An interference filter replaces conventional color filters in an LCD panel, reducing mask count and production time.
A black matrix opening reveals an alignment mark for accurate positioning during edge grinding and polarizer attachment without adding drive ICs.
A silicon optical modulator rib waveguide structure with multi-etched slab regions and optimized doping levels.
A free-form lens covers a diffusion structure to redirect light from an LED chip, reducing module thickness without requiring high manufacturing precision.
Segmented alignment and organic film layers on substrates compensate optical properties across regions, reducing color shift in wide viewing angles.
Segmented dielectric layers on reflective electrodes improve display luminance while preventing burn-in from asymmetric electric fields.
Integrating the passivation layer with the case window reduces device thickness and weight while improving manufacturing productivity.
A transmissive layer with sub-layers creates a flat surface for the planarization coating in display devices.
Planarized BARC fill layers eliminate via support indentations on micromirrors, reducing light scattering and improving contrast ratios.
Inclined passivation planes block light leakage and prevent parasitic capacitance without metallic black matrices.
A color electrophoretic display uses achromatic particles to render a black trace before applying chromatic color.
A reflective layer guides curing light to ensure complete sealant polymerization in liquid crystal displays.
Telescopic optics and volume gratings increase the exit angle of diffracted light, resolving the trade-off between wide field of view and thin device thickness.
A micro/nano-porous polymer capping layer prevents electrolyte corrosion of the metal layer while an adhesion layer secures graphene to resolve delamination.
Segmenting the common line into a meshed structure reduces overlaying area, addressing bright-dark lines caused by significant capacitance coupling.
Segmented transition zones with variable light-shielding blocks mitigate jagged visual artifacts along curved screen edges.
Holes in the reflector side wall allow excess light rays to pass through, reducing edge luminance and improving display uniformity.
A transflective liquid-crystal display uses a pixel electrode fringe electric field to orient molecules.
A black conductive sealant absorbs external light to minimize leakage at the sealing portion, preventing visibility of the step compensation layer.
A liquid crystal panel positions the LC layer between a color filter and a black matrix grating to enable dual-viewing functionality.
A display device lowers volume resistance via a protective film with higher silicon than nitrogen content, reducing image sticking and flicker.
An annular light-shielding layer with a reflecting surface prevents blue spot leakage while maintaining high aperture ratio.
Passivation layers enclose semiconductor layer ends to prevent dry etch damage, short circuits, and disconnections in optical sensors.
Insulating layers inside via holes block static electricity discharge that causes overheating and explosion, ensuring even brightness and improved reliability.
A transparent electrostatic shielding layer on an overcoat reduces static-induced display irregularities in lateral field liquid crystal devices.
A first protruding portion extends into gaps between reflective portions to constrain silver ion migration paths within the array substrate.
A display panel uses non-integer light control unit ratios to manage backlight transmittance across stacked liquid crystal and optical layers.
Segmenting charged and uncharged particles resolves the contradiction between color versatility and brightness deterioration in electrophoretic displays.
Light-blocking patterns in organic layers narrow the viewing angle of a display device.
Auxiliary spacers prevent main spacer sliding into the display region, maintaining cell gap and aperture ratio.
Asymmetric coupled waveguides enhance electro-optic field interaction, resolving low modulation efficiency caused by large waveguide spacing.
Segmented optical compensating members reduce black brightness and coloring at oblique angles by addressing wavelength dispersion effects.
A liquid crystal display device features a detachable digitizer installation unit housing the input component.
Correlating modulation voltage with output power to determine bias adaptation in electro-optic modulators.
Stem and branch electrodes reduce disclination to improve transmittance in horizontal slit mode.
A liquid lens uses an oil mixture with a refractive index matched to the chamber material.
Merging touch sensing elements with display common electrodes eliminates separate add-on layers, reducing device thickness and manufacturing complexity.
A V-shaped main slit between pixel electrodes guides liquid crystal molecules to enhance wide viewing angles.
A moisture impermeable layer sits between a resin layer and sealant in liquid crystal displays.
Asymmetric spacer placement compensates for rubbing variations, reducing edge mura and improving display homogeneity.
Electrode slits in a display panel adjust sub-pixel transmittance to resolve aperture ratio differences and color shifts.
A liquid crystal display device integrates a compensation film between polarizing members to manage optical phase differences in the ECB mode panel.
An image display medium employs a low Young's modulus bonding layer to prevent peeling and charge leakage while maintaining sufficient insulation.
A liquid crystal layer incorporates color quantum rods aligned with the liquid crystal molecules to enhance polarization efficiency.
Segmented metal films and dielectric layers achieve isotropic conductivity while resolving the trade-off between transparency and electrical performance.
Overlapping pixel electrodes with gate signal lines reduces parasitic capacitance, resolving the trade-off between display uniformity and aperture ratio.
A splicing frame device offsets seams between adjacent layers to eliminate transverse connectors and enhance structural stability.
Connecting lines link adjacent common electrode lines to reduce electrical resistance, eliminating voltage drops that cause non-uniform display output.
Enclosing resin frame features an entry opening for direct liquid crystal filling between TFT and CF substrates.
A dummy color layer with spatially varying density prevents overdevelopment of the light-blocking layer at the boundary between display and non-display areas.