LiFePO4 Cycle Life & Capacity Degradation: How to Read the Datasheet
“6000 cycles” on a datasheet is real — but only at the conditions printed next to it. This guide shows what cycle life actually measures, what quietly shortens it, and how to turn a spec line into a realistic number of years.
Updated 2026 · 5 min read · Written by EGbatt application engineers
What “one cycle” means
Depth of discharge is the biggest lever
Cycle-life vs DoD (typical LFP)
| Depth of discharge | Typical cycles to 80% | Practical note |
|---|---|---|
| 100% (0–100%) | ~3,000 | Worst case the spec quotes |
| 80% | ~4,500 | Sweet spot for most designs |
| 50% | ~6,000+ | Best $/cycle, common in solar |
| 20% | ~8,000+ | Longest life, needs bigger bank |
Temperature and C-rate
Estimating real service life
Key takeaways
DoD beats headline
80% DoD can outlive 100% DoD by 50%.
Heat shortens life
Keep the bank 15–35 °C for rated cycles.
Use throughput
Life ÷ yearly kWh = realistic years.
Capacity fades slowly
LFP fades gently, not a cliff.
Talk to an EGbatt engineer
Tell us your load, voltage and autonomy. We will size the pack, quote it, and flag the traps before you buy.
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Frequently asked questions
No. “End of life” is usually defined as 80% of rated capacity; the pack still works, just smaller.
Very slowly. Calendar aging is minor for LFP stored at ~50% SoC and cool — see storage guidance.
Because throughput, not cycle count, is what actually wears a cell — it is the fairer measure.