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CATL 3.2V 271AH Lithium Iron Phosphate (LiFePO4) Battery – High Capacity for Energy Storage

SKU CATL 271Ah Category Tag

The CATL 271AH 3.2V LiFePO4 battery offers a high capacity of 271AH, a voltage of 3.2V, long cycle life of 2000 times, and meets multiple safety certifications. Ideal for e – mobility and power storage systems.

  • Genuine Grade A lithium battery cells, brand new
  • Light weight and high performance with 10A continuous discharge
  • Small internal resistance
  • High energy density, low self-discharge
  • Pollution free, long cycle life
  • No memory effect
  • Existing stock for short delivery time.
  • OEM orders are available (battery pack, battery with spot welding ect.)
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CATL 271AH 3.2V LiFePO4 Battery

 

Product Introduction

The CATL 271AH 3.2V LiFePO4 Battery is a cutting – edge energy storage solution, crafted to meet the high – demand power needs across various industries. Constructed with genuine Grade A lithium battery cells, this CATL LiFePO4 battery ensures top – notch performance right from the start.

 

Featuring a high – capacity 271AH and a stable 3.2V voltage, it provides a reliable and consistent power supply. Unlike some conventional lithium – ion batteries, the CATL 271AH 3.2V LiFePO4 battery utilizes lithium iron phosphate chemistry, which offers enhanced safety, long – term reliability, and environmental friendliness. With its lightweight design and high continuous discharge rate, it can power a wide range of applications efficiently. Moreover, its low self – discharge rate and long cycle life make it a cost – effective choice for long – term use.

 

Technical Specifications

Category Parameter Value & Details
Basic Parameters Nominal Voltage 3.2V
Rated Capacity 271Ah (Customizable)
Cell Type Prismatic LiFePO4
Cell Weight ~5.3kg
Cell Size 72172200mm
Electrical Performance Charging Method CC/CV
Standard Charging Current ~54.2A (0.2C)
Maximum Charging Current 542A (2C, 25℃)
Charging Cut-off Voltage 3.65V per cell
Discharge Cut-off Voltage 2.5V per cell
Charge/Discharge Efficiency >95% (0.2C@RT)
Operating Conditions Charging Temperature Range 0~45℃
Discharge Temperature Range -20~+60℃
Storage Temperature Range -20~+45℃ (long-term)
Safety & Reliability Safety Certifications MSDS, Un38.3, IEC62133, UL1642
IP Rating (Cell Level) IP65 (Optional)

 

Core Features

  1. Superior Safety with LiFePO4 Chemistry
    The lithium iron phosphate chemistry used in the CATL 271AH 3.2V LiFePO4 battery provides inherent thermal stability. This significantly reduces the risk of thermal runaway, making it a safe choice for applications where safety is paramount, such as electric vehicles and large – scale energy storage systems.
  2. Long – lasting Performance
    With a cycle life of up to 2000 times, this CATL LiFePO4 battery ensures long – term usability. It can maintain a high percentage of its original capacity over numerous charge – discharge cycles, reducing the total cost of ownership for users in the long run.
  3. High Energy Density and Low Self – discharge
    The CATL 271AH 3.2V LiFePO4 battery boasts a high energy density, allowing it to store a large amount of energy in a relatively small size. Additionally, its low self – discharge rate means that it can retain its charge for extended periods when not in use, ensuring readiness whenever needed.
  4. Versatile Compatibility
    Designed with a standard form factor and voltage output, the CATL 271AH 3.2V LiFePO4 battery can be easily integrated into a wide range of applications, from electric bikes and scooters to industrial UPS systems and solar power storage setups.

 

Application Scenarios

The CATL 271AH 3.2V LiFePO4 battery is suitable for:

 

  • E – mobility Applications: Electric bikes, e – scooters, forklifts, golf cars, and other electric vehicles. Its high capacity and stable voltage output ensure smooth and long – lasting operation, reducing the need for frequent charging.
  • Power Storage Systems: UPS power storage systems, solar power systems, and wind energy storage. The CATL LiFePO4 battery can store excess energy generated from renewable sources and release it when required, contributing to a more stable and sustainable power supply.

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