The FTLP1280 SERIES LiFePO4 battery is fit for E-mobility, Energy Storage System, Defense & Security, telecom outdoor applications,renewable energy systems, and other harsh environment applications.
LiFePO4, or Lithium Iron Phosphate, is a type of rechargeable lithium-ion battery known for its specific chemical composition and characteristics. LiFePO4 batteries have gained popularity for various applications due to their safety, long cycle life, high energy density, and thermal stability.
Safety: LiFePO4 batteries are considered one of the safest lithium-ion battery chemistries. They have a stable and robust structure that is less prone to overheating or thermal runaway, reducing the risk of fire or explosion. Chemical Composition: The chemical composition of LiFePO4 batteries includes lithium iron phosphate (LiFePO4) as the cathode material, along with a graphite anode and an electrolyte. High Energy Density: LiFePO4 batteries offer a relatively high energy density, providing a good balance between energy storage capacity and physical size. This makes them suitable for applications where space is a consideration. Long Cycle Life: LiFePO4 batteries are known for their long cycle life. They can endure a high number of charge-discharge cycles, typically exceeding 2000 cycles. This longevity makes them ideal for applications where frequent cycling is expected. Stable Voltage Output: LiFePO4 batteries have a stable voltage output throughout the majority of their discharge cycle. This characteristic allows for consistent power delivery, which is advantageous in applications where a stable voltage is critical. Fast Charging: LiFePO4 batteries can support relatively fast charging rates. They are capable of accepting a higher charge current without compromising safety or affecting cycle life, making them suitable for applications that require quick charging.
FEATURES:
High cycle life
6000 Cycles (25℃, 80% DOD) for effectively lower total of ownership cost.
Longer service life
Low maintenance batteries with stable chemistry.
Built in circuit protection
Battery Management System (BMS) is incorporated against abuse.
Better storage
up to 6 months thanks to its extremely low self discharge rate and no risk of sulphation.
Quickly recharge
Save time and increase productivity with less down time thanks to superior charge/discharge efficiency.
Extreme heat tolerance
Suitable for use in a wider range of applications where ambient temperature is unusually high: up to +60°C.
Lightweight
Lithium batteries provide more Wh/Kg while also being up to 1/3 the weight of its SLA equivalent.
Specification:
MODEL | FTLP1280-24100 | FTLP1280-24120 | FTLP1280-24200 | |
---|---|---|---|---|
Nominal Voltage | 25.6V | |||
Nominal Capacity | 100Ah | 120Ah | 200Ah | |
Nominal Energy | 2560Wh | 3072Wh | 5120Wh | |
Life Cycles | 6000 Cycles (25℃, 80% DOD) | |||
Recommended Charge Voltage | 29.2V | |||
Recommended Charge Current | 20A | |||
End Of Discharge Voltage | 20V | |||
Standard Method | Charge | 20A | 24A | 40A |
Discharge | 50A | 60A | 100A | |
Maximum Continuous Current | Charge | 50A | 60A | 100A |
Discharge | 100A | 100A | 100A | |
BMS Cut-Off Voltage | Charge | 30.8 V (3.85V/Cell) | ||
Discharge | 18.4 V (2s) (2.3V/Cell) | |||
Temperature | Charge | -4 ~ 113 ℉ (0 ~ 45℃ ) | ||
Discharge | -4 ~ 131 ℉ (-20 ~ 55 ℃ ) | |||
Storage Temperature | 23~95 ℉ (-5~35℃ ) | |||
Shipment voltage | ≥25.6V | |||
Case Material | ABS+PC | |||
Dimension (L x W x H) | 522x240x218mm 20.6 x 9.5 x 8.6” | 522x240x218mm 20.6 x 9.5 x 8.6” | 522x240x218mm 20.6 x 9.5 x 8.6” | |
Approx. Weight | 49.6 lbs (22.5 kg) | 59.5 lbs (27 kg) | 99.2 lbs (45 kg) | |
Charge retention and capacity recovery capability | Standard charge the battery, and then put aside at room temperature for 28d or 55 ℃ for 7d, Charge retention rate≥90%, Recovery rate of charge≥90 |
LiFePO4, or Lithium Iron Phosphate, is a type of rechargeable lithium-ion battery known for its specific chemical composition and characteristics. LiFePO4 batteries have gained popularity for various applications due to their safety, long cycle life, high energy density, and thermal stability.