Why do we need a balancer?
As battery cycle times increase, the decrease in battery capacity becomes inconsistent, leading to a significant imbalance in battery voltage. The battery barrel effect causes the battery to overcharge. The BMS system detects in advance that the battery has entered overcharge protection. In reality, only one of the batteries is fully charged, or the BMS system detects that the battery is entering over-discharge protection, which is actually caused by over-discharging one of the lower-voltage batteries. Once the device activates, each battery's voltage reduces the capacity loss caused by the battery barrel effect, thus extending the battery's lifespan.
The battery's lifespan is thus extended. Energy Transfer Active Balancer
Function
Operating Voltage: 2.7V-4.5V
Suitable for ternary lithium and lithium iron phosphate batteries
Operating Principle: The capacitor transfers the charge carrier. The balancing board is connected to the battery, and balancing begins. The original new MOS circuit board features extremely low internal resistance and 2 oz copper thickness.
Balancing current: 0-5.5A. The more balanced the battery, the lower the current. Includes a manual sleep switch. Sleep mode current is less than 0.1mA, and balancing voltage accuracy is within 5mV!
Quiet current is approximately 12mA. Recommended battery capacity: 60-300Ah.
With undervoltage sleep protection, the voltage automatically stops when the voltage drops below 3.0V, and the standby current draw is less than 0.1mA.
Voltage Display 6S
The accuracy of a single string is 0.001 V, and the total voltage is 0.01 V.
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