Continuous pressure sensing detects battery housing expansion early, allowing charge current or voltage adjustment before swelling damages nearby components.
A tuned Cr-Al-N film composition limits property shifts from composition variation, preserving gauge factor and simplifying pressure sensor calibration.
Lift pin load sensing identifies the de-chucking state before unloading, helping prevent substrate damage from residual electrostatic charge.
A deformable airflow sensor uses resistance change and time-threshold detection to improve puff accuracy while reducing contamination risk.
A force-measuring element in the spindle load path gives trailer landing gear reproducible force data for load indication, overload detection, and safer parking.
Load sensors and a motorized controller track cargo restraint tension in real time, auto-adjust securement, and alert drivers before loads loosen.
A transparent conductive layer couples grid and knob electrodes to add center-area sensing and improve signal quality without blocking the display.
Oxygen and nitrogen control during film deposition tunes TCR while preserving high k-factor, simplifying strain and pressure sensor production.
A shear-thinning gallium alloy gel solves leakage and oxidation in stretchable conductors while staying highly conductive and easy to pattern.
A layered electrode layout with electrostatic shielding separates proximity and pressure sensing to improve detection accuracy despite conductive rubber variation.
Integrated power and wireless sensing inside a suspendable bundle scale improves weighing accuracy under forest-machine vibration and impact.
Resistance-based pressure pads and cell-voltage monitoring let the BMS detect swelling and low-voltage abnormalities before heating or explosion.
A six-axis force-sensing stick replaces multiple vehicle switches, detecting push and twist inputs so drivers can control functions without looking away.
A widened expansion groove in the shock absorber absorbs sensor tube length errors, easing bumper assembly without reducing sensing accuracy.
Optical FBG strain and temperature sensors enable real-time force monitoring near sintering and encapsulation zones under high pressure and heat.
An elastic insulating member keeps coaxial conductors separated while absorbing bending strain, cutting spacer-related cost and complexity.
Mechanical preloading and on-board signal conditioning make FSR arrays sensitive enough for low-force tri-axial tactile feedback in robotics.
Pressure sensing across vehicle seat regions turns subjective body feeling into quantifiable ride comfort scores for more accurate evaluation.
A pressure-protected sensor housing enables wireless subsea connector health monitoring without disconnection, reducing downtime and premature replacement.
Distributed sensing nodes and a pressure transmission plate capture full-surface cell swelling while preventing localized damage and fire risk.
An integrated switch sensor detects axial overload in chassis components, enabling warnings before fatigue damage without added mass.
A layered electrode and insulating structure enables capacitance-based measurement of XY shear force alongside Z-axis pressure distribution.
Capacitance sensing through a layered film on vehicle glass distinguishes attached objects from simple contact, reducing false alerts.
FBG strain and temperature sensors mounted on force-loaded parts enable accurate monitoring near the sintering or encapsulation region.
Capacitive coupling through a dielectric-covered, shielded electrode layout enables repeatable soft-component connections without piercing, corrosion, or signal noise.
An angled strain beam and strain gauges detect loose or compromised cargo straps and enable real-time tension alerts for safer transport.
An integral securing ring in the rotor assembly creates a play-free rotor-housing connection while simplifying assembly and reducing stress.
Integrated wiring and electrodes on a flexible substrate remove lead wires, shrinking strain gauges while improving connection reliability and noise resistance.
A buffer member and movement regulator absorb collision loads in a vibration actuator, protecting the load sensor and reducing noise.
Pressure-based release sensing replaces fixed switch segments, letting camera autofocus and imaging strokes be adjusted more easily.