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China Temperature Control Short Circuit Test Chamber - Reliable Suppliers & Factory for Battery Safety Testing Equipment
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China Temperature Control Short Circuit Test Chamber - Reliable Suppliers & Factory for Battery Safety Testing Equipment

The temperature control short-circuit testing chamber is an essential battery safety testing equipment used by manufacturers and suppliers in China. This advanced device combines a highly accurate temperature control environment with a robust large current short-circuit circuit. Its primary purpose is to simulate external short circuits in batteries at predetermined temperatures, whether normal or high. This testing chamber evaluates critical safety parameters, including the risk of fire, explosion, or overheating, ensuring that products meet stringent safety standards. As a leading factory in battery testing solutions, we provide this state-of-the-art equipment to enhance safety and reliability in battery manufacturing

    Technical Specifications

    Model TA-WDL-1000A
    Control Method PLC Touch Screen
    Max Load Current

    1000A: Device internal resistance <5 milliohms (load size can be customized)

    300A: configured resistor (80 ± 20) milliohms

    The load and resistance size can be customized

    DC Response Time ≤2ms
    Test Battery Type Polymer, cylindrical, square
    Test Room

    Consumer battery cell inner size 216L (W600mm × D600mm × H600mm)

    EV or ESS battery cell inner size 1m³ ~ 2m³

    Module inner size ≥2m³

    Rack Load bearing capacity ≥ 50Kg; Equipped with 2 storage racks. Material: Stainless steel SUS304
    Internal Material

    Internal material – Stainless steel SUS304. Thickness t=1.2mm

    EV or ESS battery – Stainless steel SUS304. Thickness t=3–5mm

    Module – Stainless steel SUS304. Thickness ≥ t=5mm

    Sealing Strip Corrosion resistant and high-temperature resistant silicone
    Temperature Control

    RT at room temperature +10℃ ~ 100℃

    Temperature rise rate 5℃ ± 2℃/min (non-linear adjustable)

    Temperature adjustment of 0.5℃

    Temperature uniformity: ±2℃ (unloaded)

    Security Protection Design Overtemperature protection; Overload protection; Equipped with leakage protection device, access control, safety emergency stop switch, and three color light alarm
    Collection Collect the temperature, voltage, short-circuit current, and short-circuit time of the battery
    Curve Real time monitoring and synchronous display of temperature, voltage, short-circuit current, and short-circuit time of multi-channel batteries, facilitating analysis of battery safety performance
    Test Cut-off Condition The temperature, voltage, and short-circuit time of the battery are used individually or in combination as test cut-off shutdown conditions
    Smoke Exhaust The high-temperature resistant blower is installed at the top, and the exhaust pipe with a diameter of 102mm extends from the rear of the box; Exhaust air volume 450m³/h
    Light The test chamber is designed with high brightness LED lighting for easy visibility of the testing conditions inside the chamber
    Explosion Proof Glass Window There is a 300×300mm explosion-proof glass window installed on the door of the testing chamber, which can clearly observe the testing conditions inside the chamber
    Pressure Relief Port

    ≥300×300mm

    For testing power cells or high-capacity cells, it is recommended to increase the pressure relief port and open two pressure relief ports

    Explosion Proof Chain The door is equipped with 2 explosion-proof chains to prevent it from being blown away and injuring people
    Remote Video Surveillance (Optional) There is a monitoring camera installed outside the explosion-proof window, which can remotely monitor the testing status of the testing chamber. The camera has a pixel count of no less than 5 million and a resolution of 1080P
    Power Supply AC380V 50HZ 6kW (customized)
    External Dimension

    216L: W950×D800×H1650mm

    1m³: W1450×D1350×H1850mm

    >1m³: customized

    Weight Around 400kg

    Key Features

    • 1 High-precision resistance compensation: Automatically compensates for the internal resistance of the circuit, ensuring that the total internal resistance is strictly less than 5mΩ.
    • 2 Data acquisition and traceability: Automatically records current, voltage, and temperature curves, and can directly export the test report.
    • 3 Remote control system: Supports remote control by a computer in the separate compartment, ensuring the safety of the operators.
    • 4 High-current arc extinguishing technology: Effectively suppresses the arc when cutting off high current, protecting the contacts from being burned.

    Standards Compliance

    • UN 38.3
    • IEC 6213
    • UL 2054 / UL 1642

    Safety Features

    • 🔒 Explosion-proof pressure relief door: Automatically releases pressure when the battery explodes and the pressure rises.
    • ⛓️ Explosion-proof chain structure: Prevents the box door from flying open due to the impact of the explosion.
    • 🚒 Fire extinguishing and smoke removal system: Equipped with smoke detection, automatic fire suppression (sprinkler / CO₂) and powerful smoke removal devices.
    • 🛡️ Multiple safety protections: Integrated with multiple protections such as overcurrent, overtemperature, and air pressure monitoring.

    FAQ

    • 1. Why must the short-circuit resistance be controlled below 5mΩ or 10mΩ? +
      Most international standards such as UN38.3 require extremely low external short-circuit resistance to simulate the most severe extreme short-circuit conditions. If the internal resistance of the equipment circuit is too high, it will result in insufficient peak short-circuit current, making it impossible to truly and accurately evaluate the safety performance of the battery.
    • 2. What is the impact of sampling frequency on the short-circuit test? +
      The current change during the moment of battery short circuit is extremely intense and belongs to a microsecond-level transient process. If the sampling frequency is too low (for example, collecting once every 1 second), it will be impossible to capture the true peak current. This device supports the highest 1000Hz (1ms interval) high-speed sampling, which can fully record the entire process data curve.
    • 3. Can the short-circuit resistance be switched according to different standards? +
      Yes. We offer a multi-range resistance switching solution. Through software or manual insertion and removal of the switch, you can quickly switch between different specifications such as 5mΩ, 20mΩ, and 80mΩ, meeting various standard testing requirements.
    • 4. What battery types are compatible with the TA-WDL-1000A short-circuit tester? +
      The TA-WDL-1000A supports polymer, cylindrical, and square battery cells, as well as EV and ESS battery modules. The test chamber size is configurable to accommodate consumer-grade cells, large-format EV/ESS cells, and full battery modules, with customization options available for special requirements.
    • 5. What safety measures are in place to protect operators during testing? +
      The system is equipped with multiple layers of protection including an explosion-proof pressure relief door, explosion-proof chain structure, automatic fire suppression (sprinkler / CO₂), smoke detection and removal, overtemperature and overcurrent protection, emergency stop switch, and a three-color light alarm. Remote computer control from a separate compartment further ensures operator safety.
    • 6. Can the test chamber size and load parameters be customized? +
      Yes. The TA-WDL-1000A offers flexible customization for both chamber size and load parameters. Standard configurations include 216L, 1m³, and sizes larger than 1m³. The maximum load current and resistance values can also be tailored to meet specific testing standards and customer requirements.

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