
Btu/h 1730 1620 1480 1330 1160 997 840
Watts 249 259 269 277 285 290 293
Amps 3.52 3.57 3.62 3.67 3.71 3.74 3.76
0
Lb/h 26.6 26.3 25.6 24.7 23.5 22.2 21.0
Btu/h 1970 1830 1670 1500 1320 1140 971
Watts 260 271 282 292 301 308 312
Amps 3.59 3.65 3.71 3.76 3.81 3.85 3.88
5
Lb/h 30.4 29.9 29.1 28.1 26.9 25.6 24.3
Btu/h 2210 2050 1870 1680 1480 1290 1110
Watts 271 283 295 307 317 325 332
Amps 3.65 3.72 3.79 3.86 3.92 3.97 4.01
10
Lb/h 34.3 33.7 32.8 31.6 30.4 29.1 27.9
COEFFICIENTS CAPACITY POWER CURRENT MASS FLOW
C1 7.953903E+02 2.211044E+02 3.462527E+00 2.766266E+00
C2 9.937357E+01 7.296594E-01 -9.145145E-04 1.271323E+00
C3 4.196342E+01 -8.175110E-01 -6.723823E-03 7.047559E-01
C4 9.534011E-02 -4.234198E-03 -2.181452E-04 1.999427E-04
C5 -8.228770E-01 1.251811E-02 1.527159E-04 -9.43582E-03
C6 -4.850885E-01 2.147197E-02 1.342117E-04 -6.396413E-03
C7 -2.599333E-03 -1.646637E-05 -9.160681E-07 -3.046315E-05
C8 3.429969E-04 2.949094E-05 2.529061E-06 3.142975E-05
C9 2.103184E-03 6.876996E-05 2.040112E-07 3.550845E-05
C10 1.340333E-03 -8.535069E-05 -5.082063E-07 1.636439E-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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