Performance Data Sheet
TPA0423YXA
General Information
Model TPA0423YXA Refrigerant R-134a
Test Condition ARI Performance Test Voltage 115V ~ 60HZ
Return Gas 4.4°C (40°F) RETURN GAS Motor Type RSIR
Performance Information
Evap Temp (°F)
0
5
10
15
20
25
30
Condensing Temperature (°F)
80 90 100 110 120 130 140
Btu/h 1890 1740 1600 1460 1320 1180 1050
Watts 332 337 342 347 352 357 362
Amps 5.39 5.40 5.42 5.43 5.44 5.46 5.47
Lb/h 26.8 25.8 24.7 23.7 22.6 21.6 20.5
Btu/h 2200 2030 1860 1690 1520 1350 1180
Watts 353 360 366 373 379 386 392
Amps 5.47 5.50 5.52 5.54 5.56 5.59 5.61
Lb/h 30.9 29.7 28.4 27.1 25.9 24.6 23.2
Btu/h 2540 2350 2150 1950 1750 1560 1360
Watts 375 384 392 401 409 417 425
Amps 5.58 5.62 5.65 5.68 5.72 5.75 5.78
Lb/h 35.7 34.3 32.9 31.4 30.0 28.5 27.0
Btu/h 2910 2690 2470 2250 2020 1800 1580
Watts 399 409 420 430 440 450 460
Amps 5.72 5.76 5.81 5.85 5.90 5.94 5.99
Lb/h 41.0 39.5 38.0 36.4 34.8 33.2 31.5
Btu/h 3290 3050 2810 2570 2320 2070 1820
Watts 422 435 448 461 473 485 497
Amps 5.87 5.93 5.99 6.04 6.10 6.16 6.21
Lb/h 46.6 45.0 43.4 41.8 40.1 38.4 36.6
Btu/h 3680 3420 3160 2900 2630 2360 2090
Watts 446 461 477 491 506 521 535
Amps 6.04 6.11 6.18 6.26 6.33 6.40 6.47
Lb/h 52.3 50.7 49.1 47.5 45.8 44.0 42.2
Btu/h 4070 3800 3520 3240 2950 2660 2370
Watts 469 487 505 522 539 556 572
Amps 6.23 6.32 6.40 6.49 6.57 6.65 6.74
Lb/h 57.9 56.4 54.9 53.3 51.6 49.8 48.0
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 3.018193E+03 2.919562E+02 5.303627E+00 3.530047E+01
C2 1.022781E+02 1.028650E+00 -3.567418E-03 1.029121E+00
C3 -1.422530E+01 4.917935E-01 1.124236E-03 -1.081843E-01
C4 4.530221E-01 2.004224E-02 4.722634E-04 9.163987E-03
C5 -5.092956E-01 3.871268E-02 2.263402E-04 -2.727648E-03
C6 6.217480E-04 2.939239E-04 -1.367039E-06 3.552518E-05
C7 -1.153873E-02 -8.533621E-04 -3.955113E-06 -2.505778E-04
C8 4.732596E-03 3.433306E-04 1.611618E-06 1.025147E-04
C9 -4.981042E-04 -3.530672E-05 -1.673360E-07 -1.076648E-05
C10 2.330440E-06 -1.845434E-06 1.322517E-08 -1.255329E-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