|
Battery
Type |
Chemistry |
Best
For |
Pros |
Cons |
|
IMR (I=Lithium, M=Manganese, R=round cell) |
Lithium Manganese Oxide - LiMn₂O₄ Manganese-based. |
High-drain devices like power tools, high-power flashlights, and
vape mods |
High discharge rate, safer |
Lower energy density |
|
ICR (I=Lithium, C=Cobalt, R=round cell) |
Lithium Cobalt Oxide-LiCoO₂ Cobalt-based. |
Low-drain consumer electronics like laptops, cameras, and phones |
Highest energy density/capacity, longer life. |
lowest safety, lower discharge rate, Overheating risk |
|
INR (I=Lithium, N=Nickel, R=round cell) |
Lithium Nickel Manganese Cobalt Oxide -LiNiMnCoO₂ Hybrid nickel-manganese-cobalt. |
Versatile, good for moderate-to-high drain, including power
banks, electric vehicles (EVs), and drones. |
A balanced mix of high capacity (like ICR) and high
discharge/safety (like IMR). |
Not best in any one aspect |
|
IFR (I=Lithium, F=Iron, R=round cell) |
Lithium Iron Phosphate-LiFePO4 |
Solar and EV systems |
Excellent safety, long life |
Lower capacity |
|
NCR (N=Nickel, C=Cobalt, R=round cell) |
Lithium Nickel Cobalt Aluminum Oxide - LiNiCoAlO₂ Aluminum-doped nickel-cobalt. |
High-capacity applications like large laptops, flashlights, and
some EVs (e.g., early Teslas). |
Very high capacity, good balance of safety and discharge, often
used in high-capacity cells. |
|

মন্তব্যসমূহ
একটি মন্তব্য পোস্ট করুন