Explore custom LiFePO4 battery projects for AGVs, AMRs, floor cleaning machines, mobility equipment and agricultural applications.
Each project is developed around the machine voltage, required capacity, continuous and peak current, battery compartment, charging system and communication interface. We support equipment manufacturers, distributors and system integrators from requirement review and prototype development through equipment testing and OEM production.
Looking for application-level battery engineering rather than a specific project? Industrial LiFePO4 Battery Solutions →
This battery system was developed for automated guided vehicles and autonomous mobile robots used in material handling and warehouse automation.
The voltage, capacity, discharge current, enclosure, connectors and communication interface were matched to the vehicle electrical system, operating time and charging method.
The project configuration included:
This LiFePO4 battery was configured for commercial floor scrubbers, sweepers and industrial cleaning machines that require consistent power throughout a working shift.
Battery voltage, capacity, enclosure dimensions and connector layout were matched to the battery compartment, traction system, auxiliary loads and charging schedule.
The project configuration included:
This compact LiFePO4 battery was developed for mobility scooters and electric wheelchairs requiring stable output, lower battery weight and a configuration that fits the existing battery compartment.
The enclosure, mounting points, terminals, connectors and charging system were reviewed against the equipment electrical and installation requirements.
Available project options include:
This project covers LiFePO4 battery configurations for feeding equipment, egg conveyor systems, farm monitoring equipment, utility vehicles and agricultural backup power.
The battery is selected according to the machine voltage, daily energy use, startup current, installation space, operating environment and charging system.
Available project options include:
Many industrial machines can be converted from lead-acid batteries to LiFePO4, but the replacement should be based on the complete electrical and mechanical system rather than voltage alone.
Before developing a replacement battery, review:
View Lead-Acid to LiFePO4 Battery Replacement Guide →
Battery compatibility involves more than matching voltage and Ah. Review BMS current limits, charger requirements, motor-controller demand, wiring and communication in the LiFePO4 Battery System Compatibility Guide →
Industrial equipment often requires more than a standard battery specification. Voltage, capacity, output current, enclosure dimensions, connectors and communication functions must match the machine and its working conditions.
Custom development can include:
For guidance on battery sizing, Smart BMS protection, charging, CAN/RS485 communication, current limits and system integration, visit the LiFePO4 Battery Technical Knowledge Center →
For application-specific engineering support, see LiFePO4 Battery Technical Support →
Battery samples and production units are inspected and tested against the approved electrical, mechanical and communication specifications.
Testing can include:
View Lithium Battery Testing & Validation →
For production processes including cell inspection, Smart BMS integration, aging and final quality control, see LiFePO4 Battery Manufacturing & Quality Control →
We support industrial equipment manufacturers, distributors and system integrators from specification review and prototype development through testing and repeat production.
OEM and ODM services can include:
Yes. Enclosure dimensions, mounting points, terminal positions, connectors and cable outlets can be configured for qualified OEM projects.
The charger may be retained if its voltage, current and charging profile are suitable for the proposed LiFePO4 battery and BMS. Compatibility should be confirmed before use.
Selected battery configurations support CAN or RS485 communication. Compatibility depends on the BMS, equipment protocol, firmware and cable configuration.
Yes. Samples can be developed and tested after the electrical, mechanical and communication requirements are confirmed.
Please provide the equipment type, required voltage and capacity, continuous and peak current, battery compartment dimensions, charging method, communication requirements and estimated order quantity.
Send us the equipment type, required voltage and capacity, continuous and peak current, installation dimensions, charger information, connector requirements, communication protocol and estimated order quantity.
Our engineering team will review the application and recommend a suitable LiFePO4 battery configuration for prototype development or volume production.