Description
3.20V 588Ah LFP Prismatic Cell Series | ATOMFAIRCOMMERCIAL GRADE · PRODUCTION
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TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official institutional quotations.
EMAIL: INQUIRY@ATOMFAIR.COM
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MANUFACTURER: ATOMFAIR LLC
BRAND: ATOMFAIR®
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Cells require humidity-controlled vacuum-sealed storage to maintain electrode stability. A dedicated BMS with protection functions is mandatory for safe operation.
- BMS Requirement: A dedicated BMS with over-discharge, over-charge, short-circuit protection, and cell balancing is mandatory.
- Voltage Window: Operate the cell within the recommended voltage window to prevent damage.
- Temperature Condition: Maintain suitable temperature conditions during charge and discharge.
- Mechanical Protection: Avoid mechanical abuse, deep over-discharge, or short circuits.
- Storage Environment: Store in humidity-controlled vacuum-sealed packaging to prevent moisture ingress.
This procedure outlines safe handling and initialization steps for LFP prismatic cells before integration into energy storage systems. Follow each step to ensure battery safety and longevity.
Required Equipment: Dedicated Battery Management System (BMS), Humidity-controlled vacuum-sealed storage packaging
- Inspect Cell
Inspect the cell for any signs of physical damage or deformation before handling. - Condition Cell
Condition the cell under standard ambient conditions prior to first use. - Connect BMS
Connect a dedicated BMS with over-discharge, over-charge, short-circuit protection, and cell balancing to the cell. - Operate Within Limits
Operate the cell within the recommended voltage window and at suitable temperature conditions during charge and discharge. - Avoid Abuse
Avoid mechanical abuse, deep over-discharge, and short circuits throughout the cell's service life. - Store Properly
Store unused cells in humidity-controlled vacuum-sealed packaging in a cool dry environment. - Dispose Correctly
Dispose of end-of-life cells in accordance with local environmental regulations.
How does the cycle life difference between the AFLFP588-8K and AFLFP588-12K variants affect long-term ESS project economics and maintenance intervals?
The 12K variant offers ≥12,000 cycles at 0.5C/0.5C, 100% DOD, 70% retention versus ≥8,000 for the 8K. This directly extends service life for daily deep-cycling applications, reducing replacement frequency. Both variants share identical weight (<10.0 kg), energy density (187 Wh/kg), and mechanical footprint (72.5×288.0×216.3 mm), enabling drop-in configuration without re-engineering the pack.
What BMS specifications are required to safely manage a 588Ah LFP prismatic cell in a series or parallel string?
The product description specifies that a dedicated BMS with over-discharge, over-charge, short-circuit protection, and cell balancing must be used. The 588Ah capacity and 0.5C max continuous rate (294A nominal) imply a BMS capable of handling high current and balancing large-capacity cells. All electrical connections must respect the same voltage window and temperature conditions recommended for LFP.
What preconditioning steps are necessary before deploying the cell in an energy storage system after extended storage?
The product description advises conditioning the cell under standard ambient conditions prior to first use and operating within the recommended voltage window and temperature range. The cells are shipped in humidity-controlled vacuum sealed packaging with individual isolation. After unpacking, verify voltage integrity and perform an initial charge/discharge cycle per manufacturer guidelines before system integration.
The ATOMFAIR 3.20V 588Ah LFP Prismatic Cell Series offers two cycle life variants (≥8000 and ≥12000 cycles) with identical mechanical footprint, enabling flexible deployment in utility-scale ESS while requiring dedicated BMS and initial conditioning.
Positive
- Dual cycle life options for application flexibility: Choose between ≥8000 cycles for standard ESS or ≥12000 cycles for ultra-long-life applications, both at 0.5C/0.5C, 100% DOD with 70% retention.
- High energy density and giant capacity: 187Wh/kg and 588Ah per cell reduce system footprint, cell count, and BMS complexity, lowering assembly and maintenance costs.
Trade-offs
- Requires dedicated BMS with protection: A battery management system with over-discharge, over-charge, short-circuit protection, and cell balancing is mandatory for safe operation.
- Initial conditioning required before use: Cells must be conditioned under standard ambient conditions prior to first deployment to ensure optimal performance.
Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.
To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.
Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).





