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  • Empowering Telecom with Green Energy: EverExceed Stacked Solar Power System

    Empowering Telecom with Green Energy: EverExceed Stacked Solar Power System

    Sep , 05 2025
    As the demand for 5G networks and data centers continues to rise, telecom operators face mounting challenges in balancing energy reliability and carbon reduction goals. EverExceed’s Telecom Base Station Stacked Solar Power System provides an innovative solution by integrating solar generation with traditional grid power—helping operators achieve stable, efficient, and sustainable energy supply. Sy...
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  • Five Core Advantages of Lithium Batteries for Telecommunication Base Stations

    Five Core Advantages of Lithium Batteries for Telecommunication Base Stations

    Sep , 05 2025
    The Five Core Advantages of EverExceed Telecom Base Station Lithium Batteries Compared with traditional lead-acid batteries, EverExceed lithium batteries offer remarkable advantages, making them the ideal energy solution for modern telecom base stations. 1. High Energy Density, Space-Saving Design - 60% smaller volume: For the same capacity, lithium batteries are only 40% the size of lead-acid bat...
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  • Understanding Battery SOH and EverExceed’s Reliable Solutions

    Understanding Battery SOH and EverExceed’s Reliable Solutions

    Sep , 13 2025
    1. What is SOH and How is it Estimated? The State of Health (SOH) of a battery represents its overall condition compared to the initial performance when it was new. EverExceed lithium iron phosphate (LiFePO₄) batteries are designed with advanced Battery Management System (BMS) technology, making SOH monitoring accurate and reliable. The calculation is mainly based on two methods: Capacity Comparis...
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  • Safe Switching Operations in Power Networks: Best Practices and EverExceed Solutions

    Safe Switching Operations in Power Networks: Best Practices and EverExceed Solutions

    Sep , 19 2025
    Operating and maintaining electrical networks requires strict compliance with safety rules. Switching operators must ensure not only their own safety but also the safety of others who may be accessing the network. Both distribution and transmission switching involve high risks, so following proper procedures is critical. In this article, we’ll highlight key safety principles in switching operation...
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  • How Are the Charge and Discharge Cutoff Voltages of Lithium-ion Batteries Determined?

    How Are the Charge and Discharge Cutoff Voltages of Lithium-ion Batteries Determined?

    Sep , 20 2025
    1. Material System and Electrochemical Characteristics The positive and negative electrode materials determine the voltage window, as different materials have different electrochemical stability ranges. - Lithium Iron Phosphate (LFP) system: Typical charge cutoff voltage is 3.65V, discharge cutoff voltage is 2.5V (room temperature) or 2.0V (low temperature). - Nickel Cobalt Manganese/Nickel Cobalt...
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  • How to Extend the Service Life of Telecom Lithium Batteries

    How to Extend the Service Life of Telecom Lithium Batteries

    Sep , 20 2025
    Beyond the golden rules of avoiding extreme states of charge (20%-80%), preventing overheating, and using original chargers, the following points are particularly important for ensuring longer service life of telecom lithium batteries. As a professional lithium battery manufacturer and solution provider, EverExceed shares the following insights: 1. Focus on Temperature Management — The Top Priorit...
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  • 5G Base Station Lithium Battery: Capacity and Discharge Rate Requirements

    5G Base Station Lithium Battery: Capacity and Discharge Rate Requirements

    Sep , 26 2025
    EverExceed 5G Base Station Lithium Battery: Core Requirements and Insights Core Requirements for 5G Base Station Lithium Batteries Requirement Dimension 5G Macro Station (Urban Macro) Urban Small Cell Reference / Remarks Typical Power Capacity 20–50 kWh 3–10 kWh – Discharge Rate Continuous 500A Peak 150A – Backup Duration Typically 2–4 hours, extendable if required Typically 1–3 hours Configurable...
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  • Impact of High Temperature on Lithium Batteries and Effective Solutions

    Impact of High Temperature on Lithium Batteries and Effective Solutions

    Sep , 26 2025
    Negative Effects of High Temperature on Lithium Batteries High temperature has comprehensive and irreversible impacts on lithium batteries. The main issues are as follows: 1. Capacity Fading and Shortened Lifespan (Most Common Impact) Mechanism: Elevated temperatures accelerate side reactions in the battery’s electrochemical system, such as electrolyte decomposition and the reaction of active lith...
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  • Reliable Backup Power Redefined — EverExceed DC Power Supply Panels

    Reliable Backup Power Redefined — EverExceed DC Power Supply Panels

    Sep , 28 2025
    Introduction In today’s power-dependent society, the reliability of power supply systems directly determines the stability of modern infrastructure. Within this context, DC power supply panels—commonly known as DC power supply systems or “DC screens”—play an irreplaceable role as the “last line of defense” in backup power. These intelligent, maintenance-free DC systems have become indispensable in...
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  • How Next-Generation Base Station Systems Light Up the Digital Future

    How Next-Generation Base Station Systems Light Up the Digital Future

    Oct , 29 2025
    1. Introduction   At the intersection of 4G maturity and the 5G revolution, telecom base stations have become the digital arteries that keep modern society running. For many regions still striving to close the digital divide, a stable, efficient, and intelligent base station system is far more than a communication tool—it is the gateway to education, healthcare, economic opportunity, an...
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  • The principle and function of SOH of lithium iron phosphate battery

    The principle and function of SOH of lithium iron phosphate battery

    Oct , 31 2025
    I. The Principle of SOH: What Does It Reflect?   The essence of SOH is to quantify the degree of battery aging. This aging is mainly reflected in two aspects, which are also the physical basis of SOH calculation:   1. Capacity Decay This is the most core and intuitive manifestation of SOH. After long-term use, the total amount of charge that a battery can store and release will irreversi...
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  • Understanding the Determinants of Golf Cart Battery Lifetime

    Understanding the Determinants of Golf Cart Battery Lifetime

    Nov , 08 2025
    Golf cart battery lifespan Golf carts are essential for a good golfing experience. They are also finding extensive usage in large facilities such as parks or University campuses. A key part that made them very attractive is the usage of batteries and electric power. This allows golf carts to operate with minimum sound pollution and noise emissions. Batteries have a specific lifespan and,...
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