Opposed touch sensors create a relative reference frame, eliminating the need for visual alignment with the detection surface.
High fracture strain third sub-line portions prevent damage during folding while maintaining electrical conductivity.
A length-adjusting assembly with biasing members and guide grooves extends a flexible display to increase the visible surface area.
Swingable supporting elements act as fulcra to enable full-surface pressing, resolving localized pressure limits while simplifying structural complexity.
Pivoting joints in the articulating arm allow 360-degree screen rotation, resolving ergonomic discomfort from fixed display angles.
Nesting the hinge in a display recess prevents collision while maintaining compact thickness, avoiding belleville spring wear.
A worm gear transmission mechanism enables synchronous rotation of rotating components in a foldable terminal hinge.
A foldable display device integrates a hydrophobic functional layer on the window member to repel contaminants and maintain surface integrity.
A hinged docking display unit connects a smartphone to a keyboard and screen via a recessed port.
Segmented support member holds circuit board to prevent unintended switch closure during casing depression, maintaining switch position away from buttons.
Segmented ceramic micro-beads coat flexible displays to boost hardness and corrosion resistance without sacrificing bendability or tactile feel.
A body sensing eye mask integrates fluid channels with virtual reality goggles to deliver temperature and vibration effects.
Segmenting camera and antenna modules into a movable accessory housing reduces lid thickness while improving image quality.
A movable lens adjusts focus by detecting reflected light spot diameters, resolving eye strain from fixed display distances in AR headsets.
Integrated hinge structure uses guiding members and shaft assemblies to reduce device size, weight, and assembly complexity while supporting flexible screens.
A flexible electronic device uses a buffer layer between film substrates to absorb mechanical stress and protect internal components.
Allocates processor time to designated applications in preview mode for continuous screenshot updates.
A portable information handling system switches touch pad modes based on display rotation angles.
Segmented polypropylene or polycarbonate cases reduce device weight and eliminate complex fixing structures for stable head mounting.
Segmented footprints on a single body enable multiple viewing angles without complex mechanisms, resolving stability trade-offs on soft surfaces.
Electronic device video out interface mirrors external display controls on the native touchscreen for seamless presentation navigation.
A semi-solid hinge cover uses an elastic inner member to enclose rotating hinges while maintaining a sleek exterior shell.
Sliding slot mechanisms guide chain segments to prevent relative offset between support components, protecting flexible display panels from damage.
A foldable terminal screen unit connects to a base via a two-degree-of-freedom linkage that repositions the display.
Detachable keyboard, display, and hinge case structures resolve complex geometry trade-offs by enabling easy engagement while maintaining secure containment.
A multi-touch detection system uses triangulation to determine object coordinates within a movable area defined by mobile devices.
Differential charge variation sensors detect physical contact between screen and keyboard in foldable electronics.
Stacking soft and hard sub film layers in a display window resolves the contradiction between folding flexibility and impact resistance.
A hinged keyboard accessory features a rotatable coupling mechanism that attaches to tablet computing devices in multiple orientations.
An intermittent lifting assembly drives a mobile terminal heat dissipation panel using geared components and a swing rod.
Segmented input devices attach via magnetic alignment to a portable computer, resolving the trade-off between portability and robust gaming performance.
Angled touch sensor edge electrodes in substrate cavities detect precise edge gestures, resolving insufficient edge input recognition.
Different ions in specific zones improve bending resistance while maintaining structural integrity during foldable display manufacturing.
A portable computer display module uses a sliding assembly with auxiliary structures to reduce friction between the sliding block and slide rail.
A hinge torque structure with cam mechanisms and elastic members adjusts friction across folding sections.
Infrared gaze detection directs the imaging unit to exclude the wearer's body from the output, resolving manual operation burdens.
A miniaturized touch keyboard structure integrates a capacitive touchpad directly onto the key matrix for precise cursor control.
A rotatable first contact portion engages a detachable input body to enable stable surface-to-surface connection.
Link members guide the display portion to various positions, resolving the contradiction between fixed structure simplicity and versatile usage modes.
Segmented link members distribute bending stress across multiple joints, preventing damage to the flexible panel during repeated folding cycles.
Spaced rigid plates and levelers prevent middle region deformation, maintaining uniform light reflection across the display area.
Curved display segments wrap around the wristband body to provide visibility while reducing thickness and eliminating the need to flip the wrist.
Segmented insulation plate with localized stress control patterns distributes folding stress, preventing cracks in the flexible display area.
Segmenting the keyboard into distinct key areas allows a rotating display module to switch between QWERTY and multimedia modes without increasing device volume.
Persistent coordinate mapping aligns virtual content across diverse user environments, resolving placement inconsistencies in shared mixed reality sessions.
Sheet plate brackets replace zinc alloy holders to reduce weight while plastic blocks eliminate noise from metal-to-metal contact.
A harness gasket creates a physical barrier between the display device and user face during engagement.
A pivoting cover plate stretches an elastic heat dissipation fin to resolve the contradiction between thin notebook thickness and thermal performance.