Performance Data Sheet
TPA0413YXA
General Information
Model TPA0413YXA Refrigerant R-134a
Test Condition ARI Performance Test Voltage 115V ~ 60HZ
Return Gas 4.4°C (40°F) RETURN GAS Motor Type N/A
Performance Information
Evap Temp (°F)
0
5
10
15
20
25
30
Condensing Temperature (°F)
80 90 100 110 120 130 140
Btu/h 1090 1010 935 858 782 707 632
Watts 204 207 211 214 217 220 224
Amps 3.51 3.52 3.52 3.53 3.54 3.54 3.55
Lb/h 15.3 14.8 14.3 13.8 13.3 12.9 12.4
Btu/h 1260 1170 1080 997 911 825 741
Watts 211 216 220 225 230 235 240
Amps 3.53 3.55 3.56 3.58 3.59 3.61 3.62
Lb/h 17.6 17.1 16.5 16.0 15.5 15.0 14.5
Btu/h 1440 1340 1240 1140 1040 942 846
Watts 217 224 230 236 243 249 256
Amps 3.56 3.58 3.61 3.63 3.66 3.68 3.70
Lb/h 20.1 19.5 18.9 18.3 17.8 17.2 16.7
Btu/h 1630 1510 1400 1280 1170 1060 954
Watts 224 232 240 248 256 264 272
Amps 3.59 3.63 3.66 3.69 3.73 3.76 3.79
Lb/h 22.8 22.1 21.4 20.8 20.2 19.6 19.0
Btu/h 1840 1710 1580 1450 1320 1190 1070
Watts 232 241 250 260 269 278 288
Amps 3.62 3.67 3.71 3.76 3.80 3.84 3.89
Lb/h 25.8 25.0 24.3 23.5 22.8 22.2 21.5
Btu/h 2070 1920 1780 1630 1490 1340 1200
Watts 240 251 261 272 283 294 304
Amps 3.65 3.71 3.76 3.82 3.87 3.93 3.98
Lb/h 29.3 28.4 27.5 26.7 25.8 25.0 24.3
Btu/h 2340 2170 2000 1840 1680 1520 1360
Watts 249 261 273 285 297 310 322
Amps 3.67 3.74 3.81 3.88 3.94 4.01 4.08
Lb/h 33.3 32.3 31.2 30.2 29.3 28.3 27.4
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 1.706120E+03 1.780973E+02 3.458540E+00 1.926737E+01
C2 5.322665E+01 -1.192800E+00 -1.065587E-02 5.216711E-01
C3 -7.619610E+00 3.280805E-01 6.233108E-04 -4.836249E-02
C4 2.698642E-01 7.665815E-03 4.780088E-05 5.210025E-03
C5 -2.660019E-01 3.019676E-02 1.911158E-04 -1.274686E-03
C6 -2.419504E-03 -2.346497E-05 3.131648E-07 -3.147752E-05
C7 8.488685E-03 2.663713E-04 -4.226203E-06 1.191867E-04
C8 -3.344357E-03 -1.047221E-04 1.713239E-06 -4.677813E-05
C9 3.342297E-04 1.046732E-05 -1.767847E-07 4.649906E-06
C10 1.467690E-05 4.019120E-08 -2.290090E-11 1.874465E-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