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Case study of JT1433 directional wind speed sensor applied in experimental mouse culture box
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Case study of JT1433 directional wind speed sensor applied in experimental mouse culture box

2026-04-12

In biomedical and life science research, the cultivation environment of experimental mice directly determines the accuracy and reliability of experimental data, and wind speed, as one of the core environmental parameters in the incubator, is of utmost importance. Excessive wind speed can cause cold stress, dehydration, and abnormal behavior in experimental mice, while insufficient wind speed can lead to the accumulation of harmful substances such as air pollution and ammonia in the box, increasing the risk of animal diseases and directly affecting the scientific and reproducibility of experimental results.

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How to accurately control the wind speed inside the experimental mouse culture box to provide a stable and suitable growth environment for the experimental mice? JT1433 directional wind speed sensor, with its core advantages of high precision and high stability, has become the "environmental guardian" of experimental mouse incubators, providing escort for scientific research experiments.

Why is directional wind speed monitoring indispensable for experimental mouse incubators?

Experimental mice (especially SPF grade experimental mice) are highly sensitive to their growth environment, with the stability and uniformity of wind speed being key indicators. According to industry standards, the appropriate wind speed inside the experimental rat cage should be controlled at 0.05-0.15m/s, and the overall air supply speed of the incubator should be maintained at 0.2-0.3m/s to avoid arousing dust or causing local temperature unevenness.

JT1433 Directional Wind Speed Sensor: The Core Advantage of Adapting to Experimental Mouse Incubators

As a classic product in the JT1430 engineering application series of Jiantong Technology, the JT1433 thermal directional wind speed sensor is perfectly adapted to the application scenarios of experimental mouse incubators with targeted product design, and its core advantages demonstrate its professional strength

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1
High precision monitoring to maintain the "safe threshold" of wind speed

The wind speed monitoring in the experimental mouse incubator cannot tolerate any errors. JT1433 adopts the principle of thermal wind speed testing and is equipped with dual temperature compensation technology, effectively solving the measurement error caused by air temperature changes, achieving high stability and precision wind speed testing, and ensuring that each set of experimental data has reference value. Meanwhile, its wind speed measurement range can cover 0-20m/s, with an accuracy of up to 0.1m/s.

2
Wide angle orientation, suitable for complex wind fields in incubators

The wind field distribution inside the experimental mouse incubator is complex, and the wind direction is prone to fluctuations. Traditional sensors are prone to measurement deviations due to changes in installation angle or wind direction. JT1433 adopts a circular wind sensing head structure design, which can maintain good measurement consistency within ± 45 ° range, effectively eliminating the influence of installation angle errors and wind direction fluctuations. Even in the wind environment with high randomness and fluctuations inside the incubator, it can achieve accurate monitoring, ensure uniform wind speed in various areas inside the incubator, and provide a consistent growth environment for experimental mice.

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3
Compact and easy to install, does not damage the clean environment

The laboratory mouse incubator requires extremely high internal cleanliness, and the installation of sensors must not damage the sealed environment inside the incubator or cause pollution. JT1433 adopts a rod type integrated structure with a diameter of only 12mm. The length can be customized according to the size of the incubator, and the structure is compact and small; At the same time, it adopts an integrated design of collection and transmission circuit and wind measurement probe, with a 6-core bare wire connector, without the need for external transmission circuit, easy to install, and can be flexibly embedded inside the incubator without occupying too much space or damaging the clean environment inside the incubator, suitable for the installation needs of various experimental mouse incubators.

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4
High reliability, suitable for long-term scientific research monitoring

Scientific research experiments often require long-term continuous monitoring, which places high demands on the stability and durability of sensors. JT1433 is designed according to industrial standards, and the body is made of a combination of aluminum alloy and polymer materials, with high structural strength and strong corrosion resistance. It can adapt to the constant temperature and humidity environment inside the incubator and can operate stably for a long time; At the same time, it has undergone multiple rigorous tests such as high and low temperature tests, vibration tests, and salt spray tests, with a low failure rate and no need for frequent maintenance. It provides continuous and stable wind speed monitoring support for long-term scientific research experiments, reducing experimental interruptions caused by equipment failures.

5
Multiple output forms, suitable for scientific research data management

To meet the data recording and analysis needs of scientific research experiments, JT1433 supports multiple output forms, with standard RS485 communication, 0-10V analog output, optional TTL, I ² C, AL switch signal output, convenient for docking with incubator control systems and data acquisition terminals, realizing real-time collection, recording, and analysis of wind speed data, helping researchers accurately grasp environmental changes inside the incubator, and providing data support for experimental research.

Engineering practical application: How does JT1433 safeguard the entire process of experimental mouse culture?

In practical applications, the JT1433 directional wind speed sensor can seamlessly integrate into the environmental monitoring system of experimental mouse incubators, achieving precise protection throughout the entire process:

Real time monitoring: Sensors are embedded inside the incubator to capture real-time changes in wind speed inside the incubator. Whether it is the supply wind speed or the wind speed near the cage, accurate feedback can be provided to ensure that the wind speed remains within the appropriate range, avoiding stress reactions or disease risks in experimental mice caused by abnormal wind speed;
Automatic regulation: linked with the incubator control system, when the wind speed exceeds the preset threshold, the fan regulation can be automatically triggered to restore the wind speed to the appropriate range in a timely manner without manual intervention, avoiding human operation errors;
Data retention: Real time transmission of wind speed data to data acquisition terminals through interfaces such as RS485 enables long-term retention and traceability of data, facilitating subsequent analysis of the correlation between the measured environment and measurement results;
Long term stability: With an industrial grade durable design, it can adapt to a long-term constant temperature and humidity environment inside the incubator, ensuring continuous and stable operation without frequent disassembly and maintenance, ensuring uninterrupted measurement processes.
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In the experimental mouse culture environment, wind speed is the core environmental parameter, and its stability and accuracy are directly related to the health status of the experimental mice and the reliability of the experimental data.

The JT1433 directional wind speed sensor, with its core advantages of high precision, wide testing angle, small size, and long-term stability, accurately adapts to the application needs of experimental mouse incubators. Whether it is biomedical, life science research, or experimental mouse cultivation in university laboratories and research institutes, JT1433 can provide reliable wind speed monitoring solutions, helping researchers overcome technical difficulties and obtain more accurate and reliable experimental results.