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China Suppliers Factory High-Altitude Low-Pressure Test Chamber for Product Performance Verification
📋 Technical Specifications
| Model | TA-DQY-216L/1000L |
| Control Method | PLC touch screen control |
| Test Room |
Consumer products battery or other small cell: W600mm*D600mm*H600mm
Big cell or small module: W1000mm*D1000mm*H1000mm
|
| Test pressure range | 7–101 KPa (adjustable) |
| Control accuracy | 0.1 KPa |
| Inner temperature | Normal temperature (the temperature mentioned in the standard can be achieved through laboratory air conditioning) |
| Control parameter | Touch screen control: time; Pressure, can be freely set and controlled; Meet all standards |
| Storage rack | Load bearing capacity ≥ 50Kg; Equipped with 2 storage racks — Material: Stainless steel SUS304 |
| Internal material | Stainless steel SUS304. Thickness t=3.0mm (thickness can be customized) |
| Sealing strip | Corrosion resistant silicone |
| Vacuum pump | Bipolar vacuum pump |
| Automatic pressure relief | Automatically control the opening of pressure relief |
| Independent manual pressure relief valve | On the right side, there is an independent high-pressure sealed manual pressure relief valve: when there is a power outage, this valve can be opened to relieve pressure and the door can be opened |
| Independent pressure display gauge | Real time monitoring and display of inner box pressure on the touch screen |
| Smoke exhaust | A smoke exhaust pipe with an inner diameter of 19mm extends from the rear of the box; Discharge vacuum pump fumes and a small amount of smoke |
| Lighting | The test chamber is designed with high brightness LED lighting for easy visibility of the testing conditions inside the chamber |
| Terminal post (optional) | 300A~400A — Size and quantity can be customized |
| Voltage temperature conversion connector (optional) | Channels can be customized |
| Security protection design | Overload protection; Equipped with leakage protection device, access control, safety emergency stop switch, and three color light alarm |
| Explosion proof chain | The door is equipped with 2 explosion-proof chains to prevent it from being blown away and injuring people |
| Power supply | AC220V 50HZ 2kW |
| External dimension |
216L: W850*D800*H1650mm
1m³: W1220*D1250*H1750mm
|
| Weight |
216L: around 400kg
1m³: around 1000kg
|
| Compressed air source | ≥ 0.6 MPa |
🔑 Key Features
🛡️
Safety Protection System
Equipped with explosion-proof pressure relief doors, automatic fire extinguishing devices and smoke sensing monitoring, providing comprehensive safety and reliability during the testing process.
🔩
Inner Liner Material & Process
Uses SUS304 stainless steel, with the entire machine designed for thickening and reinforcement, possessing excellent pressure resistance structure and service life.
🖥️
Intelligent Control System
Uses PLC programmable control combined with a touch screen human-machine interface, supporting remote real-time monitoring and the function of exporting test data.
⚙️
Vacuum System Solution
Selects a German original fixed-displacement vacuum pump, featuring low operating noise, stable and durable performance, and high pumping efficiency.
✅ Standards Compliance
- 📄 UN 38.3
- 📄 MIL-STD-810G
- 📄 IEC 60068-2-13
🏭 Application
❓ FAQ
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1. What is the maximum altitude (in meters) that this device can simulate?Our standard model can simulate low-pressure environments ranging from normal pressure to 0.5 kPa, corresponding to altitudes of approximately 30,000 to 45,000 meters. For special test requirements, an upgraded high-grade vacuum system can be adopted to further achieve deep-space environment simulations with pressures as low as 100 Pa or even lower.
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2. How can I determine the appropriate size of the studio based on my test samples?It is recommended that the sample volume should not exceed one third of the volume of the laboratory. This measure not only facilitates the loading and unloading of the samples, but also ensures the uniformity of air extraction inside the chamber. At the same time, in tests involving electricity and heat generation, it can reserve sufficient space for the installation of heat exchange and auxiliary cooling devices.
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3. What impact does a low-pressure environment have on the heat dissipation of electronic products?In a low-pressure environment, the air becomes thinner, and the convective heat dissipation effect will significantly decrease. If the product being tested generates a large amount of heat during operation, please inform us in advance. We will re-calculate the cooling system configuration based on the actual heat load and assess whether additional liquid cooling or forced air cooling and other auxiliary heat dissipation solutions are needed.
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4. Can the test chamber be used for both small consumer batteries and large EV battery modules?Yes. The TA-DQY series is available in two chamber sizes. The 216L model (W600×D600×H600mm) is ideal for small consumer batteries and electronic components, while the 1000L model (W1000×D1000×H1000mm) accommodates large cells or small battery modules. Both versions share the same PLC control platform and comply with the same international standards.
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5. What safety measures are in place to prevent accidents during high-risk battery testing?The chamber incorporates multiple layers of safety protection: explosion-proof pressure relief doors, 2 explosion-proof door chains, an automatic fire extinguishing system, smoke sensing monitoring, overload protection, leakage protection devices, an emergency stop switch, and a three-color light alarm system. An independent manual pressure relief valve also allows safe door opening during power outages.
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6. Is it possible to monitor and record test data remotely?Yes. The intelligent PLC control system is combined with a touch screen human-machine interface that supports remote real-time monitoring. Test parameters such as pressure and time can be freely configured, and all test data can be exported for analysis and reporting, making it easy to meet documentation requirements for international certification standards including UN 38.3, MIL-STD-810G, and IEC 60068-2-13.

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