High-Temperature Biochemical Incubator

The high-temperature biochemical incubator maintains a constant high-temperature environment through heating elements and a temperature control system, and is used for experiments such as microbial cultivation and enzyme reactions. It is commonly found in the fields of food and environmental testing.
Selection
When selecting, consider the temperature range and uniformity, volume matching the sample size, material corrosion resistance, temperature control accuracy, and safety features such as over-temperature protection, based on actual experimental requirements.

Terms

Standards

Instruments

The digital display temperature control is accurate and reliable, the hot air circulation system is composed of a high temperature fan and a suitable air duct to improve the Temperature uniformity in the working room, and the heating wire is installed at the bottom to heat up quickly.

$ 2171.00

High density fiberglass cotton insulation layer to ensure temperature stability, equipped with PT100 Platinum Resistance Sensor to achieve 0.1 ℃ resolution, thermal equilibrating temperature control with forced convection system to make the temperature field uniformity better.

$ 1134.00

With a wide Temperature range of -20~ 60 ℃ and +/- 1.5 ℃ Temperature Fluctuation, using high density fiberglass cotton insulation and forced convection circulation system to ensure uniform and stable temperature in the box, suitable for various foster experiments.

$ 979.00

High density fiberglass cotton insulation to ensure temperature stability, equipped with PID + SSR Control system to achieve +/- 1.5 ℃ Fluctuation, suitable for microbial foster and serum tests.

$ 2257.00

Integrated Incubator and Shaker functions, small footprint and large bottle load; Temperature range 4~ 65 ℃, Temperature Fluctuation +/- 0.2 ℃; 304 stainless steel liner for easy cleaning, quiet operation and support multi-stage programming.

$ 2315.00

Using fluorine-free refrigeration technology, Temperature range 0~ 60 ℃, Temperature Uniformity +/- 1.5 ℃, equipped with mirror stainless steel liner and independent temperature limit alarm system to ensure safe and stable operation of the experiment.

$ 6807.00

With heating and cooling two-way temperature control system, Temperature range 5~ 50 ℃, Temperature Uniformity +/- 0.5 ℃, the inner wall is made of embossed Aluminum Panel or stainless steel, good corrosion resistance performance.

$ 837.00

Using polyurethane foam insulation, strong anti-interference ability; working Chamber with air duct, uniform temperature distribution; inner wall embossed Aluminum Panel or stainless steel material, corrosion resistance; Temperature range 5~ 50 ℃, Temperature Uniformity +/- 0.5 ℃.

$ 680.00

With refrigeration and heating bidirectional temperature regulation function, Temperature range -20~ 60 ℃, mirror stainless steel liner to prevent atomization, support thermostatic fostering and tissue cell preservation.

$ 2757.00

Adopt high density fiberglass cotton insulation layer to ensure temperature stability, equipped with long axis fan forced convection system to make temperature Humidity uniform. Temperature control accuracy 0.1 ℃, Fluctuation +/- 1.5 ℃, support 1-9999 minutes timing function to meet the needs of precision experiments.

$ 1524.00

Mirror stainless steel liner for easy cleaning, temperature range -20~ 50 ℃, Temperature Fluctuation +/- 0.5 ℃, support low temperature compensation and RS485 interface connection, improve temperature control accuracy and data recording ability.

$ 1671.00

Adopt mirror stainless steel liner and PID temperature control mode, Temperature Uniformity +/- 1 ℃, Fluctuation High Temperature +/- 0.3 ℃, support multi-stage programmable control, easy to experiment operation and sample preservation.

$ 943.00

With refrigeration and heating bidirectional temperature regulation function, Temperature range -60~ 60 ℃, volume 150L, mirror stainless steel liner and intelligent LCD display, support thermostatic fostering and tissue cell preservation.

$ 3814.00

With a wide range of -20~ 50 ℃ temperature control, temperature uniformity +/- 1 ℃, mirror stainless steel liner for easy cleaning, support low temperature compensation and RS485 interface connection, improve experimental accuracy and data recording convenience.

$ 4279.00

Adopting mirror stainless steel liner and automatic control of circulating wind speed, temperature fluctuation high temperature ± 0.3 ℃, 7 sets of 63-step programs can be preset, supporting ultraviolet sterilization and independent temperature limit alarm to ensure the stability and safety of the experiment.

$ 1845.00

Articles

Application of High-Temperature Viscometer in Testing the Melt Viscosity Characteristics of Hot Melt Ink
This article introduces a method for testing the melt viscosity of hot-melt ink using a high-temperature viscometer. The test employs a rotational viscometer to measure the viscosity of three ink samples at different temperatures.
Application of High-Temperature Universal Testing Machine in the Study of Hot Modulus of Rupture of Refractory Materials
This article introduces the application of a high-temperature universal testing machine in measuring the hot modulus of rupture of refractory materials. It explains the working principle, testing procedure, and key parameters of the testing machine, such as the effects of heating rate, holding time, and loading rate.
How is a high-temperature muffle furnace applied in ash determination?
This article introduces the application of high-temperature muffle furnaces in ash determination. The principle of ash determination involves completely burning the sample at high temperatures, leaving behind inorganic mineral residues. The muffle furnace provides a stable and controllable thermal environment, ensuring accurate results.
Ultrasonic Thickness Gauge Selection: Technical Considerations for Probe Configuration and Measurement Modes
This article primarily introduces the technical factors to consider when selecting an ultrasonic thickness gauge. In terms of probe configuration, the frequency affects both resolution and penetration depth, while crystal size determines adaptability to curvature and surface conditions. Dual-element probes offer a smaller dead zone compared to single-element probes, and delay-line probes are suitable for thin-wall and high-temperature applications.
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-temperature viscometer evaluates the flow characteristics of ceramic coatings before sintering.
This article introduces how to use a high-temperature viscometer to evaluate the flow characteristics of ceramic coatings before sintering. During measurement, the instrument detects changes in the viscosity of the coating sample under simulated sintering temperature conditions using rotational or oscillatory principles.
High-temperature viscometer measures the flow behavior of powder coatings in the molten state.
This article introduces the use of a high-temperature viscometer to measure the flow behavior of powder coatings in their molten state. Powder coatings need to melt and flow before curing, a process that directly affects the smoothness and performance of the coating.
Temperature uniformity of high-temperature aging test chamber for UV resistance testing of inks
This article discusses how the temperature uniformity of high-temperature aging test chambers affects the accuracy of ink UV resistance testing. Temperature uniformity refers to the deviation in temperature at various points inside the chamber, with smaller deviations leading to more reliable test results.
High-temperature aging test chamber accelerates life testing of electronic components.
The high-temperature aging test chamber accelerates the physical and chemical changes within electronic components by simulating high-temperature environments, thereby predicting their long-term performance and failure modes.
Thermal shock test chamber measures the thermal shock resistance of polymer films.
This article introduces how to test the thermal shock resistance of polymer films using a thermal shock test chamber. The test involves rapidly switching the film between high and low temperatures to simulate the drastic temperature changes that may occur in actual use, thereby generating thermal stress within the material.
Hot air aging oven measures the long-term thermal-oxygen life of engineering plastics.
This article introduces how to use a hot air aging oven to test the long-term thermal-oxidative lifespan of engineering plastics. The test is based on the Arrhenius equation, which accelerates material aging at high temperatures to simulate performance changes under actual usage conditions.
Melt flow index tester measures the processing fluidity of high-temperature engineering plastics.
This article introduces how a melt flow indexer measures the processing fluidity of high-temperature engineering plastics. It first explains the working principle of the instrument, which involves measuring the rate at which molten plastic passes through a standard die under specific temperature and pressure conditions to obtain the melt flow rate value.
High-temperature aging chamber for testing thermal-oxidative aging of plastic films.
This article introduces the method of testing the thermo-oxidative aging of plastic films using a high-temperature aging chamber. Thermo-oxidative aging refers to the chemical changes that occur in plastics under high temperature and oxygen exposure, leading to a decline in performance.
Humidity and heat test chamber tests the moisture absorption rate of resin under high temperature and high humidity conditions.
This article introduces the method of using a hygrothermal test chamber to measure the moisture absorption rate of resin under high temperature and high humidity conditions.
Humidity and Heat Test Chamber for Evaluating Coating Performance under High Temperature and High Humidity Conditions
This article introduces how a humidity and heat test chamber is used to evaluate the performance of coatings in high-temperature and high-humidity environments. Coatings are widely used in industries such as automotive and electronics, but they are prone to issues like reduced adhesion and blistering under actual high-temperature and high-humidity conditions.