Environmental Simulation Solutions from DHT®

Discover the perfect products tailored to your specific application needs!

Defense

The reliability of defense equipment in complex, high-stress environments is vital. DHT® provides tailored environmental simulation solutions for military applications, addressing factors such as temperature, humidity, vibration, and radiation. Our solutions ensure that defense equipment performs consistently and reliably, even under the harshest conditions.

EXAMPLES OF PRODUCTS

The DHT®ThermalAir-5000A is a high-performance thermal measurement device, specifically designed for scenarios requiring high precision and complex thermal performance testing. It offers an extended temperature range, enhanced data processing capabilities, and supports more detailed temperature differential and heat flux testing.

The DHT®ThermalAir-3000A is a cost-effective heat flux testing device suitable for general application scenarios. It offers sufficient precision and functionality for thermal performance testing within a moderate temperature range. By continuously monitoring heat flux variations,DHT®ThermalAir-3000A provides accurate data support, helping to assess the thermal conductivity characteristics of materials under real-world conditions. It not only enhances […]

The DHT® Cryogenic Blackout Test Chamber is designed specifically to simulate the low-temperature, dark conditions encountered in high-tech fields such as aerospace, aviation, and electronics. By replicating extreme cold and sunlight-deprived dark environments, the device tests how materials and equipment perform under harsh conditions. It is particularly suitable for studying the reliability of spacecraft, satellites, […]

The DHT® Vacuum Test Chambers is designed to meet the environmental testing requirements for temperature and humidity under high-altitude conditions. It is a long-life test chamber known for its high stability, precision, and low failure rate. With a capacity range from 100 to 1500 liters, it offers a temperature range from -70°C to +180°C (available […]

The DHT® Cyclic Immersion Corrosion Test Chamber is engineered to simulate the corrosion phenomena materials experience when exposed to complex environmental conditions. By replicating actual cyclic immersion and corrosion processes, it assesses the corrosion resistance of materials, providing critical experimental data for product development, quality control, and lifecycle evaluations across various industries.

The DHT® Salt Spray Test Chamber is engineered to simulate accelerated corrosion environments, enabling comprehensive evaluation of material durability and protective coatings. It is particularly suitable for applications in automotive, electronics, aerospace, and materials research.

The DHT® Condensation Water Test Chamber is engineered to simulate natural condensation effects, adhering to international standards such as ISO 6270-2 and DIN 50017. It is extensively utilized for assessing the corrosion resistance of materials like coatings and metals. By precisely controlling temperature and humidity, the chamber replicates condensation phenomena under various environmental conditions, enabling […]

The DHT® Sulfur Dioxide (SO₂) Test Chamber is meticulously engineered to simulate accelerated aging processes in SO₂-rich environments, serving as a pivotal tool for evaluating the corrosion resistance and durability of materials and components. This chamber is extensively utilized across various industries, including electronics, automotive, and materials engineering, to assess product reliability under corrosive atmospheric […]

The DHT® Walk-In & Drive-In Environmental Test Chamber is a high-performance environmental testing device designed to simulate complex environmental conditions. It is widely used across industries such as electronics, electrical appliances, chemicals, automotive, and aerospace. The device precisely controls temperature and humidity to provide stable environmental conditions for product reliability testing, ensuring performance evaluation under […]