Performance Data Sheet
AWG4524EXN
General Information
Model AWG4524EXN Refrigerant R-22
Test Condition ARI Performance Test Voltage 230V ~ 60HZ
Return Gas 18.3°C (65°F) RETURN GAS Motor Type CSR
Performance Information
Evap Temp (°F)
20
25
30
35
40
45
50
55
Condensing Temperature (°F)
80 90 100 110 120 130 140
Btu/h 20000 18500 17000 15400 13900 12400 11000
Watts 1620 1690 1760 1830 1900 1960 2010
Amps 7.28 7.54 7.86 8.20 8.52 8.77 8.92
Lb/h 246 237 226 214 202 189 176
Btu/h 22600 21000 19300 17700 16000 14400 12900
Watts 1650 1740 1830 1920 2000 2080 2140
Amps 7.42 7.75 8.14 8.55 8.94 9.27 9.51
Lb/h 277 267 256 244 231 218 204
Btu/h 25500 23700 21900 20100 18300 16600 14900
Watts 1680 1780 1890 1990 2100 2190 2270
Amps 7.53 7.92 8.38 8.86 9.33 9.75 10.1
Lb/h 310 300 288 276 262 249 234
Btu/h 28500 26600 24700 22800 20800 18900 17000
Watts 1700 1810 1940 2060 2180 2290 2390
Amps 7.60 8.05 8.58 9.14 9.69 10.2 10.6
Lb/h 345 335 323 310 296 282 267
Btu/h 31900 29800 27700 25600 23500 21400 19400
Watts 1710 1840 1980 2120 2260 2390 2510
Amps 7.64 8.16 8.76 9.39 10.0 10.6 11.1
Lb/h 383 372 360 346 332 317 302
Btu/h 35400 33200 31000 28700 26500 24200 22000
Watts 1710 1860 2020 2180 2330 2480 2610
Amps 7.64 8.23 8.91 9.62 10.3 11.0 11.6
Lb/h 424 413 400 386 371 356 340
Btu/h 39300 36900 34500 32100 29600 27200 24800
Watts 1700 1870 2050 2220 2400 2560 2720
Amps 7.62 8.28 9.03 9.82 10.6 11.4 12.1
Lb/h 467 456 443 428 413 397 380
Btu/h 43400 40900 38300 35700 33000 30400 27800
Watts 1690 1880 2070 2260 2460 2640 2820
Amps 7.57 8.31 9.13 10.0 10.9 11.7 12.5
Lb/h 514 502 488 473 458 441 424
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 1.663832E+04 2.081080E+03 1.241054E+01 1.578772E+02
C2 4.957828E+02 -4.880789E+00 6.098508E-03 4.670086E+00
C3 -8.352456E+00 -2.326519E+01 -1.942870E-01 6.172996E-01
C4 3.846113E+00 -2.526668E-01 -1.192043E-03 2.643917E-02
C5 -1.151694E+00 2.255676E-01 4.367246E-04 4.614401E-03
C6 -1.035891E+00 2.508152E-01 2.004604E-03 -1.302262E-02
C7 2.116586E-02 4.490398E-04 3.239920E-06 2.403226E-04
C8 -1.586475E-02 5.669953E-04 2.425469E-06 -1.154547E-05
C9 -3.652229E-03 3.803918E-04 4.294613E-06 -6.129108E-05
C10 3.558507E-03 -8.571396E-04 -6.666467E-06 3.393745E-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