JiKong BMS
JIKONG JK-BD6A32S15P – 0.6A Balancer 150A BMS for 8S-32S LiFePO4
JIKONG JK-BD6A32S15P – 0.6A Balancer 150A BMS for 8S-32S LiFePO4
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JIKONG JK-BD6A32S15P – 0.6A Active Balancing BMS for 8S-32S LiFePO4
The JIKONG JK-BD6A32S15P is a smart Battery Management System with active balancing (non-lossy balancing) technology, designed for 8S–32S LiFePO4 battery packs. It transfers energy from higher-voltage cells to lower-voltage cells, achieving voltage balance with minimal energy loss. It operates continuously during charging, discharging, or idle states until the voltage difference is within the set range.
Because active balancing generates almost no heat, it can use a balancing current of 0.6A without affecting cooling. This makes it suitable for medium to large capacity battery packs.
Technical Specifications
- Model: JK-BD6A32S15P
- Active Balancing Current: 0.6A
- Maximum Charging Current: 150A
- Maximum Discharge Current: 150A
- Balancing Method: Active Balancing (Non-lossy)
- Battery Strings: 8S–32S
- Battery Type: LiFePO4
Optional Universal Display Screens
Optional universal display screens are available in three sizes: 2.3-inch, 3.2-inch, and 4.3-inch. These screens can be combined as needed for real-time monitoring of cell voltage, current, and temperature at the battery pack.
Package Includes
- BMS × 1
- Sampling cable × 1
- NTC temperature sensor × 1
- Switch key × 1
Note: Battery cells and other accessories are not included. Some models include 2 temperature control cables and several screws, depending on the model.
What is Active Balancing?
Active balancing transfers energy from cells with higher energy to those with lower energy, achieving voltage balance with minimal energy loss. It operates continuously regardless of charging, discharging, or idle states, until the voltage difference is within a set range. Since it involves energy transfer without heat generation, active balancing can use larger currents (commonly 0.4A–2A) without affecting cooling. It is more suitable for larger capacity battery packs due to longer balancing times and higher currents.










































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