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Thermotron Thermal Shock Chamber

Thermotron Thermal Shock Chamber

Thermotron Thermal Shock Chamber is mainly used for safety performance testing of electronic components, providing reliability testing, product screening testing, etc. Therefore, Thermotron Thermal Shock Chamber are what electronic component manufacturers must understand. Let’s learn about them in this article.

Product Introduction
1
What is Thermotron Thermal Shock Chamber?

 

The Thermotron Thermal Shock Chamber is a device used for safety performance testing of electronic components. It is mainly used to provide reliability testing and product screening testing. This test chamber can simulate environmental conditions with rapid temperature changes. By controlling the rapid temperature changes, it can test the safety performance of electronic components, thereby improving product reliability and quality control.

This test chamber is suitable for safety performance testing of electronic components under conditions of rapid temperature changes. Through reliability tests and product screening tests, it can determine the product's tolerance to extreme temperatures, test its stability and reliability in a temperature change environment, and the performance differences of different materials and components at different temperatures. In addition, the rapid temperature change test chamber can also be used to test changes in the physical and chemical properties of products at different temperatures, as well as simulate rapid temperature changes in real environments to test the product's ability to respond to emergencies and disasters.

Structure of rapid temperature change test chamber

 

2
Technical Parameters

 

 

Model

BT-80(A-F)

BT-150(A-F)

BT-225(A-F)

BT-408(A-F)

BT-800(A-F)

BT-1000(A~F)

Internal size WxHxD(cm)

40x50x40

50x60x50

60x75x50

60x85x80

100x100x80

100x100x100

External size WxHxD(cm)

120x165x115

130x170x125

140x185x130

165x195x155

185x200x175

190x210x185

Weight (about)

150KG

180KG

250KG

350KG

500KG

520KG

 

Technical parameter

Temperature range

Low temperature: A: +25 °C B:0°C C:-20°C D:-40°C E:-60°C F:-ZO°C) High temperature: 100°C(150°C)

Humidity range

20%~98% R.H. (10%~98%R.H); (5%~98% R.H is a special selection condition)

Distribution accuracy

0.1P 0.1%R.H./±2.0P ±3.0%R.H.

Temp and humi control accuracy

±0.5t) ±2.5%R.H.

Heating/cooling time

Heating about: 3°C/min Cooling: 1°C /min

Internal and external materials

The inner and outer boxes are made of SUS304# stainless steel plate

Insulation material

High temperature resistant high density ethyl chloroformate foam insulation material

cooling system

Air-cooled / single-stage compressor (-20°C); two-stage compressor (-40°C - 70 °C)

Safety device

No fuse switch, compressor overload protection, super humidity over temperature protection, water shortage alarm protection

power supply

AC220V 50/60Hz & 1 # AC380V 50/60Hz3§

 

 

3
What is Thermotron Thermal Shock Test?

 

Thermotron Thermal Shock Test test is an important environmental testing method that simulates the extreme temperature change conditions that a product may encounter during actual use to evaluate the performance and reliability of the product under these conditions. This test usually involves exposing the product to preset high and low temperature environments and then observing its reaction and performance during the temperature change process.

 

BOTO rapid temperature change test chamber can perfectly carry out Thermotron Thermal Shock Test, test product reliability, help you check product quality and improve product competitiveness.

 

Environmental stress screening (ESS) is a broader concept that includes a variety of environmental and electrical stress tests, including Thermotron Thermal Shock Test;
The purpose of ESS is to accelerate the exposure of potential defects in products by applying specific stresses, so as to screen and improve products before they are put on the market.
ESS can include various test types such as temperature cycling, vibration testing, humidity testing, etc. to ensure that the product can maintain its performance and function under various environmental conditions.

Through this test, manufacturers can discover and solve problems that may affect product reliability in advance, improve product quality, and reduce product failure rates in actual use. This is crucial to improving customer satisfaction and reducing manufacturers' long-term maintenance costs.

 

4
Application scope of Thermotron Thermal Shock Test

 

Computers: computers, display screens, mainframes, computer components, medical equipment and other precision instruments, etc.;
Electrical appliances: household appliances, lamps, transformers and other household appliances and electrical equipment;

Others: packaging boxes, transportation equipment, etc.

 

5
Standard

 

Common reference standards for Thermotron Thermal Shock Test include GB/T2423.22, IEC60068_2_14, GJB 150.5, etc.

 

6
Usage and Application

 

In practical applications, Thermotron Thermal Shock Test tests are generally divided into two categories:
Slow temperature change test: its temperature change rate is less than 3℃/min (generally, each standard often selects a parameter of 1℃/min), which is the temperature change, temperature cycle, and temperature alternation test in general applications (these three categories are one test);

Rapid temperature change test: its temperature change rate is ≥3℃/min, which is the rapid temperature change test in general applications. The faster the temperature change rate, the more stringent the assessment.
The rapid temperature change test process is based on normal temperature → low temperature → low temperature dwell → high temperature → high temperature dwell → normal temperature as a cycle. The severity of the temperature cycle test is determined by the high/low temperature range, dwell time, and number of cycles.

 

7
Thermotron Thermal Shock Chamber has advantages

 

The effect of ESS mainly depends on the environmental stress applied and the ability of the detection instrument. The magnitude of the applied stress determines whether the potential defects can be turned into failures; the size of the detection capability determines whether the potential defects that have been accelerated by stress to become failures can be found.
BOTO has a professional design and manufacturing team. The main reliability test equipment it produces includes hot and cold shock test chambers, constant temperature and humidity test chambers, Thermotron Thermal Shock Chamber, vibration test benches, impact test benches, salt spray test chambers, UV aging test chambers, IP rain test equipment, dust test chambers, etc. If you have any interest, agents and friends from manufacturing factories are welcome to inquiry!

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