Tecumseh TPG1380YMS User Manual

Page 1
Performance Data Sheet
TPG1380YMS
General Information
Model TPG1380YMS Refrigerant R134a Test Condition ASHRAE Test Voltage 220V ~ 50HZ Return Gas 32.2°C (90°F) RETURN GAS Motor Type PTCS_CR
Performance Information
Temp (°C)
-40
-35
-30
-25
-23.3
-20
-15
-10
Condensing Temperature (°C)
30 40 50 60 70
Btu/h 296 261 203 130 49.7
Watts (Power) 87.1 88.6 85.8 78.0 64.5
Amps 0.48 0.48 0.47 0.46 0.43
Lb/h 2.97 2.62 2.04 1.31 0.50
Btu/h 502 472 420 352 276
Watts (Power) 103 108 108 104 95.3
Amps 0.52 0.54 0.54 0.53 0.51
Lb/h 5.05 4.75 4.22 3.54 2.78
Btu/h 687 660 611 546 474
Watts (Power) 116 123 127 128 123
Amps 0.56 0.58 0.60 0.60 0.59
Lb/h 6.91 6.64 6.15 5.50 4.77
Btu/h 878 853 806 743 673
Watts (Power) 127 137 145 149 150
Amps 0.59 0.63 0.66 0.67 0.68
Lb/h 8.84 8.59 8.11 7.48 6.77
Btu/h 950 925 878 816 746
Watts (Power) 130 142 151 156 159
Amps 0.61 0.65 0.68 0.70 0.71
Lb/h 9.56 9.31 8.83 8.21 7.50
Btu/h 1110 1080 1030 971 901
Watts (Power) 137 150 162 171 176
Amps 0.63 0.68 0.72 0.75 0.77
Lb/h 11.1 10.9 10.4 9.77 9.07
Btu/h 1400 1370 1320 1260 1190
Watts (Power) 148 165 180 194 204
Amps 0.67 0.73 0.79 0.83 0.87
Lb/h 14.0 13.8 13.3 12.7 11.9
Btu/h 1780 1750 1700 1630 1560
Watts (Power) 161 182 201 219 235
Amps 0.71 0.79 0.86 0.92 0.97
Lb/h 17.9 17.6 17.1 16.4 15.7
Page 2
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 2.848959E+03 1.279464E+02 4.051608E-01 2.867373E+01 C2 1.520638E+02 3.433025E+00 1.796490E-03 1.530395E+00 C3 9.717073E+00 2.006264E+00 1.514560E-02 9.706540E-02 C4 3.670139E+00 1.240236E-01 1.760891E-04 3.694005E-02 C5 -1.389304E-01 3.691031E-02 3.589895E-04 -1.410440E-03 C6 -2.610531E-01 1.765181E-02 -5.340036E-05 -2.613096E-03 C7 3.828365E-02 1.933987E-03 3.334642E-06 3.854183E-04 C8 -3.063235E-03 3.030393E-04 2.210382E-06 -3.080761E-05 C9 7.877477E-05 5.842295E-04 1.559438E-07 9.425595E-07
C10 1.252768E-03 -1.276362E-04 4.112366E-08 1.252676E-05
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
Page 3
Performance Data Sheet
TPG1380YMS
General Information
Model TPG1380YMS Refrigerant R134a Test Condition ASHRAE Test Voltage 220V ~ 60HZ Return Gas 32.2°C (90°F) RETURN GAS Motor Type PTCS_CR
Performance Information
Temp (°C)
-40
-35
-30
-25
-23.3
-20
-15
-10
Condensing Temperature (°C)
30 40 50 60 70
Btu/h 315 239 178 120 53.5
Watts (Power) 84.7 82.8 79.2 72.4 61.2
Amps 0.38 0.38 0.37 0.35 0.33
Lb/h 3.81 2.89 2.15 1.45 0.65
Btu/h 543 466 399 331 249
Watts (Power) 104 105 103 97.8 88.3
Amps 0.46 0.47 0.46 0.45 0.42
Lb/h 6.57 5.64 4.83 4.00 3.01
Btu/h 748 672 602 525 429
Watts (Power) 121 124 124 122 115
Amps 0.53 0.55 0.56 0.55 0.53
Lb/h 9.05 8.13 7.28 6.35 5.19
Btu/h 956 884 812 729 622
Watts (Power) 134 141 145 146 142
Amps 0.59 0.63 0.65 0.65 0.64
Lb/h 11.6 10.7 9.82 8.82 7.52
Btu/h 1030 962 890 805 695
Watts (Power) 138 146 152 154 152
Amps 0.61 0.66 0.68 0.69 0.68
Lb/h 12.5 11.6 10.8 9.74 8.41
Btu/h 1200 1130 1060 970 855
Watts (Power) 146 157 166 171 171
Amps 0.65 0.71 0.74 0.76 0.77
Lb/h 14.5 13.7 12.8 11.7 10.3
Btu/h 1490 1430 1370 1280 1150
Watts (Power) 158 174 188 198 203
Amps 0.70 0.78 0.85 0.89 0.92
Lb/h 18.1 17.4 16.5 15.5 14.0
Btu/h 1880 1830 1760 1680 1550
Watts (Power) 171 193 212 228 238
Amps 0.75 0.87 0.96 1.04 1.09
Lb/h 22.7 22.1 21.4 20.3 18.7
Page 4
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 3.057895E+03 9.061655E+01 3.725443E-02 3.702368E+01 C2 1.279370E+02 -1.053078E+00 -1.661898E-02 1.548570E+00 C3 -3.630393E+00 3.539357E+00 3.395904E-02 -4.520340E-02 C4 3.220363E+00 3.415648E-02 -7.363173E-05 3.897043E-02 C5 6.543051E-01 1.669036E-01 1.089578E-03 7.897574E-03 C6 1.286257E-01 1.282115E-02 -2.277156E-04 1.577069E-03 C7 3.647159E-02 1.482548E-03 5.158137E-06 4.413252E-04 C8 4.483500E-03 1.595436E-03 1.077830E-05 5.419885E-05 C9 -4.845986E-03 -1.127376E-04 -2.253672E-06 -5.847195E-05
C10 -2.044923E-03 -2.195268E-04 6.240458E-07 -2.485199E-05
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
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