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Battery Temperature Control Short Circuit Tester - Reliable China Suppliers and Factory for Safety Testing Solutions
Equipment Structure
1. Control System
PLC touchscreen enables closed-loop temperature control with ±0.5℃ precision, optimized for consumer battery testing scenarios (e.g., simulating short circuits in smartphone batteries after high-temperature storage).
2. Heating System
Dual-zone ceramic heating wires, paired with horizontal forced air circulation via a high-speed fan wheel, ensure temperature uniformity within ±1℃. Built-in over-temperature protection and overload auto-shutdown safeguard both samples and equipment during long-term tests.
3. Short Circuit System
Industrial-grade high-current silver contactors support two resistor channels:
<5mΩ low-resistance channel: Simulates sudden short circuits in compact consumer batteries (e.g., power bank internal shorts).
80mΩ resistor channel: Replicates abnormal low-current short scenarios (customizable for specific test protocols).
4. Auxiliary Functions
Visual explosion-proof glass window: Allows real-time observation of small-batch consumer battery tests while ensuring safety.
Integrated smoke exhaust, pressure relief, and emergency stop features: Address safety risks during high-temperature and short-circuit tests.
Test Standard
GB/T 31241-2022
UL1642-2022
IEC62619-2022
UN38.3
IEC 62133-2017
GB/T18287
Parameter
| Product 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, cylinder, square battery |
| Optional Testing Room | Consumer battery cell — testing inner room size: 216L(W600mm × D600mm × H600mm) |
| EV or ESS battery cell — testing inner room size: 1m³ ~ 2m³ | |
| Battery module — testing inner room size ≥ 2m³ | |
| Storage Rack | Load-bearing capacity ≥ 50Kg; Equipped with 2 storage racks. Material: stainless steel SUS304 |
| Internal Material | Consumer battery cell — testing inner room: stainless steel SUS304. Thickness t=1.2mm |
| EV or ESS battery cell — testing inner room: stainless steel SUS304. Thickness t=3-5mm | |
| Battery module — testing inner room: stainless steel SUS304. Thickness ≥ t=5mm | |
| Sealing Strip | Corrosion resistant and high-temperature resistant silicone gel |
| Temperature Control |
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; leakage protection device, access control, safety emergency stop switch, and tri-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 Conditions | The temperature, voltage, and short-circuit time of the battery are used individually or in combination as test cut-off conditions |
| Smoke Exhaust |
Optimized for consumer battery short-circuit tests (e.g., smartphone cells), the top-mounted high-temperature blower features: A 102mm-diameter exhaust pipe (extending from the chamber rear), with an airflow of 450m³/h — rapidly removing smoke generated during short-circuit simulations to ensure lab air quality. |
| Light | High-brightness LED lighting (integrated into the chamber) ensures clear visibility of small consumer battery samples (e.g., power bank cells) during temperature-controlled short-circuit tests, eliminating shadows for accurate observation. |
| Explosion-Proof Glass Window | A 300×300mm explosion-proof glass window on the chamber door allows lab technicians to visually monitor consumer battery samples (e.g., smartphone batteries) during high-temperature short-circuit tests, ensuring safety while enabling real-time observation of subtle changes. |
| Pressure Relief Port |
For scenarios involving power cell or high-capacity battery testing (optional expansion): The chamber supports adding dual pressure relief ports (each ≥300×300mm), preventing internal pressure buildup during extreme short-circuit simulations. |
| Explosion-Proof Chain |
Two explosion-proof chains on the chamber door: Prevent sudden blast-driven door displacement during extreme short-circuit tests — a critical safety feature for lab environments testing consumer batteries under high-temperature stress. |
| Equipment Power Supply | AC380V 50HZ 6kW (customized as request) |
| Remote Video Surveillance (Optional) |
Optional remote monitoring includes: A 5-megapixel (1080P) camera mounted outside the explosion-proof window, enabling lab managers to remotely observe consumer battery test status in real time, with high-resolution imaging capturing subtle thermal or structural changes. |
Frequently Asked Questions (FAQ)
Q
What types of batteries can the TA-WDL-1000A short-circuit test chamber test?
The TA-WDL-1000A supports polymer, cylindrical, and prismatic (square) battery formats. It is designed for consumer battery cells, EV/ESS battery cells, and battery modules, with selectable chamber sizes ranging from 216L up to ≥2m³ to accommodate different battery dimensions.
Q
What short-circuit resistance options are available, and can they be customized?
The system provides two standard channels: a <5mΩ low-resistance channel for simulating sudden high-current short circuits, and an 80mΩ channel for low-current abnormal short scenarios. Both load size and resistance values can be customized to meet specific test protocol requirements.
Q
Which international test standards does this equipment comply with?
The TA-WDL-1000A is designed to support testing in accordance with GB/T 31241-2022, UL1642-2022, IEC62619-2022, UN38.3, IEC 62133-2017, and GB/T18287, covering the major global battery safety certification requirements.
Q
What safety features are built into the chamber to protect operators and equipment?
The chamber integrates multiple safety mechanisms including overtemperature protection, overload protection, leakage protection, access control, a safety emergency stop switch, and a tri-color alarm light. Additional physical safeguards include a 300×300mm explosion-proof glass window, dual explosion-proof door chains, pressure relief ports, and a top-mounted smoke exhaust system with 450m³/h airflow capacity.
Q
What temperature range and control precision does the equipment offer?
The chamber operates from room temperature +10℃ up to 100℃, with a temperature rise rate of 5℃ ±2℃/min (non-linear adjustable). The PLC touchscreen provides closed-loop control with ±0.5℃ adjustment precision and ±2℃ temperature uniformity under no-load conditions.
Q
Is remote monitoring available, and what data can be recorded during tests?
An optional 5-megapixel (1080P) camera can be mounted outside the explosion-proof window for real-time remote observation. The system simultaneously collects and displays battery temperature, voltage, short-circuit current, and short-circuit time across multiple channels, with real-time curve monitoring to support comprehensive battery safety performance analysis.

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