Product Description
75KWH Lithium iron phosphate battery (LiFePO4) energy storage 614V 200AH Lithium battery with BMS system
Introduction:
SANDI lifepo4 lithium battery pack with BMS(battery management system) including battery cabinet, all battery cables are connected well, including BMS and LCD display, when customer receive it then can directly use.
Our LiFePo4 Li lon battery power cell is approved by TUV, can work to 95% deep discharge, battery lifetime is more than 10 years.
Features:
1. Long service life, 3000 cycles, service life > 10 years.
2. Including BMS(battery management system) and LCD monitoring.
3. Including battery cabinet, all battery cables are connected well.
4. Safe and reliable.
5. High energy density, strong endurance.
6. 5 touch screen LCD integrated communication, convenient for real-time monitoring of data.
7. Safety and environmental protection.
8. High cost performance, excellent quality, longer service life.
9. Perfect protection functions: short circuit, over load, under voltage, over voltage and over heat protection.
10. We can customize 10KWH-500KWH lithium battery energy storage system.
11. Can built in solar charge controller or AC-DC battery charger, our BMS(Battery Management System) can manage charger well, BMS can adjust charging current based on batteries actual status, intelligently charge and protect batteries, more reliable and extend battery service life.
Advanced BMS ProtectionIntegrated smart BMS safeguards the battery by continuously monitoring performance, balancing cells, and providing protection against common electrical faults and temperature extremes. This adds an extra layer of reliability, ensuring safety and long-term efficiency in diverse applications.
Robust Cycle LifeEngineered for longevity, the LiFePO4 battery delivers more than 4000 cycles at 80% depth of discharge. Its durability minimizes replacement frequency, making it a cost-effective choice for solar, industrial, and commercial energy storage systems.
Flexible Installation OptionsWith rack mount and cabinet options, the battery suits various installation environments, making it ideal for large-scale energy systems. The powder-coated industrial-grade metal enclosure ensures physical protection and easy integration into different setups.
FAQ's of Lithium iron phosphate battery (LiFePO4) energy storage 614V 200AH Lithium battery with BMS system:
Q: How does the integrated smart BMS enhance battery safety and performance?
A: The intelligent Battery Management System (BMS) actively balances cell voltage and provides protection against overcharge, over-discharge, short circuit, and excessive temperatures. This ensures maximum performance and safeguards the battery, reducing risk of failure and enhancing operational lifespan.
Q: What is the recommended process for charging and discharging the battery?
A: For optimal operation, charge the battery up to 700V, keeping the standard charging current at or below 100A (0.5C), while the maximum continuous discharge current can reach 200A. The BMS manages the process to maintain cell consistency and protection throughout all cycles.
Q: When should this LiFePO4 battery be used for energy storage applications?
A: This battery is ideal when reliable, maintenance-free, and long-lasting energy storage is required, such as in solar installations, microgrids, industrial backup systems, and commercial energy reserves. Its robust cycle life and safety features make it suitable for both primary and backup power solutions.
Q: Where can this battery be installed?
A: Installation is flexible, allowing for rack mount or cabinet integration in commercial, industrial, or solar power environments. Its powder-coated enclosure provides durability, ensuring safe usage in various settings with ample space to accommodate its dimensions.
Q: What are the benefits of choosing a LiFePO4 battery for large energy storage needs?
A: LiFePO4 batteries offer significant advantages, including long cycle life (over 4000 cycles), consistent performance, robust safety measures, sealed maintenance-free design, and compatibility with modern energy management systems via RS485, RS232, and CAN communication options.
Q: How is battery communication managed within an energy system?
A: The battery supports RS485, RS232, and CAN interfaces, allowing for real-time data exchange with monitoring and automation equipment. This enables effective management, diagnostics, and integration into broader energy control systems, improving operational transparency and efficiency.