Performance Data Sheet
VSA9528ZXT
General Information
Model VSA9528ZXT Refrigerant R-404A
Test Condition ARI Performance Test Voltage 220V 3~ 50HZ
Return Gas 4.4°C (40°F) RETURN GAS Motor Type 3PH
Performance Information
Evap Temp (°F)
0
5
10
15
20
25
30
Condensing Temperature (°F)
80 90 100 110 120 130 140
Btu/h 22200 20300 18500 16700 14800 12900 11000
Watts 2370 2670 2970 3280 3590 3900 4220
Amps 8.75 9.40 10.1 10.7 11.4 12.1 12.9
Lb/h 372 364 356 348 340 332 323
Btu/h 25000 22900 20800 18700 16600 14500 12400
Watts 2400 2700 3010 3320 3640 3960 4290
Amps 8.77 9.45 10.1 10.8 11.5 12.3 13.0
Lb/h 420 412 404 396 387 379 369
Btu/h 27900 25600 23300 21000 18700 16300 13900
Watts 2420 2730 3040 3360 3680 4010 4340
Amps 8.79 9.49 10.2 10.9 11.6 12.4 13.2
Lb/h 473 465 456 448 439 430 421
Btu/h 31000 28500 25900 23400 20800 18200 15600
Watts 2440 2760 3080 3400 3730 4060 4400
Amps 8.82 9.54 10.3 11.0 11.7 12.5 13.3
Lb/h 530 521 513 504 496 486 477
Btu/h 34300 31500 28700 25900 23100 20300 17500
Watts 2470 2790 3120 3450 3780 4110 4450
Amps 8.90 9.62 10.4 11.1 11.9 12.6 13.4
Lb/h 591 583 574 565 556 547 537
Btu/h 37700 34600 31600 28600 25600 22500 19400
Watts 2520 2850 3170 3500 3840 4180 4520
Amps 9.03 9.76 10.5 11.3 12.0 12.8 13.6
Lb/h 656 648 639 630 621 612 602
Btu/h 41200 37900 34700 31400 28100 24900 21500
Watts 2590 2920 3250 3580 3920 4260 4610
Amps 9.23 9.97 10.7 11.5 12.3 13.0 13.9
Lb/h 725 717 708 699 690 680 670
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 3.670286E+04 3.008942E+01 3.644957E+00 4.296286E+02
C2 9.216168E+02 -6.820700E+00 -3.252501E-02 9.570967E+00
C3 -1.826670E+02 2.948339E+01 6.439931E-02 -7.405644E-01
C4 3.183301E+00 -1.975113E-02 2.742821E-06 8.989674E-02
C5 -4.755391E+00 1.553516E-01 5.033071E-04 -5.241278E-03
C6 4.252951E-02 -1.046966E-02 -3.296045E-05 7.173706E-04
C7 -2.834983E-03 7.560238E-03 2.659381E-05 -2.045631E-04
C8 -1.214894E-03 -1.697711E-03 -5.934293E-06 4.152958E-05
C9 4.035067E-04 -6.258599E-05 -2.168727E-07 3.413222E-06
C10 -3.537115E-04 9.827130E-05 3.121675E-07 -6.353241E-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