Separated dual coils and ferromagnetic shielding improve magnetostrictive wave detection by reducing magnetic noise and extending sensing range.
A PEEK dielectric lens between air and hydraulic fluid preserves radar beam parallelism, reducing signal loss in piston position sensing.
A bendable waveguide sheath lets long magnetostrictive position sensors be wound for compact transport and installed in tight hydraulic spaces.
Direct SAW sensing across the rotor-stator air gap replaces indirect rotor temperature estimation, enabling tighter power margins without demagnetization risk.
A slow-wave resonant sensor uses a ceramic tube, helical conductors, and remote electronics to measure position accurately in heat, radiation, pressure, and vibration.
QCW radar and metamaterial tracks measure shaft rotation and torque without magnetic sensor drift, improving EMI resistance in harsh environments.
A PCB waveguide with reflected and end-of-line pulse compensation maintains accurate position sensing despite temperature and tolerance shifts.
Quadrature continuous-wave radar with metamaterial tracks measures shaft rotation, position, and torque without magnetic disturbance sensitivity.
A collimator focuses RF beams in a piston-cylinder sensor to improve position accuracy and cut magnetostrictive sensor complexity.
Fixedly molded magnets between an annular body and sleeve prevent sensor rod contact, improving in-cylinder position sensing reliability.
Remote sensing, valve actuation, and radio control let a water meter regulate house pressure without repeated contractor visits.
Phase-shifted transmitting conductors improve object position sensing across multiple axes and support dielectric and fluid composition detection.
Deterministic noise pattern correlation in ultrasound echo data tracks probe displacement without separate encoders, improving PAUT alignment and reliability.
Echo timing and unperturbed-signal subtraction help locate conductive material near a magnetoinductive waveguide despite closely aligned peaks.
Cross-correlation and machine-learned envelope and phase patterns improve position sensing resolution, multi-target recognition, and vibration robustness.
A deflectable optical waveguide measures electric, magnetic, or thermal effects without contact, enabling compact galvanically isolated sensing.
A reduced coil and rigid member shrink the sensing assembly, enabling magnetostrictive displacement sensing in pipes and hydraulic actuators.
Magnetostrictive sensing and a force-free reference rod separate piston travel from tie rod stretch for more precise casting gap control.
Spaced magnetic locators and a vehicle-mounted sensor enable accurate absolute guideway positioning without dirt-prone code marks.
A split-ring resonator in a sealing component detects fluid presence, leaks, and condition changes without modifying the host structure.
Four radial coils and a central RF coil localize and drive magnetic nanoparticles with less installation space and better patient access.