Performance Data Sheet
AVA5538WXT
General Information
Model AVA5538WXT Refrigerant R407C/R22
Test Condition ARI (R407C) Test Voltage 230V 3~ 60HZ
Return Gas 18.3°C (65°F) RETURN GAS Motor Type 3PH
Performance Information
Evap Temp (°F)
-15
-10
-5
0
5
10
15
20
Condensing Temperature (°F)
80 90 100 110 120 130 140 150
Btu/h 12100 10000
Watts 1090 1160
Amps 3.26 3.48
Lb/h
Btu/h 12600 10700 8730
Watts 1240 1320 1350
Amps 3.80 4.00 4.23
Lb/h
Btu/h 13500 11800 9940 8040
Watts 1380 1490 1530 1520
Amps 4.32 4.52 4.73 4.93
Lb/h 26.9 34.8 44.2 53.1
Btu/h 15000 13300 11500 9690 7810
Watts 1510 1650 1720 1730 1700
Amps 4.81 5.02 5.23 5.43 5.58
Lb/h 99.8 99.6 101 102 102
Btu/h 16800 15200 13500 11700 9800
Watts 1640 1800 1890 1930 1920
Amps 5.25 5.49 5.73 5.94 6.09
Lb/h 167 159 154 149 142
Btu/h 19200 17600 15800 14000 12100 10100 8050
Watts 1750 1940 2060 2130 2140 2130 2080
Amps 5.65 5.94 6.21 6.45 6.62 6.70 6.67
Lb/h 228 215 204 194 181 165 143
Btu/h 21900 20300 18500 16600 14600 12500 10400
Watts 1850 2070 2220 2310 2360 2370 2350
Amps 5.99 6.34 6.67 6.95 7.16 7.27 7.25
Lb/h 285 267 252 237 221 201 176
Btu/h 25200 23500 21600 19600 17400 15200 12800 10500
Watts 1940 2180 2360 2490 2560 2600 2610 2600
Amps 6.26 6.69 7.09 7.43 7.69 7.85 7.87 7.73
Lb/h 339 317 299 281 262 239 211 176
Btu/h 28800 27000 25000 22800 20500 18000 15500 12900
25
30
35
40
45
50
55
Watts 2010 2280 2490 2650 2760 2820 2860 2880
Amps 6.45 6.98 7.47 7.89 8.22 8.44 8.51 8.41
Lb/h 390 366 345 325 304 280 251 215
Btu/h 32800 30900 28700 26300 23800 21100 18300 15400
Watts 2050 2360 2600 2790 2930 3030 3110 3160
Amps 6.56 7.20 7.79 8.31 8.73 9.02 9.16 9.12
Lb/h 439 414 392 371 349 325 296 260
Btu/h 37300 35100 32700 30100 27300 24300 21300 18100
Watts 2070 2420 2690 2920 3090 3230 3330 3420
Amps 6.58 7.35 8.06 8.69 9.21 9.60 9.82 9.86
Lb/h 488 462 440 420 398 375 346 312
Btu/h 42100 39700 37000 34100 31000 27800 24400 20800
Watts 2070 2450 2760 3020 3230 3400 3540 3660
Amps 6.49 7.41 8.26 9.01 9.66 10.2 10.5 10.6
Lb/h 536 512 491 472 452 430 404 371
Btu/h 47300 44600 41700 38400 35000 31400 27600 23600
Watts 2030 2450 2800 3100 3350 3550 3730 3890
Amps 6.30 7.37 8.37 9.28 10.1 10.7 11.1 11.4
Lb/h 586 564 545 528 511 492 469 440
Btu/h 52900 49900 46600 43000 39200 35100 30900 26500
Watts 1970 2430 2820 3150 3440 3680 3900 4100
Amps 5.98 7.23 8.40 9.47 10.4 11.2 11.7 12.1
Lb/h 638 618 603 590 577 562 543 518
Btu/h 58900 55500 51800 47800 43500 39100 34400 29500
Watts 1870 2370 2800 3180 3500 3790 4050 4280
Amps 5.53 6.98 8.34 9.58 10.7 11.6 12.3 12.9
Lb/h 692 677 666 657 649 640 626 607
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 2.192701E+04 -2.958285E+03 6.561215E+00 4.013033E+02
C2 7.214351E+01 -1.517875E+01 -4.087485E-03 2.766781E+01
C3 1.285463E+01 1.046307E+02 -9.206811E-02 -9.474305E+00
C4 1.603671E+01 -4.230805E-01 -3.462760E-03 -3.025735E-01
C5 4.753120E+00 5.347835E-01 1.923637E-03 -1.903813E-01
C6 -1.574995E+00 -7.301936E-01 1.231911E-03 9.767891E-02
C7 -1.316116E-02 -3.313255E-03 -1.191897E-05 1.187220E-03
C8 -8.488289E-02 3.089133E-03 3.320534E-05 2.246155E-03
C9 -1.908436E-02 -2.257504E-04 -8.795048E-06 2.335987E-04
C10 4.065481E-03 1.512380E-03 -4.440626E-06 -3.295400E-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