Why are lithium batteries better than lead acid batteries?

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Lead acid batteries are about to get extinct. Batteries have become an essential part of human lives. They let humans power their heavy machinery, cities and transport systems. The twentieth-first century was the battery revolution century. With the change in technology, the means employed by us to work, play and live highly depend on batteries for powering our lives. The manufacturing of a new kind of battery has been done and they are called as lithium batteries. Read this blog to know more about lithium batteries and find out why traditional lead-acid batteries decline.

The lifespans of lithium batteries are longer

As far as batteries are concerned, a single charge cycle is described as when you carry out its discharging and then charge that battery. Basically, discharging refers to employing a battery for powering an appliance. A battery’s lifespan is calculated in terms of the number of cycles it is capable of handling before dying rather than years. The usage of a battery holds more importance than its age in terms of years. The fewer cycles a battery has passed, the better its shape will be. When assessing the battery’s lifespan, you want to determine the number of cycles it can handle.

Lithium batteries can significantly handle a larger number of cycles than conventional lead-acid batteries. Depending on the size of warranties offered by lithium battery manufacturers in China and conventional lead-acid battery manufacturers, you can expect that you would need to replace a lead-acid battery three to five times during a single lithium battery’s lifespan. Often conventional lead-acid batteries have limited warranties as their lifespans are shorter. The battery’s cycle life has a relationship with the level of the capacity you can utilize before it must be recharged. When the discharging of batteries is done more deeply, they get more stressed, and therefore their lifecycle is shorter.

Charging times of lead-acid and lithium batteries

Charging conventional lead-acid batteries is extremely slow. For most cyclic applications, you must have additional conventional lead-acid batteries available beforehand to still utilize your application, whereas the other battery is being charged. Conventional lead-acid battery should be kept on a float charge in standby applications. Lithium batteries charge four times more rapidly than traditional lead-acid batteries. The more rapid charging means that the lithium battery is being used for a greater period and thus needs fewer batteries.

Cool temperature battery performance

Cool temperatures can cut down the capacity significantly for every battery chemistry. Knowing this, two factors must be considered when assessing a battery for cool temperature use: discharging and charging. A lithium battery would not accept charging at less than 32 Fahrenheit cold temperature. Nevertheless, conventional lead-acid batteries can accept low power charges at a cold temperature. Conversely, a lithium battery is equipped with a higher discharge capability at low temperatures than conventional lead-acid batteries. This tells us that lithium battery manufacturers do not need to over-design lithium batteries for low temperatures, but battery charging can be a limiting factor.