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Room 1501-1502, Caoyang Business Building, 889 Zhongjiang Road, Putuo District, Shanghai
Shanghai Weitelui Industrial Development Co., Ltd
Room 1501-1502, Caoyang Business Building, 889 Zhongjiang Road, Putuo District, Shanghai
The detection mechanism of MTS magnetostrictive linear displacement/liquid level sensor is based on the Weidmann effect between the core detection element of the sensor, the magnetostrictive waveguide wire, and the vernier magnetic ring. During measurement, the excitation module in the electronic chamber is based on the Weidmann effect between the core detection element of the sensitive magnetostrictive linear displacement/liquid level sensor - the magnetostrictive waveguide wire and the vernier magnetic ring.
MTS magnetostrictive displacement (liquid level) sensor uses the principle of magnetostriction to accurately measure position by generating a strain pulse signal through the intersection of two different magnetic fields. The measuring element is a waveguide, and the sensitive element inside the waveguide is made of a special magnetostrictive material. The measurement process is carried out by generating current pulses in the electronic chamber of the sensor, which are transmitted inside the waveguide and generate a circular magnetic field outside the waveguide. When the magnetic field intersects with the magnetic field generated by the movable magnetic ring as a position changing ring fitted on the waveguide, a strain mechanical wave pulse signal is generated inside the waveguide due to the effect of magnetostriction. This strain mechanical wave pulse signal is transmitted at a fixed sound speed and quickly detected by the electronic chamber.
The measurement process of MTS magnetostrictive displacement (liquid level) sensor is generated by a current pulse in the electronic chamber of the sensor, which is transmitted inside the waveguide and generates a circular magnetic field outside the waveguide. When the magnetic field intersects with the magnetic field generated by the movable magnetic ring as a position change on the waveguide, a strain mechanical wave pulse signal is generated inside the waveguide due to the effect of magnetostriction. This strain mechanical wave pulse signal is transmitted at a fixed sound speed and quickly detected by the electronic chamber.
The transmission time of this strain mechanical wave pulse signal in the waveguide is directly proportional to the distance between the active magnetic ring and the electronic chamber. By measuring the time, this distance can be determined with high accuracy. Since the output signal is a true absolute value, rather than a proportional or amplified signal, there is no signal drift or variation, and there is no need for periodic recalibration.
MTS magnetostrictive displacement sensor is a high-precision, long stroke absolute position measurement displacement sensor based on the principle of magnetostriction. It adopts an internal non-contact star measurement method. Due to the lack of direct contact between the active magnetic ring used for star measurement and the sensor itself, it is not subject to friction or wear, resulting in a long service life, strong environmental adaptability, high reliability, good safety, and easy system automation work. Even in harsh industrial environments (such as those prone to oil spills, dust, or other pollution), it can work normally.
The sensor adopts high-tech materials and electronic processing technology, so it can be applied in environments with high temperature, high pressure, and high oscillation. The sensor B is an absolute displacement value, and even if the power is interrupted or reconnected, the data will not be lost, let alone reset to zero.
Due to the non-contact nature of sensitive components, even repeated testing will not cause any wear on the sensor, greatly improving the reliability and service life of the detection. The travel can reach 5 meters or more, with a nominal accuracy of 0.05% F · S. For sensors with a travel of more than 1 meter, the accuracy can reach 0.02% FS, and the repeatability can reach 0.002% FS, making it widely used.
advantage:
High reliability, high resolution, oil and dirt resistance, non-contact measurement method, long service life, strong environmental adaptability, and good safety: even in harsh industrial environments, it can work normally and continuously, accurately, and real-time detect the displacement (position) and speed of various moving parts. In addition, it can withstand high temperature, high pressure, and strong vibration.
Common models of MTS displacement sensors:
MTS displacement sensorRH5MA0550M01D701S1012G6
MTS displacement sensorRHM0270MH021A01 Upgrade: RH5MA0270M01H021A100
MTS displacement sensorRHM0350MP031SIG1101 Upgrade: RH5MA0350M01P031S1051G1-TD01
MTS displacement sensorRHM0340MR021A01 Upgrade: RH5MA0340M01R021A100-TD01
MTS displacement sensorRHM0160MD601V01 Upgrade: RH5MA0160M01D601V100
MTS displacement sensorRHM1760MP051S1G4100 Upgrade: RH5MA1760M01P051S1011G4-TD01
MTS displacement sensorGBF0150MU021A1 Upgrade: GBS0150MU021A1LC
MTS displacement sensorGBS0055MD601A0LC
MTS displacement sensorGBS0075MD341A0LC
MTS displacement sensorGBS0125MD341A0LC
MTS displacement sensorRH5MA0540M01R201A100
MTS displacement sensorRHM1100MP05AS2G1100 升级: RH5MA1100M01P051S1012G1-TD01
MTS displacement sensorGBS0150MH021A1LC
MTS displacement sensorERM0600MD841S1B5100
MTS displacement sensorERM0150MD341A10