Performance Data Sheet
AEA9415ZXC
General Information
Model AEA9415ZXC Refrigerant R-404A
Test Condition ARI Performance Test Voltage 240V ~ 50HZ
Return Gas 18.3°C (65°F) RETURN GAS Motor Type CSIR
Performance Information
Evap Temp (°F)
20
25
30
35
40
45
50
Condensing Temperature (°F)
80 90 100 110 120 130 140
Btu/h 2240 2040 1850 1660 1450 1220 962
Watts 272 290 306 319 330 339 346
Amps 1.97 2.05 2.11 2.16 2.20 2.23 2.25
Lb/h 34.8 34.4 33.9 33.1 32.0 30.3 27.8
Btu/h 2540 2290 2060 1840 1610 1370 1110
Watts 281 300 318 333 346 357 366
Amps 2.02 2.10 2.15 2.20 2.23 2.26 2.28
Lb/h 39.9 38.8 37.9 36.9 35.7 34.2 32.2
Btu/h 2900 2590 2310 2050 1800 1540 1260
Watts 288 309 328 345 360 373 386
Amps 2.08 2.14 2.20 2.24 2.27 2.30 2.32
Lb/h 46.2 44.4 42.8 41.5 40.1 38.7 37.0
Btu/h 3310 2940 2600 2290 2000 1720 1420
Watts 295 317 337 356 373 389 404
Amps 2.12 2.19 2.24 2.28 2.32 2.34 2.37
Lb/h 53.6 50.8 48.6 46.7 45.1 43.6 42.0
Btu/h 3750 3300 2910 2550 2210 1890 1580
Watts 300 324 346 366 386 404 421
Amps 2.17 2.23 2.29 2.33 2.37 2.40 2.43
Lb/h 61.7 57.9 54.8 52.3 50.3 48.6 47.1
Btu/h 4210 3690 3220 2800 2420 2060 1710
Watts 305 330 353 376 397 418 438
Amps 2.21 2.27 2.33 2.38 2.42 2.46 2.50
Lb/h 70.3 65.2 61.2 58.0 55.4 53.4 51.8
Btu/h 4690 4080 3540 3050 2610 2200 1820
Watts 309 335 360 384 408 431 454
Amps 2.24 2.31 2.37 2.43 2.48 2.53 2.58
Lb/h 79.1 72.7 67.6 63.5 60.3 57.8 56.0
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 2.710070E+03 -3.860450E+01 -3.237882E-01 5.409755E+00
C2 8.213495E+01 3.372655E+00 4.922297E-02 1.008548E+00
C3 -2.872311E+01 5.093143E+00 3.945840E-02 3.567495E-01
C4 3.339095E+00 -4.671430E-02 -3.842791E-04 7.180296E-02
C5 -1.997439E+00 -1.994106E-02 -5.545858E-04 -3.977923E-02
C6 3.676195E-01 -2.563785E-02 -2.012643E-04 1.703092E-03
C7 -1.445101E-02 1.984114E-04 -1.006525E-06 -3.540088E-04
C8 -1.411830E-02 6.158993E-05 5.032115E-06 -2.500701E-04
C9 9.538379E-03 2.501117E-04 1.060069E-06 2.196474E-04
C10 -1.876892E-03 2.843044E-05 3.752629E-07 -2.465813E-05
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