BD6A24S10P 100AH 8S 10S 12S 13S 14S 15S 16S 20S 21S 24S with Active
Regular price
$73.17
Sale
: In stock
: Other
Package {Bluetooth bulit-in} * Temperature sensor(40cm) * Balance Wires(75cm) * Active Switch(15cm) *Heating cable(Only for BMS With Heat Function) H:BMS With Heat Function C:BMS With CANBUS chip Bulit-in
NOTE:For instructions on heating cables, the green 5PIN cable of the heating cable needs to be linked to the heating pad, and the rest of the black and red cables are linked to the smart charger (after the smart charger links the BMS, it detects the temperature of the battery through the BMS, which automatically monitors the charging status of the battery) Heat Function interface Description of heating function: Battery temperature is below low temperature charge protection, turn off charging, turn on heating.
Cryogenic charge protection is a parameter that can be set within APP
The heating power depends on the battery voltage and the resistance value of the heating film.
Battery voltage U.
Heating resistance R.
Power equals U*U/R
Heating current I=U/R;
The maximum I (current) of the board design is 3A.
Package {Bluetooth bulit-in} * Temperature sensor(40cm) * Balance Wires(75cm) * Active Switch(15cm) *Heating cable(Only for BMS With Heat Function) H:BMS With Heat Function C:BMS With CANBUS chip Bulit-in
NOTE:For instructions on heating cables, the green 5PIN cable of the heating cable needs to be linked to the heating pad, and the rest of the black and red cables are linked to the smart charger (after the smart charger links the BMS, it detects the temperature of the battery through the BMS, which automatically monitors the charging status of the battery) Heat Function interface Description of heating function: Battery temperature is below low temperature charge protection, turn off charging, turn on heating.
Cryogenic charge protection is a parameter that can be set within APP
The heating power depends on the battery voltage and the resistance value of the heating film.
Battery voltage U.
Heating resistance R.
Power equals U*U/R
Heating current I=U/R;
The maximum I (current) of the board design is 3A.