IQ8 PV Module Rating Larger Than Inverter Rating

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Table 33: IQ8H-240 – Denver, -0.35%/°C simple eciency model, 180° azimuth, 20° tilt.
Module Power
(W)
DC:AC Ratio
Annual Energy
(kWh)
AC Capacity
Factor (%)
Year 1
Inverter
Clipping loss
(kWh)
Year 1
Inverter
Clipping loss
(%)
Total
Inverter
Clipping in 25
Years (%)
385 1.00 677.9 20.2 0.0 0.0 0.0
405 1.05 713.2 21.2 0.0 0.0 0.0
420 1.09 739.7 22.0 0.0 0.0 0.0
440 1.15 775.0 23.0 0.1 0.0 0.0
460 1.20 809.6 24.1 0.8 0.1 0.0
480 1.25 842.4 25.0 3.3 0.4 0.0
500 1.30 842.4 25.0 3.3 0.4 0.0
520 1.35 899.9 26.8 16.7 1.7 0.1
540 1.41 924.9 27.5 27.1 2.7 0.2
560 1.46 947.8 28.2 39.7 3.9 0.4
575 1.50 963.7 28.6 50.4 4.8 0.7
590 1.54 983.3 29.2 66.4 6.1 1.4
615 1.60 1001.4 29.8 83.8 7.4 2.2
635 1.65 1018.5 30.3 102.2 8.8 3.3
655 1.71 1034.8 30.8 121.4 10.1 4.6
670 1.74 1046.5 31.1 136.4 11.1 5.7
690 1.80 1061.4 31.6 157.1 12.4 7.1
IQ8H-240 simulation results
The following tables shows the simulated single-module values for dierent DC:AC ratios on the IQ8H-240 Microinverter in
locations covering across the United States, using a -0.35%/C simple eciency model. The IQ8H-240 Microinverter has a
peak output power rating of 384 VA. In this model, the module orientation is xed at 180° azimuth, 20° tilt. Many real-world
PV systems do not have ideal true south orientations of 180° azimuth and ideal tilt angles, so the impact of clipping will be
less than shown in the tables below.