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EVE LF80A 3.2V Lifepo4 Battery 82Ah Lithium Ion Battery

EVE LF100LA 3.2v 100ah Lifepo4 Battery with Solar Hybrid Inverter Lifepo4 Battery Pack
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Attributes

ItemDescription
Model NumberLF80A
Brand NameEVE
Battery TypeLithium Iron Phosphate (LiFePO4)
Nominal Voltage3.2V
Nominal Capacity82Ah
Standard Charging Current40A (0.5C)
Standard Discharging Current40A (0.5C)
Initial Impedance≤0.5mΩ
Cycle Life4000 cycles
Energy Capacity262.4Wh (3.2V × 82Ah)
Anode MaterialLFP
Charging Rate0.5C
Discharging Rate0.5C
OriginChina

Core Application Scenarios

  1. Residential Energy Storage
    • Ideal for solar energy systems and off-grid power supply with stable long-term storage.
  2. Electric Mobility
    • Powers e-bikes, wheelchairs, and low-speed EVs with high cycle life.
  3. Portable Power Solutions
    • Used in mobile power stations, outdoor emergency lights, and camping gear.
  4. Industrial Backup Power
    • Ensures uninterrupted power for telecom towers, medical devices, and security systems.
  5. Special Equipment
    • Supports energy demands for power tools, drones, and robotics.

Note

  1. Safety Protocols
    • Avoid short circuits, reverse polarity, or water exposure; keep away from fire.
  2. Temperature Control
    • Charge within 0℃~55℃; discharge within -20℃~55℃.
  3. Charge/Discharge Guidelines
    • Charge cut-off voltage ≤3.65V, discharge cut-off voltage ≥2.5V; recommended DoD ≤90%.
  4. Storage Requirements
    • Short-term storage: -20℃~45℃; long-term storage: 0℃~35℃ with humidity <95%.
  5. Recycling Compliance
    • Dispose through certified facilities; no incineration or landfill.

10 things to note when purchasing products from China

Help Center

Have a query? Please check this question and answers

It is prohibited to mix different brands or batches of batteries for reasons including:
Capacity difference: CATL 280Ah and EVE LF280K actual capacity error ±3%, parallel connection may lead to reverse charging loss;
Inconsistency in internal resistance: BMS equalization fails after mixing, accelerating the attenuation of the weakest monomer in the group (barrel effect).
Solution: Separate the capacity and selection before grouping to ensure that the difference in internal resistance is less than 1mΩ and the difference in voltage is less than 10mV.

The products are UN38.3 (aviation safety certification), CE (European Union access), RoHS (no hazardous substances) certified

In the case that the description of the battery you are shopping for states that it still works at that temperature, the capacity drops to 50%-60% at -20°C, it is recommended:
Optional low temperature electrolyte (boost 10%-15% capacity);
Add preheating system (e.g. solar energy storage scenario).
High temperature protection: 55°C is the upper working limit, need to:
Avoid direct sunlight (add sunshade for outdoor installation);
Regularly check the cooling ducts and keep the distance between batteries ≥ 5cm

It is strongly recommended to use the original matching charger. The battery supports 1C standard charging (280A current), if using a non-specialized charger may lead to:
Risk of overcharging: over-voltage of ordinary lead-acid charger (e.g. 58.4V for Li-ion Sainty) may trigger the protection board to lock up;
Loss of efficiency: non-matching chargers may not be able to activate the BMS equalization function, resulting in widening the voltage difference between single units.
Recommended configuration: 48V system using 58.4V lithium iron phosphate special charger, support Bluetooth module real-time monitoring of the charging status.

Protective measures: wear insulating gloves and goggles, use matching copper rows (free connectors included) to reduce contact resistance;Environmental requirements: working temperature -20°C~55°C, humidity <70%, avoid direct sunlight;
Parallel/series connection rules: parallel connection requires the same cell capacity, series connection requires the configuration of active equalization BMS.
Q: How to extend the overall life of the battery pack?
A: Follow the “barrel theory” – check the weakest cell regularly:

Use a voltmeter to check the consistency of the cells every month;
Avoid frequent fast charging (>1C) or deep discharging (<10%);
For energy storage scenarios, we recommend charging to 90% and discharging to 20% to slow down the degradation.

Lithium iron phosphate battery capacity drops to 50-60% of normal at -20°C (about 70% for ternary batteries)

If the voltage of the whole pack is lower than the nominal value or the temperature of a single unit is too high, it may be due to wrong connection, short circuit or poor cell consistency.
Suggestion: Check whether the electrode connection is loose or reversed;
Use active equalization module to balance the voltage of the cell;
Replace the monobloc with abnormal performance