Aerospace and Defense Consumer Electronics High-Temperature Aging Test Chamber
A High-Temperature Aging Test Chamber is designed to simulate the effects of prolonged exposure to high temperatures on materials, products, or components. The chamber maintains a stable, controlled high-temperature environment for testing the durability, stability, and performance of materials and finished goods over extended periods. This test helps assess how products perform when exposed to conditions they may face during their lifecycle, such as extreme temperatures and long-term use.
Key Features:
- Precise Temperature Control: The chamber provides consistent high temperatures, often exceeding 100°C, with advanced temperature regulation for accurate simulation.
- Stable and Uniform Environment: Ensures that the temperature is evenly distributed throughout the test area, providing reliable and repeatable results.
- Advanced Safety Mechanisms: Includes built-in features such as over-temperature protection, alarms, and fail-safe mechanisms to ensure safe operation.
- Energy Efficiency: Designed to minimize energy consumption while maintaining the required temperature conditions.
- Programmable Control System: Allows users to set specific test durations, temperature ranges, and other parameters according to their needs.


Specifications
Aging Chambers | EWG2003 | EWG3003 | EWG2010 | EWG3010 |
Test Space Volume (L) | 270 | 1000 |
Temp. Range (℃) | R. T+20~200 | R. T+20~300 | R. T+20~200 | R. T+20~300 |
Temp. Constancy (℃) | ±0. 1~±0. 8 |
Temp. Homogeneity (℃) | ±0. 5~±2. 0 (RT+20℃~+200℃) , ±1. 5~±3. 5 (200℃~+300℃) |
Temp. Deviation (℃) | ±0. 5~±2. 0 (RT+20℃~+200℃) , ±0. 5~±2. 0 (200t~+300℃) |
Heat Up Time (min) | 50 (RT→+200℃) , 90 (RT→+300℃) |
Test Space Dimension (mm) | 600Wx500Dx900H | 850Wx700Dx1000H |
External Dimension (mm) | 1000Wx780Dx1710H | 1250Wx980Dx1850H |
Power | AC380V±10%, 50HZ, 3/N/PE |
Aging Rooms | EWG25 | EWG45 | EWG100 | EWG120 |
Test Space Volume (m3) | 25 | 45 | 100 | 120 |
Temp. Range (℃) | RT+10~85 |
Temp. Constancy (℃ ) | ±0. 5~±1. 0 |
Temp. Homogeneity (℃) | ±1. 5~±3. 0 |
Temp. Deviation (℃) | ±1. 5~±3. 0 |
Heating Rate (℃/min) | 2℃/min on average |
Applications:
- Material Aging Testing: Used to test the aging properties of rubber, plastic, coatings, and other materials that may degrade over time due to heat exposure.
- Electronics Testing: Useful for testing the performance of electronic components and devices, ensuring that they can withstand the heat of real-world operating environments.
- Automotive Industry: Helps evaluate the long-term durability of automotive parts, such as seals, gaskets, and interior materials, under high-temperature conditions.
- Battery Testing: For assessing the stability and lifespan of batteries, especially in electric vehicles, by simulating prolonged high-temperature exposure.
- Consumer Electronics: Used in testing the thermal resilience of products like smartphones, laptops, and other consumer electronics that may be exposed to high temperatures during use.
- Aerospace and Defense: Ensures that components meet stringent high-temperature performance standards for use in aircraft, spacecraft, and defense equipment.
