Performance Data Sheet
AE4460Y-FZ3C
General Information
Model AE4460Y-FZ3C Refrigerant R-134a
Test Condition EN12900 ASERCOM Performance Test Voltage 240V ~ 50HZ
Return Gas 20°C (68°F) RETURN GAS Motor Type CSR
Performance Information
Evap
Temp (°C)
-15
-10
-6.7
-5
0
5
7.2
Condensing Temperature (°C)
30 40 50 60
Watts
(Capacity)
Watts (Power) 346 358 374 387
Amps 1.99 1.99 2.03 2.06
Lb/h 16.2 14.8 13.7 13.0
Watts
(Capacity)
Watts (Power) 379 397 421 443
Amps 2.11 2.14 2.22 2.31
Lb/h 20.4 18.8 17.5 16.4
Watts
(Capacity)
Watts (Power) 400 421 450 480
Amps 2.19 2.24 2.35 2.47
Lb/h 23.5 21.8 20.4 19.0
Watts
(Capacity)
Watts (Power) 410 433 466 498
Amps 2.23 2.29 2.41 2.55
Lb/h 25.1 23.5 22.0 20.5
Watts
(Capacity)
Watts (Power) 439 469 509 552
Amps 2.34 2.43 2.59 2.78
Lb/h 30.5 28.8 27.2 25.5
Watts
(Capacity)
Watts (Power) 466 503 553 606
Amps 2.45 2.57 2.78 3.01
Lb/h 36.5 35.0 33.3 31.5
Watts
(Capacity)
Watts (Power) 478 518 572 630
771 660 561 474
972 838 712 596
1120 970 826 690
1200 1040 890 743
1460 1280 1100 916
1750 1540 1330 1120
1890 1670 1440 1210
Amps 2.50 2.64 2.86 3.12
Lb/h 39.4 37.9 36.3 34.4
Watts
(Capacity)
10
15
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 2.008158E+03 4.910917E+02 3.005993E+00 3.588038E+01
C2 6.720631E+01 3.667990E+00 1.628085E-02 9.541223E-01
C3 -1.767698E+01 -6.965996E+00 -5.549956E-02 -1.998234E-01
C4 7.056037E-01 -4.563820E-02 1.300746E-05 1.023168E-02
C5 -3.091381E-01 1.160546E-02 -1.133733E-04 9.867937E-03
C6 -2.650290E-02 2.146215E-01 1.355630E-03 8.236090E-04
C7 1.573684E-03 7.586279E-04 8.847464E-06 1.265575E-04
C8 -2.573801E-03 7.173290E-04 7.344722E-07 1.402641E-04
C9 -3.125521E-03 1.778594E-03 1.027016E-05 -1.270046E-04
C10 2.973100E-04 -1.359462E-03 -8.230307E-06 -6.086406E-06
Watts (Power) 493 538 596 660
Amps 2.57 2.72 2.97 3.26
Lb/h 43.4 42.0 40.3 38.4
Watts
(Capacity)
Watts (Power) 520 572 640 716
Amps 2.71 2.89 3.18 3.52
Lb/h 51.2 50.0 48.4 46.5
2080 1840 1590 1350
2440 2170 1890 1610
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