
Btu/h 1410 1280 1160 1040 924 801 670
Watts 207 214 222 230 238 243 244
Amps 1.54 1.56 1.58 1.60 1.62 1.63 1.64
0
Lb/h 21.6 20.8 20.2 19.5 18.8 17.9 16.8
Btu/h 1600 1460 1320 1190 1050 914 770
Watts 215 222 232 241 250 257 260
Amps 1.57 1.58 1.61 1.63 1.66 1.68 1.69
5
Lb/h 24.7 23.8 23.0 22.3 21.5 20.6 19.4
Btu/h 1810 1650 1490 1340 1190 1040 879
Watts 222 231 241 252 262 271 275
Amps 1.59 1.61 1.64 1.67 1.70 1.72 1.74
10
Lb/h 28.0 27.0 26.2 25.3 24.5 23.5 22.3
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 3.045319E+03 3.844590E+02 2.053638E+00 4.292725E+01
C2 6.681307E+01 9.927014E-01 4.498843E-03 8.476156E-01
C3 -3.150595E+01 -6.382942E+00 -1.755927E-02 -5.421730E-01
C4 6.085352E-01 -6.523678E-03 -2.286075E-05 8.066360E-03
C5 -4.337555E-01 -3.921041E-03 -5.445327E-05 -4.661040E-03
C6 1.835226E-01 7.034606E-02 1.868006E-04 4.664015E-03
C7 1.369813E-03 -1.055414E-04 -2.600817E-08 3.095400E-05
C8 -3.251233E-03 2.292877E-05 5.286499E-07 -2.504397E-05
C9 6.702372E-04 1.395312E-04 6.582108E-07 1.595330E-05
C10 -5.690869E-04 -2.279618E-04 -5.889688E-07 -1.519040E-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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