8 17.4 16.8 16.1 15.2 14.2 13.1
Btu/h 1510 1400 1290 1180 1060 944 824 Watts 255 260 264 269 272 275 276 Amps 3.53 3.58 3.61 3.64 3.66 3.68 3.69
Lb/h 20.6 20.2 19.6 18.9 18.1 17.2 16.1
Btu/h 1720 1590 1470 1340 1220 1090 962 Watts 265 273 280 287 293 298 302 Amps 3.59 3.66 3.72 3.76 3.80 3.83 3.87
Lb/h 23.6 23.1 22.4 21.7 20.9 19.9 18.9
Btu/h 1960 1810 1670 1520 1380 1240 1090 Watts 277 287 297 305 314 321 328 Amps 3.67 3.76 3.83 3.89 3.95 4.00 4.04
Lb/h 27.0 26.3 25.5 24.7 23.8 22.7 21.7
Btu/h 2230 2060 1890 1730 1560 1400 1230 Watts 291 303 314 325 335 344 353 Amps 3.76 3.86 3.95 4.03 4.10 4.16 4.22
Lb/h 30.9 30.0 29.1 28.1 27.0 25.8 24.6
Btu/h 2560 2360 2160 1960 1770 1580 1400 Watts 307 320 333 345 357 368 377 Amps 3.87 3.98 4.09 4.18 4.26 4.34 4.41
Lb/h 35.7 34.6 33.3 32.1 30.8 29.4 28.0
Btu/h 2950 2710 2480 2250 2030 1810 1590 Watts 326 340 354 367 379 391 402 Amps 3.99 4.12 4.24 4.34 4.43 4.52 4.60
Lb/h 41.6 40.1 38.5 37.0 35.4 33.8 32.1
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 1.942691E+03 2.335023E+02 2.485089E+00 1.576910E+01 C2 6.293417E+01 -3.381744E+00 -3.217710E-02 6.786071E-01
C3 -6.448986E+00 -8.608374E-02 2.464393E-02 8.701143E-02 C4 8.177083E-01 8.950217E-02 5.174621E-04 9.243603E-03 C5 -4.046593E-01 6.183499E-02 5.630141E-04 -2.987675E-03 C6 -1.879197E-02 5.117430E-03 -1.917532E-04 -7.959772E-04 C7 1.709366E-02 3.056152E-04 8.219829E-07 3.004725E-04 C8 -1.020045E-02 -8.035317E-04 -3.384852E-06 -1.321515E-04 C9 1.393508E-03 1.189744E-05 -6.440990E-07 1.939598E-05
C10 -7.239003E-07 -2.646703E-05 4.893555E-07 2.811829E-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
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