Calculates rotary angles for optical touch sensors based on panel measurements to resolve view range deviations and ensure full detection coverage.
Vendor-defined PCI Express messages bypass peer-to-peer restrictions to improve data transfer speed while maintaining platform compatibility.
A touchpad method extends the cursor to detect adjacent objects for selection.
A voxel-based system determines spatial occupancy to generate precise object placement recommendations within virtual reality scenes.
A four-row overloaded keypad layout positions a space key centrally to optimize ergonomic design and keystroke efficiency.
Stacked conductor layers with passivation enhance signal transmission, reducing disconnection risks from narrow line widths.
Integrates light emitting and sensing elements within a transparent elastomer layer to define an internal sensing space.
Multi-level arbitration segments buffer, channel, and device selection to prevent packet starvation in high-speed communication links.
A capacitive touch panel sets priority orders for detected objects to validate proximity results.
Inwardly spaced sensors on an elastic member detect deformation to expand the touch sensing area beyond edge borders, resolving restricted interaction zones.
A display control device manages scroll operations by excluding designated items from the scrolling target range.
An automatic detection unit identifies external device data formats and wakes the host from standby mode.
Dual-side touch input on a transparent display resolves hand obstruction issues during live-view capture.
Segmented second metal wiring openings expose insulating members to minimize dark patterns caused by overlapping conductive traces.
A control unit determines the active area of a cover glass to enable accurate touch interaction with a display behind it.
A sensing compensation circuit provides negative input impedance to offset parasitic effects in touch device sense lines.
Segmented sensing circuits reduce power consumption while maintaining touch sensitivity through periodic mode switching.
A carbon nanotube sensing element changes electrical resistance to detect nearby objects without physical contact.
A rotatable input mechanism translates user rotation into display zoom magnification changes on electronic devices.
A variable capacitor uses an integrated terminal member to detect writing pressure through capacitance variation.
A processor monitors flight times between keys to determine single-hand typing patterns and configure an appropriate virtual keyboard layout.
Sorting touch signals by strength reduces group selection time and memory usage during touch position detection.
Cutaway grooves in unit electrode lines prevent linear pattern recognition, reducing moiré interference with diffusion films.
Variable resistance elements enable simultaneous pressure and location sensing, resolving device complexity from separate sensors.
SAS expanders tunnel PCIe data through storage domains, resolving protocol incompatibility between connectionless PCIe and connection-based SAS networks.
Simultaneous ultrasonic transmissions with exclusion zones prevent signal overlap and ensure accurate user input recognition.
A sensing circuit uses a capacitor to store threshold voltage and decouple it from current flow through transistors.
Driving transmitter electrodes via basis functions to obtain capacitance information for nearest and non-adjacent electrode pairs.
Embedding electrodes in a substrate avoids uneven refractive indexes caused by etching, simplifying manufacturing.
A PCIe switch virtualizes input output devices across multiple hosts via a managed transport fabric.
A touch screen system detects sliding tracks to invoke shape-adaptive magnifiers.
A touch panel uses organic transparent conductive layers to cover electrode units for improved flexibility and conductivity.
Rearranging the keypad layout randomly prevents unauthorized fingerprint analysis while maintaining ease of operation.
A main flexible printed circuit board connects touch driving circuits to sensing members on both display surfaces.
Segmenting drive electrodes into independent groups secures touch detection periods while minimizing noise interference from display signals.
A touch driving circuit generates multi-level signals using shared switch groups and a single capacitor to reduce component complexity.
A control method filters capacitance signals and report point coordinates to suppress unintended flick operations on touchscreen terminals.
A touch sensor circuit merges self-capacitive and mutual-capacitive sensing via a shared node to accelerate detection cycles.
Merging X and Y axis traces onto one layer eliminates alignment errors and image distortion caused by separate trace patterns.
Multi-wavelength illuminators and optical filters separate eye reflections from spectacle glare, maintaining gaze tracking precision during user movement.
A touch sensing unit uses insulated electrodes on a shared substrate layer to enable electrical connectivity between separated conductive patterns.
An input device adjusts second signal strength based on separation distance from a display sensor layer.
Selection switches multiplex data and touch-control lines onto shared contact pads, reducing pad count and increasing pitch for easier bonding.
Insert molding a pre-curved sensor film with a translucent resin layer suppresses thermal contraction steps on the front surface.
Segmented sensors and matched filters apportion force data from multiple simultaneous touches, resolving ambiguity in multi-finger interaction.
Dynamic graphical panels augment physical keyboards on touchscreen displays to resolve hand movement inefficiencies in multi-handed input scenarios.
Relocating the camera to the device edge resolves thickness constraints by eliminating vertical substrate interference, enabling high-resolution touch sensing.
Capacitive touch panel detects multiple touched positions by comparing signal magnitudes from segmented sensor pad groups.
Distinct optical bands on a bezel allow single-image processing to differentiate pointer types, reducing processor load and improving detection accuracy.