Incubators are essential for maintaining controlled conditions in research, clinical, and industrial applications. These units provide precise temperature regulation, uniform heat distribution, and contamination control, ensuring optimal environments for microbiological cultures, cell growth, and other specialized processes. Available in various configurations, incubators can be designed with direct-heat or water-jacketed systems, refrigerated functionality, or environmental controls tailored to specific needs.

Standard incubators are commonly used for microbial culture development, offering features such as programmable settings, decontamination cycles, alarm systems, digital interfaces, and glass doors for continuous sample monitoring. Depending on the application, these units may rely on gravity convection, mechanical convection, or a combination of both to maintain temperature uniformity and stability.

For specialized applications, there are dedicated incubators, including CO2 incubators for cell culture, refrigerated models for temperature-sensitive experiments, and environmental chambers that allow for precise regulation of humidity, air pressure, and lighting conditions. Dry block, hybridization, hatching, and plant growth incubators further expand the range of possibilities, catering to the unique needs of different scientific fields.

CO2 incubators create a controlled atmosphere ideal for cell and tissue culture, with options including direct-heat and water-jacketed systems. Many models integrate advanced features such as HEPA air filtration, stackable configurations, intuitive touchscreens, and high-purity copper interiors to enhance sterility and performance.

Refrigerated incubators provide temperature control above or below ambient levels, ensuring precise conditions for industries such as pharmaceuticals, food safety, cosmetics, and environmental testing. Modern units often include Wi-Fi connectivity, programmable controls, and user-friendly touchscreen interfaces for seamless operation.

Environmental chambers go beyond temperature regulation, offering comprehensive control over factors such as humidity, airflow, and light exposure. These systems are commonly used in stability studies, shelf-life testing, controlled storage, and biological research, providing reliable conditions for a wide range of scientific and industrial applications.

Incubators

Standard Incubator

The solution is widely used in bacteria, fungi and other microorganisms culture; as well as enzyme digestion reaction, ligation reaction, embedded incubation and other related constant temperature experiments. Precise and stable operation With optional real-time IoT monitoring  

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Incubators

Climate Chamber

Drug stability tests (made for stability studies according to ICH guidelines), cosmetic stability tests, food shelf life tests, electronic components aging tests, packaging material stability tests.

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Incubators

HCP-258

The equipment finds extensive use across variety of settings, including the scientific research institutions, university laboratories and production departments, in the realms of environmental conservation, public health and epidemic prevention, agriculture and animal husbandry, drug testing, and aquatic industries. It is highly specialized in cultivation, enabling it to meet the cultivation and preservation of most bacteria, molds, and microorganisms, as well as to serve purposes such as water analysis and biochemical oxygen demand (BOD) determination, and it can also conduct darkroom cultivation of plant tissues.

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Incubators

CO₂ Incubator

The CO2 incubator is the most important piece of equipment for biosafety laboratory R&D. The Haier Biomedical CO2 incubator uses professional and superior technology to provide reliable conditions for frontline medical staff to carry out epidemiological and translational research, and to create a stable cell and virus culture environment for researchers.

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Haier Biomedical IoT enabled CO2 incubator with 180°C dry heat sterilisation provides a safe and secure reproducible growth environment for cell cultures.

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Termaks chambers provide an ideal solution for environmental, stability and climate applications. The new developed and refined range offers high reliability and repeatable performance without comprise. Powerful and optimally coordinated heating and cooling technology offers state of the art performance, energy efficiency and low noise. KB series is ideal for the most demanding pharmaceutical, biotech, and industrial use.

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Termaks forced convention drying and heating chambers for fast drying and sterilization. Designed for excellent temperature distribution with variable fan settings temperature the entire range offers very high temperature stability up to +250°C.

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Incubators

Cooling Incubators

Termaks compressor cooled incubators offers great performance and temperature stability. KB series is easy to use yet allowing extensive programmability and ramping options. The design gives rapid and precise temperature control, fast recovery and intelligent defrosting. Air circulation in the working chamber via Termaks sophisticated ventilation technology.

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Termaks incubators B-series are highly sensitive and very accurate. Ideal for all applications with temperatures up to +80°C and specifically for incubating living cultures at +37 °C. The newly developed control system allows fine tuning at any temperature in the range.

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