A bearing-mounted VR sensor follows shaft motion to maintain a constant gap, improving twist accuracy without drivetrain stiffening.
A magnetic torque detector uses a rotating flux generation unit and sensor to measure torsional displacement via changing magnetic flux density.
A torque sensor uses a bushing to isolate torsion from a rigid sleeve, enabling precise measurement within compact robot arm joints.
A torque sensor uses segmented measuring pockets and stiffening webs to isolate shear force transducers from disruptive bending stresses.
A torque tube sensor integrates strain gauges and a permanent magnet stator to generate electrical power for wireless data transmission.
Localized shot peening transforms austenite to martensite, improving sensor sensitivity while maintaining shaft toughness.
A heterogeneous sensor system merges magnetic field and inductive sensing elements to detect target orientation.
A multi-turn detection unit stores rotation positions using magnetic storage methods without external power.
Segmented detection coils with distinct inclination angles form a series-parallel circuit that cancels offset voltages caused by relative shaft eccentricity.
Segmented electrode pads on a circuit board reduce signal line complexity while maintaining accurate contact force detection.