Performance Data Sheet
TPA9423YXC
General Information
Model TPA9423YXC Refrigerant R-134a
Test Condition ARI Performance Test Voltage 240V ~ 50HZ
Return Gas 18.3°C (65°F) RETURN GAS Motor Type CSIR
Performance Information
Evap Temp (°F)
20
25
30
35
40
45
50
Condensing Temperature (°F)
80 90 100 110 120 130 140
Btu/h 2930 2730 2530 2320 2120 1910 1700
Watts 337 350 363 376 389 401 413
Amps 2.66 2.69 2.71 2.74 2.77 2.80 2.83
Lb/h 38.8 37.5 36.1 34.8 33.5 32.1 30.7
Btu/h 3330 3100 2870 2640 2420 2190 1960
Watts 350 365 381 396 412 427 442
Amps 2.69 2.73 2.76 2.80 2.83 2.87 2.91
Lb/h 43.9 42.4 41.0 39.6 38.2 36.8 35.3
Btu/h 3770 3500 3240 2990 2730 2480 2220
Watts 364 381 399 417 434 452 470
Amps 2.73 2.77 2.81 2.86 2.90 2.94 2.99
Lb/h 49.5 48.0 46.4 44.9 43.4 41.9 40.4
Btu/h 4240 3940 3650 3360 3070 2790 2510
Watts 379 398 417 437 457 477 497
Amps 2.76 2.82 2.87 2.92 2.97 3.03 3.08
Lb/h 55.9 54.1 52.5 50.8 49.2 47.6 46.0
Btu/h 4750 4410 4080 3760 3440 3130 2820
Watts 395 416 436 458 480 502 524
Amps 2.80 2.86 2.93 2.99 3.05 3.11 3.17
Lb/h 62.8 60.9 59.1 57.3 55.6 53.8 52.1
Btu/h 5300 4930 4560 4200 3850 3500 3160
Watts 413 435 457 480 503 527 551
Amps 2.83 2.91 2.98 3.06 3.13 3.20 3.27
Lb/h 70.5 68.4 66.4 64.5 62.5 60.7 58.8
Btu/h 5910 5490 5090 4690 4300 3910 3540
Watts 433 455 479 503 528 553 579
Amps 2.87 2.96 3.04 3.12 3.21 3.29 3.37
Lb/h 78.9 76.6 74.4 72.3 70.2 68.1 66.2
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 2.322217E+03 2.491493E+02 2.636075E+00 3.139362E+01
C2 1.002093E+02 -1.011996E+00 -1.047627E-02 6.726233E-01
C3 -8.666609E+00 4.613384E-01 -8.826641E-04 -8.894964E-02
C4 6.168976E-01 8.933098E-03 5.246633E-05 1.175581E-02
C5 -5.881106E-01 4.205519E-02 1.778169E-04 -2.249941E-03
C6 -3.937269E-03 -1.569125E-04 -1.071878E-07 -2.928999E-05
C7 6.408893E-03 5.354666E-04 -1.130666E-06 4.362402E-05
C8 -5.766666E-03 -4.912475E-04 1.078878E-06 -3.923865E-05
C9 1.610316E-03 1.399626E-04 -3.190423E-07 1.095753E-05
C10 -1.066035E-04 -1.095517E-05 2.954704E-08 -7.062343E-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