Time-division multiplexing alternates display and touch sensing modes within each frame, reducing noise and sensing time while maintaining display performance.
An arithmetic processing unit transfers correction segment data between unevenness correction states.
A pixel compensation circuit manages voltage drop time to control light emitting diode gray scale.
Merges touch detection and fingerprint recognition electrodes into one layer, reducing mobile terminal thickness while maintaining signal integrity.
Auxiliary gate line branches and opposing data orientations minimize capacitive coupling, eliminating color cast while increasing the display opening ratio.
An over-current control device detects voltage drops to interrupt power supply lines.
A stereoscopic display device inserts a third image with predetermined luminance between left and right eye images to enhance visual separation.
An insulated shield electrode prevents unintended sub-pixel lighting by isolating the scanning line from the metal anode.
A concavo-convex liquid-repellent layer maintains surface properties after plasma cleaning, preventing degradation during manufacturing.
A touch detection device utilizes a driving back phenomenon in a driving capacitor to acquire stable touch signals.
Distinct metal scan lines reduce line load and facilitate repair without shrinking the aperture ratio.
Segmented reset stages synchronize threshold voltage storage to cancel offset effects, ensuring uniform brightness across the display panel.
A moisture-proof sealing member covers transparent adhesive regions to stabilize relative permittivity and prevent touch misdetection.
A display panel integrates semiconductor photodetectors within pixel units to detect biometric signals alongside image data.
Pre-charge determination circuit evaluates voltage transitions to control source line charging.
A gravity center adjustable device shifts weight to tilt contact points during falls.
Asymmetric holes in the light blocking layer minimize side visibility while maintaining image quality.
A non-glasses stereoscopic display device uses inverted sub-pixel geometry to refract multi-view images through a parallel optical plate array.
A display driver uses a sampling circuit to record multiple command values at different times for generating a filtered output.
A driving method adjusts touch scan signal timing across frames to distribute voltage stress uniformly across GOA units.
A dual LCD panel system adjusts gray scale levels to hide defective pixels.
Time-interlaced holographic projection displays secondary images in rapid succession to reconstruct high-resolution visuals.
Pre-charge unit reduces transistor stress by charging nodes before activation, eliminating dummy registers to improve reliability.
Axially symmetrical flip pixel areas enable bidirectional scanning, eliminating image distortion from incompatible data signals during direction reversal.
Segmenting the resistor string into distinct resistance values improves low gray-level voltage accuracy while reducing component count and manufacturing cost.
A special-shaped display screen uses triangular and rectangular sub-pixel units arranged in alternating face-up and face-down configurations to create a seamless effective display area.
Varying phase retardation values across pixel zones mitigate 3D crosstalk on curved screens without assistive devices.
Integrating a sensing circuit into the gate driver reduces complexity and power consumption while maintaining display image quality.
Integrating touch and light sensing circuits within the pixel reduces panel error rates while maintaining display resolution.
A display panel driver generates internal evaluation images for test mode operation.
A driving circuit controls a switch to transition a transistor into an on state, enabling current flow through additional capacitive elements.
Vertical penetration holes in the non-display area connection pattern extract gas from organic insulating layers, preventing pixel shrinkage defects.
A touch circuit integrates a pressure sensing resistor with a voltage dividing sub-circuit and an amplifying transistor to detect physical force.
A polysilicon thin film transistor circuit stabilizes current flow through capacitive feedback mechanisms.
A driving method corrects image data to control electrophoretic display pixel voltages.
A gate driving circuit uses a current limiting circuit to adjust signal magnitude via variable resistance.
Synchronize light sensing and display output to a common time frame, eliminating flicker during rapid ambient light changes.
A shift register coupling module controls pull-up node voltage to accelerate output end reset.
A demultiplex display driving circuit divides data signals using CMOS transmission gates and branch control signals.
A display panel integrates photosensitive elements within the active area to enable simultaneous image capture and visual output.
A light emitting display uses current detection to estimate flow through the light emitting element.
Segmented shift circuits enable x-direction partitioning, resolving power consumption trade-offs against image quality in multi-frequency displays.
Asymmetric microcups segment charged particles to eliminate built-in electric fields and reduce refresh power consumption.
Through-holes in the substrate improve light transmission while conductive members reduce parasitic capacitance.
Shared data lines across alternating Pen Tile pixel columns lower manufacturing costs and power consumption.
A pixel driving circuit uses periodic signal stages to reset threshold voltage variations in OLED displays.
Multiple power supply input terminals connect to pixel columns via fan-out structures with equal resistances.
A display sub-pixel circuit toggles the first emission signal to decrease off-time and improve image uniformity.