See how an LED-based illuminated exhibit replaces candle flames in unity ceremonies, eliminatin
See how a removable framed refracting film provides visual privacy while transmitting sunlight,
Controlled particle convection forms a multi-scale antiglare surface that improves display contrast while suppressing reflection and Newton rings.
An oxidized steel surface forms a dense diffusion barrier that improves absorber coating adhesion and helps maintain vacuum in solar thermal pipes.
Controlled antiglare-layer roughness balances glare reduction, scintillation prevention, and black reproducibility in bright display use.
A diffuser and two-part optical assembly lower LED luminance while preserving pixelation in compact vehicle interior lighting.
A position-varying diffuser texture redistributes HUD backlight scattering to even out virtual image brightness without added LED array complexity.
Mini LED backlight spacing and diffusion control improve LCD HDR contrast while limiting hotspots and added panel thickness.
Biased coolant slots in a semiconductor chamber reflector limit wall hot spots, devitrification, and interior film buildup during deposition.
A shared metasurface and projection element combine homogenized flood light with focused spot patterns in one compact module for portable 3D imaging.
A stepped diffuser screen and diffractive modulation create HUD images at different virtual distances through one optical system, cutting size and complexity.
Fractal recesses on the light-facing surface increase 940 nm absorption, improve diffusion, and reduce reflections and pixel cross-talk.
Mini LED spacing, diffusion, and panel distance are tuned to deliver HDR contrast while suppressing hotspot artifacts in LCD displays.
A light guide uses total internal reflection to suppress zero-order light, enabling compact vehicle holographic lighting without viewer dazzle.
Stacked diffusion layers refract and redistribute incident light above the photodiode to raise photon absorption and quantum efficiency across wavelengths.
A stepped diffuser screen and diffractive pattern let one HUD optical system project image content at different virtual distances.
A segmented light control layer constrains display exit angles to prevent windshield reflection while preserving light transmittance.
Spaced low-haze diffusion sheets and refractive optical elements cut visible stripe patterns in head-up displays while preserving luminance.
Color- and texture-matched optical layers hide mobile photovoltaic components while transmitting light for autonomous power and longer battery life.
A closed-loop conductive check detects diffuser film shift in a head-up display and shuts off the laser before direct eye exposure.
A wedged cooling glass redirects sunlight to a light trap while preserving HUD contrast and reducing focal heat on the display.
Inwardly extending filters bridge lens gaps to homogenize light, preserving a continuous vehicle light signature and clearer signaling.
Phase modulation in one spatial light modulator creates multi-depth HUD images on separate diffusing screens, cutting module count, size, and cost.
A micro-lens array concentrates and redirects HUD light to raise image brightness while cutting power use and heat from low-utilization LCD sources.
A segmented light control layer limits display exit angles to reduce windshield reflections while preserving transmittance in vehicle displays.
A silicone-filler composition balances light diffusion with transmittance and elongation, enabling durable optical members for LED reflow use.
A 3D scattering structure replaces absorptive filters to sort light by frequency, polarization, and angle with higher sensor efficiency.
A filler-loaded curable organopolysiloxane balances light diffusion, transmittance, and mechanical durability for LED optical members.
A quartz diffusion plate with recessed spherical surfaces redirects flash-lamp light to wafer edges for more uniform heating and less wasted light.
Protruding fillers in a barrier film mat layer stop sticking and scratch damage between wavelength conversion sheets and display plates.
A single lens combines diffusion and focusing to shape flood-illuminator output while cutting optical parts, alignment effort, and cost.
A 3D scattering structure sorts light by wavelength and polarization to improve compact image sensor efficiency beyond absorptive filters.
A high-softening-point polyurethane primer with silane coupling helps wavelength conversion sheets resist peeling and phosphor degradation in heat and humidity.
A UV-curable optical resin spreads LED light more uniformly while protecting metal parts from oxidation and suppressing resin discoloration.
Laminated dielectric layers absorb external reflections on self-luminous displays, cutting glare while preserving luminance and contrast.
Conical-tip and columnar-leg protrusions on a curved surface create a gentler refractive index change and suppress electromagnetic wave reflections.
Crosslinked beads in a transparent plastic diffuser soften LED glare while preserving light transmission and improving hiding power.
Bent signal lines and segmented common electrodes cut coupling capacitance and moiré without organic films, supporting large 3D displays.
Nested carriers decouple optical motion axes so dedicated actuators move only the needed mass, cutting power use in multi-direction positioning.
Smaller glass powder in the reflection layer matches softening during co-sintering, improving adhesion to the substrate and layer stability.
A matrix light-shielding frame and diffusion film smooth LED lamp bead output, reducing granularity and dark streaks while raising pixel filling rate.
Mounting the diffuser to the case instead of the light emitter cuts redesign cost, avoids SMT contamination, and prevents wire-bonding collisions.
A tuned diffusion layer preserves 3D phosphor patterns in vehicle lighting while improving light distribution, color expression, and efficiency.
A light scattering film and haze layer suppress moiré between sub-pixels and lenticular lenses, improving 3D display realism.
Scattering layers with diffusing portions and black matrices even out RGB angular light output to keep micro LED white balance stable.
Multiple reflective passes expand EUV beam etendue and homogenize intensity, helping lithography avoid interference patterns.
An inclined reflective sheet with localized light-adjusting regions spreads backlight more evenly at LCD edges, reducing shadows and hotspots.
Nanoscale high-index particles and mixed resins form a phase-separated film that resists settling while lowering visible transmittance.
A GMA- and HALS-based UV-curable resin improves LED sealing adhesion, limits metal oxidation, and preserves optical stability in harsh conditions.
A diffusion layer between resin and patterned phosphor preserves 3D lighting effects while improving luminance and limiting loss from uneven thickness.
An anisotropic optical film diffuses OLED panel light by incident angle to hide the black matrix and improve VR immersion without coloring.
A wavelength-selective beam-splitting film and diffuser plate improve light use and reduce brightness non-uniformity in thin display modules.
A high-index encapsulated diffuser blocks contaminant index-matching, reducing laser hot spots and protecting optical performance.
Wavelength-dependent scattering keeps visible displays uniform while limiting infrared diffusion for clearer sensor images.