3.95V Semi-Solid Battery 280Wh/kg 23Ah 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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The 3.95V semi-solid battery series requires strict environmental and electrical constraints to ensure safe operation. Proper storage, BMS integration, and handling procedures are critical to prevent thermal or electrical hazards.
- Environmental Storage: Store cells in moisture-barrier vacuum-sealed packaging at controlled temperatures to prevent electrolyte degradation and leakage.
- Electrical Safety: Always use a compatible BMS with over-discharge, over-current, and cell balancing protection to prevent electrical hazards.
- Pre-conditioning: Pre-condition new cells at a suitable temperature before first use to ensure optimal electrochemical performance.
- Discharge Limits: Do not exceed the rated peak discharge duration (10C) to avoid thermal runaway and cell damage.
- Disposal: Dispose of cells in accordance with local regulations for lithium-based batteries to prevent environmental contamination.
Follow these steps to safely handle, charge, and discharge the semi-solid battery cells. Adherence reduces the risk of electrical or thermal incidents during first use and routine operation.
Required Equipment: Compatible BMS with over-discharge, over-current, and cell balancing protection, CC/CV charger capable of 1C charge rate within recommended voltage range
- Inspect Packaging
Inspect the moisture-barrier vacuum-sealed packaging for any damage or punctures before opening the cell. - Connect BMS
Connect the battery to a compatible BMS with over-discharge, over-current, and cell balancing protection. - Charge at 1C Rate
Charge the battery at a 1C rate within the manufacturer's recommended voltage range using a CC/CV charger. - Pre-condition New Cells
Pre-condition new cells at a suitable temperature before first use to stabilize the electrolyte and electrode interface. - Verify Ambient Temperature
Verify the ambient temperature is within the safe operating range and avoid exposing cells to excessive heat or cold. - Discharge Within Limits
Discharge continuously at up to 5C or peak at 10C for short durations without exceeding the rated time limits. - Dispose per Regulations
Dispose of the battery in accordance with local regulations for lithium-based cells to ensure environmental compliance.
What is the energy density trade-off between the 6S and 18S configurations of the ATOMFAIR 3.95V semi-solid battery series?
The 18S model (AF3952318S) achieves the highest energy density at 280 Wh/kg, while the 6S model (AF3952306S) delivers 265 Wh/kg. This 15 Wh/kg difference is due to the increased cell count and packaging efficiency in the 18S configuration, despite all cells sharing the same 23 Ah nominal capacity and 3.95 V nominal voltage.
Can the 23 Ah semi-solid pouch cells be integrated into a 12V or 48V battery system without additional series-parallel wiring?
Yes, the series offers pre-configured voltage options: the 6S model provides 23.7 V, the 8S provides 31.6 V, the 12S provides 47.4 V, and the 18S provides 71.1 V. For a nominal 48V system, the 12S configuration (47.4 V) is directly compatible without external series wiring, though a BMS with over-discharge and cell balancing protection is required.
What are the thermal and handling requirements for the semi-solid electrolyte pouch cells during storage and first use?
Cells must be stored in moisture-barrier vacuum-sealed aluminum foil bags and preconditioned at a suitable temperature before first use. Avoid prolonged exposure to excessive temperatures. The semi-solid electrolyte reduces leakage risk and improves thermal stability compared to liquid electrolytes, but a compatible BMS and adherence to the manufacturer's voltage range are mandatory for safe operation.
The ATOMFAIR 3.95V 23Ah semi-solid battery series offers 280Wh/kg energy density with 5C continuous and 10C peak discharge capability, but requires a compatible BMS and careful thermal management to ensure safe operation.
Positive
- Ultra-High Energy Density: Up to 280Wh/kg energy density enables extreme lightweight design for UAVs, robotics, and portable power stations.
- High Rate Capability: Supports 1C charge, 5C continuous discharge, and 10C peak discharge for demanding applications requiring burst power.
Trade-offs
- Requires Compatible BMS: Must be used with a BMS offering over-discharge, over-current, and cell balancing protection to prevent damage.
- Temperature Sensitivity: Avoid prolonged exposure to excessive temperatures; new cells must be preconditioned at suitable temperature before first use.
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).






