A cholesteric liquid crystal display panel uses stacked layers with opposite spiral directions to modulate light transmission.
A display panel uses conductive particles with raised film portions to bridge the gap between common pads and electrodes.
Plate-like electrodes and minute branches in pixel domains orient liquid crystals to improve side visibility while maintaining aperture ratio.
A liquid crystal barrier layer adjusts polarized light transmission to enable seamless switching between two-dimensional and three-dimensional image modes.
A reflective liquid crystal display uses a reflection layer with slit portions to prevent color mixture at filter edges.
Vertical terminal placement via stacked polygonal panels reduces device volume while maintaining electrical connectivity.
Rhombus partial plate electrodes with minute branches widen viewing angles and improve response speed by reducing texture issues in vertically aligned displays.
A variable transmittance film uses a patterned insulating layer to control particle movement for adjustable light transmission.
Segmenting the lens into a wedge substrate and prismatic film eliminates moiré patterns while expanding the image to conceal bezels without adding thickness.
Auxiliary lines serve dual purposes to maintain aperture ratio and reduce fabrication complexity.
Electrostriction hydrogel deforms under electric fields to control transparent liquid spreading area in reflective displays.
Lateral PCB coupling via chassis thru-holes eliminates vertical stacking, reducing overall device thickness while maintaining assembly stability.
An anti-scattering sheet in the peripheral area prevents glass fragment scattering without causing protective plate deformation or visibility degradation.
Curable filling colloids expand after curing to bridge gaps between adhesive strips, ensuring complete sealing without requiring precise alignment.
A backlight module uses a fluorescence material layer on a reflector to optimize light distribution and enhance color uniformity.
Photochromic layer dims real-world light via ultraviolet exposure, resolving low contrast issues in head-mounted displays.
Positioning a data line over the boundary between slit sections shields disclination regions, eliminating blur and improving aperture ratio.
Mechanical positioning grooves secure the optical film layer to resolve adhesive reliability issues in narrow-bezel displays.
Segmented shielding and trap electrodes block and collect ions in non-display areas, preventing black unevenness caused by impurity migration.
Aligned electrochromic molecules absorb specific light polarizations to reduce ambient washout in display-integrated rearview mirrors.
Stacked substrate, color conversion, reflection, and scattering layers reduce thickness while maintaining luminance.
A display device uses a conductive tape to link a transparent conductive layer on the liquid crystal panel to a metal frame.
Low-modulus elastomer binders delocalize bending stress to prevent capsule rupture and adhesive dissolution in flexible displays.
A display device integrates a reflective pattern and half-mirror layer on an upper substrate to form a unified optical structure.
A display substrate design uses a limiting layer with variable gaps to control height differences between adjacent display portions.
Laser irradiation melts thinner first shading strips to cover bright spots while thicker second strips maintain structural stability and prevent image sticking.
A lithium nickel oxide electrode formatting process applies circumferential voltage to stabilize oxidation states.
Patterned photo spacers replace spherical structures to eliminate light scattering and brightness unevenness in liquid crystal displays.
Consolidating gate and data drivers into one unit reduces bezel size while maintaining display reliability.
Twist-aligned liquid crystal layer rotates molecules via transverse field to boost reflectivity while maintaining contrast ratio above 5:1.
Drawing creates top-cut conical supports on the backlight chassis, eliminating cutout holes and shading sheets to prevent light leakage.
Curing a non-adhesive resin film on the polarizing plate side of a 0.15 mm glass substrate increases impact resistance while maintaining low overall thickness.
A liquid crystal display panel uses slit electrodes and multi-domain alignment layers to orient molecules for improved side visibility.
A coated microstructured film uses selective polyelectrolyte deposition to modulate visible light transmission across discrete surface regions.
A TFT array pixel electrode structure converts defective MIM storage capacitors into functional MII units by cutting and welding connection lines.
Vertical stacking of lead lines reduces picture-frame area while suppressing parasitic capacitance near the liquid crystal layer.
Unequal cell gaps in transmissive and reflective regions combined with slit common electrodes reduce light leakage and improve contrast ratios.
Separating the storage electrode from the gate line reduces electrical load and signal delay while shrinking the black matrix area to improve aperture ratio.
Zigzag rubbed patterns create multi-domain alignment, resolving the trade-off between wide viewing angles and manufacturing complexity.
A flexible e-paper display system uses a moving driver to rewrite information on plastic substrates.
Asymmetric optical couplers split input signals into unequal power levels to enable direct amplitude modulation via electroabsorption.
A third electrode layer extends onto the light filtering layer to connect the pixel electrode via a contacting via.
Replacing iodine-stretched films with refractive index layers eliminates color shifts and surface unevenness in reflective displays.
Varying light blocking member heights with step providing layers prevents liquid crystal overflow and curl while maintaining uniform cell gaps.
Multilayer polymeric partial reflector and reflective polarizer direct blue light to achieve uniform illumination while reducing backlight thickness.
Dynamic liquid crystal steering adapts light distribution for diverse interpupillary distances, maintaining color uniformity without increasing outcoupler size.
A liquid crystal device uses a thinner common electrode layer to reduce step height and prevent rubbing defects.
A protective interlayer bonds a shaping layer to a liquid crystal display module within a three dimensional curvature cover lens assembly.
A plastic cell sealing part uses a wavy line shape to maintain fluid layer integrity during substrate deformation.
Metal sulfides adsorb mercury from flue gas and waste liquid, resisting NOx and SO2 interference to lower operational costs.