Quality 3.2V 85Ah LiFePO4 Prismatic Battery Cell 4000 Cycles for Solar Energy Storage factory
Quality 3.2V 85Ah LiFePO4 Prismatic Battery Cell 4000 Cycles for Solar Energy Storage factory
Quality 3.2V 85Ah LiFePO4 Prismatic Battery Cell 4000 Cycles for Solar Energy Storage factory
Quality 3.2V 85Ah LiFePO4 Prismatic Battery Cell 4000 Cycles for Solar Energy Storage factory

3.2V 85Ah LiFePO4 Prismatic Battery Cell 4000 Cycles for Solar Energy Storage

3.2V 85Ah LiFePO4 Prismatic Battery Cell 4000 Cycles for Solar Energy Storage
Basic Properties
Country Of Origin
China
Brand Name
CLITION
Certificate
MSDS, UN38.3
PRODUCT MODEL
CLT-LFP085
Trading Properties
MOQ
100 Pieces
Unit Price
Get A Quote
Payment Method
T/T
Supply Capacity
10000 Pieces per Month
Product Summary

3.2V 85Ah LiFePO4 prismatic cell with 4000-cycle life for solar/ESS applications. Features compact design (160.8*115*50mm), low internal resistance (≤0.4mΩ), and excellent thermal stability. Ideal for custom battery packs with flexible series/parallel configuration.

Product Details
Highlight:

3.2V 85Ah Prismatic LiFePO4 Cell

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4000 Cycle Life Battery Cell

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Solar Energy Storage Lithium Cell

Battery Type: LiFePO4 Battery
Shape: Prismatic
Nominal Voltage: 3.2V
Nominal Capacity: 85Ah
Standard Charge Current: 0.5C
Standard Discharge Current: 0.5C
Internal Resistance: ≤0.4mΩ
Cycle Life: 4000 Cycles
Weight: 2.05kg
Size: 160.8*115*50mm
Product Description
3.2V 85Ah LiFePO4 Prismatic Battery Cell
Product Overview

The 3.2V 85Ah LiFePO4 Prismatic Battery Cell is a high-performance lithium iron phosphate (LiFePO4) battery cell designed for solar energy storage systems, ESS, backup power, and renewable energy applications. With a rated voltage of 3.2V and a capacity of 85Ah, it provides approximately 272Wh of energy per cell, offering a reliable and efficient solution for building customized battery packs.

Featuring LiFePO4 chemistry, this prismatic battery cell delivers excellent thermal stability, high safety, and a long service life of up to 4,000 cycles, depending on operating conditions and charging/discharging parameters. Its prismatic aluminum housing provides a compact and robust structure, making it suitable for battery pack integration where space utilization and durability are important.

With consistent performance and reliable cycle life, this cell is well suited for residential solar storage, commercial and industrial energy storage, off-grid power systems, telecom backup power, UPS systems, and renewable energy storage.

Key Advantages
  • 4000-cycle rated endurance for lower total cost of ownership
  • Prismatic housing for compact, high-density pack layouts
  • Excellent capacity retention and stable discharge performance
  • LiFePO4 chemistry for enhanced safety and thermal stability
  • Low monthly self-discharge for long shelf storage
  • Supports series and parallel configuration for flexible system sizing
Technical Specifications
Nominal Voltage 3.2V Nominal Capacity 85Ah
Nominal Energy 272Wh Internal Resistance ≤0.4mΩ (AC Impedance, 1000 Hz)
Charge Cut-off Voltage 3.65V Discharge Cut-off Voltage 2.5V (>0℃), 2.0V (≤0℃)
Max. Charge Current 255A (Continuous) / 425A (50%SOC, 10s) Max. Discharge Current 510A (Continuous) / 680A (50%SOC, 10s)
Charge Temperature 0℃ to 55℃ Discharge Temperature -20℃ to 60℃
Weight 2.05±0.2kg Dimensions (L×H×T) 160.8×115×50mm
Terminal Material A11060 Delivery SOC 30%~40% SOC
Important Safety Notices
  • Avoid overcharging and over-discharging: Operate within recommended voltage ranges to prevent reduced battery life or permanent damage.
  • Use a proper BMS: Battery Management System is strongly recommended for overcharge, over-discharge, overcurrent, short-circuit, and temperature protection.
  • Avoid mechanical damage: Do not drop, crush, puncture, bend, or disassemble the cell. Do not use cells with visible swelling, leakage, or deformation.
  • Control operating temperature: Use and store within specified temperature ranges. Avoid extreme heat, direct fire, or high-temperature environments.
  • Keep terminals insulated: Protect terminals against accidental contact and short circuits during transportation, storage, and assembly.
  • Do not mix incompatible cells: Avoid mixing LiFePO4 cells with different chemistries, capacities, specifications, or states of health.
Packaging & Delivery
  • Terminal caps fitted and cells insulated against short circuits
  • Moisture-barrier wrap with shock-absorbing foam
  • Export cartons or UN-certified crates for transport
  • Palletized loading available for container orders
Frequently Asked Questions
1.How much energy does one 3.2V 85Ah cell provide?
The theoretical nominal energy is approximately: 3.2V × 85Ah = 272Wh. Actual usable energy depends on battery pack configuration, discharge conditions, BMS settings, and operating temperature.
2.Is LiFePO4 safer than other lithium-ion battery chemistries?
LiFePO4 generally offers excellent thermal and chemical stability compared with many other lithium-ion chemistries. However, it is still a lithium battery and must be properly charged, protected, assembled, and operated according to manufacturer specifications.
3.Can these cells replace lead-acid batteries?
Yes. Properly configured LiFePO4 battery packs can replace lead-acid batteries in many applications. Compared with traditional lead-acid batteries, LiFePO4 offers longer cycle life, lower weight, higher usable energy, and reduced maintenance.
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