Piezoelectric filling patterns in the sealing frame dynamically adjust peripheral thickness to eliminate Mura defects caused by static support particles.
A display device implements a writing pressure adjustment user interface to set and transmit pressure values for accurate touch trajectory rendering.
A display panel border laps over a rubber frame to transmit reacting forces against external pressure.
Segmented adhesive layers prevent bubble formation and maintain uniform thickness in liquid crystal display devices.
Apertured adhesive laminates bond electro-optic media while detachable tabs enable conductive layer separation.
A display shielding film uses segmented liquid crystal areas to dynamically switch between transparent and opaque states for adaptive visibility.
Protrusion members guide color filter ink flow to ensure uniform thickness, preventing light leakage and enhancing color reproducibility.
A display substrate integrates a double gate structure to unify switching and sensing elements.
A liquid crystal lens uses a hole-patterned electrode and dielectric film to drive molecular rotation.
Segmented liquid crystal shutters apply voltage patterns to match hidden area colors with active displays, resolving frame uniformity issues.
A color conversion unit uses quantum dots to transform blue light into red and green wavelengths for display panels.
An integrated hole connects the drain electrode and storage line, reducing marginal areas required for alignment.
A display panel bonds to an L-shaped back plate side plate using a specialized adhesive layer that covers non-light-emitting surfaces.
A liquid crystal display device uses a slit counter electrode to generate fringe electric fields for pixel driving.
A liquid crystal writing screen places the pixel electrode between the base substrate and passivation layer to simplify structure.
An optical absorber heats a phase-change polymer to selectively move micro-scale objects, resolving fixed-pattern limitations in display manufacturing.
Reflection means reuse illumination light in liquid crystal display slits, reducing power consumption caused by low transmittance regions.
A ring-assisted Mach-Zehnder interferometer uses assist rings and multi-mode interference couplers to split and combine optical signals.
A liquid crystal display color conversion layer incorporates a low refractive body to alter light paths and reduce external reflection.
An achromatic phase doublet electroactive lens forms a kinoform and harmonic lens phase function to correct optical dispersion.
Dual-side bus electrodes eliminate bridge wires to distribute static electricity and prevent electrode breakage.
A liquid crystal display module uses a transparent conductive common voltage line to enable direct visual access to the bonding sealant region.
A liquid crystal display device rearranges video signal lines to reduce component count.
Varying electrode spacing concentrates high-frequency modulation at the input to reduce RF propagation loss and improve bandwidth.
One-step acid etching suppresses silver edge damage and particle formation, improving reflective electrode yield.
Asymmetric common electrode positioning suppresses light leakage and maintains wide viewing angles without increasing device complexity.
Composite molybdenum and aluminum gate pad structures prevent corrosion in multi-model glass substrates, ensuring signal integrity.
Oblique data lines divide sub-pixels to maintain high numerical aperture while suppressing moiré and crosstalk in 3D displays.
Welded frames and pressurized air layers protect electrophoretic displays from impact damage while maintaining thin profiles.
A display device uses communicating holes in a second substrate and organic insulating layer to electrically connect terminals via conductive material.
A poly(amide-imide) copolymer integrates rigid aromatic rings and imide groups directly into the polymer chain to achieve high tensile modulus.
A film forming control portion restricts alignment film thickness variation to the non-display area of liquid crystal panels.
Openings in the protective layer of a wire grid polarizer enable gas escape, preventing outgassing contamination that degrades liquid crystal reliability.
Merging the touch sensing function with the existing common electrode structure eliminates additional layers, reducing total thickness and manufacturing costs.
An optical film with engraved high and low refractive index patterns improves contrast ratio and brightness uniformity at side surfaces.
Segmented electrodes surround data lines to minimize coupling capacitances and prevent light leakage, improving lateral visibility and display uniformity.
A light diverting layer redirects illumination from linear lamps to smooth brightness across the display panel, resolving bright stripes in large LCD TVs.
A color film substrate integrates red, green, blue, and white blocks containing light-emitting particles that convert incident light into yellow emission.
A display panel places a verification code part in the peripheral area, overlapping with a light blocking layer to form identification marks.
Binary weighted differential electrodes on thin film lithium niobate waveguides reduce driving voltages and losses for high bandwidth operation.
Optical compensation films control light leakage at diagonal viewing angles to improve contrast ratio.
Dual resin layers and groove etching isolate electrodes from waveguides to reduce parasitic capacitance in semiconductor optical devices.
A conductive light shielding layer covers organic insulating layers to shield thin film transistors from wide-angle light leakage.
Voltage-controlled liquid crystal lenses switch between flat and lenticular states, resolving the trade-off between 3D capability and 2D brightness loss.
Intermediate layers with a total thickness of 1,600 μm or more stabilize the cell gap and prevent defects like pressing or crowding under external pressure.
A liquid crystal display fabrication method uses a single mask to pattern active layers and storage electrodes simultaneously.
Segmented light shielding allows optical cell gap measurement in display panels, resolving uniformity issues that cause yellowish or blueish periphery defects.
Segmented optical path control suppresses brightness and color unevenness during local dimming by restricting light leakage between divided regions.
A peep preventing device uses electrophoretic liquids to control light diffusion angles.
A traveling-wave optical modulator uses low-dielectric air trenches to boost voltage conversion gain.