Coupling matrix electrode to common signal eliminates voltage difference, preventing light interference and large view angle color washout in LTPS panels.
Negative C-plate phase compensation and scattering layers resolve contrast ratio deterioration from uncontrolled reflections.
Shaped metallic wires block light leakage without reducing pixel aperture area.
Segmented base layer polyimide orientation cancels induced electric fields, preventing afterimages without adding manufacturing complexity.
A segmented light shield structure isolates adjacent display areas to prevent static electricity accumulation and maintain uniform liquid crystal distribution.
A recursive photoalignment method uses a liquid crystal cell as a phase mask to expand processed areas.
Barriers contact black matrixes to control light paths, preserving aperture ratio and brightness while simplifying manufacturing.
Segmenting the black matrix layer with slots prevents charge conduction to the dimming area, eliminating edge bright lines while maintaining light blocking.
A liquid crystal display adjusts pixel electrode widths across columns to maintain consistent aperture ratios and voltage control.
A first light absorbing layer positioned on an array substrate manages detection light interaction with peripheral bonding leads and marking members.
Segmenting illumination into independently controlled zones reduces power consumption while maintaining uniform brightness for compact virtual reality devices.
Chassis protrusions house IC element covers to cool drive ICs while preventing dust entry and light leakage in display devices.
Vertical trench structure increases optical mode overlap with surface charge, resolving large device length requirements in conventional silicon modulators.
Array substrate sub-gratings adjust light propagation direction to converge rays toward user eyes.
Adjusting contact hole distances relative to the electrode layer prevents organic insulating film exposure in active matrix displays.
Segmented asymmetric supporters and height-varying buffers block liquid crystal flow to suppress ripples and light leakage during external pressure.
A dome-shaped light blocking member with a concave surface accommodates column spacers in liquid crystal displays.
A compact autocorrelation measurement device merges pulsed light paths using a nonlinear optical crystal to generate second harmonic light for detection.
A glass substrate composition using direct electrical heating to reduce heat shrinkage in display manufacturing.
A liquid crystal display panel uses selective light shielding to protect oxide thin film transistors from short wavelength exposure.
A viewing angle adjusting component modifies backlight exit angles using a switchable optical element.
Segmented pixel electrode structure controls liquid crystal tilt direction to improve lateral visibility in vertical alignment displays.
Segmented compensation layers correct phase differences from high pixel density, maintaining brightness uniformity across wide viewing angles.
An island-shaped electrode connects the upper and drain electrodes in liquid crystal displays.
A spacer contacts the flat outermost surface of an array substrate to maintain a consistent cell gap in transparent displays.
Interlocking protrusions and grooves prevent array and opposite substrate misalignment under pressure.
A V-shaped slit pixel electrode generates lateral electric fields to orient liquid crystal molecules for multi-domain formation.
A spatial light modulator uses a piezoelectric layer between electrodes to change length and modulate light phase.
Transfer structures connect gate and common signal lines to leads in the peripheral wiring area of an array substrate.
A polarizing element uses segmented acicular particles to optimize light polarization for liquid crystal displays.
Curved supporting structures confine display spacers within via holes, preventing spacer sliding and light leakage in high-resolution panels.
Combining biaxial and C-plates compensates for high retardation in vertical alignment cells, preventing light leakage at wide viewing angles.
Upper filtering device covers openings in backlight module back bezel to allow hot air escape while blocking external particulates.
Transparent electrode layer cut into sub layers enables individual vertical alignment curing of liquid crystal substrates.
A liquid crystal display panel uses spatially varying alignment directions to ensure consistent molecular rotation under applied electric fields.
Shielding signal line electric fields with a bridging conductive layer prevents trace marks during partial updates without adding driver chips.
Optimizing sub-portion included angles between patterned electrodes and polarizer absorption axes reduces dark bands while maintaining high display resolution.
Segmented grooves with dedicated piezoelectric pumps circulate liquid crystals to prevent ionic impurity aggregation and extend device lifespan.
A polarization switch modulates light transmission between normal and compensation sub-frames in a ferroelectric liquid crystal display assembly.
Variable pixel electrode spacing controls liquid crystal alignment to reduce color shift at side viewing angles.
A display panel design offsets insulating layer projections from black matrix units to reduce ambient light reflection.
Segmented adhesive bonding secures a lenticular lens array to a flat display panel, preventing thermal deformation and stress-induced non-uniformity.
Specific upper electrode cutouts form sub-regions that maintain transmittance despite electrode misalignment, eliminating costly alignment layers.
A reflective polarizer attached to a display panel transmits linearly-polarized light while reflecting perpendicular light to enable mirror mode operation.
Height-differentiated reflective and grid patterns on a base substrate consolidate mask steps, simplifying production while maintaining optical efficiency.
A display substrate positions touch signal lines closer to pixel electrodes than common electrodes.
A quantum-dot layer sits between the first polarizer film and substrate to enhance display brightness.
Common static electricity countermeasure wires reduce terminal count and prevent dielectric breakdown during manufacturing.
A planar pixel electrode paired with a patternized common electrode aligns liquid crystal molecules for uniform optical transmission.
Segmented pixel electrode with central metal trace reduces color shift and increases aperture ratio by optimizing liquid crystal distribution.