[Lifespan & Degradation] What are the characteristics of the degradation curve of LYP batteries?
Battery degradation is not merely a decline in a single parameter; rather, it is the result of concurrent changes in capacity, internal resistance, and cell consistency over time and across cycles. The degradation curve of LYP batteries exhibits distinct characteristics that set them apart from traditional lithium batteries, with their core advantage being long-term stability rather than initial peak performance.
In practical applications, many lithium batteries perform well initially. However, as the number of cycles increases, their internal resistance rises significantly and voltage stability drops rapidly, leading to a sharp decline in the system's usable performance. The LYP chemistry mitigates this process through material stability and structural design.
The degradation of LYP batteries typically manifests as a gradual, predictable change rather than a sudden, stage-like drop. This characteristic is particularly crucial for systems that require long-term operation and precise scheduling, as it ensures that system performance will not suffer irreversible declines within a short period.
Thanks to this stable degradation curve, LYP batteries can maintain a prolonged effective lifespan under high-frequency cycling and complex operating conditions. This is one of the primary reasons they are widely deployed in industrial, transportation, and infrastructure projects.