Segmenting diffractive orders eliminates spot doubling during air-based testing, improving measurement accuracy without water immersion.
Merges separate analyzers into one platform using a universal sample handling protocol, eliminating transportation time between instruments.
A detection device uses dual-interface light scattering to generate reference and measurement signals for contamination analysis.
A gas detection device uses a detachable adjusting device to pivot functional units about two axes for precise alignment.
A water analysis device uses a bayonet lock mechanism to secure the cover assembly and maintain a fluid-tight seal.
Optical detection assesses surface roughness to schedule maintenance, reducing aerodynamic drag without increasing operational downtime.
A detachable optical probe connects to a main element via an aperture while a light block element covers the emission port to prevent stray irradiation.
A diffractive waveguide grating with structured receptors detects target compounds via Bragg diffraction.
Remission and autofluorescence measurements correct fluorescence intensity for tissue optical properties, improving ZnPP/heme ratio precision.
A monitoring device detects light beam intensity using scattered radiation from a dedicated member to regulate source output and correct measurement results.
Optical measurement of light absorption and scattering by suspended solids enables rapid inline detection, eliminating time-consuming gravimetric filtration.
Dual light detectors measure reflected and diffuse light ratios to distinguish coated from uncoated paper, resolving accuracy versus complexity trade-offs.
A multimode plasmon waveguide resonance sensor uses a dielectric grating to excite distinct transverse magnetic and electric modes at one wavelength.
A tuneable laser and detector integrated on a common chip module generate synchronized optical signals.
A flow cytometry system uses a wavelength separator to convey light from particles for spectral discrimination.
Side scatter and fluorescence signals distinguish fragmented red blood cells from microerythrocytes in blood samples.
Annular mirrors and scattering bodies direct light to enhance turbidity detection, reducing sensitivity to geometrical inaccuracies.
External sampling volume removes internal baffles to reduce lag time and enable continuous self-testing of the smoke-detecting element.
Coherent point microscopy measures light intensity patterns related to the Fourier transform of a sample's scattering matrix.
A sample observation device uses planar light scanning to generate fluorescent and scattered light images for precise area definition.
A multi-sided transparent body integrates lenses and a beam splitter to couple light between optical waveguides and optoelectronic devices.
Angular light scattering detects X and Y sperm nuclei, eliminating marker agents that damage cells.
A rotating cylindrical cell enables continuous optical measurement of fluids by keeping the internal cleaning mechanism outside the light path.
Live-cell computed tomography rotates suspended cells to reconstruct isotropic three-dimensional images without immobilization artifacts.
Optical flop measurement predicts wet coating mottling by correlating reflected light angles with rheology additive levels.
Concave parabolic mirror redirects scattered light through an aperture to a detector.
A liquid calibration composition with metal oxide particles and controlled pH improves infrared light reflectance sensing accuracy.
Optical branching splits scattered light into two paths, enabling accurate discrimination between concave and convex defects in EUVL mask blanks.
Interferometric coherence gating isolates depth-resolved light scattering to measure local ECM stiffness without invasive mechanical probing.