- A 3.2V 100Ah Lithium Iron Phosphate (LiFePO4) battery is a high-capacity energy storage solution commonly used in various applications, including renewable energy systems, electric vehicles, and other high-demand devices requiring a reliable and long-lasting power source. Here’s a detailed description of this type of battery:
1. Basic Overview:
- Voltage: 3.2V (Nominal)
- Capacity: 100Ah (Ampere-hours)
- Chemistry: Lithium Iron Phosphate (LiFePO4)
- Energy Capacity: 320Wh (Watt-hours) – the total energy stored in the battery.
2. Key Features and Characteristics:
a. Lithium Iron Phosphate (LiFePO4) Chemistry:
- Stability: LiFePO4 is one of the safest lithium chemistries. It has a stable crystal structure, making it less prone to thermal runaway (fire or explosion) compared to other lithium-based batteries.
- Long Cycle Life: LiFePO4 batteries typically offer 2000 to 5000 charge/discharge cycles, depending on usage conditions. This means they last significantly longer than lead-acid or other lithium batteries with shorter cycle lives.
- High Thermal Stability: LiFePO4 batteries can safely operate within a wide temperature range without the risk of overheating or causing damage.
b. Electrical Performance:
- Nominal Voltage: 3.2V per cell (typical for LiFePO4 cells), which is lower than some other lithium chemistries (e.g., LiCoO2, which operates at 3.7V). However, it provides excellent cycle life and thermal stability.
- Capacity: 100Ah (Ampere-hours) means that the battery can supply 100A of current for one hour or 1A for 100 hours before being fully discharged.
- Energy Storage: 3.2V * 100Ah = 320Wh of energy storage.
c. Charging and Discharging:
- Charging Voltage: A typical LiFePO4 cell charges up to 3.6V, with a full charge often requiring a maximum voltage of around 3.65V.
- Discharge Voltage: The nominal voltage is 3.2V, with a safe cutoff voltage typically around 2.5V to 2.8V to avoid over-discharging and damaging the cells.
- Charging Current: Safe charging typically requires a constant current of about 0.5C to 1C (where C is the capacity). For a 100Ah battery, this would equate to a charging current of 50A to 100A.
d. Applications:
- Renewable Energy: These batteries are often used in solar power storage systems, providing a reliable way to store energy generated by solar panels.
- Electric Vehicles (EVs): Small EVs or e-bikes use these batteries as part of their powertrain, offering long-range capabilities with high charge/discharge efficiency.
- Energy Backup Systems: LiFePO4 batteries are used in off-grid energy storage systems, providing backup power to homes, businesses, and telecom systems.
- Power Tools and Robotics: Used in specialized devices that require high-capacity and compact batteries.
3. Advantages of LiFePO4 Batteries:
- Safety: LiFePO4 is one of the safest lithium battery chemistries. It is non-toxic, non-flammable, and chemically stable.
- Long Cycle Life: With proper management, these batteries last much longer than traditional lead-acid batteries (often 5-10 times longer).
- Efficiency: LiFePO4 batteries are known for their high energy efficiency, which means they charge and discharge with minimal losses.
- Eco-Friendly: LiFePO4 is more environmentally friendly than other battery chemistries (such as lead-acid), with fewer harmful chemicals involved in the manufacturing and disposal processes.
4. Typical Specifications for a 3.2V 100Ah LiFePO4 Battery:
Specification Typical Value Nominal Voltage 3.2V Capacity 100Ah Energy Capacity 320Wh Charging Voltage 3.6V – 3.65V Discharge Cutoff 2.5V – 2.8V Charging Current 0.5C to 1C (50A – 100A) Discharge Current 1C to 2C (100A – 200A) Cycle Life 2000 to 5000 cycles Weight ~12–15 kg (varies by design) Operating Temperature -20°C to 60°C (Discharge), 0°C to 45°C (Charge) Dimensions Varies by manufacturer (e.g., ~150mm x 200mm x 100mm) 5. Charging and Discharging Considerations:
- Charge and Discharge Rates: LiFePO4 batteries can handle higher charge and discharge rates than lead-acid batteries, but it’s important to not exceed the maximum recommended current. Overcharging or discharging too quickly can reduce the lifespan of the battery.
- Battery Management System (BMS): A good BMS is essential for protecting the battery from overcharging, overdischarging, temperature extremes, and balancing individual cell voltages. Many LiFePO4 batteries come with an integrated BMS for this purpose.
6. Maintenance and Lifespan:
- Cycle Life: These batteries can last for 2000 to 5000 cycles depending on how deep they are discharged and how carefully they are maintained. In practice, this translates to many years of use.
- Storage: If storing the battery for an extended period, it should be kept at around 50-70% charge and stored in a cool, dry place.
Conclusion:
A 3.2V 100Ah LiFePO4 battery is a reliable and efficient power solution, especially for high-demand applications. With a long cycle life, excellent safety features, and a higher energy density than lead-acid batteries, it’s a great choice for anyone looking for a durable, eco-friendly, and safe energy storage option.
“15Ah 3.2V 32140 LiFePO4 Cylindrical Rechargeable Lithium Battery Cells by CBAK” has been added to your cart. View cart
100Ah 3.2V, PRISMATIC LITHIUM PHOSPHATE CELL- A GRADE (DIY BATTERY KIT) 4S 100Amp JBD BMS, BUSBAR, NUT
₹16,900.00
4 CELLS, JBD BMS 4S 100AMP, NUT, BUSBAR
A 3.2V 100Ah Lithium Iron Phosphate (LiFePO4) battery is a high-capacity energy storage solution commonly used in various applications, including renewable energy systems, electric vehicles, and other high-demand devices requiring a reliable and long-lasting power source.
Categories: Hi Cell Bettery, LFP Batteries
Tags: 100ah, 100AH battery kit, 3.2v, highstar, inverter battery, lifepo4, lithium phosphate, prismatic, solar battery
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