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Non-contact displacement transducers are used to measure the distance between its front face and a target made from a ferritic material. A ferritic material is one, which is attracted by a magnet. This sensor is appropriate for high temperature, high pressure and high nuclear radiation position measurement applications.
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Non-contact surface profiling system utilizes precision linear motors to scan a highly accurate laser displacement-measuring device over the sample surface at speeds of up to one meter per second. It collects surface profile data at up to one sample per micrometer over the entire surface scan area. Non-contact surface profile measurements can be recorded with data density of up to 256,000 data points per line of data, and 3D non-contact surface profiling area maps at many giga samples per map. This system includes digital filtering options, tilt removal, arithmetic, statistics and auto-thresholding.
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Non-contact torque sensors are designed to detect, and accurately measure the torque forces that are present at the sensing location. The torque forces are measured reliably at any static or dynamic condition of the sensing shaft. The sensing shaft can rotate at any desired speed, in any direction. The sensitivity and signal resolution is directly related to the shaft or tube diameter at the sensor location. An inductive power and data transfer system is used for contactless, air-gap transfer of excitation power and torque output signal. Measured values are continuously transmitted from the rotating shaft back across the air gap to a stationary module.
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