Performance Data Sheet
TPA0423YXC
General Information
Model TPA0423YXC Refrigerant R-134a
Test Condition ARI Performance Test Voltage 240V ~ 50HZ
Return Gas 18.3°C (65°F) RETURN GAS Motor Type RSIR
Performance Information
Evap Temp (°F)
20
25
30
35
40
45
50
Condensing Temperature (°F)
80 90 100 110 120 130 140
Btu/h 3600 2940 2550 2330 2180 2010 1740
Watts 349 355 365 378 392 405 416
Amps 2.62 2.67 2.70 2.72 2.74 2.76 2.78
Lb/h 48.4 40.2 36.2 34.8 34.5 33.8 31.3
Btu/h 4000 3300 2880 2630 2450 2260 1960
Watts 366 373 384 399 415 431 445
Amps 2.63 2.69 2.74 2.77 2.80 2.83 2.86
Lb/h 53.8 45.3 41.1 39.5 39.0 38.2 35.5
Btu/h 4430 3700 3240 2960 2760 2540 2220
Watts 383 390 403 420 438 456 472
Amps 2.64 2.72 2.78 2.83 2.87 2.91 2.95
Lb/h 59.6 51.0 46.5 44.7 44.1 43.2 40.4
Btu/h 4890 4130 3640 3330 3100 2860 2510
Watts 399 408 422 440 460 481 500
Amps 2.67 2.76 2.84 2.90 2.95 2.99 3.04
Lb/h 65.9 57.0 52.4 50.4 49.7 48.8 46.0
Btu/h 5380 4580 4060 3720 3470 3200 2830
Watts 417 426 442 462 484 506 528
Amps 2.69 2.80 2.89 2.97 3.03 3.09 3.15
Lb/h 72.6 63.5 58.7 56.7 55.9 55.0 52.2
Btu/h 5890 5060 4510 4140 3860 3570 3180
Watts 436 446 463 484 508 533 557
Amps 2.72 2.85 2.96 3.04 3.12 3.19 3.25
Lb/h 79.6 70.4 65.5 63.5 62.7 61.7 59.0
Btu/h 6420 5560 4980 4580 4270 3960 3550
Watts 457 469 487 509 535 562 588
Amps 2.76 2.90 3.02 3.12 3.21 3.29 3.36
Lb/h 87.0 77.7 72.8 70.7 69.9 69.0 66.4
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 2.688365E+04 5.922007E+02 1.794020E+00 4.064641E+02
C2 1.206565E+02 5.694922E+00 -4.309091E-02 1.623489E+00
C3 -6.458091E+02 -9.944997E+00 2.896969E-02 -1.005738E+01
C4 9.292014E-01 -7.735775E-02 2.788925E-04 5.864236E-03
C5 -1.193789E+00 -2.403177E-02 5.315657E-04 -1.589331E-02
C6 5.501158E+00 9.600688E-02 -2.912841E-04 8.714890E-02
C7 -4.803274E-03 1.021957E-03 -2.086636E-06 -4.052256E-05
C8 1.171886E-03 -1.380664E-04 5.680324E-07 7.821625E-05
C9 2.516069E-03 3.161295E-04 -1.475367E-06 3.845493E-05
C10 -1.567550E-02 -2.935994E-04 8.995020E-07 -2.495298E-04
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