Segmented support plates connected by a tension-releasing mechanism allow 360-degree folding without damaging the flexible display screen.
Silica gel slits on the connecting piece maintain appearance consistency while enabling folding capability.
Magnetic force between the panel and frame restores the flexible display, mitigating wrinkles and fatigue during state transitions.
A touch filter analyzes signal signatures from other input devices to prevent inadvertent wake-ups and reduce unnecessary power consumption.
Coordinate transformation bridges three and six degrees of freedom media, resolving platform compatibility limits.
Automated assistant bypasses invocation detection using ultrasonic device proximity signals.
A sliding input device mountable to a folio case with a hinge mechanism that allows the input device to translate and rotate with the electronic device.
An adjustable hinge resolves fixed-angle viewing fatigue by engaging a rotary member's groove with a spring-loaded stopper for stable positioning.
Retrieves contextual information from venue databases based on sender location to resolve information completeness gaps in messaging interfaces.
Guide components between rotating plates prevent squeezing during folding, eliminating wrinkles and extending flexible display lifespan.
A processing apparatus derives immersion levels from user reaction data to evaluate virtual reality content.
A foldable electronic device uses a pivotal connector to join separate display and input modules.
A bar-shaped metal core foot member with a resin skin reinforces thin lower cover members to prevent structural deformation.
Flexible interconnect substrate routes signals beneath active display areas using embedded conductors and elastomeric materials.
Magnetic attraction and repulsion forces adjust the flexible display curvature, resolving the contradiction between visual immersion and casing volume.
Resilient sheet sets limit travel distance in a full-area touch device, simplifying assembly and reducing thickness for thin notebook designs.
Posture sensors detect display orientation to reconfigure the work area, resolving the trade-off between portability and usable display surface.
A dual-screen electronic device with pivotally connected bases and sliding displays that expand the viewing area while maintaining ergonomic usability.
Segmented rigid and flexible members conform to nasal topologies, closing gaps to block environmental light without compromising comfort.
A rotating shaft mechanism couples the glasses body to the headband, enabling rapid pivoting between use and open positions.
A multi-step adjusting bracket with a linkage mechanism supports foldable electronic devices.
Merging antiglare and touch sensor layers onto one substrate reduces device weight while maintaining structural stability.
Sliding clamping members adjust grip width on a main body, resolving the contradiction between stable support and adaptability for diverse device sizes.
Hinged cover sections rotate to expand the flexible display area, resolving contradictions between thin portability and functional versatility.
Segmenting the tracker into a wearable tag and cellular base station resolves false alarms from range loss while maintaining continuous location accuracy.
A rollable mobile terminal employs a segmented support structure with guide rails and elastic members to stabilize the flexible display during extension.
A head-mounted display cooling device positioned in the upper portion of the main body dissipates heat from electronic components.
Segmented shaft structures with non-circular engagement elongate the fulcrum to prevent deformation and vibration in thin aluminum alloy screen covers.
Integrating a movable lens cover unit eliminates separate privacy shutters, resolving device complexity while maintaining design aesthetics.
A universal mechanical dock uses a pivotable cradle arm to securely retain and connect electronic devices in motor vehicles.
A slidable camera cover unit uses a guide protrusion to direct elastic displacement during assembly.
A three-layered chassis embeds fastener heads using a compressible intermediate layer and surrounding cut lines.
Variable opening widths in support plates balance folding ease with impact resistance, preventing branch interference.
Motor-actuated airflow control redirects hardware exhaust to warm keyboards, resolving the trade-off between thermal management and user comfort.
A stretchable display device uses a stopper and resistor to adjust the image area size based on wrist circumference.
Coupling sensor arrays to the body detects mechanical energy from gestures, expanding interaction space beyond compact device limits.
Segmented cover units pivot with hinge assemblies to conceal structural gaps, resolving the trade-off between aesthetic appearance and mechanism complexity.
A capacitive detecting electrode integrated into a folding display panel measures position via electrical field changes.
Base substrate grooves distribute stress to resolve the flexibility versus impact resistance trade-off in foldable display devices.
A processor detects convertible device configuration transitions to adjust touch-enabled display element presentation automatically.
A hinged electronic device case pivots to serve as a stand, resolving the trade-off between impact protection and hands-free viewing.
A modular computer uses a rotating connector to switch between laptop and desktop configurations.
Segmented support plates with a gap prevent foreign substance entry while balancing weight and impact resistance in foldable displays.
Corner rail member pretensions base and enclosing members to resist twisting strains that compromise thin laptop enclosure integrity.
A multi-shaft pivot mechanism segments rotation axes to expand display module displacement and orientation ranges.
A dual-axis hinge assembly uses interlocking gears and lever pairs to enable smooth, controlled rotation of electronic device leaves.
A portable electronic device support structure includes bendable portions that pivot to switch the display panel between multiple usage modes.
A clamshell projection unit expands mobile device display and input capabilities through virtual interfaces.
Laser-ablated grooves in overlapping regions reduce bending stress concentration, preventing wire breakage and enhancing foldable display reliability.
A mobile sensor unit attached to a picker's extremity detects objects at close proximity while data glasses provide visual guidance.