Fixed-condition tests can make electronics RUL estimates conservative; mission-profile data enables more accurate real-time updates.
Vertical and horizontal electrodes measure oil concentration and volume in compressor fluid, reducing unnecessary recovery cycles.
Self-capacitance sensing measures compressor oil concentration, height, and amount, reducing reliance on multiple oil-level sensor installations.
A multi-electrode capacitive sensor measures compressor oil concentration, surface height, and amount to reduce unnecessary recovery operations.
Binary input/output signal values reveal conductive moisture near vibronic sensor electronics, supporting safer operation and predictive maintenance.
Fixed settings can waste energy or reduce accuracy; this FMCW radar gauge selects duration, frequency, and repeated measurements from signal quality.
AI-based echo feature detection identifies the medium-level peak, helping users install and calibrate level measuring devices quickly in foam, dust, or agitator conditions.
A selection device automatically tunes FMCW measurement duration, frequency range, and repeat count to improve accuracy while reducing energy use.
Stored asymmetry references help a Coriolis measuring assembly distinguish partial filling from manufacturing-related sensor imbalance.
Calibrate the sensor module before final assembly, then configure installation height in the electronics module to simplify gauge production.
Shared conducting-line groups let electrode pairs preserve high-resolution interface detection while simplifying level-gauge wiring.
Flowing water disrupts radar and ultrasonic readings; a movable-focus laser detects the sludge interface while gas-liquid flushing keeps optics clear.
A chassis sensing module detects a misinstalled server air duct and alerts the board management controller before poor airflow raises component temperature.
An integrated delay line creates diagnostic signals for mixer evaluation, exposing subtle generator and algorithm faults without external reflectors.