Anisotropic inorganic fillers in resin housings improve thermal conductivity for processing devices, resolving weight versus heat dissipation trade-offs.
A stereoscopic projection system uses lens arrays to focus images directly onto observer eyes without requiring glasses.
Arranging SVVRON emitters in a hemispherical layout preserves angular information lost by flat arrays, enabling natural 3D viewing.
A compact stereoscopic viewfinder uses a semi-reflective plate and deflecting mirror to arrange optical axes perpendicularly.
A stereoscopic imaging system segments display time into phases to project combined images simultaneously, boosting brightness intensity.
A detection area setting device adjusts imaging areas after displacement to maintain focus alignment.
Liquid-crystal silt layer directs polarized images through specific visual fields, preventing interference and improving resolution without special glasses.
A polarization imaging system projects multiple views onto pixel areas using distinct semi-area orientations to enhance display resolution.
Replacing sheet polarizers with a wire grid structure reduces heat absorption, eliminating cooling fans while maintaining polarization efficiency.
Stereographic camera system with preset modes automatically configures interocular distance and convergence angle for optimal 3D image capture.
Merging support and magnet functions into the lens holder reduces component count, resolving size constraints in compact camera modules.
A dual diffractive optical element configuration redirects zero order beams to form secondary patterns.
Asymmetric camera module arrangement widens field of view while enabling universal components to boost manufacturing productivity.
A dual camera platform relocates the beam splitter support frame to the exterior space between orthogonal walls.