One-time molding of an integrated resin sheath around the sensor body and curved cable reduces manufacturing complexity while maintaining protection.
Segmented sensor design enables rapid replacement without full assembly removal, reducing labor costs while maintaining alignment.
Form-fitting recesses distribute thermal stresses in the magnet element, preventing cracking while maintaining a non-rotatable connection.
A counting sensor uses Wiegand module voltage impulses to track rotation direction and magnetic pole position for autonomous operation.
A method adapts position sensor readings by storing angular differences derived from theoretical timing values.
A synchronizer circuit detects quadrant transitions to determine resolver rotational direction without analog trigonometric calculations.
An integrated sensor module fuses inertial and range data to resolve drift-induced precision loss in motion tracking.
A totally enclosed electric motor uses a ventilation flue to draw air for cooling while housing internal rotation detection components.
Mechanical coupling connects optical cells to attenuate harmful vibrations, preventing dust accumulation and sensor wear on railway vehicles.
A watch crown rotor uses a recessed reflective coating to detect rotational input via an optical sensing system.