Cable-free Hall sensing tracks hydraulic piston position through each stroke and reports abnormal pump behavior in real time.
Sensor-driven chamber volume adjustment changes shear-thickening fluid response to restrain unwanted piston motion across varying forces.
Sensors and emitters regulate shear-thickening fluid bypass flow to vary piston damping across changing forces and suppress unwanted motion.
A zinc-nickel plated steel sensor cap nut resists saltwater corrosion, keeps fastening strength, and avoids lead-based RoHS issues.
Side-specific collision sensing lets the robot turn away from obstacles and continue forward while avoiding re-travel of completed areas.
A plunger and non-contact sensor detect lock-ring engagement, improving split-mu traction while avoiding tire scuffing in turns.
Dynamic voltage regulation keeps hall sensor common-mode voltage near a reference, improving OIS lens position detection under bias and temperature shifts.
A trained prediction model reviews captured images, triggers accept or retake actions, and cuts manual error correction time.
Current and voltage feedback estimate MRI eddy currents in real time, correcting gradient coil commands to preserve image quality.
A supplemental switch-drive signal augments slow Hall sensor feedback to curb inductive-load current overshoot and improve response.
Combining magnetoresistive signals with Hall polarity detection resolves 360° angle ambiguity and improves absolute electrical angle accuracy.