Echelon contact grating segments pump beams to satisfy velocity matching, resolving beam asymmetry and improving energy scalability.
An undercoat layer adjusts columnar spacer heights to minimize low-temperature bubbling and enhance withstand load in display devices.
Intersecting electrode segments reduce ineffective areas to improve liquid crystal lens formation uniformity.
An illumination device uses a controller to adjust the position of light-shielding bodies and lenses relative to a light source.
A capacitor resonator modulator uses a polycrystalline semiconductor electrode to modulate light in photonic circuits.
A matrix arrangement of lead terminals connects data and touch signal lines in a single layer to simplify manufacturing.
Holding member prevents reflection member bowing into lower frame recess, eliminating light loss gaps and managing LED heat.
A backlight module reflection sheet redirects light toward the emission direction to improve optical efficiency.
Optimized SiO2-Al2O3 glass composition balances flexibility and impact resistance, resolving the trade-off between thinness and durability in foldable displays.
Segmented electrodes with a buffer layer achieve velocity matching on low dielectric substrates, reducing propagation loss.
A combining part secures the top chassis, bottom chassis, and driving part together to form a compact display structure.
A wide view film containing discotic liquid crystal molecules compensates twisted nematic layers.
A shapable display device uses a stretchable electrophoretic medium to conform to three-dimensional surfaces.
Charged composite particles with polymer coatings move through suspending fluids under electric fields to enable optical switching in electro-optic media.
An electrophoretic light modulator uses an electric field to move charged particles and obscure or expose reflecting perforated sheets.
A display module frame integrates supporting structures to stabilize the panel without a rubber frame.
A light shaping device modulates optical pulse spectrum intensity using a discrete spectral mask to narrow temporal width.
A liquid crystal cell assembly method adjusts sealant deposition perimeters to ensure uniform material distribution across the array.
A transmission layer overlaps a camera to support a display window, resolving the trade-off between structural stability and optical light transmission.
A sacrificial hardmask protects the uppermost layer of an optical stack during semiconductor processing.
A liquid crystal display unit uses alternating stripe patterns on pixel and common electrodes to modulate transmittance.
Alternating inclined lines in stacked liquid crystal display panels suppress moiré interference by disrupting regular optical interference patterns.
A segmented connection part encloses a spacer from three sides to constrain its position within an array substrate.
Switching films deflect laser beams via discrete tilting angles, eliminating mechanical inertia limits and enabling GHz switching frequencies.
Alignment regulators control liquid crystal inclination in transflective displays, reducing disclination and spotted patterns caused by narrow gaps.
An auxiliary functional layer on a display substrate defines active areas and shields via holes to ensure precise alignment.
A combined polarizer film merges positive and negative uniaxial layers to maintain high polarization efficiency across various viewing angles.
Segmenting pixel electrodes into independently voltage-controlled sub-pixels expands the viewing angle while maintaining transmittance levels.
A liquid crystal display panel integrates readout lines into the connection unit driver to enable touch sensing without separate flexible circuit boards.
A photoalignment system uses UV irradiation to orient liquid crystal molecules on a substrate without mechanical rubbing.
A viewer-side polarizing plate with a patterned layer of resin interfaces featuring engraved optical patterns.
Segmenting red, green, and blue emitters on separate substrates increases pitch between structures, improving manufacturing yield while enhancing color gamut.
A sealant with controlled storage elastic modulus bonds substrates and alignment films using mixed resin composition.
A diffusion plate support frame uses a first buffer structure between the bottom plate and support pin to absorb pressure.
Common voltage line compensation eliminates coupling disturbances from high-frequency touch impulses, ensuring accurate signal transmission.
A liquid crystal dimmer cell with a polymer network controls light transmission to maintain front-view visibility while blocking side views.
A color conversion panel employs a wire grid pattern and reflection pattern to reduce light loss and improve emission efficiency.
Transparent supports minimize substrate deformation in blind hole regions to resolve optical uniformity issues.
A liquid crystal display seal material layer is formed thinner than the liquid crystal layer to manage cell gap dimensions during substrate bonding.
Cross-shaped slits on the common electrode maintain aperture ratio while ensuring stable liquid crystal alignment and faster response speed.
Localized electrode resistance variations compensate for electrochromic layer changes to ensure uniform shading across the display.
Nonlinear optoelectronic filtering achieves 56 dB suppression of stronger signals, enabling detection of weak signals buried beneath phase noise.
A photonic modulator separates tuning and modulation functions using distinct forward-biased and reverse-biased diodes.
Overlapping metal patterns reroute driving signals through alternative paths, recovering electrical openings in fan-out sections to boost yield.
A liquid crystal panel uses specific domain arrangements and fine slits to improve display quality.
A curved segmented active dimmable lens uses dye-doped liquid crystals to control optical transmission through a rigid cover layer.
Dedicated light shielding parts reduce moire patterns while maintaining high light transmittance in the display panel.
An optical path control member uses inclined reception parts to manage light transmittance via voltage.
Grooves in the reflective layer constrain dispensed adhesive, resolving manufacturing precision trade-offs while preventing functional element coverage.
Common electrode slits align liquid crystal molecules to boost contrast ratio and viewing angle without circular polarizers.