I'm trying to work through the logic of how a common port BMS functions under this particular scenario. I have a 14S lithium ion pack (18Ah) with a common port BMS. I have two paralleled 12Ah 6S lipo packs (24Ah total) connected in series with the 14S pack. I bulk charge the packs together with a 20S charger.
I'm using the higher capacity lipos in order to only use the middle part of their capacity (max charge at around ~4.1V per cell and min voltage higher than around ~3.5V) when in series with the 14S pack. The 14S pack will be charged to around 4.15V per cell and cutoff charge a little before the lipos reach 4.1V per cell*. *The desired voltage range of the lipo packs will be adjusted after gathering some data while in use, in order to place them in the middle of their discharge range, and be used that way going forward.
I believe that I can simply monitor the 6S lipo voltage to ensure they stay within a range where there is headroom at the top, and bottom, under normal day to day use, and per cell voltage periodically (I've used different Graphene lipos in the past and they never went out of balance for years, so I expect similar performance).
For bulk charging, I always cutoff charging manually, but my question for this thread is, given the above set up, I believe the common port BMS will cutoff all/bulk charging when the 14S pack is "fully charged" to 4.1V per cell (setting the charge cutoff the 4.1V in the BMS settings), if I let the packs charge until the cutoff point rather than manually cutting off. I'm only trying to determine what protections I have in place, even though I'm always present monitor the charging anyway. None of the packs will ever be fully discharged, but I believe given the capacity of the 6S vs 14S,, the 14S would cutoff discharge before the lipos ever reach a low enough voltage to be a concern.
I'm using the higher capacity lipos in order to only use the middle part of their capacity (max charge at around ~4.1V per cell and min voltage higher than around ~3.5V) when in series with the 14S pack. The 14S pack will be charged to around 4.15V per cell and cutoff charge a little before the lipos reach 4.1V per cell*. *The desired voltage range of the lipo packs will be adjusted after gathering some data while in use, in order to place them in the middle of their discharge range, and be used that way going forward.
I believe that I can simply monitor the 6S lipo voltage to ensure they stay within a range where there is headroom at the top, and bottom, under normal day to day use, and per cell voltage periodically (I've used different Graphene lipos in the past and they never went out of balance for years, so I expect similar performance).
For bulk charging, I always cutoff charging manually, but my question for this thread is, given the above set up, I believe the common port BMS will cutoff all/bulk charging when the 14S pack is "fully charged" to 4.1V per cell (setting the charge cutoff the 4.1V in the BMS settings), if I let the packs charge until the cutoff point rather than manually cutting off. I'm only trying to determine what protections I have in place, even though I'm always present monitor the charging anyway. None of the packs will ever be fully discharged, but I believe given the capacity of the 6S vs 14S,, the 14S would cutoff discharge before the lipos ever reach a low enough voltage to be a concern.
