A pixel electrode conductive portion features a rough surface to drain alignment liquid, preventing accumulation in recesses that causes uneven brightness.
Switchable vertical and lateral fields align liquid crystal molecules in a twist configuration, preventing background blur in see-through displays.
Directional slit segmentation on segmented upper electrodes improves response time and transmittance at low temperatures.
Predetermined slits in the TFT pixel electrode isolate electrical defects while preserving half the storage capacitor area and maintaining voltage stability.
A liquid crystal display panel seal doped with conductive particles connects common electrodes across adjacent substrates.
Laminated liquid crystal display panels align opposite yellow and blue shift directions to suppress oblique viewing color distortion.
A frequency comparator tunes driver gain and voltage to reduce thermal effects while maintaining high bandwidth in optical modulators.
Specific angular orientations of stacked half-wave and quarter-wave plates cancel dispersion effects to reduce color cast in reflective liquid crystal displays.
Relocating bonding regions to a protruding side surface reduces external circuit board bezel width to less than one third of traditional designs.
A nanostructured transition metal oxide bronze layer modulates visible and near-infrared radiation through surface plasmon resonance and intercalation.
Openings in the color resist layer reduce local thickness, improving photo spacer height precision and liquid crystal introduction accuracy.
A display unit moves bonding to the side surface using a binding part connected to micro light-emitting elements.
Step portions on the substrate prevent electro-optic polymer spreading, maintaining uniform thickness and reducing manufacturing complexity.
Partial bonding of a translucent cover with spacers eliminates gaps around decorative elements while maintaining mechanical protection.
Segmented molded resin frame corners prevent glass substrate cracking under external impact by distributing concentrated stress across multiple contact points.
A stepped support frame positions a cover plate and liquid crystal panel at different heights to enable precise elastic adhesive bonding.
Thermal expansion of a solid polymer lens eliminates evaporation and friction issues found in liquid-filled tunable optical systems.
Distributing sensor circuit switching elements across red, green, and blue sub-pixels prevents aperture ratio reduction caused by integrated optical sensors.
A curved display panel adjusts pixel section positions to maintain aperture ratio.
Integrally forming the black matrix and isolating layer on the lower substrate of a curved display panel.
A retroreflective electro-optic display integrates a light-transmissive electrode layer with a retro-reflector to modulate ambient light.
Asymmetric branch angles create a zigzag pattern that reduces dark line width at the linear backbone while maintaining manufacturing feasibility.
An integrated optical member combines a diffuser plate and wavelength conversion layer to simplify display assembly.
Staggering the film assembly against a sub-frame protrusion reduces bezel width while accommodating thermal expansion gaps.
A liquid crystal panel uses asymmetric anchoring energies to vertically align molecules and block light at large polar angles.
Segmented driving electrodes and viewing-side blocking layers control pigment movement in electrophoretic display cells.
A display device optical stack uses a light blocking layer with dichroic pigment and reactive mesogen to manage external light interference.
Superposed lateral and vertical electrode bars form a grating structure that enables multi-directional 3D perception while avoiding color cast.
Vertical stacking of capacitor electrodes and insulating films increases capacitance without enlarging the peripheral region area.
Position detection lines between signal lines and pixel electrodes equalize electrode areas.
Extending an inorganic layer to overlap a sealant adhesive prevents warping and cracking, resolving adhesion issues in display devices.
Columnar spacers with concave portions and pedestals disperse pressure, preventing alignment film scraping and spacer fracture in liquid crystal displays.
Irregular main photo spacer positioning prevents alignment layer damage and reduces mura defects under external pressure.
Integrates a parallax barrier layer directly onto a polarizing plate using an ink-jet printing process to form a unified optical component.
Vertical electrode stacking in a transflective liquid crystal display eliminates wavy noise and increases aperture ratios.
A thermally curable liquid resin fills gaps between the display panel and chassis to prevent impurity introduction.
A liquid crystal display protrusion structure overlaps column spacers to maintain a constant substrate gap.
Segmented pixel electrodes with specific branch angles reduce color distortion while maintaining aperture ratio.
Dual gate bus lines and integrated black matrix reduce data bus count while maintaining pixel aperture ratio.
A transparent mold frame supports the diffusion plate to eliminate dark areas and ensure uniform illumination across the display area.
Baffles in the LED display panel block side-emitted light to uniformize viewing angles and resolve brightness unevenness.
Separating display and touch signal lines into parallel planes eliminates parasitic capacitance, enabling a narrow bezel design.
Segmented etching and black matrix shielding resolve misalignment issues while maintaining high aperture ratios in display devices.
Aligning display panels using optical fiducial markers and adjustable stages to resolve ghosting from misalignment.
Liquid crystal and dye materials in a light modulation medium layer switch reflective modes to resolve poor anti-glare effects and long response times.
A liquid crystal lens module integrates with display electrodes to form adjustable optical structures via voltage control.
A blue phase liquid crystal display panel incorporates an optical path diverting device to redirect light propagation through the cell.
A liquid crystal display device uses a hybrid-aligned retardation plate to enhance polarization states and improve viewing angles.
A high refractive index second insulator acts as a waveguide to reflect and propagate incident light within the opening region of a liquid crystal display.