A correlator-based ultrasonic receiver applies dynamic thresholds to envelope signals to distinguish valid echoes from noise.
A path measuring apparatus uses fibre-reinforced holders and flexible tubes to support multiple redundant waveguides in a compact design.
A mm-wave metamaterial track converts electromagnetic signals to encode rotational position data.
Staggered excitation pulses allow mechanical wave reflections to decay before subsequent measurements, reducing dead zones and improving signal quality.
Segmenting the acoustic matching layer into two composite stages bridges the impedance gap between piezoceramics and air, preventing vibration peeling.
A polarization-dependent encoder uses a layered resonant structure to absorb waveforms for position encoding.
Inductive transponders detect mobile crane boom positions, replacing manual input to eliminate calculation errors.
Replacing mechanical raster scanning, the system eliminates vibration-induced phase distortions while maintaining high-speed absolute positioning accuracy.
A magnetostrictive sensing system uses a reflective termination to generate reflected torsional motion for position calculation.
An ultrasonic sensor array uses individually coupled emitting electrodes to generate constructive interference.
An RFID tag stores location event information received from wireless stations, resolving the trade-off between tracking precision and device complexity.
Attenuating material absorbs stray ultrasonic waves in the housing to eliminate false detections caused by multiple reflections.
A position change measuring device uses a heat flux sensor to detect thermal energy from an elastic member.
Two-pulse timing eliminates temperature-dependent propagation velocity errors without lookup tables or extra circuitry.
Segmenting signal evaluation into distinct temporal regions compensates for echo interference while maintaining measurement precision.
Redundant sensor modules and static antenna bands transmit strain data for gas turbine engine shaft torque measurement.
A guidance system uses spaced acoustic sensors to measure time of flight for precise leader tracking.
A flexible magnetostrictive position sensor uses a restoring mechanism to maintain element spacing for non-contact measurement.
An XMR sensor replaces detector coils to measure position via magnetostrictive wave conductors, reducing background noise and improving signal sensitivity.
Strategic magnet placement extends measurement range beyond transducer sensitivity while maintaining high accuracy.
System monitors twist signal amplitude against factory calibration data to detect degradation and trigger maintenance alerts.
A magnetostrictive optical sensor array determines object position using proximity signals.
Aligning the coil current vector with the sensor sensitivity axis reduces magnetic field noise from interconnects.
A radio wave angle sensor uses a wire grid polarization filter to measure orientation.
A magnetostrictive linear displacement transducer integrates position sensing and limit switching within a compact elongate housing.
Monolithic CMUT structures resolve assembly complexity while enhancing anti-interference capabilities through insulated electrode isolation.