A display apparatus design removes lower and upper cases to minimize thickness while maintaining structural integrity through a novel support system.
A touch panel integrates a piezoelectric layer with shared driving electrodes to detect touch position and force simultaneously.
A liquid crystal display panel uses a thinner planarized film in the frame region to protect external wiring while enabling reliable terminal connections.
Segmented flexible sealing strips absorb external forces to prevent light leakage caused by optical film deformation constraints.
Phosphine oxide photo initiators cure electrochromic fill port plugs, preventing leakage from incomplete curing.
A calculation part determines correction signals for waveguide bias voltages based on stored characteristic information.
On-chip photodetectors measure average power to drive heaters, stabilizing microring resonators against thermal fluctuations that degrade modulation signals.
Segmented control electrodes compensate for manufacturing deviations in liquid crystal lenses, enabling precise optical axis positioning.
Flexible polyimide base film incorporates white fillings to boost light reflectivity and maintain structural integrity.
A liquid crystal display backlight module with specific emission spectrum peaks and color filter transmittance profiles.
Integrating the common electrode with the voltage line removes separate short-circuit points, enabling a reduced black matrix width in the non-display area.
Alternating pretilt angles in liquid crystal pixels compensate for optical path differences, reducing color shift and light leakage.
Applying differential voltages to subpixel electrodes adjusts liquid crystal orientation for precise gray level control in displays.
An impact damping member absorbs external forces to protect the liquid crystal display panel from structural damage.
Asymmetric pixel and common electrode placement generates lateral electric fields to maintain light-utilization efficiency in small pixels.
Offset spacers on the upper substrate align with bosses on the lower substrate after bending to maintain constant cell thickness.
Segmented color conversion units and a planarization layer enhance polarization efficiency by resolving flatness trade-offs in liquid crystal displays.
A variable transmission optical device uses two electro-optic cells with narrow band absorption to switch between clear and darkened states.
Liquid crystal alignment controlling structures with protrusions and slits define multiple pixel domains to reduce color difference in MVA displays.
Segmented subpixel electrodes with directional branches align liquid crystal molecules to optimize light polarization.
Soft mold creates embossed alignment film for liquid crystal displays.
A quantum dot light modulator uses a refractive index change layer to rapidly adjust optical properties via electrical signals.
First polarizer placement on packaging cover plate reduces ambient light reflection and prevents color washout at large viewing angles.
Position-dependent link unit structures compensate for resistance variations in gate lines, reducing signal distortion to enhance image quality.
A third polarizer on a curved display substrate compensates for optical retardation.
Merging the storage capacitor with the common electrode reduces light blocking area, improving luminance and viewing angles in IPS LCDs.
Segmented backlight modules with distinct optical layers reduce stray light interference during fingerprint sensing.
Segmented waveguides with asymmetric delays synchronize signals to reduce driver power consumption while maintaining high baud rate transmission capacity.
A head-up display apparatus uses polarization conversion and liquid crystal scattering to project images at selectable distances.
Segmented etching removes residues from the stopper electrode, reducing contact resistance and preventing yield loss.
A hybrid touch sensor panel merges mutual and self-capacitance electrodes to detect precise touch locations.
Wider sealant corners increase tensile strength to prevent peeling, while narrower strips stop liquid crystal contamination in narrow bezel displays.
Wavy microcup partition walls with varying pitch and amplitude randomize the display structure, eliminating Moire patterns caused by regular grid alignment.
A thermo-optic phase shifter applies resistive heating through a doped semiconductor contact region to shift optical signal phase.
Varying optical distances across N stages reduces LED count, lowering cost and weight while maintaining homogeneous illumination.
Segmented electrodes create horizontal and longitudinal electric fields, switching between wide and narrow viewing angles while maintaining contrast.
Forming thin-film transistor circuits directly on array substrates to drive forward-emitting LEDs as backlight sources.
Curved light deflection surfaces redirect edge display light to cover the bezel, reducing drive circuit complexity.
Asymmetric L-shaped and I-shaped electrode patterns correct non-uniform electric fields, reducing disclination regions to enhance transmittance.
Polyester film with specific refractive index differences compensates lateral contrast ratio and viewing angle in LCD modules.
A curved display panel uses an engaging structure with protruding and receiving portions to maintain a consistent cell gap between substrates.
A display substrate structure uses a light shielding pattern to planarize the metal wire grid layer surface.
A diffractive optical element uses a grating structure and polarization selective mechanism to generate multi-view eye tracking images.
A display device uses a reflective member to form an erect aerial image from light emitted by the display portion.
Backlight module merges capacitive and electromagnetic sensing electrodes, eliminating stacked plates that cause interference.
Segmented grooves nest functional layers to resolve reflectivity versus complexity trade-offs in reflective display panels.
Segmented pixel and common electrodes create symmetrical in-plane electric fields that align liquid crystal molecules at optimal angles.
Potassium chloride fining agent removes bubbles from alumino-borosilicate glass, resolving high viscosity and environmental harm trade-offs.
A backlight module uses reflection mirrors and transmission holes to redirect light for frameless emission.
Reducing light irradiation during phase difference layer formation creates thinner layers for blue pixels, resolving reflectance and contrast trade-offs.