Temperature-Variable High-Low Temperature Test Chamber

The variable temperature high and low temperature test chamber controls the internal temperature through a heating and cooling system to simulate the performance changes of materials under different temperature environments. It is used to test the durability, shrinkage, expansion, and other characteristics of products such as coatings and plastics under temperature fluctuations, commonly applied in product quality verification and environmental adaptability testing.
Selection
When selecting, it is essential to match the temperature range requirements of the test materials, paying attention to heating and cooling rates as well as uniformity indicators. Consider whether the chamber volume is suitable for the sample size, and note the ease of operation of the controller and data recording functions. Verify the energy consumption and maintenance cycle of the equipment to ensure compatibility with laboratory space and power supply conditions.

Terms

Standards

Instruments

Temperature range -40~ 150 ℃, Temperature Uniformity +/- 1.0 ℃, support high temperature and low temperature alternating cycle test, suitable for pRoduct design improvement and identification inspection.

$ 8497.00

Temperature range -60~ 150 ℃, Temperature Uniformity +/- 1.0 ℃, suitable for high temperature and low temperature Reliability test, support aging test, in line with a number of national standards.

$ 6254.00

Temperature range -40~ 150 ℃, Temperature Uniformity +/- 1.0 ℃, support high and low temperature cycle change test, suitable for material performance inspection and aging test, equipped with multiple safety protection devices.

$ 6431.00

Temperature range -60~ 150 ℃, Temperature Uniformity +/- 1.0 ℃, support high temperature and low temperature alternating cycle test, suitable for pRoduct design improvement and aging test, in line with a number of national standards.

$ 6770.00

Temperature range -60~ 150 ℃, Temperature Uniformity +/- 1.0 ℃, suitable for high temperature and low temperature Reliability test, support aging test, in line with a number of national standards.

$ 5947.00

Temperature range -40~ 150 ℃, studio volume 150L, suitable for high temperature and low temperature Reliability test, in line with a number of national standards, aging test and constant temperature test.

$ 5431.00

Adopt unique equilibrate temperature control method to achieve high precision temperature control, temperature range -40~ 130 ℃, Temperature Uniformity ≤ + 2 ℃, the studio is made of 304 stainless steel.

$ 6563.00

Temperature range -20~ 150 ℃, Temperature Uniformity +/- 1.0 ℃, support high temperature and low temperature cycle change test, suitable for aging test and material performance inspection.

$ 7109.00

Temperature range -20~ 150 ℃, Temperature Uniformity +/- 1.0 ℃, support high temperature, low temperature and constant temperature test, suitable for Reliability test, equipped with multiple protection devices and safety system.

$ 4818.00

Temperature range -70~ 150 ℃, studio volume 80L, Temperature Uniformity +/- 1.0 ℃, suitable for high temperature and low temperature cycle change test, support aging test and a variety of standard requirements.

$ 5560.00

Temperature range -60~ 150 ℃, studio volume 1000L, stainless steel studio and high temperature insulation material, support high and low temperature cycle change test, in line with a number of national standards.

$ 9352.00

Temperature range -80~ 130 ℃, Temperature Fluctuation ≤ +/- 0.5 ℃, using a unique equilibrate temperature control method to achieve high-precision temperature control, the studio is made of 304 stainless steel.

$ 6575.00

Adopt unique equilibrate temperature control method to achieve high precision temperature control, temperature range -60~ 130 ℃, Temperature Uniformity ≤ + 2 ℃, 304 stainless steel studio to ensure long-term stable operation.

$ 5132.00

Temperature range -80~ 130 ℃, Temperature Uniformity ≤ + 2 ℃, using a unique equilibrating temperature control method to achieve high-precision stable temperature control to meet a variety of testing needs.

$ 14183.00

Temperature range -40~ 130 ℃, Temperature Uniformity ≤ + 2 ℃, using equilibrate temperature control to achieve high-precision stable temperature control, to meet a variety of standard test requirements.

$ 3338.00

Articles

Rapid temperature change high and low temperature test chamber for thermal fatigue evaluation of PCB board solder joints.
This paper discusses the application of rapid temperature change high and low temperature test chambers in evaluating the thermal fatigue of PCB board solder joints. Solder joint fatigue is primarily caused by differences in material thermal expansion, and the test chamber simulates thermal stress through temperature cycling to accelerate the fatigue process.
Application of Three-Chamber High and Low Temperature Test Chambers in Rapid Temperature Cycling for Electronic Products
The three-chamber high-low temperature test chamber is used for reliability testing of electronic products, enabling rapid temperature transitions through independent high temperature, low temperature, and test zones. Compared to traditional single-chamber equipment, it reduces temperature change time and enhances testing efficiency.
Differential Scanning Calorimetry measures the phase transition temperature of liquid crystal polymers.
This article introduces the method of determining the phase transition temperature of liquid crystal polymers using a differential scanning calorimeter. The differential scanning calorimeter analyzes the phase transition behavior of materials by comparing the heat difference between the sample and a reference material, recording the heat flow curve during temperature changes.
DSC analyzer measures the glass transition of degradable films.
This article explains how to use a differential scanning calorimeter to measure the glass transition temperature of a degradable film. It first clarifies that the glass transition is the process by which a material changes from a glassy state to a highly elastic state, which appears as a baseline shift on the curve.
Differential scanning calorimetry for determining the glass transition temperature of epoxy resin
Differential scanning calorimetry analyzes the thermal properties of materials by measuring the heat flow difference between the sample and a reference material.
Differential Scanning Calorimetry for Determining the Melting Point and Glass Transition Temperature of Hot Melt Adhesives
This article introduces the method of determining the melting point and glass transition temperature of hot-melt adhesives using a differential scanning calorimeter. Differential scanning calorimetry analyzes the thermal transition characteristics of materials by measuring the energy difference between the sample and a reference material.
The necessity of explosion-proof high and low temperature test chambers in lithium battery testing
Lithium batteries pose a risk of thermal runaway or even explosion when tested under extreme temperatures. Explosion-proof high-low temperature test chambers, designed with pressure relief structures, explosion-proof electrical components, and intelligent monitoring systems, can safely release energy and ensure the safety of the testing process.