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Nexisense high humidity temperature and humidity transmitters provide long-term stable measurements in sealed environments!

2025-12-16

Nexisense HG808-H High-Humidity Temperature and Humidity Transmitter

Definition

A high-humidity temperature and humidity transmitter is a device specifically designed to monitor and control humidity and temperature in enclosed environments. Its primary applications include incubators, greenhouses, and other environments where specific humidity and temperature conditions must be maintained over an extended period. The Nexisense HG808-H series of transmitters offers outstanding performance and stability, specifically designed for high-humidity environments, ensuring accurate measurements even under complex conditions.

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Principle

The measurement principle of the HG808-H high-humidity temperature and humidity transmitter is based on capacitive humidity measurement technology, which utilizes the sensitivity of materials to changes in humidity. The sensing element inside the transmitter can change its capacitance value in response to variations in environmental humidity, which is then converted into corresponding humidity and temperature data through embedded algorithms.

In high-humidity environments, the specially treated materials used in the HG808-H can effectively reduce the impact of moisture on the sensor, ensuring stable operation over long periods. This enables the sensor to maintain good sensitivity in high humidity while also possessing strong anti-pollution capabilities, minimizing measurement errors caused by various external factors.

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Structural Analysis

The structure of the HG808-H is designed with consideration of the various challenges that may arise in closed spaces. Its probe assembly utilizes optimized materials and design to minimize the risk of cold spot formation, avoiding reading anomalies caused by local condensation. Additionally, the device incorporates corrosion-resistant materials suitable for high-humidity environments to effectively counteract the effects of organic volatile substances or disinfectant residues.

To accommodate different installation needs, the HG808-H offers various probe types, allowing for flexibility in terms of size and shape of the incubator. This flexibility enables users to choose the most suitable components based on their specific installation requirements.

Measurement Methods

The HG808-H high-humidity temperature and humidity transmitter supports multiple measurement methods, including:

  1. Direct Measurement: The sensor probe directly captures the temperature and humidity data from the environment, which is then processed by internal algorithms to calculate accurate humidity and temperature values in real-time.

  2. Digital Signal Output: The HG808-H series provides options for digital signal output (such as RS485), facilitating the integration of multiple temperature and humidity sensors into a centralized monitoring system for efficient data management.

  3. Analog Signal Output: For users needing simple integration with traditional equipment, the HG808-H also supports analog signal outputs (such as 4-20mA), ensuring compatibility with existing systems.

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Conclusion

The Nexisense HG808-H high-humidity temperature and humidity transmitter addresses numerous challenges faced by traditional sensors in high-humidity enclosed environments through its advanced technology and design. With its extended stability, anti-condensation capabilities, flexible installation options, and high durability, the HG808-H is a reliable choice in modern laboratories and production settings.

Its implementation can significantly enhance the repeatability of experiments and production while effectively reducing maintenance costs and risks. Accurate data from long-term monitoring empowers researchers and production managers to make precise decisions in complex environments, promoting high-quality development in life sciences and the biopharmaceutical industry. This product from Nexisense serves as an essential "sense" in every laboratory and production environment, providing comprehensive and effective measurement assurance.

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