An image acquisition system captures syringe plunger position to enable automatic medication recording without mechanical sensors.
A cutting tool applies ultraviolet curable adhesive to composite film edges during separation.
A viewing angle enhancement film uses a prism layer to refract light and expand the angular range of display output.
A turning film and lenticular diffuser structure collimates light vertically while spreading it horizontally across the display surface.
A device for day lighting the interior of structure deploys reflective louvers that are spaced apart in stacks.
Integrating light absorber into prism sheet enhances color gamut while minimizing luminance loss and simplifying manufacturing.
Varying flank angles in transparent cover sub-areas adjust light distribution curves and control glare from non-uniform sources.
A prism optical system uses rotationally asymmetric surfaces and a high-index medium to form intermediate images via five internal reflections.
Independent prism mirrors correct uneven inclinations in multi-chip laser diode modules, ensuring precise beam convergence onto optical fibers.
Orthogonal pillar structures enable uniform resin flow during encapsulation, eliminating stripe-like film-thickness irregularities that degrade visibility.
A prism splits and redirects light onto adjacent detection elements, recovering lost reception efficiency from dead zones between sensors.
A prism apparatus rotates a lens and prism to stabilize images.
A cloaking device uses a prism and light guide to redirect light rays around an obstructing article.
External optical thin film widens LCD viewing angles by refracting light via refractive index differences, reducing color deviation fluctuations.
Merges RDIC, Raman, and TIRF optical paths to resolve the trade-off between multi-mode versatility and spectroscopic measurement precision.
Elongated prisms reflect incoming light rays orthogonally to enable high resolution sampling on smaller imaging systems.
Dielectric layers with convex structures refract incident light into focused spots on photosensitive regions, reducing wasted light outside sensitive areas.
A cemented prism grating dispersion element uses a wedge angle to separate ordinary and noise light paths.
A dual-sided optical film uses compound prisms and lenslets to redirect oblique light into output beams with sharp edges.
Distinct prism orientations reduce directional variation in radiation paths, enabling accurate clearance measurement despite high vibration and temperature.
An optical delay line device uses a corner-cube reflector and beam-steering element to eliminate insertion losses caused by mechanical misalignment.
A prismatic lens coupling device redirects illumination to secure adjacent light rail assemblies together.
Angled connecting surface reduces beam offset in Porro prisms by narrowing the central beam path while maintaining outer light entry and exit cross-sections.
A prism sheet with angled ridge structures redirects light from a backlight module to emit at non-orthogonal angles.
Wafer-level achromatic doublet prism array aligns asymmetric prisms to capture wide-angle fields of view in compact camera formats.
A composite prism integrates half-pentaprisms and a roof prism to enable binocular viewing in a compact optical system.
The scattering unit distributes light from various wavelength regions to individual pixels, eliminating demosaicing artifacts and preserving image resolution.
A light folding element redirects infrared light paths to compress the footprint of imaging components within a mobile device notch.
A movable collimating lens switches between two optical states to enable zoom functionality in compact folded camera designs.
A directional light distributing optical element uses a curved emission surface to collimate LED light within ±15° of the optic axis.
A composite prism light guide uses a polarization beam splitter to separate and redirect polarized light from a single source.
Segmented lens arrays redirect display light to align viewer focus, reducing image distortion in augmented reality head-up displays.
A thermally stable enclosure with high thermal conductivity materials maintains laser beam alignment across varying ambient temperatures.
A light control panel fabrication method joins transparent sheets with mirror sheets using adhesive agents to simplify manufacturing.
Prism beam splitting integrates laser distance measurement into slim binoculars, resolving structural space constraints.