Optical coherence tomography creates volumetric maps to determine carat weight and flaw mapping without removing stones from settings.
Non-linear luminescent markers upconvert excitation light to enhance emission intensity and resolution in scattering media.
A fiber optic measurement device uses reflective mirrors to direct laser beams for precise surface roughness calculations.
Beam shaping optics convert irregular multimode diode laser emission into uniform spatial intensity, resolving power and size trade-offs in sperm sorting.
A metrology target uses predetermined offsets between parallel periodic structures to enable combined imaging and scatterometry measurements.
A confocal inspection system averages incident and collected light across multiple sample locations to produce single physical property measurements.
Segment diffuse spectrum data into absorption and scattering components to resolve detection accuracy issues in complex media.
Sequential sample injections into a flowing solvent stream generate concentration peaks for real-time molecular property analysis.
Parallel detection channels replace sequential scanning to resolve the trade-off between high contrast and imaging throughput in confocal microscopy.
Photoreceiver array segments speckle patterns and coherently sums signals to improve signal-to-noise ratio in scattering media.
Dual light sources and shared optical detector resolve positioning accuracy trade-offs by automatically adjusting detection parameters for accurate readings.
Asymmetric side portions prevent water accumulation from condensation, eliminating short-circuit risks in fire detection apparatuses.
A grain angle sensor system uses an integrated electro-optical assembly to measure wood fiber orientation and dive angles across surfaces.
An elastic supporting assembly adjusts an optical-electronic detection device to optimize light projection and reflection quality.
A cuvette with a solvent-filled moat creates saturated vapor pressure to protect liquid samples from evaporation.
A smoke detector controller adjusts light emission levels to extend detection sensitivity across varying aerosol concentrations.
A vehicle sensor uses an internal light source to emit and reflect light for analyzing surface characteristics.
Replacing convex bars with a flat bar geometry prevents surface damage and allows flow measurements without disturbing the analysis zone.
A low-coherence interferometer splits electromagnetic radiation into sample and reflector arms to establish interference patterns.