EV Battery Module PACK Aging Cabinet
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  • EV Battery Module PACK Aging Cabinet

EV Battery Module PACK Aging Cabinet

The Battery Module PACK Aging Cabinet is designed to simulate long-term operational conditions for battery modules and PACKs.
  • Product description
    • Commodity name: EV Battery Module PACK Aging Cabinet
    • Commodity ID: 动力电池模组PACK电池组老化柜

    The Battery Module PACK Aging Cabinet is designed to simulate long-term operational conditions for battery modules and PACKs.

    1. Equipment Overview

    The Battery Module PACK Aging Cabinet is designed to simulate long-term operational conditions for battery modules and PACKs. It evaluates the durability, stability, and performance of battery systems under controlled environments. Essential in EV battery production and energy storage system (ESS) industries, this equipment ensures consistent quality through comprehensive aging tests.

    2. Key Features

    • Multi-Channel Testing: Simultaneous aging of multiple modules or PACKs.
    • High Precision: Accurate control of voltage, current, and temperature.
    • Dynamic Simulations: Programmable charge-discharge cycles for realistic operational testing.
    • Data Logging: Continuous monitoring with detailed analysis and reporting.
    • Safety Assured: Advanced safety systems to protect operators, batteries, and equipment.

    3. Technical Specifications

    3.1 Electrical Testing

    • Voltage Range: 0–1,000 V DC.
    • Voltage Accuracy: ±0.05%.
    • Current Range: 0–300 A (customizable for higher currents).
    • Current Accuracy: ±0.1%.
    • Power Capacity: Up to 200 kW per module/pack.
    • Aging Modes: Constant current, constant voltage, or combined profiles.

    3.2 Cycle Aging Capabilities

    • Charge-Discharge Cycles: Programmable up to 10,000 cycles.
    • Cycle Time Accuracy: ±0.1%.
    • Dynamic Load Testing: Real-time simulation of variable operating conditions.
    • Data Recording: Voltage, current, capacity, energy, and temperature during each cycle.

    3.3 Thermal Management

    • Temperature Range: -10°C to 80°C (optional integrated thermal chamber).
    • Temperature Accuracy: ±1°C.
    • Cooling and Heating Systems: Integrated for precise thermal control.
    • Thermal Runaway Monitoring: Automatic shut-off in case of abnormal heating.

    3.4 Mechanical Design

    • Cabinet Configuration:
      • Modular design with 4–16 chambers for simultaneous testing.
      • Adjustable slots for various module and PACK sizes.
    • Load Capacity: Up to 300 kg per chamber.
    • Dimensions:
      • Length: 2,000–4,000 mm (depends on configuration).
      • Width: 1,200–2,000 mm.
      • Height: 2,000 mm.
    • Weight: 2,000–5,000 kg.

    3.5 Software and Control

    • Control Interface:
      • 15-inch touchscreen HMI with intuitive controls.
      • Multi-language support (English, Chinese, etc.).
    • Programming: User-configurable test sequences and aging profiles.
    • Data Analysis:
      • Real-time monitoring with graphical visualization.
      • Historical data storage for traceability.
      • Export formats: CSV, Excel, PDF.
    • Connectivity: Ethernet, USB, Wi-Fi for remote access and data transfer.

    3.6 Safety Features

    • Overvoltage and Overcurrent Protection: Ensures battery safety during tests.
    • Short-Circuit Detection: Immediate shutdown to prevent damage.
    • Emergency Stop: Accessible emergency shutdown button for operators.
    • Environmental Monitoring: Sensors for smoke, temperature, and humidity.
    • Certifications: CE, UL, ISO 9001 compliant.

    3.7 Environmental Requirements

    • Operating Temperature: 10–35°C.
    • Humidity: ≤60% RH (non-condensing).
    • Ventilation: Built-in cooling and air circulation systems.

    4. Applications

    • EV Battery Modules and PACKs: Aging and durability testing for prismatic, cylindrical, and pouch cell-based systems.
    • Energy Storage Systems (ESS): Reliability testing for grid-scale applications.
    • R&D and Quality Assurance: Evaluation of new designs and quality consistency checks.

    5. Maintenance and Warranty

    • Maintenance Schedule:
      • Weekly: Inspect connectors, chambers, and sensors.
      • Monthly: Calibrate voltage, current, and temperature systems.
      • Annually: Perform system diagnostics and software updates.
    • Warranty Period:
      • Standard: 12 months.
      • Extended: Available upon request.

Key words:

EV Battery Module PACK Aging Cabinet

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FAQ

Q

How do you ensure consistent weld quality in the assembly of Prismatic battery packs?


A

This question pertains to the importance of achieving high-quality welds, particularly for the connections between cells and busbars. It often involves discussions on the types of welding techniques (e.g., ultrasonic, laser), equipment calibration, and inspection methods to prevent defects like weak joints or excessive heat-affected zones.

Q

What are the best practices for cell alignment and stacking in a Prismatic battery PACK assembly?


A

This question focuses on the techniques and tools used to ensure precise alignment and stacking of prismatic cells, which is critical for maintaining structural integrity and electrical performance in the final battery pack.
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