Optimizing the connector width between 8.0 μm and 13.5 μm prevents light leakage while maintaining contrast ratio for improved side visibility.
A holder with separate heat dissipation plates overlaps drive ICs from both sides to enable efficient thermal escape.
Auxiliary data lines self-repair disconnected main lines, eliminating insulating layers to reduce power consumption.
Electro-osmotic flow transports particles with fluid to resolve slow switching times in in-plane electrophoretic displays.
A light control member integrates bead spacers into alignment layer projections to secure the spacer position against external forces.
Merging common electrode lines with touch driving and sensing lines eliminates unique photomasks, reducing manufacture cost while maintaining signal stability.
A polarization control device manages light conversion to support stereoscopic image display.
Apertured electrostatic shielding layer on liquid crystal substrates preserves color fidelity and reduces static charge disruption.
A polymer dispersed liquid crystal device uses a helical polymer network to achieve high scattering efficiency at reduced drive voltages.
Densely distributed strip-shaped isolation-cushion parts at the center and sparsely distributed dotted parts toward the edges of a curved liquid crystal display module.
Cured resin with controlled shrinkage prevents protective panel warping, eliminating image unevenness and light leakage in display devices.
Plastic frame with sliding channels secures light guide plates via detachable fixing members, eliminating complex metal tray assembly.
A vertical photo alignment method uses a stationary mask and rotating substrate to define four distinct sub-region orientations.
A liquid crystal display pixel electrode uses segmented side and central electrodes with fine branches to control molecular orientation across multiple domains.
A magneto-optic crystal assembly uses multiple crystals to achieve broadband polarization rotation.
A columnar spacer covers a concave portion on the TFT substrate to reduce contact area with the alignment film.
Gate lines formed in color filter trenches reduce wiring resistance and enhance aperture ratio by eliminating additional light-blocking layers.
Inspection transistors merge with terminal lines inside the chip mounting area, minimizing peripheral space while maintaining signal integrity.
A Pockels cell driver shares switching voltage across two high-voltage switches to reduce individual power handling requirements.
A display panel eliminates polarizers by using a grating layer and lens structure to modulate light propagation through liquid crystal refractive index changes.
Segmenting phase modulation across sequential mirrors increases the steering angle without requiring larger mirror areas, reducing insertion loss penalties.
An ultraviolet light blocking portion shields the organic film during sealing member hardening.
Segmented column spacers reduce substrate friction while maintaining stable cell gaps to prevent gravity-induced swelling and deformation.
An optical member with a light characteristics changing layer adjusts spectrum distribution and chromaticity coordinates of backlight light.
A shield electrode creates a repulsive electric field to block cation migration in display devices.
A two-layer alignment film structure controls the upper layer profile to enhance seal bonding strength in liquid crystal displays.
A via hole in the non-display region exposes part of the black matrix to enable direct voltage testing without damaging the substrate.
Protrusions on array and color filter substrates increase light transmission through camera holes.
A display cover integrates a translucent conductive film to shield electromagnetic noise from driver components while maintaining optical transmission.
Specific retardation film parameters compensate for viewing angle-dependent color tone changes in VA-mode displays.
A resin-coated adhesive protection member shields the bonding layer from foreign substances, eliminating lamination steps and reducing manufacturing complexity.
An additional transmission line generates broadband impedance to reduce current imbalance and maintain signal integrity in optical modulator devices.
A light modulator uses a frequency selective surface and electrophoretic fluid to achieve high optical contrast.
Partial filling of the connection via hole mitigates thermal stress and sidewall burrs while maintaining electrical connection reliability.
Segmented photo spacers in regular polygon patterns distribute external pressure uniformly to prevent mura effects and enhance structural integrity.
Stacked transparent electrodes reduce sub-opening width in parallax-barrier shutter panels, resolving metal wire processing constraints.
Surface trenches on segmented dam patterns release trapped gas to reduce outgassing while maintaining sealing integrity in narrow bezel designs.
Segmented drain lines between sub-pixels reduce color mixture and improve image quality without sacrificing aperture ratio.
IPN structure particles generate stable charge in nonpolar solvents without polar additives, preventing memory degradation and enhancing display durability.
Separating corner pixels from sealants prevents pixel failures caused by coating device limitations in narrow bezel designs.
A shield electrode with a curved portion overlaps gate and data lines to block electric fields in liquid crystal displays.
Segmenting touch electrodes into data line gaps reduces driver chip quantity while maintaining display resolution and quality.
A liquid crystal display panel integrates a conductor between electrodes to generate a perpendicular magnetic field that fixes impurity ions onto film layers.
Metal pads overlap common electrodes to increase pixel storage capacitance, minimizing image flickering in high resolution displays.
Stacked underlaying and supporting structures in the non-display region absorb external stress to prevent phase delays and light leakage at the display edges.
A middle frame recess holds the diffusion plate to support optical films in liquid crystal displays.
A light-emitting apparatus uses a diffusion layer and prism layer to redistribute and concentrate extracted light.
A patterned protective film on a color filter substrate prevents foreign substance adherence during mechanical cutting.
A louver film display structure adjusts viewing angles through voltage-controlled electrophoretic material states.