Ultra high precision displacement (float level) sensor-LF700
LF700 series displacement sensor uses two different magnetic fields to generate
The time when the generated strain pulse signal is detected to calculate the magnetic field intersection point
The exact location of the. The magnetic field is produced by the electronic components of the sensor electronic compartment
Generated pulse excitation, the magnetic field generated by the excitation pulse moves along the sensor measuring rod
The waveguide wire made of high magnetostrictive material inside is driven from the end of the electronic chamber at the speed of light
The tail end moves forward when it is connected with the active magnetic field (the permanent magnet is generally installed in the
When the movable plate at the detection position intersects, due to magnetostriction, the waveguide
The wire generates a mechanical strain pulse at the intersection point and passes through it at sound speed
The time when the generated strain pulse signal is detected to calculate the magnetic field intersection point
The exact location of the. The magnetic field is produced by the electronic components of the sensor electronic compartment
Generated pulse excitation, the magnetic field generated by the excitation pulse moves along the sensor measuring rod
The waveguide wire made of high magnetostrictive material inside is driven from the end of the electronic chamber at the speed of light
The tail end moves forward when it is connected with the active magnetic field (the permanent magnet is generally installed in the
When the movable plate at the detection position intersects, due to magnetostriction, the waveguide
The wire generates a mechanical strain pulse at the intersection point and passes through it at sound speed
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