A display panel uses a separator structure to isolate sensing electrodes from pixel openings.
Motion sensors detect device orientation to activate finger grip suppression, preventing false ear touches while maintaining high proximity detection distance.
Digital signal processor selects noise filter paths based on common voltage intervals to optimize touch sensor accuracy.
Segmenting the panel into an electrode array solves weak signal amplitude issues, enabling accurate 3D touch detection on large-sized displays.
A touch display panel integrates pressure sensing capacitors directly onto the substrate to eliminate thickness increases from separate sensor modules.
Alternates mutual and self capacitance modes to resolve floating effect errors during large finger touches.
An average circuit processes current signals from receiving circuits to cancel noise interference and improve signal-to-noise ratio in thin smartphones.
A software tool tracks contact usage frequency to suggest distribution list creation and message routing.
Calculates restricted areas around primary pointer contacts to inhibit processing of secondary interactions on input surfaces.
A touch sensor integrated display device divides the common electrode into distinct regions to serve dual functions for liquid crystal driving and touch sensing.
A display controller switches between parameter images and selected mail addresses to visually confirm transmission destinations.
An adaptive circuit switches between direct and attenuator routes in a capacitive touch sensor to reduce common mode noise.
A touchscreen display expands graphical areas near touch points to enable precise finger-based feature selection.
A touch panel uses a dummy electrode to match light reflection and refraction effects between button and display areas.
Segmented interface sections allow users to resize and lock display areas, separating primary content from distracting secondary information.
Distributing sensing electrodes across opposite substrate surfaces minimizes dead space, enabling high-definition large-area capacitive touch screens.
A dual mode sensor controller detects and switches between communication modes to support multiple stylus types.
Segmenting predictions into subsets allows users to slide-select specific words, resolving the trade-off between input speed and manual deletion effort.
Forming a black matrix before depositing sensing electrodes prevents thermal damage to transparent conductive oxide layers during curing.
A touch control display substrate merges signal lines to detect pixel electrode response values during progressive scanning.
A circular menu arranges application icons around a display area perimeter to enable rotational navigation via touch input.
A flexible touch sensor device uses layered polymer materials with conductive and non-conductive regions to enable bendability.
A pointer with a partially transparent click region allows users to control operations on mobile terminals through direct touch input.
Segmenting the scrollbar into clickable regions reveals a dynamic page selection menu, resolving time loss when navigating intermediate pages.
A mobile terminal application displays a stop button to transmit job stop requests to an image forming apparatus.
Segmented first and second ground wire layers connect via vias to block electrostatic interference, improving touch sensing reliability in large panels.
Transparent conductive bridge lines connect touch pads to dissipate electrostatic discharge charges, improving yield without visible metal traces.
A touch-sensor controller estimates retransmission using self-capacitance vectors and an outer product to revise mutual capacitance data.
A miniaturized rechargeable capacitive stylus uses a dedicated sensor module to detect touch position with high accuracy.
Strategic placement of extra light receiving elements at corners and edges improves touch detection precision while lowering fabrication costs.
An optical touch device uses beam disturbance templates to detect multiple simultaneous events.
A stochastic Unscented Kalman Filter reduces latency while suppressing power grid noise to enable simultaneous 3D gesture and 2D touch detection.
A touch screen display device establishes multiple independent window spaces to run concurrent applications via a launcher interface.
Integrating adhesive and bearing functions into one layer eliminates thick substrates, reducing touch panel thickness while maintaining load capacity.
Pre-associated stylus actions trigger direct application opening during standby mode transitions, eliminating manual search steps after device awakening.
A touch display module uses a retardation film assembly to convert linearly polarized light into circularly polarized light.
A touch screen controller disconnects sense lines during display refresh cycles to reduce capacitive coupling from horizontal sync signals.
A touch sensing device detects pen contact position using distinct electrode signals.
Switching units disconnect touch electrode columns during detection and connect them during display to reduce voltage drop and ensure uniform brightness.
A touch sensing circuit couples electrodes to reference voltage using display synchronization signals.
A columnized user interface accumulates selected items from various hierarchy levels into a final column for subsequent processing.
A display unit shows a temporary icon image at the target position during drag operations to aid user visualization.
Staggered via distribution across dummy and touch lines prevents brightness mura in capacitive displays.
Segmented metal bridges with hollow-out patterns maintain signal transmission when one channel breaks, improving reliability and reducing light reflection.
An optical touch device classifies events using beam disturbance patterns to distinguish intentional inputs from unintended contact.
Segmented touch electrodes with overlapping connecting portions enhance edge signal strength, enabling digital roulette functions on wearable devices.
Merging the touch electrode wire with the common electrode wire reduces black matrix width, increasing pixel aperture opening ratio and transmissivity.
Instrumented code profiles application memory usage to store critical data in non-volatile memory, eliminating startup reload time.
Merging touch driving and sensing electrodes on one layer reduces mutual capacitance while maintaining high aperture ratio.