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Thermal Shock Test Chamber

The thermal shock test chamber is a device used to test the tolerance of materials, components, and electronic products to rapid temperature changes. It can simulate sudden temperature changes that products may encounter in actual environments, helping R&D and quality control teams evaluate the reliability and performance of products under harsh conditions.

Thermal Shock Test Chamber

The thermal shock test chamber is a device used to test the tolerance of materials, components, and electronic products to rapid temperature changes. It can simulate sudden temperature changes that products may encounter in actual environments, helping R&D and quality control teams evaluate the reli

Thermal Shock Test Chamber

Advantages of Sanwood Test chamber

The thermal shock test chamber can simulate sudden temperature changes that products may encounter in actual environments, helping R&D and quality control teams evaluate the reliability and performance of products under harsh conditions.

  • Upgradeable Thermal Stress Composite Machine (TEC LR/HR).
  • R232 and R485 output interfaces, enabling remote monitoring and control of multiple devices.
  • The basket conversion time is less than 10 seconds, and the temperature recovery time is less than 5 minutes.
  • High and low temperature impact at room temperature (3 Zoon) for 100 cycles, eliminating frost and reducing test time and energy consumption.
  • Can customized the chamber’s volume, temperature and appearance on demand.
  • Comply with Japanese standards JASO D-014-4 and EIAJ ED-2513B Na, as well as various grades of MIL-STD-883H and 202G.

The thermal shock test chamber ideal for vibration-sensitive measuring instruments and sensors, as well as energized samples.

Thermal Shock Test Chamber

Application Fields of Thermal Shock Test Chamber

The thermal shock test chamber is a kind of special environmental test equipment, which can quickly test items under extreme temperature conditions. Its application areas are very wide, the following are some common application areas:

  • Automotive industry: Testing the performance and reliability of automotive components, vehicles, and materials in cold and high temperature environment.
  • Aerospace industry: Testing the performance and reliability of aerospace equipment and devices under extreme temperature conditions to ensure their reliability during spaceflight.
  • Electronic components industry: Testing the performance and reliability of electronic components in cold and high temperature environment to ensure their reliability under various environmental conditions.
  • Machinery and equipment industry: Testing the performance and reliability of machinery and equipment in cold and high temperature environments to ensure its reliability in industrial production.

The thermal shock test chamber is required to simulate the temperature change in the actual use environment, evaluate the performance, reliability and durability of the item.

Thermal Shock Test Chamber

The Test Standards Of Thermal Shock test Chamber

The important performance parameters of the thermal shock test chamber usually include temperature range, control system, studio size, heating time, cooling time, temperature fluctuation, temperature uniformity, etc.

  • RTCA DO-160: Environmental Conditions and Test Procedures for Airborne Equipment
  • SAE J1211: Environmental System Performance Testing for Automotive Electronic Devices
  • IEC 60068-2-14: Environmental testing - Part 2-14: Tests - Test N: Change of temperature.
  • ISO 14971: Medical devices - Application of risk management to medical devices.
  • ISO 16750: Road vehicles - Environmental conditions and testing for electrical and electronic equipmen.
  • IEC 60917: Modular order for the development of mechanical structures for electronic equipment practices.

The thermal shock test chamber also complies with testing standards such as IEC 61587-1, IEC 60601-1,IEC 60335-1, IEC 60721, etc

Thermal Shock Test Chamber

Control System Of The Test Chambers

The control system of the Sanwood test chamber adopts the world's leading software and hardware system to ensure that the test chamber operates under preset conditions, provide accurate and reliable experimental data, and help users achieve precise control and data collection of various experimental conditions.

  • Controller: It adopts the controller imported from South Korea Sanwon and the self-developed control system, which can be equipped with Siemens control system and equipped with RS232, RS485 and Ethernet communication ports.
  • Programmable control: It supports setting experimental programs, such as heating, cooling, constant temperature time, etc., and can execute multiple program settings, and supports advance reservation startup function.
  • Multiple languages are available: English, Korean, Russian, Chinese and Japanese.
  • Remote monitoring: Using SAMWON-EZNET network remote technology to achieve remote control, the test chamber can be monitored at any time, and the current data can be viewed through the user's PC and mobile phone, which improves the convenience of testing.

The specific control system of the test chamber will vary depending on the model. Please read the "Sanwood Environmental Test Chamber Manual" carefully before use and comply with the safety operating procedures.

Thermal Shock Test Chamber

Refrigeration System Of The Test Chamber

The refrigeration system of the test chamber is a complex and important system. The stability of the refrigeration system is crucial to the accuracy and reliability of the test results.

  • Sanwood Technology has developed a refrigerant hot gas defrosting technology, which effectively melts the frost on the evaporator by injecting high-temperature and high-pressure refrigerant steam into the heat exchanger in the test chamber. This not only ensures that the evaporator does not frost, but also greatly reduces the energy consumption of the equipment.
  • The refrigeration unit adopts an internationally renowned brand. In cooperation with Japan's Saginomiya and the United States' Sporlan, the EPV series and XUP series energy-saving system quick-opening solenoid valves have been developed, with an all-weather service life of more than 15 years. And began to develop a new Danfoss AKV series throttling electronic expansion valve system, which is more efficient and energy-saving, and reduces noise.
  • Optimize the layout of the refrigeration system, and adopt VRF (refrigerant flow control) technology based on the PID cold end output principle to achieve low-temperature energy-saving operation, which can reduce energy consumption by 30% under low-temperature conditions.
  • The refrigeration system adopts a modular design, with low failure rate, few welding points, high refrigeration efficiency, good reliability, simple maintenance, and low maintenance cost.


  • Basis Data

  • Performance Data+


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