What are the characteristics of the water-proof incubator?
2025-07-19 06:46:45
What are the key features of a water-proof incubator?
1. The incubator is equipped with a digital micro-computer controller that includes a timer function. If the temperature inside the chamber exceeds the set value, or if the water level in the water jacket is too high or too low, an automatic light alarm is triggered. In addition, when the water level is too low, the heating system will automatically stop to prevent damage and ensure safe operation.
2. The inner chamber is made of stainless steel, ensuring durability and resistance to corrosion. The water-jacket heating system provides excellent temperature uniformity and allows the incubator to maintain a stable temperature for an extended period even after power is cut off.
3. The incubator uses a water-jacket heating method combined with a double-door design controlled by a motor. When the inner glass door is opened, the internal airflow circulation and heating are automatically suspended, preventing temperature overshoot and maintaining a consistent environment.
4. It includes an independent temperature limit alarm system. If the temperature goes beyond the preset limit, the system will automatically shut down to protect the experiment and avoid accidents. This feature is optional depending on the model.
Structure and working principle of a water-proof incubator:
The water-proof incubator has a vertical design. The outer casing and door are constructed from high-quality steel plates with a powder-coated surface for enhanced durability and aesthetics. The inner door is made of tempered glass, allowing clear visibility of the culture items inside the chamber.
The working chamber, also known as the liner, is fabricated from stainless steel using sub-arc welding technology, ensuring structural integrity and ease of cleaning. The shelves are made of stainless steel wire, allowing adjustable height settings to accommodate different experimental needs. A silicone rubber seal is placed between the chamber and the tempered glass door to maintain an airtight environment.
The chamber is heated using a U-shaped water tank, with a water inlet located on the upper left side of the cabinet. A drain valve is positioned on the lower left, and an overflow rubber hose is installed on the left side for safety. A low-noise fan is mounted at the back of the chamber to promote even heat distribution and maintain a consistent internal temperature.
The cabinet shell and the inner chamber are insulated with ultra-fine glass wool, providing excellent thermal efficiency and minimizing energy loss. This design ensures long-term stability and reliable performance during experiments.
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