Existing measuring units detect optical signal deviations to verify cartridge mounting, eliminating extra sensors and reducing device complexity.
Calculates contrast values via Beer's Law to identify missing material defects, eliminating trial-and-error wavelength selection and reducing time wastage.
A scalable monitoring system integrates electrodes and optics into cell culture consumables for real-time, label-free detection of growth parameters.
Suspended point-to-point scanning reduces off-axis light scatter and glass bed interference to improve quantitative dose measurement accuracy.
A gas concentration measurement device uses a pressure sensor and arithmetic circuit to apply refractive index correction factors.
Compressed gas orifices clean optical windows in particle measurement systems.
A gas sensor uses coupled reflective surfaces to condense infrared light within a compact cavity.
A beam shaping lens transforms non-uniform LED light into a uniform distribution, resolving measurement inaccuracies caused by irregular intensity patterns.
A laser beam generates excited carriers in a semiconductor structure to enable non-contact defect analysis.
An automatic analyzer measures washing liquid carry-in amounts using evaluation reagent absorbance.
Optimizing wavelength modulation amplitude reduces pressure dependency in gas concentration measurements, eliminating the need for external pressure sensors.
A tapered waveguide member reflects obliquely incident infrared light before it reaches the band pass filter.
A measurement system mounts eyeglasses on a support to simulate position of wear and detects transmitted light for spectral analysis.
A seal encloses the light source and receiver on a substrate to block external influences.
Adjusting a movable reference material in the optical path eliminates external mirror reflectivity variations and reduces calibration frequency.
Fourier transform infrared spectroscopy determines crude oil properties directly from density and spectral data, bypassing time-consuming distillation.
Cantilever support units position near-infrared optical modules to inspect articles through conveyor gaps, eliminating layout complexity.
Localized surface plasmon resonance on immunogold nanorods detects LC3 in femtomolar ranges, overcoming sensitivity limits of Western blot and ELISA methods.
A wearable system measures exhaled carbon dioxide mass using a capture device and respiratory inductive plethysmograph sensor.
Coaxial parabolic reflective caps guide divergent light beams to a common focal plane, reducing manufacturing precision requirements for optical alignment.