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3 Essential LiFePO4 Battery Features That Promote Product Safety

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<p>There is enough risk involved in selling your engineered application without needing to worry about safety issues arising in your battery. Your customers want to purchase a product with a dependable, stable power source. Unfortunately, lead acid batteries may not be the safest option.</p><p>Clients are not always aware of lead acid's strict care requirements and might use your product without enough thought given to protecting the battery. Overcharging and over-discharging a lead acid battery induces harm that may lead to fires or other hazardous consequences, so you require a battery alternative that's resistant to this type of damage.</p><p><a href="https://www.meritsunpower.com/12v-24v-lifepo4-battery" target="_blank">LiFePO4</a> technology is broadly regarded as one of the safest methods to power a battery-operated program. LiFePO4 goes the additional mile with a lower voltage per cell, keeping your battery cooler.</p><p>As well as carrying dependable lithium&nbsp;ion batteries, your own battery supplier should give the safest lithium technology: LiFePO4. Consider the following three LiFePO4 features that help your clients avoid overheating accidents:</p><p>Thermal and chemical stability improve the safety of LiFePO4 technology. LiFePO4 is unlikely to undergo phosphate decomposition, a process that releases oxygen from the mobile structure. Phosphate decomposition would only occur in your LiFePO4 battery under very high temperatures (generally greater than 800 degrees Celsius).</p><p>If clients use your applications in hot surroundings, a LiFePO4 battery is the safest solution. Your battery has a diminished risk of combustion because it remains stable in harsh circumstances.</p><p><br></p><p>Structural Stability After Lithium Removal</p><p>The structural integrity of your battery is an important element in battery safety. When you remove lithium from lithiated cobalt oxide, the cells grow, making the compound more harmful. But, removing all the lithium in a LiFePO4 battery causes no structural changes.</p><p>In fact, LiFePO4 keeps the exact same structure whether it is in a litigated or even delithiated stage. This shows LiFePO4's capability to stay structurally sound and stable even if the battery is damaged. </p><p>Resistance To Oxygen Reduction</p><p>LiFePO4's cathode substance is safe. The material is extremely resistant to oxygen loss, which would give rise to a battery explosion under intense heat. The scientific reason for this protection is that the oxygen is covalently bonded to non-transition metal inside the battery, preventing oxygen from departing the construction even after overheating.</p><p><br></p><p>LiFePO4's automated manufacturing procedures prevent defects from occurring on your battery and putting your clients at risk. However, with so many battery suppliers creating their own products, you need to be careful to choose a trustworthy manufacturer. As you search for the ideal supplier, schedule a battery consultation to find out more about its manufacturing methods.</p><p><br></p><p>If a provider only offers a handful of lithium battery options, or it is not able to offer clear information about how its batteries are created, it likely doesn't have the infrastructure to accommodate to your particular safety requirements. The right manufacturer has a broad, high-quality stock such as LiFePO4 technology to help keep your customers safe even in extreme temperature conditions.</p>

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