Performance Data Sheet
AWA9512ZXN
General Information
Model AWA9512ZXN Refrigerant R-404A
Test Condition ARI Performance Test Voltage 230V ~ 60HZ
Return Gas 4.4°C (40°F) RETURN GAS Motor Type CSR
Performance Information
Evap Temp (°F)
0
5
10
15
20
25
30
Condensing Temperature (°F)
80 90 100 110 120 130 140
Btu/h 11800 10400 8950 7510 6070 4640 3200
Watts 1570 1550 1530 1500 1480 1450 1420
Amps 6.92 6.82 6.72 6.62 6.51 6.40 6.28
Lb/h 207 190 173 156 139 122 105
Btu/h 13800 12100 10500 8940 7340 5740 4150
Watts 1670 1670 1660 1640 1630 1620 1600
Amps 7.36 7.32 7.28 7.24 7.18 7.13 7.07
Lb/h 242 224 206 189 171 153 135
Btu/h 15800 14000 12200 10400 8680 6920 5160
Watts 1770 1770 1770 1780 1780 1780 1780
Amps 7.75 7.77 7.79 7.80 7.81 7.81 7.81
Lb/h 279 261 242 223 204 186 167
Btu/h 17800 15900 14000 12000 10100 8170 6250
Watts 1850 1860 1880 1900 1910 1920 1930
Amps 8.09 8.17 8.25 8.32 8.38 8.44 8.50
Lb/h 320 300 280 260 240 220 201
Btu/h 20000 17900 15800 13700 11600 9510 7420
Watts 1910 1940 1970 2000 2030 2060 2080
Amps 8.38 8.51 8.65 8.78 8.90 9.02 9.13
Lb/h 364 342 321 300 279 258 237
Btu/h 22300 20000 17700 15500 13200 10900 8670
Watts 1970 2010 2050 2100 2140 2180 2220
Amps 8.60 8.80 8.99 9.18 9.36 9.54 9.71
Lb/h 411 388 366 343 321 298 276
Btu/h 24600 22200 19700 17300 14900 12400 10000
Watts 2010 2070 2120 2180 2230 2290 2340
Amps 8.77 9.02 9.28 9.52 9.77 10.0 10.2
Lb/h 464 439 415 391 367 343 319
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 2.339624E+04 1.737537E+03 7.639872E+00 3.414066E+02
C2 6.390929E+02 1.133138E+00 2.191806E-03 8.385198E+00
C3 -1.443779E+02 -2.155299E+00 -9.297759E-03 -1.681680E+00
C4 1.677039E+00 -2.430352E-01 -1.051534E-03 5.832555E-02
C5 -3.299977E+00 2.599725E-01 1.143765E-03 -2.159402E-02
C6 -5.501885E-03 3.059596E-03 1.212539E-05 2.100809E-05
C7 7.535324E-03 -1.714116E-04 -2.847253E-06 7.351902E-04
C8 -3.046873E-03 1.194065E-05 8.677607E-07 -2.847154E-04
C9 2.804472E-04 2.076893E-05 5.967518E-09 2.742355E-05
C10 4.676351E-05 -2.750317E-05 -1.085638E-07 -3.641046E-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