Program-controlled temperature high-low temperature integrated Bath

The programmable temperature-controlled high-low temperature integrated bath achieves preset temperature cycles within a sealed bath through a heating and cooling system and a program controller. It is used for testing material properties at different temperatures, constant temperature treatment of samples, and instrument calibration, commonly applied in scenarios such as paint curing and plastic weather resistance testing.
Selection
When selecting, ensure compatibility with the required temperature range and fluctuation tolerance. Consider the match between the tank capacity and sample dimensions, pay attention to the heating and cooling rate specifications, check the program step control functionality, confirm the compatibility of the heat transfer medium, verify the integrity of safety protection devices, and evaluate energy consumption and space occupancy.

Terms

Standards

Instruments

Rotation speed up to 8000rpm, support program-controlled homogeneous gel Linear dispersion storage, miniaturized design saves space, suitable for a variety of substrate coating.

$ 2090.00

Temperature range -20~ 100 ℃, Temperature Uniformity +/- 0.05 ℃, using non-heat centrifugal pump and U-shaped return circulation design to ensure uniform flow field, support multi-stage program and safety protection function.

$ 3546.00

Spreader accuracy of +/- 0.003mm, thickness range of 0~ 10mm, using Glass coating table and pneumatic feeding system, support infinitely variable speed and remote paraMeter settings to ensure uniform and stable Spreader.

$ 5721.00

The non-heat centrifugal circulating pump is used to avoid its own heat generation affecting the temperature field. Temperature Uniformity reaches +/- 0.0050 ° C. Integrated PID automatic temperature control program and High Accuracy PT100 Sensor ensure stability and accuracy.

$ 4840.00

Adopt non-heat centrifugal circulating pump to avoid its own heat generation affecting the temperature field, Temperature Uniformity +/- 0.0050 ℃, integrated PID automatic temperature control program and High Accuracy PT100 Sensor to ensure accurate and stable temperature control.

$ 4840.00

Adopt non-heat centrifugal circulating pump to avoid its own heat generation affecting the temperature field, integrated PID automatic temperature control program, Temperature Uniformity +/- 0.0050 ℃, resolution 0.0001 ℃, with multiple Safety protection devices.

$ 3909.00

Temperature range -40~ 200 ℃, Temperature Uniformity +/- 0.05 ℃, using non-heat centrifugal circulation pump to avoid its own heat generation affecting the temperature field, with multiple Safety protection including low water level anti-dry burning and Compressor overheating protection.

$ 4643.00

Temperature range -20~ 100 ℃, Temperature Uniformity +/- 0.05 ℃, using environmentally friendly Compressor refrigeration and non-heat centrifugal circulation pump, U-shaped return circulation design to ensure a high degree of uniform temperature field, with multiple safety protection functions.

$ 1080.00

The non-heat centrifugal circulating pump is used to avoid its own heat generation affecting the temperature field, and the U-shaped return design realizes turbulence and high uniformity, Temperature Uniformity +/- 0.0050 ℃, with multiple safety functions such as low water level protection and temperature loss protection.

$ 2160.00

The fluorine-free refrigeration system can be directly started at a high temperature of 200 ° C, with a Temperature Uniformity of +/- 0.05 ° C. It is equipped with a heat-free centrifugal pump to avoid its own heat generation affecting the temperature field, and supports multi-stage program temperature control.

$ 4177.00

Adopt non-heat centrifugal circulating pump to avoid its own heat generation affecting the temperature field, Temperature Uniformity +/- 0.0050 ℃, integrated PID automatic temperature control and High Accuracy PT100 Sensor to ensure stability and accuracy.

$ 1408.00

Adopt non-heat centrifugal circulating pump to avoid its own heat generation affecting the temperature field, Temperature Uniformity of +/- 0.0050 ℃, equipped with PID automatic temperature control program and High Accuracy PT100 Sensor to ensure accurate and stable temperature control.

$ 2600.00

Adopt non-heat centrifugal circulating pump to avoid temperature field interference, Temperature Uniformity +/- 0.05 ℃, equipped with multi-level Safety protection device, optional program temperature control and Communication interface, to achieve accurate and stable temperature control.

$ 5173.00

Temperature range -10~ 150 ℃, Temperature Fluctuation +/- 0.01~ 0.05 ℃, maintenance-free pressure pump supports horizontal and vertical stirring, multiple safety protection including low liquid level and over-temperature protection.

$ 1647.00

Temperature range -20~ 160 ℃, Temperature Uniformity +/- 0.05 ℃, no heat centrifugal circulation pump to reduce the influence of temperature field, U-shaped reflux cycle design to achieve a high degree of uniform temperature field.

$ 2126.00

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.
High and low temperature alternating test chamber for measuring low-temperature embrittlement temperature of plastics
This article introduces how to use a high-low temperature alternating test chamber to determine the low-temperature brittleness temperature of plastics.
Quantitative Measurement of Carbon Black Content in Rubber by Thermogravimetric Analyzer
Thermogravimetric analyzers measure changes in sample mass through programmed temperature control, enabling the quantitative determination of carbon black content in rubber. During the experiment, the rubber is first heated in an inert atmosphere to decompose it, leaving the carbon black intact. The atmosphere is then switched to an oxidizing environment to oxidize the carbon black. The carbon black content is calculated based on the mass loss.
Thermal Shock Test Chamber Measures Film's Temperature Change Resistance
The thermal shock test chamber creates thermal stress inside the film by rapidly switching between high and low temperature environments, testing its resistance to temperature changes. During the test, key parameters such as temperature range and dwell time need to be set, and the film is observed for issues such as cracking or performance degradation.
Thermal Shock Test Chamber Evaluates Coating Thermal Stability
The thermal shock test chamber simulates sudden temperature changes by rapidly switching between high and low temperature environments, used to evaluate the thermal stability of coatings. In practical applications, coatings may develop internal stresses due to drastic temperature fluctuations, leading to issues such as cracking and peeling.
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.
Tensile Testing Machine Evaluates High and Low Temperature Tensile Properties of Hot Melt Adhesive
This article introduces how to use a tensile testing machine to test the tensile properties of hot-melt adhesives at different temperatures. The performance of hot-melt adhesives varies with temperature: they may soften at high temperatures and become brittle at low temperatures.
The essential difference between thermal shock test chambers and high-low temperature alternating test chambers.
Both thermal shock test chambers and temperature cycling test chambers are used to test the temperature resistance of products, but their core differences lie in the method and purpose of temperature change.