Segmentation and self-service mechanisms isolate UV-C bulbs from users, resolving safety hazards while maintaining rapid disinfection.
A transmissive window and fluid layer enable accurate infrared sensor calibration for semiconductor emissivity measurement.
Near-infrared imaging captures reflectance spectral data from plant embryos to classify types and assess germination potential.
A test cell design integrates conductive elements and a transparent window to enable precise optical registration of the sample.
A color measurement carriage exposes a sensor through an opening while interposing first and second measurement portions to specify patch positions.
Automated seed sorter captures multi-angle images to identify phenotypes, replacing manual inspection that causes slow throughput and high error rates.
A spectroscopic sensor uses plural light band-pass filters and photosensors to detect specific wavelengths.
A compact spectroradiometer uses interchangeable optical paths to measure spectral irradiance and color characteristics.
A near-infrared calorie measurement device uses multiple regression analysis to calculate food energy content from optical absorbance data.
Fiber-coupled terahertz probe detects hemorrhage and Alzheimer's markers without invasive procedures, enabling rapid emergency assessment.
A miniaturized analyte detection apparatus uses a radiation source and receiver with multiple analysis devices to separate spectral components.
Asymmetric arms eliminate complex etalons, resolving the trade-off between measurement precision and device weight.
A passive adjustment mechanism rotates narrowband optical elements to maintain spectral alignment with a laser source across varying temperatures.
A portable measurement apparatus uses integrated optical sensors to identify unknown substances and transmit results via cellular networks.
A downhole tool vaporizes hydrocarbons using laser irradiation to measure formation properties at specific wellbore depths.
A Raman microscopy device combines a pulsed pump beam with a continuous Stokes beam to enable real-time imaging.
A tunable chip-scale interferometer uses slot waveguides to induce relative time delays between optical signals.
Monitoring probe heater current draw enables accurate remaining useful life prediction, preventing unexpected failures in harsh aircraft environments.
Sequential admission of spectral components via a diffraction grating reduces device complexity and cost while maintaining high measurement precision.
Applying segmented white balance corrections based on infrared illumination detection resolves color accuracy issues in mixed lighting scenes.
A spectrometer order sorting filter uses alternately applied optical thin layers on a quartz substrate to separate diffraction orders.
A laser microscope frequency dispersion adjuster equalizes optical path dispersion to enable coherent anti-Stokes Raman scattering and multiphoton fluorescence imaging.
An Ag-Bi-Nd alloy film reflects and transmits light through an interference filter.
A co-packaged optical switch uses a moveable reflective element to steer wavelengths across shared free space optics for simultaneous signal routing.
Replacing bulky gratings, the tapered multimode waveguide achieves high spectral resolution across 400 to 2400 nm using transverse interference patterns.
An infrared measuring system integrates a detector array and distance device to evaluate temperature data.
Rotating helicoidal prism varies optical path length to eliminate acceleration-deceleration cycles and increase scanning speed.
A color sensing circuit integrates a light detector with a charge storage device and signal processing circuit to accumulate photocurrent.
A UVC flame sensor uses a non-imaging collector optic to concentrate energy onto a detector.
A color measurement system calculates a radiance transfer factor to predict object appearance under arbitrary illumination conditions.
Segmented pixel units with adjustable interferometers resolve the trade-off between multi-wavelength detection capability and measurement resolution.
Integrating light splitting and guiding functions into one waveguide eliminates complex micro-nanostructures, boosting efficiency for micro-fluid detection.
Silicon oxide cavity and coupling layers stabilize light transmittance, preventing degradation from temperature and humidity changes.
A spectroscopic analysis system applies a conversion function to reconstruct spectral data from field calibration spectra.
A terahertz spectroscopy system uses a visible light reference image to align the radiation head with the target surface.
Metal aperture array structure supported by a recessed base to maintain detection sensitivity for electromagnetic wave analysis.
A confocal microscopy system generates a dispersed structured illumination grid of beamlets across sample regions.
Segmented transparent zones on a polychromator substrate detect selected spectral bands, reducing system cost and vibration sensitivity.
A spectrometry device uses a single optical path to detect reference and measurement spectra simultaneously.
An enclosed spectrometer system measures light transmission through opaque coatings to resolve measurement precision versus device complexity.
Fiber optic sensors detect LED color and brightness to reduce manual verification time.
Segmenting the optical path prevents dirt accumulation on outer areas, ensuring reproducible non-contact temperature measurements.
A narcissus mirror reflects cold radiation to create high-contrast artifacts, resolving poor sensitivity in shock and vibration tests.
Gradient index lenses in a fiber optic probe resolve individual spectral peaks while maintaining high collection efficiency.
An anti-reflection coating on a protective plate minimizes stray light re-reflection, improving detection accuracy and linearity for UV measurements.
CO2 laser plasma generation minimizes neutral particle deposition on collector mirrors, extending optical component life and maintaining reflectance.
Automated color matching system calculates pigment quantities using spectral data and reflectance measurements.