Global OEM supply
Cell sourcing, pack engineering, BMS integration, production testing, and export documentation are planned around each buyer's shipping country and application.
LiFePO4 battery
LFP chemistry is a strong fit when buyers need cycle life, thermal stability, predictable safety behavior, and lower lifetime cost.
Final pack design depends on cell format, voltage, current, BMS, and enclosure constraints.
Global supply, regional planning
Staricell keeps the offer global while helping current priority buyers evaluate the details that affect import, field use, and repeat production.
Cell sourcing, pack engineering, BMS integration, production testing, and export documentation are planned around each buyer's shipping country and application.
Project files can be scoped around UN38.3, MSDS, CE, IEC, RoHS / REACH review, labels, and importer documentation needs.
Battery packs can be reviewed for high-temperature operation, telecom backup, industrial equipment, outdoor enclosures, and transport documents.
Cell batch data, matching records, BMS settings, inspection results, and aging summaries can be aligned before sampling or pilot production.
LiFePO4 batteries offer longer cycle life (2,000+ cycles), better thermal stability, safer chemistry with lower thermal runaway risk, and more predictable aging behavior compared to other lithium chemistries.
Common LiFePO4 pack voltages include 12V, 24V, 48V, 72V, and 96V. Custom voltages can be designed based on cell configuration and application requirements.
LiFePO4 batteries can operate in cold environments but with reduced capacity. For low-temperature applications, heating elements or insulation can be integrated into the pack design.
Project quote
Share voltage, capacity, application, quantity, target market, enclosure needs, and certification targets. Our team will map the pack architecture and quote path.