A display body prism layer features varying inclination elements that refract incident light to create shifting optical borders.
A total internal reflection prism unit redirects light through multiple surfaces to form discrete beams.
A multi-layer retroreflective film uses a buffer section between acrylic prism and strengthening layers.
Compensating prisms adjust beam path length to preserve focusing accuracy while users modify the three-dimensional effect of stereo microscope images.
Second harmonic generation detects protein conformational changes via surface-selective optical techniques.
Non-uniform lens spacing on a wavy prism sheet eliminates Moiré fringes and improves display clarity.
Dynamic optical path modulation shifts incident light across a color filter array, recovering full spatial resolution lost in conventional Bayer subsampling.
Internal reflection within a transparent optic improves handheld imaging accuracy by resolving complexity trade-offs.
Segmenting the base into bonded transmissive sheets resolves rigidity loss during screen enlargement while maintaining beam condensing efficiency.
A sheet-like optical device uses liquid crystal layers and prism surfaces to redirect sunlight.
A surface light emitter uses a transparent filler in depression spaces to redirect light toward the front direction.
An optical sheet laminate integrates a diffusion sheet with inverted quadrangular pyramid recesses and perpendicular prism sheets to direct light distribution.
Diselenide-linked silicon compounds enable self-healing in hard coating films, resolving the trade-off between thin display weight and anti-scratch strength.
A detection light source module uses a single band pass filter and light shape adjusting component to form non-overlapping sub-regions.
A hybrid wavelength selective switch merges liquid crystal and micro-electromechanical switching elements to route optical signals.
Dicing blade cutting creates angled mirror surfaces on inorganic wafers to reduce reflection loss and improve alignment accuracy.
Optical radiance collection system measures luminance, color, and contrast within the design eye box of near eye displays.
A multi-layer optical sheet uses a light diffusing material-containing layer to manage light transmission and absorption.
An atomized adhering layer bonds the optical film to the liquid-crystal display panel through adhesive and diffusing particles.
A gravity center arrangement positions the power supplier to balance a protruding optical system within an imaging housing.
A projecting system uses two separated lens sets to focus and project images with optimized focal lengths.
A prism with optimized refractive index and coating separates visible from infrared light, reducing component size and system complexity.
Evaporation directs functional material to recessed surfaces, resolving photolithography limitations for consistent microstructures.
An optical sheet laminate combines a diffusion sheet with inverted quadrangular pyramid recesses and perpendicular prism sheets to direct light.
A wavefront manipulator uses a reflection hologram and total internal reflection to direct light waves for head-up display systems.
A gaze-adaptive display uses micro-prism arrays to split light into multiple projections for spatially-variable angular resolution.
A multifocal main lens paired with a microlens array multiplies focal points to increase simultaneous image count without escalating manufacturing difficulty.
Replacing beam splitters with a wedge prism and rotating mirror eliminates 50% energy loss, ensuring nearly 100% optical energy reception.
Segmented polarization separators align color luminous fluxes, eliminating small-interval converter manufacturing constraints.
An integrated prism opto-mechanical module simplifies assembly by eliminating intermediate spacers and adhesives between total internal reflection prisms.
Segmenting the grating into alternating lens units and transparent spacers reduces crosstalk and improves resolution compared to continuous lens arrays.
Optical folding element folds the light path in multiple directions to reduce projector thickness and weight for comfortable near eye display wear.
Adjusting reflective prism angles compensates for light distortion from defects, eliminating dark lines and improving display uniformity.
A rotatable device adjusts phase shifts to optimize circular polarization at the cutting head.
A transparent carrier part features a lenticular grid structure that refracts light from an LED source to produce angle-dependent three-dimensional visual effects.
Varying prism height and pitch along the longitudinal direction reduces wet-out and moiré fringes in backlight modules.
A grooved reflector design uses the Simultaneous Multiple Surface method to couple light rays through total internal reflection.
Biaxially crystallized optical sheets suppress thermal deformation by reducing the linear expansion coefficient to 1.0×10E−5/°C or less.
A photon engine uses a piezoelectric actuator to compress prisms and form a transparent interface for light beam splitting.
Resin intermediary layers distribute thermal and impact stress between prisms and mirrors, reducing registration deviation in the projection system.
A dispersive body with curved surfaces collimates and focuses light via total internal reflection, eliminating bulky alignment.
Automated active alignment adjusts LiDAR optic modules using image sensor data to resolve optical misalignment and maintain precise component positioning.
Achromatic doublet prism array minimizes chromatic aberration in N×N lens arrays, improving image quality while maintaining compact format.
A retroreflective prism shapes laser beams using integrated polarizers and birefringence plates to control divergence.
An optical path folding element uses annular and inclined engaging structures to fold light rays through refraction and total internal reflection.
Asymmetric prisms with a beamsplitter configuration vary optical path difference by angle of incidence to improve spectral analysis accuracy.
A universal sphere mount uses a stepped body and conical nest to position spherically mounted retro-reflectors with high precision.
Triangular prism units with specific refractive indices direct light into a convergent beam, preventing privacy leakage from oblique viewing angles.