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  • Pros and Cons of Parallel Operation of High-Voltage Lithium Battery Clusters

    Pros and Cons of Parallel Operation of High-Voltage Lithium Battery Clusters

    Dec , 31 2025
    In large-scale high-voltage lithium energy storage systems, parallel operation of battery clusters is a common architecture used to achieve higher capacity, power scalability, and system reliability. At EverExceed, this architecture is widely applied in grid-scale energy storage, UPS backup power systems, and industrial power solutions. However, while parallel connection offers significant advanta...
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  • Classic Power, The Rock-Solid Choice — Unveiling the Industrial Reliability of Thyristor Chargers

    Classic Power, The Rock-Solid Choice — Unveiling the Industrial Reliability of Thyristor Chargers

    Jan , 08 2026
    In an era where extreme efficiency and intelligent systems are paramount, we choose to return to the fundamentals. By leveraging a time-tested technology, honed over half a century of industrial application, we provide your critical equipment with the most stable and resilient power source. We understand that, in demanding industries such as steel, ports, mining, large-scale energy storage, and re...
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  • Thyristor Chargers for Rail Transit: Efficient Onboard Battery Maintenance

    Thyristor Chargers for Rail Transit: Efficient Onboard Battery Maintenance

    Jan , 08 2026
    In modern urban rail systems, the stability of trains depends on not just traction and signaling, but also the reliable operation of onboard auxiliary power systems. Onboard batteries, which power emergency lighting, control systems, communication devices, and doors, are critical to safe operations and passenger experience. Efficient and intelligent maintenance of these batteries is essential. Amo...
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  • Understanding the Difference Between Cycle Life and Calendar Life of LiFePO₄ Batteries

    Understanding the Difference Between Cycle Life and Calendar Life of LiFePO₄ Batteries

    Jan , 09 2026
    In the lithium battery industry, especially for LiFePO₄ (Lithium Iron Phosphate) batteries widely used in telecom, UPS, and energy storage systems, battery lifespan is usually evaluated from two critical dimensions: cycle life and calendar life. As a global leader in industrial battery solutions, EverExceed designs LiFePO₄ batteries with balanced optimization of both factors to ensure long-term re...
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  • Four Core Functions of Commercial & Industrial Energy Storage Systems

    Four Core Functions of Commercial & Industrial Energy Storage Systems

    Jan , 09 2026
    As electricity pricing mechanisms become more market-oriented and carbon reduction requirements continue to rise, Commercial & Industrial (C&I) Energy Storage Systems have evolved from optional investments into essential energy management infrastructure. EverExceed, with extensive experience in lithium battery and energy storage solutions, delivers reliable C&I energy storage systems d...
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  • Telecom Base Station Energy Storage Systems: Workflow and Value Analysis

    Telecom Base Station Energy Storage Systems: Workflow and Value Analysis

    Jan , 14 2026
    As mobile communication networks continue to expand, energy storage systems for telecom base stations have become a critical foundation for network reliability and operational resilience. Beyond emergency backup, modern storage systems now deliver measurable economic, environmental, and grid-level value.   This article outlines the core operating workflow and comprehensive benefits of base st...
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  • What Is Battery DOD (Depth of Discharge)?

    What Is Battery DOD (Depth of Discharge)?

    Jan , 17 2026
    Depth of Discharge (DOD) refers to the percentage of a battery’s rated capacity that has been discharged during a single cycle. Formula:DOD = (Discharged Capacity / Rated Battery Capacity) × 100% Examples: A 100 Ah LiFePO₄ battery that delivers 30 Ah has a DOD of 30%. If the battery is discharged until only 20% state of charge (SOC) remains, the DOD is 80%. DOD = 100% represents a full...
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  • Impact of High-Rate Discharge on Battery Service Life

    Impact of High-Rate Discharge on Battery Service Life

    Jan , 17 2026
    In many applications such as UPS systems, energy storage systems (ESS), fast-charging solutions, and high-power industrial equipment, batteries are often required to operate under high discharge rates. While high-rate discharge enables higher power output, it also poses significant challenges to battery lifespan, safety, and long-term reliability. At EverExceed, we design lithium battery systems w...
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