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302AH Deep Cycle Prismatic battery cells 3.2V Brand New for electric vehicles UPS system

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3.2V 302Ah Phosphate iron lithium batteries, offer several advantages that make them an attractive choice for various applications. Here are the key benefits of LiFePO4 batteries:

1. High Energy Density: LiFePO4 batteries have a high energy density, allowing them to store a significant amount of energy in a compact size. This makes them suitable for applications that require a reliable and long-lasting power source.

2. Long Lifespan: LiFePO4 batteries have a longer lifespan compared to other lithium-ion battery chemistries. They can endure a large number of charge-discharge cycles while maintaining efficient performance, resulting in reduced replacement costs and environmental impact.

3. Excellent Safety: LiFePO4 batteries are known for their excellent safety features. They have a stable chemical structure that is less prone to thermal runaway and overheating, minimizing the risk of fire or explosion. This makes them a safer choice for applications such as electric vehicles and energy storage systems.

4. Fast Charging Capability: LiFePO4 batteries can be charged at a faster rate compared to other lithium-ion batteries. They have a lower charging resistance, allowing for efficient and quick charging, which is beneficial for applications that require shorter charging times.

5. Wide Temperature Range: LiFePO4 batteries can operate effectively over a wide temperature range, from extreme cold to high heat. This makes them suitable for use in diverse environments and climates.

6. Environmental Friendliness: LiFePO4 batteries are considered more environmentally friendly compared to other lithium-ion battery chemistries. They do not contain toxic materials like cobalt, and the phosphate-based chemistry is less harmful to the environment.

7. Maintenance-Free: LiFePO4 batteries require minimal maintenance. Unlike some other battery chemistries, they do not require frequent monitoring of the state of charge or special storage conditions, making them convenient and user-friendly.

In summary, LiFePO4 batteries offer high energy density, long lifespan, excellent safety features, fast charging capability, wide temperature range, environmental friendliness, and low maintenance requirements. These advantages make them a preferred choice for applications such as renewable energy storage, electric transportation, and smart grids.

What are 302AH 3.2V CATL LiFePO4 Batteries?

A 302AH 3.2V CATL LiFePO4 battery is a rechargeable lithium-ion battery manufactured by Contemporary Amperex Technology (CATL), a leading global battery manufacturer. The “LiFePO4” in the name refers to the cathode material, lithium iron phosphate, which is known for its safety, longevity, and high-temperature performance.  

Why are 302AH 3.2V CATL LiFePO4 Batteries popular?

These batteries have gained popularity due to several advantages:

  • Long cycle life: They can withstand thousands of charge-discharge cycles without significant capacity loss, making them ideal for applications that require frequent cycling.  
  • Safety: LiFePO4 batteries are considered safer than other lithium-ion battery chemistries, as they are less prone to thermal runaway and fires.  
  • High-temperature performance: They can operate in a wider temperature range, making them suitable for various environments.  
  • Fast charging: LiFePO4 batteries can be charged at higher rates compared to some other battery types.  
  • Lightweight: They are generally lighter than lead-acid batteries of similar capacity, making them attractive for portable applications.  

How are 302AH 3.2V CATL LiFePO4 Batteries produced in the factory?

The production process involves several key steps:

  1. Material preparation: The necessary materials, including lithium, iron, phosphate, and other components, are prepared and purified.
  2. Cathode material synthesis: The lithium iron phosphate cathode material is synthesized through a chemical process.
  3. Battery cell assembly: The cathode, anode, separator, and electrolyte are assembled into a battery cell.  
  4. Formation: The new battery cells are subjected to a formation process to activate their materials and optimize their performance.
  5. Testing and quality control: The batteries are thoroughly tested to ensure they meet the required specifications and quality standards.  

Why choose a 302AH 3.2V CATL LiFePO4 Battery?

This particular battery is a good choice for applications that require:

  • High capacity and long cycle life  
  • Safety and reliability
  • High-temperature performance
  • Fast charging
  • Lightweight design

Examples of suitable applications include:

  • Renewable energy storage (solar, wind)
  • Electric vehicles (EVs)  
  • Backup power systems
  • Marine and RV applications  

When is the best time to buy these batteries?

The optimal time to purchase these batteries can vary depending on several factors, including:

  • Market conditions: Prices may fluctuate due to supply and demand, as well as technological advancements.
  • Your specific needs: Consider your application, budget, and desired performance characteristics.
  • Promotions and discounts: Keep an eye out for sales, discounts, or rebates offered by manufacturers or retailers.

By carefully considering these factors, you can make an informed decision about when to purchase a 302AH 3.2V CATL LiFePO4 battery.

 

 

Phosphate iron lithium batteries will play a crucial role in the future, thanks to their high energy density, long lifespan, excellent safety features, and environmental friendliness. As a high-performance lithium-ion battery, the phosphate iron lithium battery offers a reliable energy storage solution to meet the growing demand for energy. Its high energy density enables it to provide substantial energy reserves, making it an ideal choice for renewable energy storage, electric transportation, and smart grids.

In terms of renewable energy storage, phosphate iron lithium batteries can effectively store unstable energy outputs from sources like solar and wind power. By balancing energy supply and demand, they ensure a consistent and stable power supply. These batteries can also be integrated with photovoltaic and wind power systems to create microgrids and distributed energy systems, facilitating the sustainable development of energy.

In the field of electric transportation, phosphate iron lithium batteries exhibit high energy density and low self-discharge rates. This allows them to provide longer driving ranges and reliable power output, meeting the demands of electric vehicle consumers. Moreover, these batteries demonstrate good safety performance, minimizing the risk of thermal runaway and explosions, thereby ensuring the safety of electric vehicles.

In the realm of smart grids, phosphate iron lithium batteries, with their high energy density and rapid response characteristics, are an ideal choice for energy storage systems. They can release stored energy during peak demand periods, balancing grid loads and providing stable power supply. Furthermore, when combined with renewable energy generation systems, phosphate iron lithium batteries enable energy optimization and management in smart grids, promoting clean and sustainable energy practices.

In summary, phosphate iron lithium batteries will play a significant role in the future, particularly in the areas of renewable energy storage, electric transportation, and smart grids. Their contributions will be instrumental in achieving sustainable energy development and building intelligent and efficient energy systems.

Basic Parameters

Item LiFePO4 battery Basic Parameters
Brand Name CATL
Model Number CATL 302
Nominal Voltage 3.2 Volt
Nominal Capacity 302Ah
Place of Origin Guangdong, China
Standard charging current 0.5C
Standard discharge current 0.5C
Battery type Lithium Iron Phosphate LiFePO4 Battery
Warranty 3 Year Warranty
Certification MSDS,CE,CB,ROHS,URL,BIS
Cycle life 6000 Times
Features Grade A Brand New
MOQ 4 Pieces (Free Busbars and screws)
OEM/ODM YES
Dimensions(L*W*H) 173*71.5*207mm
Weight 5.34±0.30Kg
Operating Temperature Charge temperature: 0℃~55℃
Discharge temperature: -20℃~55℃
Storage Temperature Storage Temperature -20°C ~ 60°C
Shipping DHL, UPS, FEDEX or Sea Shipping or Special line
Application Electric Vehicles (EVs); Energy Storage Systems (ESS); Portable Electronics; Backup Power Solutions; Renewable Energy Integration; Off-Grid Power Systems; Marine and RV Applications; Industrial and Commercial Applications

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