Performance Data Sheet
AGA9530ZXN
General Information
Model AGA9530ZXN 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 28700 25300 22000 18600 15200 11900 8470
Watts 4280 4200 4120 4030 3940 3850 3750
Amps 20.3 20.0 19.6 19.3 18.9 18.6 18.1
Lb/h 515 474 433 391 349 307 264
Btu/h 33600 29800 26000 22200 18300 14500 10700
Watts 4510 4460 4400 4330 4270 4190 4110
Amps 21.2 21.0 20.8 20.5 20.2 19.9 19.6
Lb/h 597 553 509 464 419 374 328
Btu/h 38800 34500 30200 25900 21600 17400 13100
Watts 4760 4740 4710 4670 4630 4580 4530
Amps 22.3 22.2 22.1 21.9 21.8 21.6 21.3
Lb/h 689 643 596 548 501 452 403
Btu/h 44200 39400 34700 29900 25200 20400 15700
Watts 5000 5020 5030 5030 5020 5000 4980
Amps 23.3 23.4 23.4 23.4 23.4 23.3 23.2
Lb/h 791 742 693 643 593 542 490
Btu/h 50000 44700 39500 34200 29000 23800 18600
Watts 5210 5270 5320 5370 5400 5420 5430
Amps 24.3 24.5 24.7 24.9 25.0 25.1 25.1
Lb/h 903 852 800 748 695 642 588
Btu/h 56200 50500 44700 38900 33200 27500 21800
Watts 5370 5480 5580 5670 5750 5820 5880
Amps 25.0 25.4 25.8 26.2 26.5 26.8 27.0
Lb/h 1020 969 915 861 806 751 695
Btu/h 63000 56600 50300 44100 37800 31500 25300
Watts 5450 5620 5770 5920 6050 6170 6280
Amps 25.4 26.1 26.7 27.3 27.8 28.3 28.8
Lb/h 1150 1090 1040 982 926 868 810
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 5.566013E+04 4.874875E+03 2.265989E+01 8.391249E+02
C2 1.690298E+03 -4.830133E-01 2.287264E-03 1.976632E+01
C3 -3.362000E+02 -7.952762E+00 -3.181551E-02 -4.084140E+00
C4 6.376915E+00 -1.621927E-01 -2.480757E-04 2.002698E-01
C5 -9.430493E+00 6.352442E-01 2.538671E-03 -5.464012E-02
C6 -7.392335E-03 1.566017E-02 6.176148E-05 1.176005E-03
C7 8.288332E-02 -3.238342E-02 -1.325536E-04 -1.191613E-03
C8 -3.473325E-02 1.267029E-02 5.191924E-05 4.328730E-04
C9 3.658838E-03 -1.186452E-03 -4.874373E-06 -3.431511E-05
C10 9.929161E-06 -1.177704E-04 -4.621509E-07 -9.619719E-06
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