High-Quality Double layer high and low temp test chamber Supplier, Products

The constant temperature and humidity test chamber can maintain the temperature and humidity values set by the user inside, and these temperature and humidity values can also be alternately changed through program settings. Used to test and determine the heat resistance, cold resistance, dry resistance, and moisture resistance of electrical, electronic, and other products and materials. It is widely used in industries such as electronics, electrical appliances, communication, instrumentation, vehicles, plastic products, metals, food, chemistry, building materials, medical, aerospace, etc.

Product Description

Equipment Structure

01
Host housing made of SECC steel plate with spray paint, CNC processed, featuring a non-reactive handle.
02
Large LCD touch screen: intuitive, easy to operate, stable, and energy-efficient.
03
Microcomputer temperature and humidity controller for precise and reliable control.
04
Large observation window with three-layer vacuum tempered glass and internal lighting.
05
Independent temperature limit alarm system with automatic interruption for safety.
06
Test holes (50mm or 100mm) on both sides for external power or signal lines.
07
High-quality PU movable wheels at the bottom for easy movement and fixing.
08
Energy saving: 45% less electricity, 50% faster reaction, and 80% less water consumption.
09
Customizable explosion-proof pressure relief ports and chains for enhanced safety.
10
Optional smoke exhaust, fire extinguishing, and salt spray alarm functions.

Temperature and Humidity Control Range

Temperature and humidity control range

Standards Compliance

(1) GB/T 2423.1-2001 Experiment A: Low temperature test method
(2) GB/T 2423.2-2001 Experiment B: High temperature test method
(3) GJB 150.3-1986 High temperature test
(4) GJB 150.4-1986 Low temperature test
(5) IEC68-2-1 Experiment A: Cold etc.

Technical Parameters

Model TAT2-D2-252L TAT2-D2-288C
Single layer inner box size W600 X D700 X H600 MM W800 X D600 X H600 MM
Outer size W1280 X D1780 X H1960 MM W1450*H1960*D1720 MM
Structural method Integrated structure with two working chambers (one above, one below)
Temperature range -40℃ --- +150℃
Temperature fluctuation ±0.3℃
Heating rate Average 3.0 ℃/min (non-linear no-load)
Cooling rate Average 1.0 ℃/min (non-linear no-load)
Temperature uniformity ≤± 2 ℃ (unload constant state)
Observation window W300 X H400 MM, Three layer vacuum tempered glass
Testing cables terminal 12 sets of terminal posts for connection with test cabinet
Cooling method Air cooling/water cooling optional
Compressor BOCK GmbH
Control mode Touch screen programmable PLC, USB/RJ485 interfaces, remote software
Inner material SUS304 # mirror stainless steel, 1.0mm, PTFE coated insulation
Outer material Galvanized sheet, powder coating, 1.2mm thickness
Power supply AC380V 50HZ 12KW AC380V 50HZ 14KW
Safety protection Explosion-proof relief, chain, 3-color alarm, smoke/fire devices

Frequently Asked Questions

What is the temperature range for these test chambers?
The equipment supports a wide temperature testing range from -40℃ to +150℃, suitable for various industrial standards.
How energy-efficient is the new programmable model?
The new model is designed for high efficiency, saving an average of 45% electricity and 80% water consumption compared to traditional chambers.
Can I monitor the test data remotely?
Yes, the system uses a programmable PLC with USB and RJ485 interfaces, allowing for remote monitoring and data acquisition via dedicated software.
What safety features are included for hazardous testing?
The chambers can be customized with explosion-proof pressure relief ports, explosion-proof chains, smoke exhaust, and fire extinguishing systems.
What materials are used for the chamber construction?
The inner box uses SUS304 mirror stainless steel with PTFE insulation, while the outer shell is made of high-strength galvanized sheet with powder coating.
Is the cooling method customizable?
Yes, users can choose between air-cooled or water-cooled methods depending on their specific facility requirements.

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