this post was submitted on 10 May 2026
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Panels can have different voltages, so you can't just randomly mix them. And those mini-inverters have maximum capacity you can't exceed (typically 800W).
Ah so they can have different wattages but voltage has to match?
If you exceed capacity it doesn’t just cap?
If you wire the panels in series then the total voltage will be the sum of all the panels' voltages. The final amps will be the amps of the weakest panel.
If you wire the panels in parallel then the max voltage will be the voltage of the weakest panel but the amps will be the sum of all the panels' amps.
So it depends what your charge controller can handle. High volts or high amps. Also series and parallel react differently to partial shade. I can't remember the details, only that parallel seems to cope much better.
High voltage (24v or higher, ideally 48v) is good for longer distances as transmitting electricity at 12v suffers losses after a few meters unless you have extremely thick wires. If your panels are < 4 meters from your plug/controller then parallel panels (with it's lower voltage) will be ok.
Don't skimp on fuses. If anything goes wrong you want the panels to be cut off, not pumping electrons into the fire.
Thanks! I was looking at the micro inverters that you can plug 2 or 4 panels into so I presume that’s parallel?
I know you can daisy chain panels too so maybe I’ll look into matching panels and using a single input microinverter.
I don't know, sorry.
Thanks!
It depends if they are linked in series or in row, but yes, typically it is better to have them all with the same open-circut voltage.
I guess most will have an overload protection, but with these cheap ones I would stay on the safe side and not add so many panels that an overload can easily happen.
Thanks!