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12.8V 600Ah LiFePO4 battery for Heavy Machinery

12.8V 600Ah LiFePO4 Battery delivers 7.68kWh energy, 250A peak discharge, ≥1500 cycles, IP54 protection, and robust performance. It suits heavy industrial forklifts, construction equipment, and mining auxiliary machinery

  • Cell Certification: UN38.3
  • Nominal Capacity: 600Ah
  • Nominal Voltage: 12.8V
  • Total Energy: 7.68kWh
  • Weight: ≈78kg
  • Normal Charging Current: ≤100A
  • Peak Charging Current: ≤120A
  • Continuous Discharge Current: ≤200A
  • Peak Discharge Current: ≤250A
  • Communication: [Custom Industrial Interface]
  • Protection Grade: IP54
  • Dimensions L×W×H: 925mm×230mm×298mm

12.8V 600Ah LiFePO4 Battery  for Heavy Machinery

 

Product Introduction

Engineered as a 12.8V 600Ah LiFePO4 battery for heavy industrial machines, this lithium iron phosphate (LFP) solution is built to power high-load equipment like industrial forklifts, construction site machinery, and mining auxiliary systems. Featuring 12.8V nominal voltage, 600Ah high capacity, and a rugged Q235 steel casing, this 12.8V 600Ah LFP battery stands out with 7.68kWh total energy and 250A peak discharge — enabling heavy machinery to handle 1000+ kg loads and operate continuously for 16+ hours. Unlike standard industrial batteries, its 3P configuration and IP54 protection meet the rigorous needs of harsh factory, construction, or mining environments, making it a reliable power core for high-intensity industrial operations.

Technical Specifications

Table: 12.8V 600Ah LiFePO4 Battery Core Parameters (Heavy Industrial Machine Focus)
Parameter Details (Tailored for Heavy Industrial Machines)
Cell Type LFP 200Ah
Cell Cycle Life ≥2000 cycles (100% DOD) – reduces heavy machinery battery replacement frequency
System Cycle Life ≥1500 cycles (100% DOD)
Cell Certification UN38.3
Nominal Capacity 600AH (3P) – supports long-duration industrial machine runs
Nominal Voltage 12.8V
Working Voltage Range 10V–14.6V
Total Energy 7.68kWh – powers 16+ hours of continuous industrial machine operation
Weight ≈78kg
Normal Charging Current ≤100A
Peak Charging Current ≤120A – fast recharging for 24/7 industrial workflows
Continuous Discharge Current ≤200A – sustains stable performance for heavy machinery hydraulic systems
Peak Discharge Current ≤250A – handles 1000+ kg load lifts for industrial forklifts/mining equipment
Operating Temperature Charge: 0℃–50℃; Discharge: -15℃–55℃ – adapts to outdoor construction/mining environments
Communication [适配工业设备通讯接口] – syncs with heavy machinery control systems (customizable)
Casing Material Q235 steel – resists impact from industrial debris/heavy cargo
Protection Grade IP54 – dust/moisture-proof for factory/construction site use
Plug Type IF-FMBM-3551C-200A – stable high-power connection for industrial machinery
Dimensions (L×W×H) 925mm×230mm×298mm – fits standard heavy industrial machine battery compartments
Application Heavy industrial forklifts, construction site equipment, mining auxiliary machinery, industrial automation systems

Core Advantages of 12.8V 600Ah LiFePO4 Battery

1. 7.68kWh High Energy for 16+ Hour Industrial Machine Runtime
12.8V 600Ah LiFePO4 battery delivers 7.68kWh total energy:It supports 16+ hours of continuous operation for industrial forklifts — enough to cover full-shift cargo handling (e.g., 200+ pallet transfers) without recharging.For construction site equipment, this capacity powers 12+ hours of hydraulic system operation (e.g., heavy lifting, earthmoving).

2. 250A Peak Discharge for Heavy-Load Industrial Tasks
Tailored for heavy machinery load demands:250A peak discharge enables industrial forklifts to lift 1000+ kg bulk cargo — critical for factory warehouse or port material transfer.200A continuous discharge sustains stable performance through frequent load shifts (common in construction site operations).

3. IP54 Protection for Harsh Industrial Environments
Built for factory/construction/mining scenarios:IP54 dust/moisture-proof rating shields the battery from factory floor dust, construction site mud, and light rain — no performance loss in typical heavy industrial work environments.

4. ≥1500 System Cycles for Low-Cost Industrial Fleets
Optimized for high-frequency industrial use:≥1500 system cycles mean this 12.8V 600Ah LiFePO4 battery lasts 3x longer than standard lead-acid alternatives. For a 5-unit industrial forklift fleet, this cuts replacement costs by 60% over 2 years.

5. Rugged Q235 Casing for Industrial Durability
Q235 steel enclosure resists impact from falling debris (construction sites) and collision with heavy cargo (factory warehouses) — maintaining structural integrity even in high-wear industrial settings.

Application Scenarios

1. Heavy Industrial Forklifts
12.8V 600Ah LiFePO4 battery powers 1000+ kg cargo lifts. 250A peak discharge handles bulk material transfers, and IP54 protection resists warehouse/factory debris.
2. Construction Site Equipment
It suits 12+ hours of hydraulic system operation (e.g., small excavators, concrete mixers). Wide temperature adaptability works in cold winter or hot summer construction environments.
3. Mining Auxiliary Machinery
It energizes 10+ hours of mining support equipment (e.g., material transport carts). Rugged casing and dust-proof design withstand mining site particulate pollution.
12.8V 600Ah LiFePO4 battery

FAQ

Q1: What applications are industrial robot and machinery batteries designed for?

A: Industrial robot and machinery batteries are used in automated equipment and electrically powered industrial systems that require stable DC power, repeated charge-discharge operation, and reliable performance under demanding duty cycles. Typical applications can include industrial robots, mobile automation equipment, material-handling systems, inspection equipment, and other specialized machinery. The battery should always be selected around the equipment’s actual voltage, load profile, installation space, charging method, and operating environment.

A: Start with the machine’s nominal voltage, required operating time, continuous current, peak current, available installation space, and charging strategy. For intelligent equipment, also confirm the connector and communication requirements. A suitable industrial battery should match both the electrical load and the mechanical integration requirements rather than being selected by capacity alone.

A: Cycle life depends on cell chemistry, depth of discharge (DoD), charge and discharge rate, temperature, and the machine’s duty cycle. As a published reference, selected FEBATT robot battery configurations are specified for 2,000+ cycles at 80% DoD. Actual cycle-life ratings vary by battery model and test conditions, so the specification of the selected pack should be used for project evaluation.

A: The Battery Management System (BMS) monitors key operating parameters such as voltage, current, and temperature and helps protect the battery against abnormal operating conditions. Depending on the battery configuration, protection functions can include overcharge, over-discharge, overcurrent, short-circuit, and abnormal-temperature protection. Additional functions such as cell balancing, SOC estimation, fault logging, and communication may be integrated according to the project.

A: Yes, when the battery system is engineered for the machine’s actual load profile. Industrial equipment may experience short power peaks during startup, acceleration, lifting, actuation, or other high-load events. The required continuous current and peak current should therefore be defined during battery selection so the cells, BMS, busbars, connectors, and protection settings can be matched to the application.

A: Voltage must match the machine’s electrical architecture, while capacity primarily determines available energy and operating time. A higher Ah rating does not automatically make a battery suitable if its voltage, discharge capability, dimensions, or communication interface do not match the equipment. FEBATT industrial battery solutions cover multiple voltage and capacity classes, so system selection should be based on the complete operating requirement rather than voltage or capacity alone.

A: Industrial batteries can be configured for different operating environments, but temperature limits are model-specific. Selected FEBATT robot battery configurations publish operating-temperature references down to -20°C and up to 60°C. Actual charge and discharge temperature limits can differ by pack, and applications outside standard conditions may require a dedicated cell selection or thermal-control solution.

A: Communication requirements depend on the machine controller and project architecture. Selected FEBATT robot battery solutions support interfaces such as CAN and RS485, enabling the battery system to exchange information such as SOC, voltage, current, temperature, status, and fault data with the host controller. Interface type, message definitions, and communication logic should be confirmed during system integration.

A: Charging strategy affects both machine availability and long-term battery performance. The charger voltage, charge current, BMS limits, operating schedule, and available charging windows should be matched to the battery configuration. For multi-shift or high-utilization equipment, charging can be planned around actual operating cycles to reduce unnecessary downtime without exceeding the battery’s specified charging limits.

A: Yes. FEBATT can develop battery solutions around project-specific electrical and mechanical requirements. Customization may include voltage, capacity, dimensions, enclosure, continuous and peak current capability, connector and wiring configuration, BMS functions, CAN or RS485 communication, charging requirements, and installation constraints. Final specifications are determined according to the target machine and operating conditions.

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