An antistatic member routes charge from the display cover to the cushion plate, preventing edge brightening and greenish emission.
Adjustable rotating blades etch ultra-thin glass folding regions more efficiently, enabling simpler foldable window manufacturing with lower bending radius.
Stacked signal interconnection layers with overlapping contact regions improve signal uniformity and stability in large-size displays.
Anthracene host compounds and a dedicated capping layer balance exciton formation to improve OLED color purity, efficacy, and lifespan.
Surface-treated nano-silica and density-ratio control keep polyimide cover films clear, strong, and flexible by preventing filler aggregation.
Varying functional layer thickness between curved and flat display areas reduces viewing-angle color shifts and improves color reliability.
A transmissive non-display boundary with scatterers and wavelength conversion helps tiled displays hide seams while maintaining color purity.
Localized conductive balls on spaced adhesive layers keep micro LED transfers connected while preventing opens and short circuits.
A layered inter-island connector with inorganic openings and organic fill helps stretchable display films resist breaking and separation.
Reflective structures in anti-peeping sub-pixels redirect off-axis light into the anti-peeping area, improving light use and privacy.
An asymmetric reflector around LED elements redirects lateral light through an elliptical lens to improve light use and outdoor display contrast.
Lyophobic and lyophilic partition walls guide color conversion layer placement to cut manufacturing time and improve display reliability.
Blue-rich filter units in light-transmissive OLED regions offset PI blue-light absorption, improving under-display camera white balance.
Varying encapsulation thickness and adding etched grooves reduce steep layer transitions, preventing metal residue and short circuits.
Composite lower and upper support patterns stabilize the pixel-defining layer and reduce lateral leakage between adjacent light-emitting areas.
A top-etched contact hole and connecting film link pads to flexible film, cutting seam visibility while protecting substrate integrity.
A higher-elongation bridge line in the corner area helps bendable display panels resist creases, prevent line breakage, and improve yield.
Raised sub-light emitting portions improve OLED viewing angle and luminance while avoiding shadow-mask deposition defects in large displays.
A transparent branch line overlapping a bridge line enables stable laser repair while preserving open area and aperture ratio in displays.
A localized tightening structure and hydrogen-doped amorphous silicon layer improve edge adhesion in curved display panels to prevent encapsulation cracks.
Staggered holes in stretchable OLED corner regions relieve compression stress and prevent wavy wrinkles in film layers.
A fused polycyclic hydrocarbon interlayer suppresses n-dopant diffusion in stacked OLEDs, improving durability while lowering driving voltage.
A red OLED emitting layer uses phosphorescent, TADF, and host materials to improve energy transfer, efficiency, lifespan, and driving voltage.
A two-direction power-line grid around light-transmitting areas evens voltage distribution and reduces mura in full-screen displays.
A capping layer routed through aligned contact holes protects pad electrodes, lowers contact resistance, and helps tiled displays reduce visible seams.
Variable substrate thickness and a stair-shaped base layer reduce corner bending stress, improving display panel reliability and usable area.
Grooved patterned glass in the folding area improves visibility while preserving foldability and image quality in foldable displays.
A grooved heat dissipation member improves display panel cooling while simplifying assembly through an integrated adhesive structure.
A graded-modulus cover structure protects metal lines during bending and stretching, improving flexible display durability and reliability.
Varying jig curvature and spacing raises edge pressure during curved display assembly, improving curvature precision while reducing stress concentration.
A vertical transistor layout cuts footprint and parasitic capacitance while improving integration density, wiring load, and signal speed.
An in-panel organic light sensor shares display electrodes to avoid sensor holes, preserve image continuity, and block water and oxygen exposure.
Substrate protrusions and pixel dimples guide OLED emitter placement without fine metal masks while improving layer adhesion and electrical contact.
Removing the organic insulating layer from the bendable bonding area and adding OCR protection helps prevent metal trace fractures and narrow bezels.
By ending the bonding layer before the bending region and spacing the covering layer apart, this case reduces waviness and visible defects.
A dam, device isolation line, and groove line block lateral moisture ingress while preserving seamless image continuity in multi-screen displays.
A protruding device isolation line blocks moisture at the panel edge, improving display reliability while enabling zero-bezel multi-screen continuity.
Tight HOMO/LUMO offsets and a mixed electron transport layer curb electron excess, raising luminous efficiency and extending OLED lifetime.
Using low-resistivity aluminum gate lines with protective layers cuts scanning delay and uneven brightness in large foldable displays.
Elastic edge plate bodies and locking elements protect display panel edges during close splicing while maintaining seam-free image quality.
A rigid display-area substrate paired with a flexible bending section narrows bezels, raises screen-to-body ratio, and avoids added support layers.
A louvered light diffusion layer filters light by incident angle to suppress ghost images while preserving aerial image brightness and contrast.
An organic-inorganic insulating layer separates sub-pixel pad electrodes to prevent shorts and improve display manufacturing yield.
Using one insulating film as the etch mask for another cuts display panel mask steps, lowers cost, and improves sealing against vapor ingress.
Rod-shaped buffer members dispersed in a resin support film absorb shocks and protect flexible sliding displays during bending and folding.
A through-hole sidewall channel lets TFTs shrink below mask limits while boosting on-state current, lowering power, and saving display area.
Silicon-based partition walls finely divide wavelength conversion portions to improve display resolution and light emission efficiency.
A movable positioning element lets outer frames extend, lock, and retract for easier replacement across display models with less disassembly damage.
Segmented moisture barriers between the GIP and display area maintain encapsulation while shrinking transparent display bezel width.