
Product Overview:radar level gaugeSuitable for measuring the level of containers, storage tanks, warehouses, and other materials with complex process conditions. It is suitable for continuous contact measurement of the level of liquids, slurries, particles, and dust, especially in complex environments with dust and volatile substances, and is not affected by changes in the physical properties of the measured medium.
Product measurement principle: The radar antenna emits extremely narrow microwave pulses, which propagate at the speed of light in space. When they hit the surface of the measured medium, some of their energy is reflected back and received by the same antenna. The time interval between transmitting and receiving pulses is proportional to the distance from the antenna to the surface of the measured medium. Due to the extremely high propagation speed of electromagnetic waves, it is difficult to confirm the time interval between the emitted pulse and the received pulse, which is very small (in the nanosecond range). The UPR series radar level gauge adopts a special correlation demodulation technology, which can accurately identify the time interval between the transmitted pulse and the received pulse, and further calculate the distance from the antenna to the surface of the measured medium.
Product features:
Due to the use of advanced microprocessors and unique EchoDiscovery echo processing technology,radar level gaugeCan be applied to various complex working conditions.
The "false echo learning" function enables the instrument to correctly confirm the true echo and obtain accurate measurement results under multiple false echo conditions.
Multiple process connection methods and antenna types make the UPR series radar level gauge suitable for various complex working conditions. For example, measurement of high temperature, high pressure, and low dielectric constant media.
Adopting a pulse working mode, the radar level gauge has extremely low transmission power and can be installed in various metal and non-metal containers without causing harm to the human body and the environment.

