
Performance Data Sheet
AE4440Y-FZ1A
General Information
Model AE4440Y-FZ1A Refrigerant R-134a
Test Condition ASHRAE Performance Test Voltage 240V ~ 50HZ
Return Gas 35°C (95°F) RETURN GAS Motor Type CSIR
Performance Information
Evap Temp (°F)
5
10
15
20
25
30
35
40
Condensing Temperature (°F)
80 90 100 110 120 130 140
Btu/h 1820 1740 1650 1570 1490 1420 1340
Watts 156 138 118 94.9 70.3 44.7 18.6
Amps
Lb/h 44.0 49.7 55.9 62.8 70.3 78.5 87.5
Btu/h 2070 1970 1870 1770 1680 1590 1500
Watts 168 152 132 111 86.9 62.0 36.7
Amps
Lb/h 47.2 52.9 59.0 65.8 73.1 81.2 90.0
Btu/h 2350 2230 2110 2000 1890 1780 1680
Watts 180 165 147 127 104 80.3 55.8
Amps
Lb/h 50.8 56.4 62.5 69.1 76.4 84.3 93.0
Btu/h 2650 2510 2380 2250 2120 1990 1870
Watts 191 178 162 143 122 99.3 76.0
Amps
Lb/h 54.6 60.2 66.3 72.8 80.0 87.8 96.3
Btu/h 2980 2820 2670 2520 2360 2220 2070
Watts 201 191 176 159 140 119 97.0
Amps
Lb/h 58.9 64.5 70.5 77.0 84.0 91.7 100
Btu/h 3340 3170 2990 2810 2640 2470 2300
Watts 211 203 191 176 158 139 119
Amps
Lb/h 63.6 69.1 75.1 81.5 88.5 96.1 104
Btu/h 3740 3540 3340 3140 2940 2740 2550
Watts 220 215 205 192 177 160 141
Amps
Lb/h 68.7 74.3 80.2 86.6 93.5 101 109
Btu/h 4170 3940 3720 3490 3260 3040 2820
Watts 229 226 219 208 195 180 164
Amps
Lb/h 74.3 79.9 85.8 92.1 99.0 106 114

Btu/h 4640 4390 4130 3870 3620 3370 3120
45
50
55
60
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 2.150848E+03 1.172512E+02 3.026155E+00 8.076051E+00
C2 6.022653E+01 -3.062218E-01 -6.839646E-03 4.663559E-01
C3 -5.465716E+00 3.075027E+00 -1.836567E-02 3.412313E-01
C4 7.587051E-01 -3.788554E-02 6.432403E-05 3.633946E-03
C5 -2.119470E-01 4.548033E-02 1.250424E-04 3.254007E-03
C6 -2.824011E-02 -4.274534E-02 -3.406131E-03 7.355903E-05
C7 2.439339E-03 -1.704572E-04 4.407318E-08 4.106046E-05
C8 -3.879039E-03 4.659570E-04 4.189894E-08 1.896522E-05
C9 -1.255858E-04 -1.445680E-04 -1.879229E-08 -2.624305E-05
C10 1.333638E-04 1.063735E-04 4.762951E-08 1.020869E-05
Watts 236 236 232 224 214 201 187
Amps
Lb/h 80.4 86.0 91.9 98.2 105 112 120
Btu/h 5150 4860 4580 4290 4010 3720 3450
Watts 242 245 244 239 232 222 210
Amps
Lb/h 87.0 92.6 98.6 105 112 119 127
Btu/h 5700 5380 5060 4740 4430 4110 3800
Watts 246 253 255 254 250 243 234
Amps
Lb/h 94.2 99.9 106 112 119 126 134
Btu/h 6290 5940 5580 5230 4880 4530 4190
Watts 250 260 266 268 267 263 257
Amps
Lb/h 102 108 114 120 127 134 141
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

Performance Data Sheet
AE4440Y-FZ1A
General Information
Model AE4440Y-FZ1A Refrigerant R-134a
Test Condition EN12900 ASERCOM Performance Test Voltage 240V ~ 50HZ
Return Gas 20°C (68°F) RETURN GAS Motor Type CSIR
Performance Information
Evap
Temp (°C)
-15
-10
-6.7
-5
0
5
7.2
10
Condensing Temperature (°C)
30 40 50 60
Watts
(Capacity)
Watts (Power) 253 266 281 303
Amps 2.04 2.00 2.01 2.08
Watts
(Capacity)
Watts (Power) 276 293 312 336
Amps 2.09 2.06 2.09 2.19
Watts
(Capacity)
Watts (Power) 291 311 333 360
Amps 2.12 2.11 2.16 2.26
Watts
(Capacity)
Watts (Power) 298 321 344 373
Amps 2.15 2.14 2.19 2.30
Watts
(Capacity)
Watts (Power) 318 348 378 412
Amps 2.21 2.23 2.30 2.43
Watts
(Capacity)
Watts (Power) 336 375 412 453
Amps 2.29 2.33 2.42 2.57
Watts
(Capacity)
Watts (Power) 344 386 427 471
Amps 2.33 2.38 2.48 2.64
Watts
(Capacity)
Watts (Power) 351 399 446 495
Amps 2.39 2.44 2.55 2.72
488 429 369 311
619 545 471 398
719 634 548 463
775 684 591 499
960 847 733 619
1180 1040 899 760
1280 1130 981 830
1430 1260 1090 926

Watts
15
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 1281.005 194.8445 2.52435
C2 53.71831 -1.69677 0.00284602
C3 -10.02751 5.684332 -0.0191847
C4 0.8388713 -0.1266693 0.000230909
C5 -0.4560996 0.2099672 0.000400389
C6 -0.02910516 -0.07014965 0.000294119
C7 0.004167931 -0.001068532 0
C8 -0.00693736 0.002690764 0
C9 -0.0001002843 -0.0007992287 0
C10 0.0002072667 0.0005958257 0
(Capacity)
Watts (Power) 363 422 478 537
Amps 2.49 2.56 2.70 2.89
1710 1520 1320 1120
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