Description

PW -CTS3-80-55A Air-cooled Three Chamber Thermal Shock Tester Equipment Price

Application Areas:

For testing the degree to which a material structure or composite material can endure instantaneous and continuous exposure to extremely high and low temperatures in order to test the chemical changes or physical damage caused by thermal expansion and contraction in the shortest possible time. Suitable for testing physical changes in electronics, vehicles, metals, chemicals, building materials, communication components, defence industry, aerospace industry, electronic chips IC, IT, etc.

Product Features:

1, the test system structure design is advanced and reasonable, GB/T 2423.1-2001, GB/T 2423.2-2001, GB/T 2423.22-2001, GJB 150.3-2001;
2, the main functional components of the test chamber used world-famous brand configuration, advanced and reliable technical principles, noise and energy saving to get the best control – its performance can replace similar foreign products;
3, the whole machine refrigeration system using PID algorithm control, without the need to add a heating tube to consume extra power, power saving up to 35%;
4, the equipment has good operability, maintenance, good temperature stability and durability, good safety performance, no pollution of the environment and personal health hazards;
5, change the traditional hot and cold confrontation control method, using the latest cold balance control technology, which can achieve 500 ~ 1000 cycles without frosting, improve efficiency, save test time, more power saving, energy saving, and environmental protection;

Technical Programme:

1. Product name: Three-chamber Thermal Shock Tester
2. Specimen Restriction:
This test equipment prohibits:
Testing or storage of specimens of flammable, explosive, or volatile substances
Testing or storage of corrosive substances
Testing or storage of biological specimens
Testing or storage of specimens from strong electromagnetic emission sources
Testing or storage of specimens of radioactive substances
Testing or storage of specimens of highly toxic substances
Testing or storage of specimens which may produce flammable, explosive, volatile, highly toxic, corrosive or radioactive substances during testing or storage
3. Volumes, dimensions, and weights:
3.1. Nominal internal volume: 80L
3.2. Dimensions of the test chamber: W(500)mm × H(400)mm × D(400)mm
3.3. Overall dimensions: approx. W(1650)mm × H(1720)mm × D(1680)mm
3.4. Weight: 800 KG
4. Performance:
4.1. Test environment conditions Ambient temperature +5~+28℃, relative humidity ≤85%, no specimen in the test chamber
4.2. Test methods: GB/T 2423.1-2001, GB/T 2423.2-2001, GB/T 2423.22-2001, GJB 150.3-2001
4.3. High and low-temperature zone temperature range:
1. High-temperature zone part: 60℃~200℃
2. Low-temperature zone part: -10℃~-70℃
3. Test area part: 150℃~-55℃
4.4. Temperature test range:
1. High temperature: 60℃~150℃
2. Low temperature: -10℃~-55℃
4.5. High and low-temperature transition time ≤10S
4.6. high and low-temperature recovery time 3~5min (under non-linear no load)
4.7. Control Accuracy Temperature: ±0.2℃
(refers to the difference between the controller set value and the controller measured value)
4.8. Temperature fluctuation: ≤ 0.5℃ (temperature fluctuation is half of the difference between the highest and lowest measured temperature at the center)
4.9. Temperature error: ≤±1℃ (the average temperature of the displayed value of the studio temperature controller minus the average temperature measured at the center point)
4.10. Temperature uniformity: ≤ 2.0°C (temperature uniformity is the arithmetic mean of the difference between the highest and lowest temperatures measured in each test)
4.11. Pre-heating zone heating rate ≥3°C/min (non-linear)
4.12. Pre-cooling zone cooling speed ≥2℃/min (non-linear)
4.13.Working noise:
A sound level ≤70dB(A)
(measured in the ring temperature of 25 ℃, echo less sound insulation room; using A weighting, test the average of 8 points; each test point level from the noise source 1 m, height from the ground 1 m)
4.14. Meet the test method.
GB/T2423.1-2008(IEC60068-2-1:2007) Low temperature test method Ab
GB/T2423.2-2008(IEC60068-2-2:2007) High temperature test method Bb
GB2423.22-87 Test method for temperature change
GJB150.5-86 Temperature shock test
GJB360.7-87 Temperature shock test
GJB367.2-87 Temperature shock test
(Heat capacity per cubic meter of load not greater than 35kg/m3 steel, wet and heat test without active wet and heat load)

 

Product Advantages

Structural Innovation and System Design Excellence

The PW CTS3-80-55A features a modular three-chamber design, facilitating versatile test protocols such as parallel or sequential thermal shocks within a unified configuration. The incorporation of an air-cooled refrigeration loop supports sustainable energy usage and simplified maintenance compared to liquid-cooling alternatives. With a compact footprint aligned to standard laboratory spaces and high-grade construction materials, this thermal shock chamber manufacturer ensures durability and longevity under continuous operation. Additionally, the cold balance control system effectively reduces frost accumulation, improving cycle accuracy and prolonging equipment life by mitigating mechanical stress during transitions.

Enhanced Operational Performance and User-Centric Benefits

This temperature shock test chamber excels in delivering rapid temperature changes with precise control, enabling accelerated testing schedules without sacrificing data integrity. User interface design focuses on intuitive operation and safety features, allowing test engineers to configure complex thermal profiles efficiently. Noise levels remain below 70 dB(A), optimizing working conditions in controlled environments. The device’s reliable temperature uniformity and fluctuation controls minimize variability in test results, which is essential for engineering reliability assessments. Its balanced design streamlines maintenance and reduces downtime, contributing to improved ROI for testing laboratories and manufacturing quality assurance teams.

 

Use Scenarios

Automotive Electronics Reliability Validation

In the automotive manufacturing environment, rapid thermal cycling is essential to validate the resilience of electronic control units (ECUs) and sensor housings against harsh variable climates. The PW CTS3-80-55A functions as a 3 zone thermal shock chamber that replicates sudden temperature shifts encountered during vehicle operation, ensuring components meet stringent endurance standards. Its precise temperature control and short transition times enable thorough stress testing aligned with automotive standards. Integrating this thermal shock test chamber reduces development cycles and supports compliance documentation required by automotive OEMs and suppliers, enhancing component durability and safety across production lines.

Semiconductor Device Thermal Cycling Assessment

Within semiconductor fabrication and testing facilities, the PW CTS3-80-55A is deployed to evaluate integrated circuits and packaging materials under extreme thermal shock conditions. Its multi-chamber configuration allows simultaneous exposure to elevated and subzero temperatures, accelerating the qualification of thermal expansion properties and stress tolerance critical to device reliability. The air-cooled system enhances operational efficiency in cleanroom and lab settings, minimizing noise and environmental disruption. This thermal shock chamber seamlessly integrates into existing testing workflows, facilitating rapid identification of manufacturing defects and ensuring compliance with industry reliability standards during product development phases.

 

FAQ

What types of materials can be tested using the PW CTS3-80-55A?

Our thermal shock test chamber is suitable for a variety of materials, including electronic components, plastics, polymers, semiconductors, and automotive enclosures. It enables reliable thermal cycling to assess durability and stress tolerance across diverse materials in industrial R&D and quality assurance.

Do you offer customization options for temperature ranges or chamber sizes?

We understand diverse testing needs and offer customization for the thermal shock chamber dimensions and temperature ranges. Please contact us to discuss your specific project requirements, so we can tailor the configuration accordingly.

What installation services and power requirements are associated with the PW CTS3-80-55A?

We provide comprehensive installation support including on-site setup and operator training as part of our service. Detailed power requirements and ambient conditions are shared upon purchase to ensure proper integration into your laboratory environment.

How does the air-cooled system benefit operational efficiency in this thermal shock tester?

Our air-cooled refrigeration system improves energy efficiency and reduces the need for additional water cooling. This design offers precise temperature control and uniformity while minimizing maintenance, helping your facility maintain cost-effective and reliable testing workflows.