Cylindrical lithium cells come in two main chemistries: NCM (lithium nickel-cobalt-manganese, model prefix INR) and LiFePO4 (lithium iron phosphate, prefix IFR). Picking the right one early shapes your pack’s range, lifespan, safety and cost. Here is how they compare for B2B buyers.
Energy density
NCM stores more energy per gram and per cell, so an NCM pack is lighter and smaller for the same capacity. LiFePO4 is heavier for the same energy. Where weight or size is critical — drones, portable tools — NCM usually wins.
Cycle life
LiFePO4 typically delivers far more cycles — often 2,000–6,000+ versus roughly 500–1,500 for NCM — and tolerates deep discharge better. For daily-cycling applications like energy storage, that longer life lowers the cost per usable kWh over time. See LiFePO4 vs lead-acid for the storage case.
Safety & thermal stability
LiFePO4 has a more stable cathode and a higher thermal-runaway threshold, making it the safer chemistry — important for large packs and stationary storage. NCM is still safe in well-designed packs with a proper BMS and protection.
Temperature
NCM generally performs better in the cold; LiFePO4 can lose capacity at low
temperatures. On the NCM side, dedicated low-temperature -PL variants extend
cold-weather performance further. LMFP improves low-temperature behaviour versus
plain LFP. Both chemistries have charge-temperature limits to respect.
Voltage
NCM nominal is ~3.6 V (charge ~4.2 V); LiFePO4 nominal is ~3.2 V (charge ~3.65 V). This changes how many cells you put in series for a target pack voltage.
Cost
LiFePO4 uses no cobalt, so cell cost can be lower and more stable; NCM’s higher energy density can cut total pack and assembly cost where fewer, lighter cells matter. Judge on cost-per-usable-kWh over the product’s life, not sticker price.
Quick guide
- Choose NCM for energy density and weight: drones, e-bikes, power tools.
- Choose LMFP for cycle life and safety: solar, ESS, backup, off-grid.
- LMFP (MF type) sits between NCM and LFP — manganese-iron-phosphate blended with ternary chemistry for safer, longer-life cells that keep useful energy and better low-temperature behaviour.
What we make are cylindrical NCM cells in 18650 and 21700, plus a 21700 LMFP (MF type) that pairs NCM-class energy with LFP-class safety and cycle life. We no longer offer large-format LFP cells (the 32700 is a common industry LFP size, but not part of our range); for safety- and longevity-driven storage projects, our 21700 LMFP is the cell to specify.