Segmented touch panel electrodes transfer charge through connection paths to prevent disconnection from cracks.
Varying touch link line shapes in the non-active area equalizes resistance to prevent exterior spots and enable RC value adjustment.
Optical sensors detect finger proximity to convert standard displays into touch interfaces, eliminating the need for distant skeletal sensing systems.
A virtual knob translates rotational input into precise size changes for selected interface elements.
Integrating distinct electrode patterns within a single transparent layer resolves the trade-off between manufacturing yield and multi-input versatility.
A display input device positions a virtual keyboard to overlap operated icons on the screen.
Standardized and normalized electric current values enable accurate multi-touch detection, resolving coordinate ambiguity in surface capacitive sensors.
A touch sensor control unit adjusts pressure thresholds to manage drag operations.
A remote control surface uses electrostatic capacitance detection to identify object proximity and dynamically assign functions across a continuous interface.
A three-dimensional touch module uses independent signal channels to separate touch and pressure data.
A touch detection device uses segmented regions and a controller to calculate distinct force signals from multiple contact objects simultaneously.
Dynamic pattern matching enables custom input device operation by executing user-defined actions based on recognized click sequences.
Multi-phase scanning applies zero-sum sequences to reduce radiated electromagnetic emission and enhance immunity against common-mode noise.
A speech synthesis method reduces embedding vector dimensionality to allow direct user adjustment of component values.
A print instructing device records paper quality information in association with size data to manage non-standard media.
A touch screen control method detects user input to determine a feedback signal for switching working modes.
Palm rest sensors detect user hands to enable keyboard input, preventing accidental key presses during touch screen use.
Edge gestures switch applications while preserving display space and reducing cognitive load.
An inductive plate captures electromagnetic pen trajectories to generate digital writing information.
A motor adjusts the imaging face position in a wearable display device to enable flexible operation.
A neural rendering model queries sensor data from multiple devices to generate temporal-based three-dimensional views of recorded events.
A capacitive sensing device uses a microcontroller to configure reconfigurable hover sensing arrays with multiple sensor electrodes.
Vertical layering separates data lines and touch sensing paths, eliminating signal interference while maintaining integration.
A liquid crystal panel structure aligns touch panel support retardation axes to suppress external light reflection.
Transparent conductive layers enclose electrode leads, preventing oxidation and simplifying manufacturing by eliminating separate protection steps.
A touch display device integrates a touch electrode layer into the non-display area of the driving substrate to enable capacitive sensing.
Touch driving lines shift between pixel unit groups to reduce occupied area, resolving the trade-off between touch functionality and aperture ratio.
Grouping sensors into active and inactive sets extends hover detection while reducing power consumption.
A touch screen interface defines a scalable selection region to group multiple objects simultaneously.
A display control circuit adjusts touch drive signal frequency based on detected noise levels.
Defined desktop regions filter touch inputs to prevent inadvertent actions while maintaining system versatility through dynamic device coordination.
Segmented sensor carriers with guide ways enable precise multi-axis control for gaming applications.
Input device calculates distances between reference positions and detected points to select fingertip coordinates, resolving palm contact interference.
An input device detects variable force to modulate interface parameters using an additional contact object.
Radial button arrangement expands functionality on small screens without reducing visibility or requiring screen switching.
A keyboard utility renders secondary application views directly on the mobile interface to streamline data entry workflows.
A system detects 3D gestures by analyzing electrical near-field deformations to generate movement paths for precise recognition.
A system determines application window size or position based on another window using joint dividers for simultaneous control.
Merging the first driving circuit into the GOA circuit structure eliminates redundant signal lines, reducing layout space to enable narrow frame designs.
A processor adapts keyboard input button placement based on screen conditions to maintain interface clarity.
Relocating the common electrode to the lower substrate prevents external touch signal shielding by display electrodes.
A touch sensing unit determines maximum values for every column to identify actual touch coordinates.
A pressure-sensitive multi-touch device uses a force-spreading layer to diffuse touch inputs across resistive cells for position detection.
A character input system assigns multiple character types to single keys and switches types via flick or toggle gestures.
Auxiliary electrodes receive inverted phase signals to cancel electromagnetic interference from sensing electrodes, preserving touch detection reliability.
An expanded lens hole in a display panel filter structure, filled with a high refractive index material, reduces total reflection at the cover plate interface.
A portable device touch screen detects continued pressing and dragging motions to execute operating functions directly on selected objects.
A calendar application resets display time and timescale using a user-defined touch screen pattern.
Multi-finger touchpad gestures detect specific finger patterns to navigate operating system views, eliminating the need to switch between input devices.