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Vibration Shaker and Simulated Transportation Tester

High humidity test chamber for industrial product testing

The High Humidity Test Chamber is a specialized environmental test solution designed to simulate extreme humidity conditions for evaluating the performance and durability of industrial products. This ...

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Description

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The High Humidity Test Chamber is a specialized environmental test solution designed to simulate extreme humidity conditions for evaluating the performance and durability of industrial products. This advanced equipment plays a crucial role in ensuring the reliability and longevity of products exposed to high moisture environments, making it an essential tool in quality control, research and development, and manufacturing settings.

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In the realm of industrial product testing, the High Humidity Test Chamber is instrumental in assessing the resilience of materials, components, and finished products under high humidity conditions. By subjecting industrial products to elevated moisture levels, manufacturers can:


1. Identify potential failures and design flaws,
2. Evaluate the effectiveness of protective coatings and seals,
3. Assess the product's susceptibility to corrosion, mold growth, and other moisture-related issues,
4. Validate design specifications and manufacturing processes,

5. Perform accelerated life testing and mean time to failure (MTTF) analysis.

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The High Humidity Test Chamber finds extensive application in various industrial sectors, including but not limited to:


1. Electronics and Electrical: Evaluating the performance of electronic components, circuit boards, and electrical equipment in high humidity environments, such as tropical regions, marine applications, or outdoor installations.


2. Automotive: Testing the durability of vehicle components, including interior materials, electronic control units (ECUs), and under-hood components, exposed to high humidity conditions during vehicle operation or storage.


3. Aerospace: Assessing the reliability of avionics components, aircraft materials, and systems subjected to high humidity environments during flight or ground operations.


4. Construction and Building Materials: Evaluating the performance of building materials, such as concrete, wood, and insulation, in high humidity environments to ensure their durability and resistance to moisture-related degradation.


5. Packaging: Testing the effectiveness of packaging materials and designs in protecting products from moisture ingress during storage and transportation in high humidity conditions.

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1. Precise Humidity Control: The test chamber offers accurate control and stability of humidity, ensuring repeatable and reliable test results. It can maintain humidity levels from 85% to 98% RH with a tolerance of ±2% RH.


2. Wide Temperature Range: Equipped with a high-performance heating and cooling system, the chamber can operate at temperatures ranging from 20°C to 55°C, accommodating various industrial product testing requirements.


3. Uniform Humidity Distribution: Advanced air circulation systems, including intelligent airflow control and multi-directional fans, ensure uniform humidity distribution throughout the test chamber. This eliminates dry spots and provides consistent test conditions, crucial for accurate evaluation of industrial products.


4. Corrosion-Resistant Construction: The chamber's interior is constructed with corrosion-resistant materials, such as stainless steel or high-grade plastic, to withstand the harsh, high-humidity test environment.


5. User-Friendly Interface: The test chamber is equipped with an intuitive, full-color touchscreen display, offering easy programming, monitoring, and data recording capabilities. The interface supports multiple languages, customizable test profiles, and real-time graphing for enhanced user experience.


6. Advanced Connectivity: With built-in USB, Ethernet, and optional wireless communication modules, the test chamber facilitates seamless data transfer, remote monitoring, and integration with other test equipment or lab management systems.


7. Safety and Compliance: Designed with safety in mind, the test chamber features humidity overload protection, door safety interlocks, and emergency stop functions. It complies with international safety standards such as CE, UL, and CSA, ensuring safe and reliable operation.

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IEC 60068-2 series (Environmental Testing):
IEC 60068-2-3 (Damp Heat, Steady State)
IEC 60068-2-30 (Damp Heat, Cyclic)
IEC 60068-2-38 (Damp Heat, Cyclic, with Condensation)
ASTM D2247 (Standard Practice for Conducting Tests of Materials in a Moisture Cabinet)
ASTM D4329 (Standard Practice for Fluorescent UV-Condensation Exposures of Paint and Related Coatings)
ASTM D4587 (Standard Practice for Fluorescent UV-Condensation Exposures of Paint and Related Coatings)
MIL-STD-810 (Environmental Engineering Considerations and Laboratory Tests):
MIL-STD-810G Method 507.6 (Humidity)

JEDEC JESD22-A108 (Temperature, Humidity and Bias)

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ModelDR-H201
Temperature range-70~+150℃
Temperature fluctuation±0.5℃
Temperature uniformity2℃
Humidity range20~98%RH (Refer Image below)
Humidity fluctuation±2.5%RH
Humidity uniformity3%RH
Cooling speed1℃/min in average (without loading)
Heating speed3℃/min in average (without loading)
Internal chamber materialSUS#304 stainless steel, mirror finished
External chamber materialStainless steel
Cooling methodAir cooling
ControllerLCD touch screen, programmable control temperature and humidity
Can set different parameter for cyclic test
Insulation material50mm high density rigid Polyurethane foam
HeaterExplosion-proof type SUS#304 stainless steel fins radiator pipe heater
CompressorFrance Tecumseh compressor
LightingHeat resistance
Temperature sensorPT-100 dry and wet bulb sensor
Observation windowTempered glass
Testing holeDiameter 50mm, for cable routing
Sample traySUS#304 stainless steel, 2pcs
Safety protection deviceProtection for leakage
Over-temperature
Compressor overvoltage and overload
Heater short circuit
Water shortage

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