Hybrid TDM and WDM interrogation resolves sensor count limits by sweeping wavelengths within the round-trip time to separate reflected pulses.
A MEMS piston-tube capacitive force sensor uses segmented electrodes to detect mechanical displacement via capacitance changes.
Real-time data analysis dynamically adjusts loading sequences to prevent equipment failure from unstable parameters while ensuring complete test cycles.
Merges signal conditioning and telemetry into a single MEMS package to eliminate bulky wiring while maintaining precise load detection.
Integrating a strain gauge on the coupling member neck enables precise pressing force detection, preventing chip damage during suction.
An insulated metal sheet covers the exposed substrate between connection sites to prevent moisture intrusion and maintain reliability.
Interface circuit removes voltage offsets from stray capacitances using dichotomy algorithms for accurate measurement.
A self-referenced fiber laser sensor generates two optical waves with different frequencies to measure physical quantities directly.
Parallel detection channels segment the Brillouin backscatter signal into narrow frequency bands for simultaneous processing.