A touch interface scrolls source documents within an input area to allow direct text copying and pasting, eliminating application switching.
Low iron and controlled chromium in the glass reduce absorption at 1050 nm, maintaining sensitivity across large touch panels.
A touch sensor uses symmetrical sub-sensors at region boundaries to maintain uniform capacitance across the display area.
Anti-guarding voltages drive sensor electrodes to differentiate touch from force signals, reducing device complexity.
A guidance information providing device generates route information to direct users through customized multifunction peripheral screens.
A field blocking line applies voltage to cancel electric fields between adjacent touch blocks in liquid crystal displays.
Recessed portions in conductive layers of an input sensor hold a light absorption layer to reduce external light reflectance.
Shared panel electrodes sense touch force via capacitance, eliminating separate pressure sensors and reducing structural complexity.
A multi-touch display system establishes virtual rotation axes using multiple finger positions to control three-dimensional object orientation and scale.
A projected capacitance touch panel integrates a piezoelectric material layer between electrodes to detect pressure alongside capacitive signals.
A dialog preview thumbnail displays next to a menu item when a cursor hovers over it.
A capacitive touch panel detects electrode impedance changes to extract identification codes from electric fields.
A bypass capacitor pre-charges a display panel to enable rapid transitions between image rendering and touch sensing periods.
A display apparatus uses a first wire arranged between switches and the display region to supply detection drive signals.
A sensor routes lead wires at an angle to coil directions.
Two-step detection identifies real touch points on capacitive touchpads using self capacitance screening followed by mutual capacitance verification.
Combining capacitive detection with optical location determination reduces response time and minimizes erroneous user selections.
Replacing organic insulating films with a color filter layer eliminates coating risks and reduces production costs for capacitive touch displays.
A consuming device controller switches between billing and non-billing modes to manage consumable usage.
Integrating touch sensing with the common electrode in a VA mode display reduces parasitic capacitance between gate lines and lowers overall device thickness.
Convert split-screen applications to floating windows, preserving real-time status while opening new interfaces without closing existing ones.
Segmented mesh electrodes improve optical efficiency by 33% while reducing power consumption, resolving the trade-off between sensitivity and energy use.
Sloped portions beneath touch electrodes reduce step differences at sealed region boundaries, preventing disconnection failures in integrated displays.
A scroll bar and element enable interactive scrolling through panoramic media content within a viewable area.
An integrated circuit varies signal processing based on overload detection results to suppress detection accuracy decreases caused by touch sensor deformation.
A touch panel controller switches drive frequencies to minimize noise interference during operation.
A controller configures capacitive sensors as self-capacitance or mutual-capacitance units to detect touch and proximity events.
A virtual projector determines display thresholds for volumetric objects based on distance and angle to selectively omit non-relevant materials.
Post-process halftone images using pre-computed lookup tables to replace cells, resolving hardware complexity while maintaining colorimetric accuracy.
A flexible laminated body and covering material protect translucent electrodes on a bent portion of an input device base.
Segmented align keys position sensing and image signal transmission films, reducing non-display region size while maintaining precise film alignment.
A stylus pen uses a bent conductive member extending through a guide cavity to maintain electrical contact with the user's hand.
Interface docks multiple windows at display edges via partial content visibility, eliminating task bar requirements.
A single-bit wait state attribute enables cut-through bridging to eliminate master inserted delays and reduce latency in multiprocessor systems.
A touch sensor device adjusts detection sensitivity based on user characteristics to differentiate valid operations.
Distance and motion sensors detect pocket placement risks, triggering alerts to prevent screen damage without false alarms.
Segmented panels and spatial visualization resolve the contradiction between interface complexity and usability by providing intuitive remote monitoring.
A mouse cover plate bonds a silicone covering layer via an adhesive layer to adjust surface stiffness and tactile feel.
Insert injection molding sandwiches the sensor unit to mask lead-out lines, eliminating decorative layers and reducing manufacturing costs.
A handheld device adjusts touch input coordinates using orientation-based offsets to register precise selections on small interface elements.
A selection region expands or contracts based on usage parameters to improve input accuracy.
A control unit displays operation amounts on a setting screen to assign processing content based on user input levels.
Information processing apparatus distinguishes multi-drag from pinch actions using position updates and distance changes between touched points.
A display device sensor layer uses dummy patterns to block signal interference from adjacent power supply lines.
A popup grid context menu segments navigation into a fixed header and scrollable content to resolve overlapping menus on small screens.
Integrating switching logic into the multimedia processor reduces circuit volume and cost by eliminating discrete components.
Local interlayer films in gap parts prevent short-circuit failures while maintaining screen visibility and manufacture yield.
Identical electrical impedance in transmission paths minimizes signal variation differences, preventing false identification and enhancing touch sensitivity.
Acoustic positioning determines relative device locations to enable intuitive icon placement, eliminating complex cloud storage delays.
A cursor display position determination device calculates movement direction from click and slide inputs to automate text editing navigation.