Grubscrew
Executive Member
Ditto for me, 30% is the lowest. Municipal power is cheaper than a new battery.What are you guys running your batteries down to overnight? I've set mine to draw from grid at 30%.
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Ditto for me, 30% is the lowest. Municipal power is cheaper than a new battery.What are you guys running your batteries down to overnight? I've set mine to draw from grid at 30%.
25% and I wouldn't feel comfortable going much lower than that.What are you guys running your batteries down to overnight? I've set mine to draw from grid at 30%.
22% so that there is a small buffer to my 20% shutdown value. I have seen it drop to 21% before. 3x Hubble AM-2'sWhat are you guys running your batteries down to overnight? I've set mine to draw from grid at 30%.
What are you guys running your batteries down to overnight? I've set mine to draw from grid at 30%.
What are you guys running your batteries down to overnight? I've set mine to draw from grid at 30%.
Grid notifications still not working and on my S23 Ultra, notifications are blocked and I cannot slide the toggle to unblock them. Never seen that on an App before.

My understanding is that one should keep them between 10 and 90 percent. If you have more than 1 battery, you should regularly (1 every two weeks or so) charge them to 100 percent in order to ensure that the batteries remain balanced.Cant really seem to find a definitive answer.
I have 4x pylontechs.
Should one drain them as much as possible over night or keep them as close to 100% as possible?
Purely from a longevity perspective that is, not cost
This math seems wrong to me.Same
I have 3 batteries so that means that each battery runs down to around 10 percent.
Hubble AM5s
that's what I thought too when I originally set the SOC on the inverter to 10 percent.This math seems wrong to me.
30% SOC on the inverter means you have 30% left of your total battery bank, therefore if your batteries are balanced, each battery will have 30% left.
Let me check my working:
3x 5kwh batteries = 15kwh
30% remaining of 15kwh = 4.5kwh
4.5kwh divided by 3x 5kwh batteries = 1.5kwh left in each
1.5kwh out of a total 5kwh per battery = 30% per battery remaining.
I stand by my opinion.
Never had an issue taking my 3x AM-2's down to 22%that's what I thought too when I originally set the SOC on the inverter to 10 percent.
I then had an occasion where it ran down to 10 percent but 1 of the batteries ran completely flat soon after the overall charge dipped below 10 - which, in my (probably addled brain) translated into "oh...so each battery was not at 10 percent, they were actually at 3.33 percent and 1 of them ran out sooner than the other 2". So then I set the thing at 30 percent and haven't gone below that since.
I would LOVE to be wrong so that I can squeeze more out of my battery use and set the overall back to 10 percent ie 10 percent remaining in each battery.
Good to knowNever had an issue taking my 3x AM-2's down to 22%
They can easily go to 0%. I would not do it for longevity reasons, but they can.Never had an issue taking my 3x AM-2's down to 22%
Comments?My understanding is that one should keep them between 10 and 90 percent. If you have more than 1 battery, you should regularly (1 every two weeks or so) charge them to 100 percent in order to ensure that the batteries remain balanced.
Based on months of reading online but no idea whether that's a definitive answer.
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