ACEO flow balances drying flows to uniformize display emission layers.
Chemical etching and laser irradiation form a hard-soft substrate structure that reduces dead space and bending damage.
This case positions the light-shielding film beyond the polysilicon layer edge to reduce breakage and stabilize TFT characteristics.
An undercut multilayer common voltage line expands electrode contact, stabilizing voltage transmission and improving display efficiency.
First and second support parts balance active and non-active areas, improving deformation uniformity and drop resistance.
Curved backplane connectors minimize display gaps and height differences during magnetic splicing.
A coplanar reinforcement member strengthens sensor-hole regions, limiting cracks and reducing non-display area for a larger display.
A tailored complementary-error-function stress profile raises surface compression and limits fragment-scattering fracture.
This case uses locally varied data lines and transfer electrodes to keep anode segment differences consistent across special-shaped displays.
Refractive-index pattern layers reduce reflection and improve sensor transmittance while reducing the need for extra manufacturing masks.
A three-link wiring structure shortens active-to-pad distance, limits routing area, and helps prevent signal distortion.
Hydrophobic banks and shaped microlenses guide sub-pixel light, improving extraction while limiting color mixing and thickness.
This display backplane uses directionally different Mini-LED sizes to align overlapping emission patterns and improve brightness uniformity.
Charge generation layers suppress leakage currents and protect low-grayscale color accuracy.
This transparent display case overlaps the inorganic encapsulation layer with a dam to limit moisture ingress and protect emitters.