Automated integrity checks use sensor, temperature, and timing data to maintain alcohol testing accuracy and deter fraudulent samples.
A sampling chamber shields NOx sensors from harsh exhaust flow and DEF interference.
Tensioned alloy foil in a hanging frame visualizes cavitation corrosion to resolve non-uniform sound field intensity and positional variability.
Multi-layer diamond-like carbon coating on shear valve members reduces friction in high-pressure liquid chromatography systems.
An apparatus generates swirling flow in pipelines using radial apertures and a flow deflection section to maintain axial fluid movement.
A particle detecting device classifies particles using a non-linear discriminating boundary defined by multi-wavelength light intensities.
A micromachined microsieve with an absorbing pad captures single cells via capillary action, eliminating the need for pressurization or pre-wetting.
Automated sampling and solvent extraction enable real-time oil phase monitoring without manual laboratory analysis.
A cone-shaped optical sensor detects liquid mist and continuous fluids by scattering light when dry and reflecting it when wet.
Three objective lenses capture fluorescence emissions for composite image generation in light sheet microscopy systems.
Functionalized waveguides enable interferometric detection of viral indicators, resolving contamination and accuracy trade-offs.
Segmented silicone wafers swell upon absorbing hydrocarbons to displace an actuator, resetting the switch and preventing delamination from water exposure.
Periodic acceleration and deceleration of the rotating reagent holder applies inertial forces that uniformly disperse microparticles in the liquid.
Laser microbeam microdissection isolates esophageal squamous-cell carcinoma cells to identify DKK1, ECT2, and CDC45L biomarkers for early diagnosis.
Melted thermoplastic media dispensed onto a specimen creates a hardened replica for microscopic defect analysis.
A continuous emulsion aggregation system produces toner particles with tight size distribution and high yield, overcoming batch process inefficiencies.
Integrated capacitive sensor manipulates single cells to measure biophysical traits, eliminating positioning errors and boosting throughput.