Radar Level Sensor For Corrosive Liquid: A Choice For Multiple Applications To Meet Engineering Needs

Nov 23, 2023|

The working principle of mm wave radar sensor is very simple. When a transmitted microwave signal encounters a liquid surface, part of the signal is reflected back to the sensor. By measuring the time it takes from transmission to reception, the distance between the liquid level and the sensor can be calculated. By continuously making measurements and calculations, the level of the liquid can be monitored and displayed in real time.

 

Millimeter wave corrosive liquid radar level sensor

 

radar level sensor for corrosive liquid has the following advantages:

Wide measurement range: suitable for different types and states of liquids, including corrosive liquids and high-temperature liquids.

High accuracy: Able to achieve highly accurate measurement results.

In the industrial field, mm wave radar sensors have various applications. For example, in the oil and gas industry, they are used to monitor liquid levels in storage tanks to ensure safe and smooth production processes. In the chemical industry, radar level sensors for corrosive liquid are widely used to measure the levels of various chemical substances to ensure the control of process processes. Additionally, they are used in areas such as water treatment and environmental monitoring.

mm wave radar sensor can be applied to various highly corrosive liquids. Its measuring range is up to radar level sensor 100m, and it is suitable for different process connection methods, such as threads and flanges. In terms of medium temperature, it can work in the range of -40°C to 200°C, and is suitable for process pressures from -1 to 16bar. Its accuracy can reach ±1mm, the frequency range is 78-80GHz, and it can output signal types such as 4-20mA/HART (two-wire/four-wire), RS485/Modbus, etc.

Radar level sensor for corrosive liquid is suitable for measuring corrosive liquids in underground storage tanks, tanks or pools. According to different media, temperature, pressure and other conditions, different forms can be provided for customers to choose. Users can use it with a remote transmitter according to project requirements to achieve local digital display and output a 4-20mA standard remote electrical signal. It can also be used with magnetostrictive liquid level transmitters to meet the needs of recording instruments or industrial process control. In addition, it can also be used in conjunction with magnetic control switches or proximity switches to achieve liquid level monitoring and alarming or control of liquid inlet and outlet equipment.

 

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