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✨ Working Voltage Range: 3.0V to 4.5V per cell.
⛔ Compatible Battery Chemistry: Universal design supporting Li-ion (Ternary Lithium) and LiFePO4 (Lithium Iron Phosphate) batteries.
✨ Maximum Balancing Current: Up to 1.3A (Note: the actual current drops proportionally as the voltage gap between cells narrows).
⛔ Equalization Precision: Accurately balances adjacent cells to within 30mV (0.03V).
✨ Trigger Threshold: Active balancing automatically starts when the voltage mismatch between the two adjacent series cells exceeds 0.1V.
⛔ Static Power Consumption: Ultra-low standby draw, not exceeding 20µA.
✨ Operating Logic: Uses an onboard 1R0 inductor to bridge adjacent cells via high-precision switching circuits. It dynamically takes excess charge from the higher-voltage cell and pushes it directly into the lower-voltage cell, saving energy that would normally be wasted as heat by traditional passive balancing resistors.
⛔ Dimensions: Approximately 22mm x 16mm x 4mm
✨ Working Voltage Range: 3.0V to 4.5V per cell.
⛔ Compatible Battery Chemistry: Universal design supporting Li-ion (Ternary Lithium) and LiFePO4 (Lithium Iron Phosphate) batteries.
✨ Maximum Balancing Current: Up to 1.3A (Note: the actual current drops proportionally as the voltage gap between cells narrows).
⛔ Equalization Precision: Accurately balances adjacent cells to within 30mV (0.03V).
✨ Trigger Threshold: Active balancing automatically starts when the voltage mismatch between the two adjacent series cells exceeds 0.1V.
⛔ Static Power Consumption: Ultra-low standby draw, not exceeding 20µA.
✨ Operating Logic: Uses an onboard 1R0 inductor to bridge adjacent cells via high-precision switching circuits. It dynamically takes excess charge from the higher-voltage cell and pushes it directly into the lower-voltage cell, saving energy that would normally be wasted as heat by traditional passive balancing resistors.
⛔ Dimensions: Approximately 22mm x 16mm x 4mm
All products
HandTools
Module
Robotics
Battery
Motor & Propeller
BatteryPack
Soldering Tools
Amplifier
Fan
PowerBank and Accessories
Charger and Adaptor
RC Product BD
Humidifier
Switch & Connector
Spot Welder
Buck Boost Module
Light & LED
BMS
Battery Pack Tools
Charging Module
Tape & Glue
BLDC
Meter
Electrical Cable
Smart System
Mini UPS
Active Balancer
PD QC & Trigger
Inverter
Controller
Cutting Kit
Fan Kit
Drill Kit
Pump Kit
Arduino
Components
Level Indicator
Speed Controller
Battery Holder




✨ Working Voltage Range: 3.0V to 4.5V per cell.
⛔ Compatible Battery Chemistry: Universal design supporting Li-ion (Ternary Lithium) and LiFePO4 (Lithium Iron Phosphate) batteries.
✨ Maximum Balancing Current: Up to 1.3A (Note: the actual current drops proportionally as the voltage gap between cells narrows).
⛔ Equalization Precision: Accurately balances adjacent cells to within 30mV (0.03V).
✨ Trigger Threshold: Active balancing automatically starts when the voltage mismatch between the two adjacent series cells exceeds 0.1V.
⛔ Static Power Consumption: Ultra-low standby draw, not exceeding 20µA.
✨ Operating Logic: Uses an onboard 1R0 inductor to bridge adjacent cells via high-precision switching circuits. It dynamically takes excess charge from the higher-voltage cell and pushes it directly into the lower-voltage cell, saving energy that would normally be wasted as heat by traditional passive balancing resistors.
⛔ Dimensions: Approximately 22mm x 16mm x 4mm
✨ Working Voltage Range: 3.0V to 4.5V per cell.
⛔ Compatible Battery Chemistry: Universal design supporting Li-ion (Ternary Lithium) and LiFePO4 (Lithium Iron Phosphate) batteries.
✨ Maximum Balancing Current: Up to 1.3A (Note: the actual current drops proportionally as the voltage gap between cells narrows).
⛔ Equalization Precision: Accurately balances adjacent cells to within 30mV (0.03V).
✨ Trigger Threshold: Active balancing automatically starts when the voltage mismatch between the two adjacent series cells exceeds 0.1V.
⛔ Static Power Consumption: Ultra-low standby draw, not exceeding 20µA.
✨ Operating Logic: Uses an onboard 1R0 inductor to bridge adjacent cells via high-precision switching circuits. It dynamically takes excess charge from the higher-voltage cell and pushes it directly into the lower-voltage cell, saving energy that would normally be wasted as heat by traditional passive balancing resistors.
⛔ Dimensions: Approximately 22mm x 16mm x 4mm