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Custom 24V 12Ah NMC Battery for AGV with RS485 CAN

24V 12Ah NMC Battery for AGV: RS485/CAN BMS, 12Ah capacity, – 10~60℃. Powers shuttle AGVs, compact robots—high – density automation power.

  • Nominal Voltage:24V
  • Rated Capacity:12Ah
  • Charging Current:≤5A
  • Operating Current:≤10A
  • Dimension:Custom
  • Certification:CE, KC, UN38.3
  • Communication Interface:RS-485, CAN
  • Application:Shuttle AGV

24V 12Ah NMC Battery for AGV | RS485/CAN – Enabled Compact Power for Shuttle Robots

Introduction

Tailored for shuttle AGV fleets, the 24V 12Ah NMC Battery for AGV delivers high – density power, 12Ah endurance, and RS485/CAN smart monitoring. As a critical NMC Battery for AGV, it integrates nickel – manganese – cobalt cells, multi – layer safety, and custom dimensions—ideal for small shuttle robots, warehouse automation, and 24/7 logistics systems.

 

Core Specifications

Parameter 24V 12Ah NMC Battery for AGV Lead – Acid  AGV Impact
Nominal Voltage 24V 24V Matches 24V 12Ah NMC Battery for AGV power needs
Rated Capacity 12Ah 12Ah Powers 4 + hours of continuous shuttle AGV ops
Battery Type NMC Lead – Acid High energy density for compact AGVs
Communication RS485, CAN None Real – time SOC, fault warnings
Operating Temp – 10~60℃ 0~40℃ Withstands warehouse, cold storage

Why This NMC Battery Dominates Shuttle AGVs

1. High – Density Power for Compact Robots

The 24V 12Ah NMC Battery for AGV ensures:
  • “12Ah Endurance: Runs shuttle AGVs to sort 200 + orders per charge—no mid – shift recharges.”
  • “24V Stable Output: Drives traction motors, navigation sensors, and sorting systems in compact robots.”

2. RS485/CAN Smart Fleet Control

Integrated communication provides:
  • “Real – Time Fleet Health: Monitors battery voltage, capacity, and faults—prevents AGV downtime in 24/7 warehouses.”
  • “Custom Alerts: Overcurrent, overheating warnings—critical for automated material – handling fleets.”

3. Rugged Design for Warehouse Dynamics

With NMC cells and – 10~60℃ operation:
  • “Shock – Resistant Casing: Survives shuttle robot impacts, vibrations in e – commerce warehouses.”
  • “Wide Temp Adaptation: Works in cold storage (- 10℃), hot dispatch zones (60℃)—no climate – related failures.”

Application Scenarios

1. Small Shuttle AGV Operations

The NMC Battery for AGV powers:
  • “Order – Sorting Robots: 12Ah capacity enables 3 + hours of continuous shelf – to – dock transport.”
  • “Compact Mobile AGVs: 24V output drives motors to navigate narrow warehouse aisles.”

2. Extreme – Condition Flexibility

For cold storage, hot dispatch:
  • “Cold – Storage AGVs: Operates at – 10℃ frozen warehouses—powers robots to move chilled goods.”
  • “Hot – Dispatch Zones: Works at 60℃ high – temp areas—no performance loss during peak shipping.”

FAQ

Q1: What is the difference between AGV, AMR, and RGV, and can they use the same battery type?

A: AGVs typically follow predefined routes, AMRs use onboard sensors and mapping for more flexible navigation, and RGVs operate along fixed rails or guided tracks. All three can use industrial LiFePO4 battery systems when the voltage, capacity, dimensions, discharge current, charging method, and communication requirements match the robot design.

A:Start with the robot’s nominal voltage, required runtime, continuous and peak current, available battery space, and charging schedule. For AGV, AMR, and RGV fleets, buyers should also confirm connector type, BMS communication such as CAN or RS485, operating temperature, and whether the system uses scheduled or opportunity charging.
A: LiFePO4 batteries are well suited to industrial mobile robots because they offer long cycle life, stable power output, strong thermal stability, and low routine maintenance. They are especially practical for warehouses, factories, and logistics operations that require frequent charge-discharge cycles and reliable multi-shift operation.
A: Battery life varies by model and operating conditions rather than following one fixed number for every pack. Depth of discharge, charge and discharge current, temperature, charging strategy, and daily duty cycle all affect service life. Refer to the specifications of the selected model for its rated cycle life, or provide your operating profile for a more accurate evaluation.
A:  Yes, they can be configured for many existing AGV, AMR, and RGV charging systems, but compatibility should be verified before installation. Charging voltage and current, connector or contact design, charge profile, communication protocol, and docking method must match. FEBATT can support battery and charging-interface configuration for automatic or opportunity-charging applications.
A: LiFePO4 AGV batteries require much less routine maintenance than flooded lead-acid batteries because there is no watering or acid maintenance. Regular checks should focus on connectors, cables, mounting points, charging contacts, temperature conditions, and BMS fault records. Following the recommended charging and storage conditions also helps maintain stable long-term performance.
A:  Yes. FEBATT can customize robot battery packs according to voltage, capacity, physical dimensions, enclosure layout, connector type, discharge current, charging requirements, and communication protocols. This is useful for OEM projects, fleet upgrades, and robots with limited installation space or specific electrical interfaces.
A: The intelligent BMS monitors key battery conditions and provides protections such as overcharge, over-discharge, over-current, short-circuit, and temperature protection. Depending on the battery design, communication interfaces such as CAN or RS485 can transmit battery status and fault information to the robot controller or fleet-management system.
A: Temperature can influence usable capacity, charging efficiency, power output, and long-term battery aging. High temperatures can accelerate degradation, while low temperatures can reduce available power and charging performance. The required operating temperature range should therefore be confirmed during battery selection, especially for cold storage, outdoor logistics, or high-temperature industrial environments.
A: Lead time depends on order quantity, battery specifications, customization level, testing requirements, and production schedule. Standard configurations may require less engineering work, while new OEM battery designs need additional time for design confirmation, prototyping, validation, and mass production. Contact FEBATT with your robot specifications and required quantity for an accurate delivery schedule.

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