An optical filter uses dispersed fine particles to scatter visible light while transmitting infrared radiation.
A press sheet integrates a microstructure layer and diffusion layer to distribute light across a transparent substrate.
An antiglare hard coat film uses controlled surface roughness to suppress glare while maintaining high transparency.
An optically diffusive layer with high haze protects the retroreflective surface from contamination while maintaining daytime visibility.
A reflective display body incorporates a light diffusion control layer with specific angle and haze parameters to manage incident light distribution.
Thick silicon nitride layers provide high hardness to resolve wear resistance trade-offs against optical performance in display readability applications.
Segmented barriers stabilize fluid states in electrowetting displays, enabling low-power gray-scale representation without continuous voltage.
Multiple optically anisotropic layers average in-plane diffraction efficiency, minimizing intensity variations across different incidence angles.
A beam modulation apparatus uses a polarizing beam splitter prism and dual liquid crystal on silicon panels to control light polarization states.
Two-dimensional light diffusion channels separate scanning laser light into distinct optical paths, suppressing luminance unevenness across the display.
Plastics film replaces glass beads with scattering particles to reduce speckle and manufacturing cost while maintaining brightness.
Segmented inkjet formulations control viscosity and surface tension, enabling precise positioning of functional dots on curved optical substrates.
Laser fusion of coating particles forms a light-scattering surface that reduces glare while controlling sparkle and distinctness-of-image.
A single optical film uses melt extrusion to create tilted alignment in its inner part while keeping the surface aligned.
A polarization-selective scatterer passes ambient light without scattering while diffusing orthogonal display light.
An optical diffusion film uses irregular convexities to diffuse light across a wide range while maintaining high transmission image sharpness.
A visibility improvement sheet uses light absorbing portions with substantially rectangular cross sections to regulate light transmission.
A display device uses a light refraction portion to orient emitted rays toward the center of the panel surface.
Bimodal particle distribution in acrylic diffusion material resolves spectral uniformity losses near UV wavelengths while maintaining hiding performance.
Spherical microlens arrays on fluororesin films concentrate sunlight from various angles, eliminating the need for active sun-tracking systems.
A dual-layer optical member uses wavelength-varying refractive indices to enhance light extraction and reduce alignment defects in display assemblies.
Antiglare film uses high retardation polyester and composite particles to suppress rainbow interference patterns while maintaining display contrast.
Electrostatic attachment eliminates adhesive pollution and manufacturing costs while color-coded films prevent assembly orientation errors.
Reflective polarizers recycle unused light back to the backlight, resolving calibration complexity while enhancing contrast ratios.
A diffusion lens layer with square pyramid-shaped lenses featuring curved edges and symmetrical surfaces directs light from small-sized LEDs.
A smart scale maintains culinary ratios by exchanging real-time weight data with a computing device to guide ingredient assembly.
A light diffusion member with micro-lenses on a convex base surface prevents mold interference by maintaining an edge angle larger than the base surface angle change.
A textured window film refracts light at random angles to distort images, resolving the contradiction between visual privacy and aesthetic brightness.
Segmentation and local quality resolve the contradiction between virtual image visibility and real-world view clarity in head-mounted displays.
Segmented high-refractive-index columns within a matrix broaden diffusion angles while eliminating rainbow interference.
Segmented lens and filter layers diffuse visible light while blocking infrared interference to improve measurement accuracy.
A polarizing plate uses a perpendicularly oriented discotic liquid crystal dichroic dye to absorb side light while transmitting front light.
A light diffusion unit with a two-dimensional channel array scans laser beams across a display surface.
A micro-lens array with asymmetric pitch configuration equalizes directional pixel pitches in projection optical systems.
Microlens units converge light onto a total internal reflection layer while an absorbing layer blocks ambient interference.
A conformal optical thin layer matches the refractive index of a diffuser polymer to reduce surface light reflection.
A light diffusing polymer composition blends matrix and diffuser particles to achieve high transmission.
An antireflection film applies specific roughness skewness and slope angle values to minimize sparkling phenomena while maintaining high screen sharpness.
Graded refractive index layers in the antireflection film reduce reflectance and maintain neutral color tones for obliquely incident light.
An actuator drives a leaf spring diffuser assembly to reduce laser speckle in holographic projectors while maintaining image focus.
Field lens projects virtual images at controlled distances to align reflections, eliminating ghost images without wedged windscreens.
Phase separation creates a rough surface that resolves the trade-off between suppressing Newton's rings and maintaining high-definition display visibility.
Scattering particles in the cover redirect directional LED light to improve visibility while maintaining low luminosity when unlit.
A light field display redirects pixel light through optical lenses to create angular images with perceived depth planes.
Multiple optical systems with beam expanders and pyramid scatterers resolve non-uniform intensity distribution over large skin areas.
A colloidal amorphous optical filter uses dispersed fine particles in a resin matrix to achieve high infrared regular transmittance.