introduction
The server rack LiFePO4 battery is a high-performance energy storage system designed for data centers and communication rooms. It adopts a standard 19-inch rack-mount design and can be directly installed in a standard server cabinet. The system uses lithium iron phosphate as the positive electrode material, with a standard voltage configuration of 48V or 51.2V. The capacity of a single module can reach 100-300Ah, and a larger capacity configuration can be achieved through parallel expansion. The cycle life exceeds 6,000 times at 80% discharge depth, and it can work stably for more than 10 years.
Features
Modular Design
The server rack LiFePO4 battery adopts a modular design, that is, the battery system consists of multiple independent battery modules, each module contains independent battery cells, battery management system (BMS) and necessary protection circuits. These battery modules can be combined like building blocks, and the capacity or voltage can be increased by series or parallel connection to build a larger energy storage system. The modular design allows users to flexibly add or reduce battery modules without replacing the overall equipment to meet the dynamic changes in power demand.
Long Cycle Life
At 80% discharge depth, the server rack LiFePO4 battery can achieve a cycle life of 4000-6000 times. This is because the chemical structure of lithium iron phosphate material makes it less likely to decompose or produce harmful byproducts during the charging and discharging process, thereby reducing the degradation rate of internal materials. At the same time, the advanced battery management system (BMS) can intelligently monitor each charging and discharging process to prevent over-discharge, over-charging and excessive internal temperature of the battery, effectively protecting the internal structure of the battery and extending its life. Calculated based on one charge and discharge per day, the battery can be used continuously for more than 10 years, providing users with a long-term and stable energy storage solution.
Wide Operating Temperature Range
The operating temperature range of server rack LiFePO4 batteries reaches -20°C to 60°C, and the charging temperature range is 0°C to 45°C. This is because lithium iron phosphate materials show good stability in both high and low temperature environments, avoiding the decomposition of materials or a significant drop in performance at extreme temperatures. At the same time, the perfect temperature control system can monitor the battery temperature in real time and adjust it in time to prevent performance loss or safety hazards caused by overheating or overcooling. This wide temperature adaptability range allows server rack LiFePO4 batteries to work stably regardless of whether they are in cold northern regions or hot tropical regions.
Environmental Characteristics
Server rack LiFePO4 batteries do not contain harmful heavy metals and toxic chemicals. Compared with traditional battery materials, they are more environmentally friendly, will not pollute soil and water sources, and have relatively low disposal costs when discarded. This environmental characteristic makes it suitable for projects that need to meet environmental standards, providing users with energy storage options that are more in line with green concepts.
Customization
Tailor the Server Rack Lifepo4 Battery to fit the unique specifications of your home's energy system with customizable voltage, capacity, and dimensions.
Call to Action
Invest in the strength of your home's energy with our Server Rack Lifepo4 Battery. Contact us today for a personalized quote that aligns with your energy aspirations.








Hot Tags: server rack lifepo4 battery, China server rack lifepo4 battery manufacturers, suppliers, factory, energy storage batteries for reducing electricity bills, energy storage batteries with anisotropic electrodes, cost effective energy storage batteries, energy storage batteries for electric vehicles, maintenance of energy storage batteries, energy storage batteries with iron chemistry







