AGV & AMR Battery Solutions for Industrial Automation
LiFePO4 battery systems for automated material handling equipment, with BMS communication, charger matching, and project support from evaluation to volume supply.
The Application of AGV and AMR Power Systems
Automated guided vehicles and autonomous mobile robots are used in manufacturing, warehousing, and logistics operations where movement has to stay predictable, efficient, and connected to the wider equipment system.
For these platforms, battery selection affects more than runtime. Communication, charger matching, installation space, monitoring, and the ability to move from a prototype into repeat supply all influence whether a project can scale reliably.
- AGV SystemsFactory material transport and fixed-route automated guided vehicle battery applications.
- AMR SystemsFlexible warehouse logistics and autonomous mobile robot battery applications.
- RGV SystemsRail-guided movement where charging and system integration should be reviewed together.
- Material HandlingProduction and warehouse automation where battery-side reliability supports equipment availability.
Powering Automated Material Movement
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What Matters in an Automation Power System
A strong AGV or AMR battery solution is evaluated around the operating system, not only around voltage and capacity.
Built to communicate with the equipment
Application-driven BMS strategies and CAN/RS485 communication support help connect battery data with compatible automation control architectures.
See battery status and diagnose earlier
Remote monitoring, diagnostics, and OTA capabilities can help technical teams access battery information and troubleshoot supported systems with less on-site intervention.
Fit power into the platform
Voltage, capacity, and form factor need to work within available installation space, weight limits, and electrical requirements.
Match power and charging requirements
Battery capacity, charger rating, charging windows, and connector direction should be evaluated together according to how the vehicle operates.
Move beyond the first sample
LiTime supports projects through feasibility evaluation, development, testing, trial production, and mass production.
An Integrated Power Solution for Automated Equipment
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From Evaluation to Supply
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Your Requirements
Review voltage, capacity, duty cycle, installation space, communication, charger, and environment needs before locking a direction.
Your Project
Evaluate feasibility, develop the battery and BMS configuration, and validate the system through function, safety, EMC, and reliability testing.
Your Supply
Support trial production, process verification, mass production, and recurring supply as the automation program moves forward.
BMW Factory AGV Project
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Battery Solutions for Automation Platforms
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Why LiTime for Automation Projects
Explore LiTime's Engineering & Manufacturing CapabilitiesAGV & AMR Battery FAQs
What type of battery is commonly used in AGVs and AMRs?
LiFePO4 batteries can be suitable for automated equipment that requires long service life, stable operation, and intelligent battery management. The final battery choice should be evaluated according to the vehicle electrical architecture, duty cycle, charging method, and integration requirements.
What voltage battery does an AGV use?
AGV battery voltage varies by vehicle architecture and power requirements. Voltage should be evaluated together with capacity, current demand, runtime, charger requirements, and control-system architecture.
Can LiTime batteries communicate with an AGV control system?
LiTime has in-house BMS development capabilities and supports CAN/RS485 communication on applicable battery solutions. Compatibility should be evaluated against the project controller and protocol requirements.
Can LiTime support battery and charger matching?
Yes. Battery and charger requirements can be evaluated together based on the selected battery configuration and the equipment charging and operating requirements.
What information is needed to evaluate an AGV battery solution?
Useful starting information includes required voltage, capacity and current demand, expected runtime, installation space, communication requirements, charging requirements, operating environment, and estimated project volume.
How does LiTime support projects from testing to volume production?
LiTime's development process covers requirement definition, feasibility evaluation, system development, testing and validation, trial production, and mass production support.
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