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Double-layer Temperature Test Chamber

Sanwood The dual-chamber temperature test chamber features an innovative vertically stacked design, integrating two independently temperature-controlled test spaces within a single equipment frame to significantly reduce laboratory footprint. This unit supports simultaneous comparative testing under different temperature conditions or independent experiments, substantially enhancing R&D validation efficiency and equipment utilization flexibility.

Double-layer Temperature Test Chamber

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Double-layer Temperature Test Chamber

Advantages Of Sanwood Test Chamber

Double-layer temperature test chamber with two independent test zones in one footprint. Perform simultaneous comparative testing or different temperature experiments to maximize lab efficiency.

  • Two completely independent test chambers are arranged vertically, sharing an external frame and partial infrastructure, saving nearly 50% in floor space.
  • Each level is equipped with an independent temperature control system, circulation fan, heater, and refrigeration unit, ensuring that different temperature conditions can be maintained simultaneously on upper and lower levels without interference.
  • Configurations with identical or different temperature ranges can be selected as needed to accommodate diverse testing requirements.
  • Each floor is equipped with a dedicated touchscreen controller for independent programming, operation, and monitoring.

The double-layer high and low temperature test chamber can simulate different temperature environments to help manufacturers and R&D personnel evaluate the performance of products under extreme temperature conditions.

Double-layer Temperature Test Chamber

Application Fields Of The Test Chamber

The double-layer high and low temperature test chamber provides an effective solution for scientific research, production and quality inspection, which can help enterprises optimize product design and improve product quality. It has a wide range of applications in many fields. The following are some common application areas:

  • Electronic and electrical industry: used to test the performance and reliability of electronic components, circuit boards, complete machines and other products under high and low temperature environments.
  • Automotive industry: Test the performance of automotive parts such as engines, batteries, body materials, etc. under extreme climate conditions to ensure that the car can maintain stable performance in various complex environments.
  • Scientific research field: Provide stable environmental conditions for scientific researchers for material research, biological experiments, etc.

In addition, the double-layer high and low temperature test chamber can also simulate the temperature change law in the atmospheric environment, mainly testing the adaptability of products during transportation and use under high and low temperature comprehensive environments.

Double-layer Temperature Test Chamber

The Test Standards Of The Test Chamber

The working principle of the high and low temperature test chamber is mainly based on cooling and heating cycles, which control the temperature inside the equipment through these cycles to simulate different high and low temperature environments.

  • MIL-STD-810: US military standard, involving a variety of environmental tests, including high and low temperature test methods, very suitable for military and aerospace products
  • ISO 16750: An automotive industry standard that provides requirements for testing automotive electronic components under different environmental conditions, including temperature and humidity changes.
  • SAE J1211: A standard for automotive electronic components that covers reliability testing under extreme temperatures.
  • IEC 60068-2-1 and IEC 60068-2-2: Environmental testing standards issued by the International Electrotechnical Commission (IEC), respectively involving low temperature and high temperature environmental test methods, suitable for weathering tests of electronic components and equipment.

It also complies with IEC 60571, NB/T 31004, GJB 150, IEC, MIL and other test standards.

Double-layer Temperature 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 optional: English, Korean, Russian, Chinese and Japanese.
  • Remote monitoring: Using 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.

Double-layer Temperature 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.
  • 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

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