A zigzag-shaped groove modifies the organic layer edge geometry on an array substrate to facilitate conductive wire exposure.
A substrate uses transparent organic patterns containing microcapsules with light-absorbing and light-reflecting particles to control optical properties.
A conductive optical adhesive bonds electrophoretic units directly to a substrate, eliminating intermediate layers.
A touch sensing unit uses intersecting electrodes with stem sensors nested in depressions to increase mutual capacitance.
Full-laminated liquid crystal display module with embedded protective layer and adjustable spring screws for precise assembly.
Region-specific bearing layers in a curved liquid crystal panel distribute stress across the substrate to prevent image distortion from uneven thickness.
Nonplanar molds form fine patterns on alignment films via hot embossing, resolving lithography complexity and cost.
An edge-placed storage electrode line maintains optical characteristics despite panel misalignments, widening the viewing angle while increasing response speed.
A liquid crystal array substrate removes insulating film in non-display areas to discharge remnant charges from the lower electrode.
Carbon nanotube pillars maintain uniform cell gap in liquid crystal lenses, reducing light scattering and haze.
Overlapping color filter regions suppress signal line reflection while maintaining aperture ratio and resolution.