A spectroscopic measurement device uses a transmissive phase shifter to create optical path differences between measurement beams.
Fiber holder with fitting recess secures optical fiber against twisting stress from ejector pin movement.
A shared vacuum pumping system reduces device complexity by routing gas molecules through a valve manifold block.
Derives a filter controlling expression for Fabry-Perot interference filters by modeling mirror elasticity and electrostatic forces.
Mixing a violet LED with a tungsten lamp compensates for low short wavelength intensity, improving spectral measurement accuracy.
A color sensing device uses a tapered optical element to generate a spatially uniform light beam for consistent sample illumination.
Spatial dispersion converts spectral data into position offsets, enabling single-shot three-dimensional imaging without mechanical scanning.
An LED below the recording point illuminates the area through a transparent base, enabling precise sample application and reducing contamination risks.
Analyzes Rayleigh and Raman scattering signals from varying incident light properties to determine chemical composition without exogenous labelling agents.
An isolator prevents sample substances from coating mirrors in a cavity ring-down spectrometer, maintaining reflectivity stability.
Ultraviolet decontamination eliminates chemical residues while motion detection prevents unsafe radiation exposure during use.
A multidimensional spectrometer encodes frequency information into laser pulse temporal characteristics for intensity detection.
Optical contact between a solid immersion lens and a focal plane array reduces pixel spot size, lowering dark current while maintaining field of view.
A direct detection method measures signal intensity at multiple points to calculate phase information without mixers or local oscillators.
A single-shot angle-resolved spectral reflectometry apparatus captures absolute reflectance and phase data across broad wavelength ranges.
Effluent temperature correlations infer non-imaged tube heat, resolving manual monitoring delays and reducing device costs.
A dual-laser Raman spectrometer system combines 785 nm and 852 nm excitation sources to capture comprehensive vibrational data.
A photosensitive element with a comb structure detects light dose through permanent material property changes between electrodes.
A self-compensated optical detection system extracts wavelength information using directional couplers and phase tuning elements.
Supercontinuum laser illumination generates resonance Rayleigh scattering to resolve visibility issues in mixed carbon nanotube samples.
A transmissive volume phase holographic grating disperses sample light to photodetectors in scanning microscopes.
Metrology system uses synchronized shutters to alternate probe signals on a single detector for precise wafer thickness measurement.
A 3-dimensional measuring device uses a reference light optical system to receive and reflect range-finding light as internal reference light.
Dome and flat diffusers scatter light to the sensor module, resolving measurement precision versus device complexity trade-offs.
Segmented reflector with through holes directs coolant gas to lower lamp surface temperature by 45°C while maintaining high radiation intensity.
Multi-wavelength absorbance analysis identifies Wright Giemsa and May Grunwald stains, preventing misidentification from visual inspection limitations.
A deformable container within a spectroscopic instrument compartment adjusts volume to equalize pressure differences.
An adjustable 3D sensor clip protects color sensors from high light intensity damage through optical attenuation while ensuring accurate measurement precision.
Infrared thermography measures lateral heat flow to determine thermal diffusivity and porosity, eliminating the need for thickness calibration or curve fitting.
A calculating unit derives yellow wavelength intensity from differential signals of yellow and red filters.
A photo sensor array combines filtered photodiodes with mathematical coefficients to approximate an ideal spectral response curve.
Dynamic sweep profiles skip guard bands to reduce interrogation time and improve measurement accuracy.
A paper-sheet recognition apparatus adjusts light emission cycles per wavelength to acquire tailored optical signals for specific recognition tasks.
A three-lens zoom beam expander adjusts magnification from 2x to 16x for ultraviolet laser processing.
Multivariate optical computing systems isolate specific spectral regions using bandpass filters to enable precise chemical property estimation.
Portable infrared spectroscopy replaces complex laboratory chromatography to detect nitrates and TSNAs in tobacco, reducing processing time and waste.
A slim desktop currency detector integrates overhead UV and backlight illumination with a translucent diffuser panel for safe examination.
Dynamic sensor selection and parameter adjustment reduce processing power waste while improving landing zone detection.
A multi-UV-LED probe system captures simultaneous fluorescence spectra using a stationary spectrometer and fiber optic bundle.
A spectroscopic sensor integrates angle limiting and band-pass filters on a semiconductor substrate to control incident light angles.
Adjusting underlayer thicknesses equalizes optical path lengths at zone joints, reducing dispersion and improving wavelength calibration accuracy.
A spectral imaging system applies optical coding to input light fields for reconstructing data through a detector array.
A test device integrates an infrared detector within the battery cell structure to capture real-time spectral data from the electrolyte.
Electrodes with nanoscale metal fibers integrated into vehicle seats detect driver heart rate and brain waves.
Segmented wearable modules monitor vital signs and hazards to reduce responder fatigue and injury risks.
Parasitic heat sensing pixels capture housing radiation to estimate thermal flux, correcting image signals without external temperature probes.
Aperture arrays in the focal plane vary spatial resolution while Schwarzschild objectives reduce vignetting to maintain signal strength.
Wavelength-dependent interferometry measures lipid and aqueous tear film thickness to resolve dry eye diagnosis inaccuracies from layer interactions.
Multispectral imager captures images at multiple wavelengths and focal points to form a spectral image cube.
UV-activated dyes on welding apparel change color to signal radiation presence, reducing cumulative exposure risks.