Performance Data Sheet
TPA9417YXA
General Information
Model TPA9417YXA Refrigerant R-134a
Test Condition ARI Performance Test Voltage 115V ~ 60HZ
Return Gas 4.4°C (40°F) RETURN GAS Motor Type CSIR
Performance Information
Evap Temp (°F)
0
5
10
15
20
25
30
Condensing Temperature (°F)
80 90 100 110 120 130 140
Btu/h 1380 1290 1200 1100 1010 912 817
Watts 262 267 272 277 283 288 293
Amps 4.47 4.50 4.52 4.54 4.56 4.58 4.60
Lb/h 19.4 18.8 18.3 17.7 17.1 16.6 16.0
Btu/h 1610 1500 1390 1280 1170 1060 950
Watts 274 281 287 294 301 308 314
Amps 4.51 4.55 4.58 4.61 4.64 4.67 4.70
Lb/h 22.4 21.8 21.2 20.5 19.9 19.3 18.6
Btu/h 1840 1710 1590 1460 1330 1210 1080
Watts 286 295 303 312 320 328 336
Amps 4.58 4.62 4.66 4.70 4.74 4.78 4.82
Lb/h 25.6 24.9 24.2 23.5 22.8 22.1 21.4
Btu/h 2090 1940 1800 1650 1510 1370 1230
Watts 299 309 319 329 339 349 359
Amps 4.65 4.71 4.76 4.81 4.87 4.91 4.96
Lb/h 29.2 28.4 27.6 26.8 26.0 25.2 24.4
Btu/h 2350 2190 2020 1860 1700 1540 1380
Watts 313 324 336 347 359 370 382
Amps 4.73 4.80 4.87 4.94 5.00 5.06 5.12
Lb/h 33.0 32.1 31.2 30.3 29.4 28.5 27.6
Btu/h 2640 2460 2270 2090 1910 1730 1550
Watts 326 340 353 366 379 392 405
Amps 4.81 4.89 4.98 5.06 5.14 5.22 5.29
Lb/h 37.3 36.3 35.2 34.2 33.2 32.2 31.2
Btu/h 2960 2760 2550 2350 2140 1940 1740
Watts 340 355 370 385 399 414 429
Amps 4.87 4.98 5.08 5.18 5.28 5.37 5.46
Lb/h 42.1 40.9 39.7 38.5 37.3 36.2 35.1
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 2.133587E+03 2.189775E+02 4.278462E+00 2.373272E+01
C2 6.954822E+01 -1.060639E-01 -9.121284E-03 7.044355E-01
C3 -9.330247E+00 5.290551E-01 2.281190E-03 -5.422334E-02
C4 3.132573E-01 7.574458E-03 2.248319E-04 6.009363E-03
C5 -3.447109E-01 3.145779E-02 2.219806E-04 -1.788494E-03
C6 -3.500326E-04 1.002307E-04 3.285056E-06 6.499547E-06
C7 6.502060E-03 -8.322657E-05 -9.529059E-06 8.173964E-05
C8 -2.645267E-03 3.180287E-05 3.749437E-06 -3.356001E-05
C9 2.742141E-04 -3.035922E-06 -3.727286E-07 3.512878E-06
C10 -1.097008E-06 -7.528917E-07 -2.092879E-08 -1.008809E-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