Fiber optic displacement sensors measure the distance to a target by detecting changes in light intensity or phase reflected from the target, offering high-precision, non-contact displacement measurem...
Fiber optic displacement sensors (FODS) operate by modulating light properties—primarily intensity or phase—based on the distance between the sensor probe and the target surface . The core components include:
In extrinsic FODS, light is sent through a transmitting fiber to a moving target. The reflected light is captured by receiving fibers and measured by a detector. The displacement is inferred from changes in reflected light intensity: if intensity increases, the target moves closer; if it decreases, the target moves away . This method is simple, robust, and suitable for harsh environments.
Some high-precision FODS use interferometry, where phase changes in light due to displacement are measured. This technique offers extremely high sensitivity but is more complex and costly .
FODS are widely used in:
The cost of fiber optic displacement sensors varies based on precision, range, and configuration:
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