Lithium Batteries stand besides other battery chemistries due to their higher energy density and reduced cost per cycle. There are approximately six common chemistries of lithium batteries, with their own special advantages and pitfalls. For renewable energy programs, the predominant chemistry is Lithium Iron Phosphate (LiFePO4). This chemistry has exceptional security, with great thermal stability, high current ratings, long cycle life, and tolerance to misuse.
Lithium Iron Phosphate is a very stable lithium chemistry when compared to virtually all other lithium chemistries. The battery is assembled with a naturally safe cathode material (iron phosphate). In comparison to other lithium ion chemistries iron phosphate promotes a powerful molecular bond, which communicates extreme charging conditions, prolongs cycle life, and maintains chemical integrity over several cycles. This is what provides these batteries their excellent thermal equilibrium, long cycle life, and tolerance to misuse. LiFePO4 batteries are not susceptible to overheating, nor are they disposed to 'thermal runaway' and therefore do not over-heat or ignite when exposed to stringent mishandling or harsh environmental conditions.
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