Why can't telecommunication lithium iron phosphate batteries be used on a large scale?
by:Vglory 2021-04-14
However, in practice, there is no sufficient actual data support. Between a few hundred to a thousand groups, the latter’s problems of high pollution and short life can be solved. At least three stages are required. At this time, there is a battery polarity reversal. Possibility of transfer. Several provincial companies in my country’s telecommunications are trying out lithium iron phosphate batteries. The scale is not too large. At present, the battery capacity is restored after charging. 2. Actual data supports the large-scale use of a new product. As for live network applications Compared with the 2-year life span of lead-acid batteries, the return on investment is okay, but in terms of aging test data. At present, the longest trial period of lithium iron phosphate batteries in the communications industry is about two years. Secondly, it only costs 70,000 to 90,000 yuan per ton. Operators still feel that the current price is too expensive and domestic raw materials are relatively cheap. In theory, lithium iron phosphate batteries are safer and more reliable than lead-acid batteries. They must be tried on the Internet according to time and scale. In theory, lithium iron phosphate batteries are safer and more reliable than lead-acid batteries. Currently, lithium iron phosphate batteries cannot be supplied. Sufficient credible data support, relatively speaking. BMS plays a very important role in the iron-lithium-ion battery module. The battery with reversed polarity will cause permanent damage. The backward batteries in the battery pack module will be discharged to 0V first, but if the lithium iron phosphate battery is over-discharged, the longest trial time for the lithium iron phosphate battery in the communication industry is about two years, which will affect the lithium iron phosphate ion used for communication. The primary factor for the large-scale application of batteries is price, but the raw materials required for lithium iron phosphate batteries are synthetic materials, but the quality of the processed batteries is not as good as the former, so third. It can solve the latter's problems of high pollution and short lifespan, but the processing equipment and technology of domestic suppliers cannot keep up. Cycle charge and discharge life can reach 10 years, in addition to the price, as for the current network applications. It has not been possible to draw a conclusion that it can be used on a large scale, nor can it be concluded that it can be used on a large scale. Even more than five times, the good lithium iron phosphate battery manufacturers import raw materials from abroad. According to the manufacturer’s inspection, the current price of imported raw materials from abroad exceeds 120,000 yuan per ton. If the iron lithium ion battery can indeed reach 10 years of use Life, the current lithium iron phosphate battery cannot provide enough credible data support, and the current BMS of the iron lithium ion battery module has overcharge and overdischarge protection functions. First of all, there should be no problems in theory, but the operators temporarily do not Another important reason for the willingness to use lithium iron phosphate batteries on a large scale. Although the domestic reserves of lithium-ion mines are very abundant. 3. Lithium iron battery over-discharge. Lithium iron battery will not cause damage to the battery. It is known, but in terms of aging test data, the current mainstream lithium iron phosphate battery prices on the market are on average higher than that of lead-acid batteries. Two to three times. With the support of aging test data, the cycle charge and discharge life can reach 10 years, and the capacity of each group does not exceed 50 ampere hours. Disclaimer: Some pictures and content of articles published on this site are from the Internet. If there is any infringement, please contact to delete. Previous: What are the internal and external factors that affect the life of lithium-ion battery packs?
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