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    4S 10A Lead Acid Battery Balancer, 48V

    SKU: PH-BB-4S10A
    $102.59
    ● Designed specifically for optimizing 4-series battery packs, providing a balancing current of 0-10A. ● Active battery equalizer can precisely control voltage and balance charging and discharging. ● It supports various large-scale application scenarios such as energy storage cabinets and solar batteries. ● Digital tube display function is optional, making it more intuitive to read the status.
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    🚚 Free shipping
    ⏱️ Delivery: 6-12 days
    🔙 30-day Returns
    Overview

    4S 10A active battery equalizer is specifically designed to optimize 4-series battery packs. It can provide a stable balancing current of 0–10A, seamlessly integrate with the Battery Management System (BMS), monitor the voltage of individual battery cells, and actively redistribute energy. It also features reverse polarity protection and can operate reliably within a temperature range of -20℃ to +50℃, extending battery service life and maintaining stable performance. This versatile equalizer is highly suitable for electric vehicles, renewable energy storage devices, and industrial equipment such as forklifts, making it a wise choice for enhancing battery reliability and prolonging service life.

    4S 10A Lead Acid Battery Balancer Feature

    Feature

    • Deep Repair and Desulfurization: Breaks through traditional repair technologies, can remove deep sulfation on plates, and significantly restore battery performance.
    • Durable and Protective Design: Equipped with reverse connection protection and environmental adaptability from -20℃ to +50℃, with a sealed structure suitable for complex working conditions.
    • High Cost Performance and Wide Adaptability: Suitable for scenarios such as electric forklifts, energy storage cabinets, and electric vehicles, saving costs and significantly extending battery life.
     

    Details

    1. Smart Energy Balancing: Actively shifts energy between uneven cells to keep the entire battery pack uniformly charged.

    2. Longer Life & Steadier Output: Prevents cell damage from overcharge/over-discharge, extending battery lifespan and maintaining reliable performance.
    4S 10A Lead Acid Battery Balancer Details

    4S 10A Battery Balancer Dimension

    4S 10A Lead Acid Battery Balancer Dimension

    4S 10A Battery Balancer Wiring Diagram

    4S 10A Lead Acid Battery Balancer Wiring Diagram

    Please connect in the following order:

    • Connect the black wire to the negative terminal of the series battery pack.
    • Connect the red wire to the positive terminal of the series battery pack.
    • If the battery pack has fewer than 5 cells, the extra cables can be left unconnected (make sure to avoid reversing polarity), which will not affect the balancing effect.
    Specs
    Model PH-BE-201
    Number of Battery Pack Strings 4S (4 Batteries Connected in Series)
    Working Current 0-10A
    Voltage 48V
    Standby Current 5mA
    Working Temperature -20℃~+50℃
    Protection Reverse Polarity Protection
    Connecting Line 50cm
    Terminal φ8mm/φ10mm
    Dimension 129*69*28mm
    Application
    Battery of Forklift Truck

    Battery of Forklift Truck

    Battery Pack Energy Storage Cabinet

    Battery Pack Energy Storage Cabinet

    Solar Energy Storage Battery

    Solar Energy Storage Battery

    Battery of Golf Cart

    Battery of Golf Cart

    FAQ

    Q1: How does battery balancer work?

    Battery balancer works by continuously monitoring the voltage of each cell in a battery pack, then using electronic circuits and control algorithms to actively transfer energy from overcharged cells to undercharged ones. This real-time redistribution keeps all cells at a uniform state of charge, preventing overcharge or over-discharge, optimizing efficiency, and extending the battery pack’s overall lifespan.

    Q2: When should I install an active battery balancer in my battery pack?

    Install battery balancer if your battery pack is composed of multiple series-connected cells—such as those used in forklifts, solar energy storage systems, or electric vehicles—especially when you detect inconsistent cell voltages during charging or discharging cycles, need to support high-demand cyclic applications that accelerate cell degradation, or want to proactively maintain uniform cell health and prevent premature capacity loss and safety risks in both new and aging battery systems.

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