Dry-Bath Thermostatic Incubator

The dry block heater achieves constant temperature processing of samples through metal block heating and temperature sensor control. It is used for temperature-sensitive experiments such as sample incubation and enzymatic reactions in the laboratory, serving as an alternative to traditional water bath methods.
Selection
When selecting a dry bath incubator, consider factors such as temperature range and uniformity, compatibility of the block aperture with sample tubes, heating speed, and safety. Match the temperature control accuracy and block material according to experimental requirements to ensure reliable daily use.

Terms

Standards

Instruments

Four-hole design with anti-dry burn protection, temperature control accuracy of +/- 0.5 ℃, 304 stainless steel liner to ensure durability, suitable for a variety of temperature sensitive experiments.

$ 198.00

Double hole design with 330 × 180 × 140mm Tank, temperature control accuracy of +/- 0.5 ℃, 304 stainless steel liner to ensure durability, anti-dry burning protection to enhance experimental safety.

$ 180.00

The six-hole design has sufficient capacity, temperature control accuracy of +/- 0.5 ° C, and is equipped with anti-dry burning function to ensure safety. 304 stainless steel material is resistant to corrosion and easy to clean, meeting the needs of long-term thermostatic experiments.

$ 223.00

The 24-hole design is compatible with the testtube with a diaMeter of less than 12mm, the maximum Operating temperature is 100 ° C, and the electronic ice box and intelligent thermostatic metal Bath module are optional to meet different temperature requirements.

$ 148.00

Double station independent temperature control design, stirring speed up to 2600rpm, temperature control accuracy +/- 1 ℃, with PID self-tuning function, support dry burning, oil Bath and water Bath three Heating mode.

$ 344.00

With water Bath thermostatic oscillation and low temperature refrigeration dual functions, thermostatic range 0-100 ℃, temperature accuracy +/- 0.5 ℃, support reciprocating oscillation and digital constant speed operation, suitable for a variety of sample fostering needs.

$ 1027.00

Imported stainless steel plate and circulating pump, Temperature Fluctuation ≤ +/- 0.5 ℃, Temperature range RT + 5~ 95 ℃, with anti-dry burning function, to ensure the safety and stability of the experiment.

$ 356.00

Integrated Incubator and Shaker functions, Oscillation Frequency 40~ 300rpm, Temperature range RT + 5~ 65 ℃, 304 stainless steel liner and microcomputer PID control, with UV sterilization and automatic storage setting paraMeters.

$ 1427.00

304 stainless steel liner, temperature control accuracy of +/- 0.5 ℃, with anti-dry burning function, ensure safe and reliable experimental process, suitable for a variety of temperature sensitive applications.

$ 169.00

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

With three uses of water Bath, thermostatic and boiling disinfection, Temperature range RT +~ 100 ℃, Tank volume 36L, suitable for a variety of experimental heating and equipment processing needs.

$ 209.00

With water shortage and air burning function, Temperature Fluctuation +/- 0.3 ℃, Temperature range RT + 5~ 99 ℃, integrated sink and water Bath dual-use, easy to clean and safe operation.

$ 391.00

Water Bath and water Bath are integrated to achieve dual-use, using one-time stamping stainless steel liner for easy cleaning, temperature control accuracy +/- 0.3 ℃, equipped with water shortage and air burning and independent temperature limit safety system to ensure safe operation.

$ 562.00

Heating mode heating speed, thermostatic Fluctuation +/- 0.2 ℃, equipped with double-decked door structure and independent temperature limit alarm system, to ensure the safe and stable operation of the experiment.

$ 622.00

Using DC motor to ensure no-load operation for more than 10,000 hours, no noise vibration; fast IT microcontroller to achieve accurate adjustment of speed and temperature, support dry burning, water Bath and oil Bath various working modes, Temperature range RT +~ 300 ℃, heating power 800W.

$ 172.00

Articles

Constant temperature bath selection: circulation method and temperature control range.
This article on thermostatic bath selection primarily analyzes two core factors: circulation mode and temperature control range. The circulation mode is divided into natural convection and forced circulation, where the former is suitable for simple static experiments, while the latter offers higher precision and is better suited for multiple samples or integration with external devices.
Application of Transparent Constant Temperature Water Bath in Visualization of Material Thermal Deformation
The constant temperature water bath provides a stable environment for observing the deformation of materials after heating by maintaining a constant and uniform temperature of the liquid medium.
Constant temperature and humidity aging chamber for testing plastic yellowing according to GB/T 16422.3.
This article introduces the method of testing plastic yellowing using a constant temperature and humidity aging chamber in accordance with the GB/T 16422.3 standard. Yellowing is an indication of chemical degradation in plastics caused by heat, oxygen, and humidity.
Constant Temperature and Humidity Aging Chamber for Testing Hygrothermal Aging Performance of Composite Materials
This article introduces how to use a constant temperature and humidity aging chamber to test the hygrothermal aging performance of composite materials. Hygrothermal aging refers to the gradual decline in material performance under the combined effects of temperature and humidity.
Constant Temperature and Humidity Chamber for Testing Packaging Moisture and Heat Resistance
This article introduces the method of using a constant temperature and humidity test chamber to test the resistance of packaging to heat and humidity. The test chamber simulates hot and humid environments by controlling temperature and humidity, thereby evaluating the performance changes of packaging materials.
Determination of dry matter content in pulp using an electric thermostatic drying oven.
This article introduces the method for determining the dry matter content of pulp using an electric thermostatic drying oven. Dry matter content is a key indicator for evaluating pulp quality. The principle of determination involves evaporating the moisture in the pulp through heating and calculating the content based on the mass difference before and after drying.
Constant Temperature and Humidity Chamber Testing for Environmental Adaptability of Hot Melt Adhesive
This article introduces the method of testing the environmental adaptability of hot melt adhesive using a constant temperature and humidity chamber. The performance of hot melt adhesive is easily affected by temperature and humidity, and the purpose of the test is to evaluate its stability under different climatic conditions.
Constant Temperature and Humidity Chamber Testing for Ink Environmental Adaptability
This article introduces the method of testing the environmental adaptability of ink using a constant temperature and humidity chamber. Ink is prone to issues such as adhesion, discoloration, or reduced adhesion when exposed to changes in temperature and humidity.
Salt spray test chamber detects the corrosion resistance of coatings.
The salt spray test chamber accelerates the testing of coating corrosion resistance by simulating a salty and humid environment. It uses atomized sodium chloride solution to form salt spray, which settles inside the constant temperature chamber, and conducts tests under neutral or acidic conditions in accordance with standards.
Constant Temperature Water Bath Controls the Temperature Sensitivity of Resin Viscosity
The constant temperature water bath can provide a stable temperature environment for studying the characteristics of resin viscosity as it changes with temperature.
The difference between thermal shock test chambers and constant temperature and humidity chambers
This article compares the differences between thermal shock test chambers and constant temperature and humidity chambers in terms of working principles, key performance, and applications.
Application of Constant Temperature and Humidity Chambers in the Electronics Industry
A constant temperature and humidity chamber is a device capable of precisely controlling temperature and humidity, used to simulate various environmental conditions that electronic products may encounter. In the electronics industry, it is primarily employed to test the reliability of components, finished products, and processes, such as evaluating material aging or performance changes through high-temperature and high-humidity tests.
Common Operational Fault Analysis and Daily Maintenance Strategies for Constant Temperature and Humidity Test Chambers
This paper focuses on typical issues faced by constant temperature and humidity test chambers in practical applications, such as temperature deviations, abnormal humidity control, and blockages in the water circuit system. It delves into the underlying causes of these faults and proposes a maintenance framework centered on daily inspections and standardized operations.
Comparison of Humidity Control Methods in Constant Temperature and Humidity Test Chambers: Wet and Dry Bulb Method vs. Electronic Sensor Method
This article will explain the principles, advantages, and disadvantages of these two methods to help you make a more informed decision when selecting equipment.
Technical Selection and Application of Constant Temperature and Humidity Chambers
This article primarily discusses how to select and use a constant temperature and humidity chamber. It is mainly used to test the performance of materials and products under varying temperature and humidity conditions.