Segmented sensing regions and correlation compensation reduce false touches caused by liquid crystal display interference, improving detection accuracy.
A touch rejection buffer system temporarily stores detected inputs to selectively remove unintended touches from the display.
A virtual guarded switch implements press-and-hold gestures on aircraft touchscreens to prevent inadvertent activation of critical systems.
Merging touch and pixel electrodes eliminates short circuits, boosting yield in full in-cell displays.
Encoding adjacent node differences reduces data volume, lowering power consumption and processing load while maintaining touch sensitivity.
Replacing physical buttons with a capacitive touch area resolves space constraints while expanding interactive versatility.
Impedance dividers equalize display noise amplitudes across sense lines, countering parasitic coupling from thin display layers.
Vertical through-holes route lead wires to opposite sides of the base plate, eliminating wide black boundary frames and increasing screen-to-body ratio.
A sensing device uses a twisted closed loop line to calculate electronic pen location based on induction current.
A flexible sensor device uses intersecting sub-electrodes to detect minute pressing forces and multi-touch inputs via electrostatic capacitance changes.
Edge gesture navigation merges multiple UI transitions into single inputs, reducing navigation time and power consumption.
Generates blurred 2.5D representation data from 3D models to train object detection algorithms, addressing time-consuming manual training processes.
A visual browsing system displays multiple category levels simultaneously on a single web page to enable rapid item discovery.
A transparent electric field shielding layer sits above the liquid crystal material to block electrostatic charges from reaching the display stack.
A pivotal mouse button uses a biasing member to exert forward force on the switch, eliminating idle stroke and overpressure caused by assembly tolerances.
An information display system repositions items during scrolling and generates simplified banners for content moved outside the view.
Modifies ATA device control field bits to transmit protective commands during busy states.
A touch panel detects input device characteristics through signal strength and movement patterns to generate realistic drawing outputs.
A capacitive touch controller adjusts blob characteristics to determine precise position near panel edges.
Selective transmission of electrode line pieces filters gradient noise while reducing resource usage and analysis complexity.
A vertical display renders message icons on an altitude and time grid to streamline pilot communication workflows.
Grouping conflicting calendar invitations with visual indicators resolves manual review bottlenecks.
Segmented communication frames synchronize stylus transmission with digitizer search modes to eliminate touch sensing interference.
A sensing circuit generates three-dimensional contact data using multiple setting tables and synchronized driving signals.
A touch sensor panel control device filters palm touches by analyzing electrical signal changes against dynamic thresholds for area, pressure, and duration.
A touch panel apparatus detects user finger movements to dynamically define a rectangular selection area for display objects.
An oblique electrode matrix minimizes visual occlusion artifacts in large displays while maintaining high frame rates through asymmetric conductor orientation.
Dynamic offset calculation corrects parallax errors by tracking device orientation and palm position to maintain precise handwriting alignment.
Orthogonal multi-row stimulation logic energizes multiple touch panel rows simultaneously, improving response time under fast motion.
Multi-directional metal wires in opening units create a quasi-scattering effect that reduces reflection differences while maintaining touch sensitivity.
A common electrode operates during blanking periods to capture interference measurements that improve positional information accuracy.
Asymmetric conductive line patterns eliminate moiré artifacts from delta subpixels.
A touch display panel uses an insulation recess with obtuse angled sidewalls to create an inclined interface for light extraction.
An inorganic spacer layer stacked with an encapsulation sub-layer enables precise etching of touch traces within the wire replacement region.
A capacitive touch panel drive circuit outputs pulses with varying widths to prevent synchronization with external interference sources.
A touchscreen display structure omits the glass cover to reduce weight and size.
A self capacitive touch screen method detects induction capacitor changes to calculate dynamic thresholds for accurate point identification.
A system parses screen-captured images for machine-readable optical codes to extract embedded information without camera activation.
A tubular electronic pen projects its magnetic core beyond the housing opening to strengthen sensor coupling.
A touch panel detects finger shifts to the outer frame and displays auxiliary information.
Segmented bus switches with optoisolators isolate noise spikes, maintaining communication reliability in harsh automotive environments.
Computing circuit determines scan finishing positions to compensate touch sensing data.
A photographing interface switches between a simple control area and an adjacent settings panel upon user input.
Dual optical sensors in a pen mouse differentiate linear cursor control from unintentional tilting or spinning motions.
Terminal device obtains main and sub-interface images to generate a continuous long screenshot, eliminating manual capture steps across separate display layers.
Overlapping detection electrodes enable dynamic mode switching to reduce power consumption while maintaining position accuracy.
Integrating touch and force sensors at the natural grip location eliminates grip adjustment requirements while expanding input versatility.
A touch panel places vertical and horizontal electrode layers on the same side of a planarizing layer to reduce device thickness.
Compensation structures with protrusions and grooves form polyline boundary lines that restore uniform touch performance in hole-digging areas.