Indirect force sensing compares actual and theoretical nut position to improve cable actuator accuracy under vibration and impact.
Load sensors on rotorcraft support rods balance rotor output before liftoff, reducing control delay and takeoff instability.
Capacitance sensing in a pallet-mounted measuring component enables precise automatic goods tracking and timely inventory reordering.
Segmented photoelasticity and thickness analysis grades stress across glass sheets in real time, reducing yield loss and process variation.
Two absolute pressure sensors replace a through-hole differential sensor to detect gas pressure changes and trigger shutoff with lower leak risk.
Movable measuring segments capture web tension across the width, helping control winding and reduce rejects from uneven strip tension.
Embedded strain gauges in a compressible pig map pipeline defects and deposits while passing severe constrictions without jamming.
Observed and predicted steering rod strain are compared over time to detect friction, wear, and damage in autonomous steering systems.
Load sensors on support rods let rotor output balance fuselage loads faster than gyroscope-based control, improving takeoff stability.
Segmented lamellae with embedded optical fiber sensors improve flatness roller sensitivity, spatial resolution, and thin-strip control.
Embedded strain and temperature sensing in the tool pack enables real-time can forming force data, helping detect die wear and punch misalignment.
Embedded strain gauges in a compressible pig map pipeline deposits, obstructions, and profile changes without jamming in constricted sections.
A strain gauge test instrument measures rivet nut tool pull force in real time, enabling precise adjustment and preventing thread damage.
Opposed bending beams and torsion beams counter released internal stress in a MEMS hinge, keeping the movable part centered and gauges stable.
Integrated sensor plates track die force and temperature in can-forming tool packs, enabling punch concentricity checks and better wear control.
Force sensors track seal compression in vacuum valves to maintain gas-tight sealing, limit wear, and support predictive maintenance.