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.