Mechanical interlocking structures maintain magnetic segment synchronization when adhesive bonds fail, preserving torque measurement accuracy.
A lever assembly amplifies pushing force to a sensor, resolving the trade-off between high-speed detection and measurement precision.
A segmented stator holder design separates receiving and fastening regions to accommodate standardized components.
A substrate cutout positions collectors closer to surface-mounted sensors, reducing magnetic flux leaks and detection errors caused by detector tilting.
A torque sensing gear structure uses magnetic rings and a flexible element to detect rider force via Hall Effect sensors.
A torque sensor device uses insert-molded shield ring pieces to integrate magnetic shielding and structural support within a simplified housing assembly.
Opposing magnetic flux paths cancel external interference fields, enabling accurate torque measurement without complex compensation mechanisms.
Dual elastic pieces with overlapping spring arms stabilize the vibration unit on the Z-axis and prevent Y-axis shifting.
A soft magnetic component uses specific Fe-Ni alloy composition to suppress internal compression stress during resin molding.