Introduction
Heating Incubator features unique air duct design ensuring temperature uniformity of ±1℃. Tempered glass window enables easy monitoring without disrupting internal conditions. Equipped with mechanical thermostat for reliable operation during primary temperature control failure. It offers storage capacity of 252L with 2 perforated shelves, supporting up to 7 maximum shelf positions. Ideal for environmental studies, agricultural research and pharmaceutical testing.
It provides a stable and controlled environment for cell culture, microbial growth, and other biological experiments. The precise temperature and humidity control ensure consistent experimental conditions and reliable results.Applications
Our Heating Incubator is widely used for environmental studies, agricultural research, pharmaceutical testing, quality control testing and microbiological studies.
Specifications
| Volume | 252L |
| Perforated Shelves (Std/Max) | 2/10 |
| Temperature Range | RT+5 to 80℃ |
| Temperature Fluctuation | ±0.5℃ |
| Temperature Uniformity | ±1℃ |
| Temperature Resolution | 0.1℃ |
| Power Consumption | 1200W |
| Power Supply | AC 220V, 50HZ |
| Chamber Size | 600mm × 600mm × 700mm |
| Exterior Size | 880mm × 730mm × 950mm |
| Weight | 85Kg |
Features
Large screen display
Easy maintenance design
Enhanced sealing reliability
Insulated door handle
Anti-leak system
FAQs
1. How to calibrate the temperature and humidity controls in the laboratory incubator?
Calibration should be performed by qualified personnel using calibrated temperature and humidity sensors: 1) Place the calibrated sensors at different locations inside the incubator chamber to ensure uniform distribution; 2) Set the incubator to the desired temperature and humidity levels and allow it to stabilize for at least 24 hours; 3) Compare the readings from the incubator's display with the calibrated sensors; 4) Adjust the controls according to the manufacturer's instructions if discrepancies are found; 5) Document the calibration results and schedule regular recalibration (every 6-12 months).
2. What is the optimal way to arrange samples inside the incubator for uniform conditions?
To ensure uniform conditions: 1) Avoid overcrowding the incubator, leaving sufficient space between samples for air circulation; 2) Place samples away from the chamber walls, heating/cooling elements, and door to prevent temperature fluctuations; 3) Use shelves or racks that allow air to circulate freely around all samples; 4) Avoid placing large or heat-generating equipment inside the incubator; 5) Rotate samples periodically if long-term incubation is required to account for any minor temperature variations.
3. Can the incubator be used for anaerobic or CO2-enriched environments?
Specialized incubators (anaerobic incubators, CO2 incubators) are designed for these environments. Standard incubators may not maintain the required gas concentrations or oxygen-free conditions. For anaerobic applications, use an incubator equipped with a gas control system that maintains oxygen levels below 1% and may include catalysts to remove oxygen. For CO2-enriched environments, use a CO2 incubator that maintains precise CO2 concentrations (typically 5-10%) and humidity levels, essential for cell culture applications.
4. How to clean and disinfect the incubator to prevent contamination?
Regular cleaning and disinfection steps: 1) Turn off the incubator and allow it to cool down to room temperature; 2) Remove all samples and shelves; 3) Wipe the interior surfaces with a mild detergent solution, followed by a disinfectant compatible with the incubator materials (such as 70% ethanol); 4) For stubborn contamination, use a specialized laboratory disinfectant according to the manufacturer's instructions; 5) Clean the shelves and any accessories separately; 6) Allow all surfaces to dry completely before reassembling and restarting the incubator; 7) Perform this procedure monthly or more frequently if contamination is suspected.
5. What should be done if the incubator temperature fluctuates significantly?
If temperature fluctuations occur: 1) Check if the incubator door is properly closed and sealed; 2) Ensure the incubator is not placed near heat sources, air conditioning vents, or drafty areas; 3) Verify that the incubator is not overloaded, which can restrict air circulation; 4) Check the air filter (if equipped) and replace it if dirty; 5) Inspect the heating and cooling elements for proper operation; 6) If the problem persists, contact technical support for further diagnosis and repair, as it may indicate a malfunction in the temperature control system.
1. What industries or fields benefit from the Heating Incubator ?
The Heating Incubator is ideal for environmental studies, agricultural research, and pharmaceutical testing. It is also widely used in microbiological studies for culturing bacteria, fungi, and cells. Quality control labs benefit from its stable and uniform temperature environment. The large chamber capacity and reliable performance support high-throughput testing. Its versatility makes it suitable for various research institutions and industrial labs. Whether testing shelf life, growth rates, or reaction consistency, it can be trusted.
2. What are the key features of the Heating Incubator that enhance usability and maintenance?
Heating Incubator is designed with user convenience in mind, including a large, easy-to-read screen. Its easy maintenance design allows for quick cleaning and shelf adjustment. The chamber supports 2 standard shelves, expandable to 10 for greater flexibility. Tempered glass provides a clear interior view without disrupting incubation conditions. It is compact yet spacious, with a benchtop design, easy to install or relocate. Its intuitive controls simplify operations for both new and experienced lab personnel.
3. How does the design of the Heating Incubator support safe and uninterrupted operation?
Heating Incubator includes a mechanical thermostat that ensures continued operation if the main controller fails. It also features an anti-leak system and enhanced sealing for safety and performance reliability. A tempered glass window allows visual monitoring without opening the door, minimizing heat loss. The insulated door handle ensures safe handling during high-temperature operations. It supports up to 10 perforated shelves, accommodating various sample sizes. These design features help protect both samples and users during routine use.
4. What makes the Heating Incubator suitable for precise temperature incubation?
The Heating Incubator is equipped with a unique air duct system that ensures uniform heat distribution. It maintains a consistent temperature uniformity of ±1°C and fluctuation of only ±0.5°C. With a temperature range from RT+5°C to 80°C, it's ideal for controlled incubation needs. A resolution of 0.1°C allows fine adjustments during sensitive procedures. This precision makes it highly reliable for research, testing, and quality control labs. The internal chamber is spacious, offering 252L of usable volume.
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