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76.8V 200Ah LFP battery for Heavy-Duty Warehouse Automation

76.8V 200Ah LFP Battery for Logistics Robot delivers 15.36kWh energy, 280A peak discharge, ≥3000 cell cycles, IP66 protection, and CAN communication. Ideal for heavy-load AGVs, warehouse sorting robots, and automated material handling robots.

  • Cell Certification: UN38.3
  • Nominal Capacity: 200Ah
  • Nominal Voltage: 76.8V
  • Total Energy: 15.36kWh
  • Weight: ≈129kg
  • Normal Charging Current: ≤45A
  • Peak Charging Current: ≤100A
  • Continuous Discharge Current: ≤210A
  • Peak Discharge Current: ≤280A
  • Communication: CAN
  • Protection Grade: IP66
  • Dimensions L×W×H: 1224mm×342mm×272mm

76.8V 200Ah LFP Battery for Logistics Robot | High-Capacity Power for Heavy-Duty Warehouse Automation

 

Product Introduction

Engineered as a 76.8V 200Ah LFP Battery for Logistics Robot, this lithium iron phosphate (LFP) solution is built for high-demand logistics robots tackling heavy cargo transfers, non-stop sorting tasks, and industrial warehouse environments. Featuring 76.8V nominal voltage, 200Ah high capacity, and a rugged SPCC casing, this 76.8V 200Ah LFP Battery for Logistics Robots stands out with 15.36kWh total energy and 280A peak discharge — enabling logistics robots to handle 1000+ kg loads and operate continuously for 25+ hours. Unlike standard logistics robot batteries, its 1P configuration and IP66 protection meet the rigorous needs of 24/7 warehouse operations, making it a reliable power core for high-throughput logistics workflows.

Technical Specifications

76.8V 200Ah LFP Battery for Logistics Robot Core Parameters
Parameter Details (Tailored for Logistics Robots)
Cell Type LFP 200Ah
Cell Cycle Life ≥3000 cycles (100% DOD) – cuts logistics robot fleet replacement costs
System Cycle Life ≥2500+ cycles (100% DOD)
Cell Certification UN38.3
Nominal Capacity 200AH (1P) – supports long-duration logistics robot runs
Nominal Voltage 76.8V (24S)
Working Voltage Range 60V-87.36V
Total Energy 15.36kWh – powers 25+ hours of logistics robot sorting/handling
Weight ≈129kg
Normal Charging Current ≤45A
Peak Charging Current ≤100A – fast recharging for shift turnover
Continuous Discharge Current ≤210A – sustains heavy-load logistics robot operations
Peak Discharge Current ≤280A – lifts 1000+ kg cargo via logistics robots
Operating Temperature Charge: 0℃-55℃; Discharge: -20℃-60℃ – adapts to warehouse/outdoor logistics environments
Communication CAN – syncs with logistics robot fleet management systems
Casing Material SPCC – resists impacts from cargo in logistics workflows
Protection Grade IP66 – dust/waterproof for warehouse/outdoor logistics robots
Plug Type Hard connector – stable connection for high-power logistics robots
Dimensions (L×W×H) 1224mm×342mm×272mm – fits heavy-duty logistics robot chassis
Application Heavy-Load AGVs, Warehouse Sorting Logistics Robots, Automated Material Handling Robots

Core Advantages of 76.8V 200Ah LFP Battery for Logistics Robot

 

1. 15.36kWh High Energy for 25+ Hour Logistics Robot Runtime
76.8V 200Ah LFP Battery for Logistics Robot delivers 15.36kWh total energy:Supports 25+ hours of continuous operation for warehouse sorting logistics robots — enough to cover full daily shifts (e.g., 8000+ parcel sorts) without recharging.
For heavy-load AGVs, this capacity powers 18+ hours of non-stop material transfers across large-scale warehouses.

2. 280A Peak Discharge for Heavy-Load Logistics Handling
Tailored for logistics robot cargo needs:
280A peak discharge enables heavy-load logistics handling robots to lift 1000+ kg pallets or bulk cargo — critical for industrial warehouse material transfer.
210A continuous discharge sustains stable performance through frequent load shifts (common in logistics sorting yards).

3. IP66 Protection for Logistics Robot Harsh Environments
Built for warehouse logistics scenarios:
IP66 dust/waterproof rating shields the battery from warehouse dust accumulation, spillage, and light moisture — no performance loss in busy logistics work environments.

4. ≥3000 Cell Cycles for Low-Cost Logistics Robot Fleets
Optimized for high-frequency logistics use:
≥3000 cell cycles mean this 76.8V 200Ah Logistics Robot Battery lasts 2x longer than standard alternatives. For a 5-unit heavy-load AGV fleet, this cuts replacement costs by 60% over 3 years.

5. CAN Communication for Logistics Robot Fleet Coordination
Syncs with logistics operations:
CAN communication transmits real-time battery data (state of charge, temperature) to logistics robot fleet management systems. Managers can schedule charging to align with off-peak sorting hours, minimizing logistics workflow downtime.

Application Scenarios

1. Heavy-Load AGVs
The 76.8V 200Ah LFP Battery for Logistics Robot powers 1000+ kg cargo lifts. 280A peak discharge handles bulk material transfers, and IP66 protection resists warehouse debris.
2. Warehouse Sorting Logistics Robots
It suits 25+ hours of non-stop parcel sorting. 15.36kWh energy covers full-shift tasks, and long cycle life reduces fleet maintenance for high-volume e-commerce logistics.
3. Automated Material Handling Robots
It energizes continuous pallet moving across large warehouses. Wide temperature adaptability works in cold-storage or high-temperature sorting facilities.
76.8V 200Ah LFP battery for logistics robot

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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