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  • Application of pid-ah photo-ion gas sensor in robot gas monitoring field

    Intelligent robots are becoming more and more important in today's society, and more and more fields and positions need the participation of intelligent robots, which makes more and more companies participate in the development of intelligent robots. Among them, the security industry robot now presents a good advantage forward development. Involved in many fields such as security intelligent inspection robot to realize the gas pipeline inspection is a microcosm of its application.


    Modern robots have the characteristics of intelligence, mechanization, and proceduralization, and can complete many complex and dangerous tasks in accordance with the procedures. As the program of modern robots has become more and more perfect, it has been applied to more aspects in the field of robot gas monitoring. Many dangerous projects involve gas monitoring, and robots are often used to monitor the target gas in view of personnel safety. Common robotic gas monitoring, suchUAV gas detectionPipe gallery robot gas monitoring, coal mine robot gas monitoring, industrial workshop robot inspection monitoringWait.


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    In our country, toxic gas leaks occur from time to time in petroleum, chemical, coal, limited space engaged in unconventional and non-continuous operations (such as furnace, tower, kettle, tank car, pipeline, flue, tunnel, sewer, ditch, pit, well, pool, culvert, ship cabin, underground warehouse, storage room, cellar, barn, etc.), and pose a growing threat to personal safety. After these disasters, due to the complexity and danger of the on-site environment, rescue work is often difficult to carry out, and it also brings great hidden dangers to the life safety of rescue team members. Therefore, there is a need for a monitoring robot that can go deep into a dangerous area instead of a rescue team member and detect useful information on the spot.


    The robot is equipped with sensors for target gas monitoring, which has certain requirements for sensors. Generally, sensors have large errors, poor stability, small output signals, and are greatly affected by temperature and humidity. Moreover, sensors of various brands are incompatible, use methods are not uniform, output signals are not uniform, and sizes are not uniform. They are not suitable for gas monitoring on robots. Therefore, a gas sensor is urgently needed in the field of robot gas monitoring, to make the perfect combination between the two.


    Because robot gas monitoring requires rapid response of gas sensors and rapid feedback of monitoring values. Taking VOC sensors as an example, after a large number of actual tests, PID-AH light ion gas sensors can detect 1ppb of VOC gas and more than 2000 different VOC gases. Many harmful substances and raw materials contain VOC. PID, due to its high sensitivity to VOC, it has become an indispensable practical tool for early risk warning and leakage monitoring of harmful substances. The gas molecules captured by the intelligent VOC sensor are fed back in real time in the robot system, and the monitoring values can be understood in real time through the robot system, and the data can be analyzed.


    Because the monitoring site is more than VOC gas, according to the monitoring of flammable, explosive, toxic and harmful gases, with different intelligent gas sensor modules, can monitor combustible gas, hydrogen sulfide, sulfur dioxide, carbon dioxide, ozone, nitrogen dioxide, oxygen, ammonia, chlorine, hydrogen chloride, methane and other gases. Provide all the above intelligent sensors required in the field of robot gas monitoring, and welcome friends in need to consult online.


    The gas sensor module can not only be used with robots for gas monitoring, but also widely used in atmospheric monitoring, air quality monitoring, Internet of Things, factory boundary, intelligent environmental protection, process control, unmanned aerial vehicles, unmanned ships, instrument research and development, flue gas, petroleum and petrochemical, pharmaceutical, etc.





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