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  • What is the pocket plate technology of a NiCd Battery?

    What is the pocket plate technology of a NiCd Battery?

    Aug , 27 2021
    The NiCd battery or Nickel Cadmium battery is a rechargeable battery that uses metallic cadmium for its negative electrode and nickel oxide hydroxide for its positive electrode. For the electrolyte, a potassium hydroxide solution is used. Nickel Cadmium batteries are characterized by their resistance to electrical abuse, high cycle lives, reliability and versatility and have found a wide range of ...
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  • What are the best batteries for solar?

    What are the best batteries for solar?

    Aug , 30 2021
    Solar energy works by capturing the sun's energy and turning it into electricity for your home or business. Solar energy is becoming an increasingly popular form of alternative energy around the world. Solar batteries enable us to store more free energy form sun through our panels and buy less from energy supplier, saving money and incresing our independency from national grid. There are some...
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  • How to charge Lead Acid Battery properly?

    How to charge Lead Acid Battery properly?

    Aug , 31 2021
    A battery is an electrochemical device. During the battery discharge process, the stored chemical energy is converted to electrical energy that is used to power an electrical load. The charging process is the opposite reaction, where the electrical energy from the charging source is being stored into the chemical energy of the battery. In this article, we will know about the procedures of charging...
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  • Five golden rules for Smarter TCO analysis for Telecom application, Rule# 1

    Five golden rules for Smarter TCO analysis for Telecom application, Rule# 1

    Aug , 31 2021
    EverExceed has drawn on a long field experience in supplying batteries for telecom applications to identify Five Golden Rules for a TCO analysis that will result in a fully informed smart decision. These five golden rules will be discussed in this forum in a weekly series. Today we are going to describe Rule number 1. Rule 1: Know your current spending At each project stage you must iden...
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  • Five golden rules for Smarter TCO analysis for Telecom application, Rule# 2

    Five golden rules for Smarter TCO analysis for Telecom application, Rule# 2

    Aug , 31 2021
    EverExceed has drawn on a long field experience in supplying batteries for telecom applications to identify Five Golden Rules for a TCO analysis that will result in a fully informed smart decision. These five golden rules will be discussed in this forum in a weekly series. To continue this series today we are going to describe rule number 2. Rule 2: Identify areas where you can make savi...
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  • Developing an Energy Management Strategy (EMS) for LiFePO4 based ESS

    Developing an Energy Management Strategy (EMS) for LiFePO4 based ESS

    Aug , 31 2021
    Working closely to setup large-scale Lithium battery based Energy Storage System (ESS) for a wide variety of main grid, weak grid and micro grid installations; EverExceed has significant experience and insight on the real-world operation and optimization of energy storage technology. The most important consideration for any ESS is to view it as part of a whole system rather than as a sta...
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  • Evolution of different solar cells_M2 cells

    Evolution of different solar cells_M2 cells

    Aug , 31 2021
    The first modules had a power class of 48 watts in 1983. Here 36 cells with the dimensions 100 x 100 mm were used. The first modules had a power class of 48 watts in 1983. Here 36 cells with the dimensions 100 x 100 mm were used. This cell size was available on the market until about 1996. The first IBC Megaline modules with 120 watt, manufactured in the USA, were based on the dimensions 125 x 125...
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  • What factors are affecting the side reactions of lithium deposition?

    What factors are affecting the side reactions of lithium deposition?

    Sep , 17 2021
    When charging lithium ion battery, Lithium precipitation not only reduces the performance of the battery and greatly shortens the cycle life, but also limits the fast charging capacity of the battery, and may cause disastrous consequences such as combustion and explosion. In a series of articles we will discuss about the problems from the macro scale of lithium-ion battery, working conditions, gra...
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  • What is the experimental evidence of side effects of lithium deposition, collected from different angles?

    What is the experimental evidence of side effects of lithium deposition, collected from different angles?

    Sep , 30 2021
    When charging lithium ion battery, Lithium precipitation not only reduces the performance of the battery and greatly shortens the cycle life, but also limits the fast charging capacity of the battery, and may cause disastrous consequences such as combustion and explosion. In a series of articles we will discuss about the problems from the macro scale of lithium-ion battery, working conditions, gra...
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  • Lithium battery cycle data analysis with curves and equations

    Lithium battery cycle data analysis with curves and equations

    Oct , 23 2021
    Generally, cycle life testing will generate a lot of data, which can obtain a lot of information. What analysis and processing can we do with these cycle data? The following summarizes some of the data processing. 1. Charge and discharge curve The charge-discharge curve refers to the curve of the battery's voltage, current, capacity, etc. changing over time during the charging and discharging proc...
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  • Lithium battery cycle data analysis with constant voltage charging current and capacity decay curve

    Lithium battery cycle data analysis with constant voltage charging current and capacity decay curve

    Oct , 29 2021
    Generally, cycle life testing will generate a lot of data, which can obtain a lot of information. What analysis and processing can we do with these cycle data? The following summarizes some of the data processing, continuation from last week’s article. 1. Constant voltage charging current and time Lithium-ion batteries are usually discharged at different currents during use, and often cannot under...
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  • Lithium battery failure model-explain the phenomenon of lithium evolution in graphite anode: part-1

    Lithium battery failure model-explain the phenomenon of lithium evolution in graphite anode: part-1

    Nov , 01 2021
    During the long-cycle cycle, the reversible capacity of the lithium-ion battery will continue to decrease due to the reduction of active materials, the precipitation of metal lithium, the continuous consumption of electrolyte, the increase of internal resistance and thermal runaway. Among them, the lithium evolution phenomenon of the graphite negative electrode is the most important cause of batte...
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