A backlight unit uses a holographic film with a high refractive index to modify light angles for display panels.
A light control device manages dimmer transmittance in head-mounted displays using a light guide plate.
A polarizing plate extends beyond a substrate to conceal metal interconnection layers using an integrated light shielding layer.
Multi-layer bypass wirings route signals around transparent camera areas, reducing the non-display frame region area while maintaining light transmittance.
Varied strip electrode counts in pixel layouts compensate for manufacturing gaps, maintaining color balance and transmittance.
A one-piece aluminum alloy back plate with a protruding hole wall reduces device weight while maintaining mechanical integrity.
A transreflective liquid crystal display uses a uniform cell gap with P-type molecules to enhance contrast and resolution.
Direct thermal imaging creates color filter arrays via temperature exposure, resolving alignment precision and production efficiency contradictions.
A liquid crystal display device uses segmented common electrodes to generate an oblique electric field for precise molecule alignment.
Integrating a touch electrode in the peripheral area eliminates bulky physical keys, reducing bezel width and improving screen-to-body ratio.
Assigning distinct alignment directions to red, green, and blue sub-pixels adjusts white light luminance and chromaticity coordinates.
A shared transparent electrode merges display addressing and capacitive touch sensing into a single layer.
High Shore hardness polymer prevents creep at elevated temperatures while maintaining ionic conductivity in electrochromic devices.
A partition wall isolates liquid crystal from uncured sealant, preventing impurity contamination and black spots while supporting narrow frame designs.
Intertwined blue and red LED chips covered by a green fluorescent layer emit pure white light.
A composite waveguide structure combines an organic electro-optic layer with a dielectric core to modulate light signals.
Ground-signal-signal-ground electrode spacing minimizes electromagnetic coupling between Mach-Zehnder modulators, enabling compact high-bandwidth operation.
A display device uses a penetration portion in the optical element to absorb polarizer expansion forces.
Shielding electrode divides pixel domains to control liquid crystal alignment, reducing transistor count while maintaining viewing angle.
Symmetric strip electrodes and angled alignment layers maintain transmittance uniformity despite manufacturing deviations.
A repair pattern connects storage electrode lines to maintain common voltage application in liquid crystal display devices.
Differential voltage application to sub-pixels improves side visibility while maintaining high contrast ratios in vertical alignment displays.
An external anti-glare polarizer scatters light rays to atomize images, eliminating Moiré patterns caused by touch module grid interference.
Anti-reflection film uses selective absorption to prevent blue light leakage during black indication, maintaining high contrast and color accuracy.
A liquid crystal display uses a biaxial optically anisotropic member to enhance viewing angles and contrast.
Dual-side light source units bonded to a substrate distribute illumination across the display area using adhesive layers with distinct refractive indices.
A display module holding member separates inner and outer regions to absorb frame deformation, preventing panel warping and light leakage.
Temperature sensing driver chips adjust supporting post heights via electric fields, while organic spheres enhance stress tolerance for improved yield rates.
Integrating touch sensing electrodes with specific reflectivity reduces manufacturing costs by eliminating additional electrode formation processes.
A groove-filled liquid crystal optical film modulates light transmission to enhance brightness at large viewing angles.
An obliquely deposited O-plate paired with a C-plate resolves pre-tilt and oblique light phase differences to improve contrast.
Segmenting the ground electrode via a slit suppresses substrate mode coupling and dip phenomena in high-frequency characteristics.
Rear conductive chassis grounds the printed wiring board while protecting circuit elements from damage during assembly.
Asymmetric concavity design with non-right angles prevents sealant bubbles, enhancing waterproofing reliability in electrophoretic displays.
A prism sheet with controlled light diffusion reduces side lobes in liquid crystal displays.
Polygonal microlenses eliminate gaps between adjacent lenses, resolving the trade-off between narrow visual angles and increased backlight unit thickness.
Higher arrangement density of second pattern spacers in the outside area prevents substrate twisting and staining caused by uneven pressure distribution.
Luminescent particulates in the sealant matrix emit UV light under irradiation, curing the interior and surface simultaneously to eliminate leakage defects.
An array substrate with shared control lines increases the pixel opening ratio while reducing energy consumption.
A ferroelectric liquid crystal Fresnel lens uses dual-domain photoalignment to achieve sub-100 microsecond switching speeds.
A photocurable resin step cover bridges glass substrates to hide inactive areas, reducing bezel width and device thickness.
A four-direction domain structure divides pixels into multiple alignment regions to maintain uniform visual angle directions across the display panel.
A multimodal display device switches between coherent and incoherent backlight modes to drive spatial light modulation for holographic, 3D, and 2D images.
An electrochromic shutter switches between translucent and opaque states to narrow spike anneal peak width below 0.8 seconds, limiting dopant diffusion.
Selective removal of the first alignment layer disorders liquid crystals to block light and reveal mirror inscriptions without scattered glare from LEDs.
A color tunable optical device uses a liquid crystal layer and phase retarder to convert polarized light into elliptically polarized mixed light.
A connection substrate uses via holes to electrically link ground lines and back surface electrodes for stable signal transmission.
A varying cross-section elastic part joins the circuit board and frame, reducing manual handling and component damage risk.
A liquid crystal device uses a convex pixel electrode portion to orient molecules and suppress lateral electric fields.