Boden 1, Nr. 3, Shugang Avenue, Hongmei Town, Dongguan City, Guangdong Province, China

Hersteller von Umwelttestkammern seit 20 JahrenMehr als 3000 Kunden weltweit geliefert           E-Mail: shirley@deruitest.com
Globale Beratungs-Hotline:+86 15580327593
Thermischer Schock-TestkammerThermischer Schock-Testkammer

Thermal Shock Test Chamber Supplier | Rapid Transition Systems

2-zone and 3-zone air-to-air thermal shock chambers designed for rapid temperature transfer testing to MIL-STD-810G.

Chip-Hoch- und Niedertemperatur-Schock-Heat-Flux-Meter

Chip-Hoch- und Niedertemperatur-Schock-Heat-Flux-Meter

Zwei-Zonen-Thermoschock-Testkammer

Zwei-Zonen-Thermoschock-Testkammer

Energieeinsparender Temperatur-Schock-Testkammer

Energieeinsparender Temperatur-Schock-Testkammer

100L Temperatur-Schock-Testkammer​

100L Temperatur-Schock-Testkammer​

50L Thermischer Schock-Testkammer

50L Thermischer Schock-Testkammer

Define Thermal Shock Performance by Transition and Recovery

Select thermal shock equipment from the required transition method, loaded recovery, dwell conditions and specimen configuration. Hot and cold zone setpoints alone do not prove that the specimen receives the required thermal exposure.

Two-Zone Thermal Shock Chambers

Two-zone systems transfer a basket between hot and cold zones; three-zone systems keep the specimen stationary and switch conditioned airflow. Choose from specimen movement, monitoring connections, mass, orientation and transition requirements.

Compare Thermal Shock Structures →

Applicable Thermal Shock Procedure

Confirm whether the requirement is air-to-air thermal shock, temperature cycling or another defined method. Record the standard revision, hot and cold conditions, dwell definition, transition limit and number of cycles before selecting equipment.

Review Thermal Shock Test Methods →

Transfer Time and Loaded Recovery

Transfer mechanism speed is not the same as temperature recovery. Ask for the time required for the loaded test zone to return within tolerance after transition, including the specimen and fixture thermal mass.

Evaluate Recovery Performance →

Specimen Mass, Basket and Monitoring

Provide sample dimensions, total mass, basket loading, fixture material and monitoring cables. These determine basket size, zone capacity, airflow obstruction and whether connected or energized testing is practical.

Define the Test Load →

Failure Modes and Test Applications

Thermal shock can reveal solder-joint fatigue, seal leakage, delamination and expansion mismatch in electronics, automotive components and aerospace assemblies. The intended failure mechanism should guide severity and instrumentation.

Plan Electronics Thermal Shock Testing →

Acceptance and Repeatability

Define sensor positions, zone stability, transition verification, loaded recovery, cycle records, alarms and acceptance documentation. Verify the performance that matters to the method rather than relying only on unloaded catalogue data.

Request a Thermal Shock Review →

Which Thermal Shock Structure Fits Your Method?

Send the standard, hot and cold conditions, dwell and transition requirements, specimen dimensions and mass, fixtures, monitoring connections and cycle count.

Request a Thermal Shock Configuration Review Download Thermal Shock Catalogs

Uncover latent physical and electrical defects with our air-to-air thermal shock test chambers. Featuring 2-zone (hot/cold transfer basket) and 3-zone (hot/ambient/cold exposure) architectures, our rapid transition chambers transfer test samples within seconds, exposing materials to extreme temperature differentials. Engineered to comply with MIL-STD-810G, MIL-STD-883, IEC 60068-2-14, and JESD22-A104, these environmental chambers are widely used for PCB, automotive electronics, and aerospace component reliability screening. Contact our sales engineers for custom sizing.

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