Custom industrial LiFePO4 batteries for AGVs, AMRs, floor cleaning machines, mobility equipment, agricultural machinery and other OEM applications.
Each battery pack is developed around the equipment voltage, required capacity, continuous and peak current, battery compartment, charging system and communication requirements. Support is available from specification review and prototype development through equipment testing and volume production.
Industrial equipment places different demands on a battery than a standard consumer application. Motor-starting current, shift length, charging intervals, vibration, operating temperature and communication with the machine can all affect the final battery specification.
Custom LiFePO4 batteries for automated guided vehicles, autonomous mobile robots and warehouse automation equipment. The battery can be configured around the vehicle, motor controller and charging station.
View AGV & AMR LiFePO4 Battery Project →
LiFePO4 batteries for floor scrubbers, sweepers and commercial cleaning machines. Voltage, capacity and discharge current should be selected according to the traction motor, auxiliary loads, required operating time and charging schedule.
View Floor Cleaning Machine Battery Project →
Compact LiFePO4 batteries for mobility scooters, electric wheelchairs and related mobility equipment. The enclosure, terminals, connectors and charger interface can be adapted to the equipment and available installation space.
View 12V 45Ah LiFePO4 Mobility Battery Project →
Custom battery systems for farm utility vehicles, poultry equipment, feeding systems, egg conveyor lines and remote monitoring devices. The design can be adapted to the electrical load, installation space, charging method and operating environment.
View Agricultural Equipment Battery Project →
See additional equipment integrations, lead-acid conversions and OEM battery applications in our Industrial LiFePO4 Battery Projects →
LiFePO4 batteries can replace lead-acid batteries in many industrial machines, but a conversion should be based on the complete electrical system rather than voltage alone.
The battery compartment, continuous and peak current, charger, cables, fuses, connectors and control interface should all be checked before approving a replacement battery.
An industrial lead-acid replacement project may include:
View Lead-Acid to LiFePO4 Battery Replacement Guide →
Battery replacement compatibility involves more than voltage and capacity. For BMS current, charger requirements, communication, wiring and complete system integration, review our LiFePO4 Battery System Compatibility Guide →
Battery development begins with the machine rather than a generic catalogue specification. The engineering review covers the electrical load, mechanical fit, charger and communication interface before the battery structure and BMS settings are finalized.
The Smart BMS is configured according to the battery cells, equipment load, charging system and operating conditions. Protection can include overcharge, over-discharge, overcurrent, short circuit, temperature limits, cell monitoring and balancing.
CAN, RS485, RS232 and Bluetooth are available for selected battery configurations. The equipment protocol, firmware and cable pinout must be confirmed before sample development; communication cannot be determined from the connector type alone.
For more guidance on Smart BMS protection, charging, CAN/RS485 communication, battery sizing and system integration, visit the LiFePO4 Battery Technical Knowledge Center →
With more than 20 years of battery manufacturing experience, we support equipment manufacturers, automation integrators, battery brands and distributors from specification review through repeat production.
OEM and ODM services can include:
View OEM & ODM LiFePO4 Battery Services →
Learn more about pack assembly, BMS installation, aging and final inspection in our LiFePO4 Battery Manufacturing & Quality Control →
Samples and production batteries are inspected against the approved electrical, mechanical and communication specifications. The test plan depends on the battery design and intended equipment.
Battery sizing, charging, Smart BMS protection and CAN/RS485 communication: LiFePO4 Battery Technical Knowledge Center →
Review battery, BMS, charger, controller and communication compatibility: LiFePO4 Battery System Compatibility →
Review real equipment integration examples: Industrial LiFePO4 Battery Projects →
Review BMS, performance and communication testing: Lithium Battery Testing & Validation →
Yes. We review the equipment voltage, required capacity, continuous and peak current, installation dimensions, connectors, charger and communication requirements before recommending a battery configuration.
Common configurations include 12V, 24V, 36V and 48V. Other voltages can be evaluated for qualified OEM projects.
In many applications, yes. The battery compartment, equipment current, charger, cables, fuses, connectors and control interface should be checked before conversion.
Selected configurations support CAN, RS485, RS232 or Bluetooth. Compatibility depends on the BMS, equipment protocol, firmware and cable configuration.
Yes. Dimensions, enclosure material, mounting structure, terminal positions, connectors and cable outlets can be configured for qualified OEM projects.
The charger may be retained if its voltage, charging current and charging profile are suitable for the proposed LiFePO4 battery and BMS. Compatibility should be confirmed before use.
Please provide the equipment type, required voltage and capacity, continuous and peak current, battery-compartment dimensions, charging method, communication protocol and estimated order quantity.
Send us your equipment type, voltage, capacity, continuous and peak current, installation dimensions, connector requirements, charger information, communication protocol and estimated order quantity.
Our engineering team will review the application and recommend a suitable industrial LiFePO4 battery configuration for prototype development or volume production.