A cam-guided detent locks the hinge link at a predefined open angle, keeping back-edge ports and vents accessible during opening.
Selective switching between displays and cameras cuts unnecessary connections in foldables, saving space while enabling fast preview display.
Separated heat pipes extend from a vapor chamber into battery-cell grooves to spread CPU heat in a thin chassis and reduce heat bias.
A recessed magnet lock in a foldable chassis prevents magnet drop or shift under impact and avoids contact with the flexible display.
Client-reported viewport and latency metrics help 360° DASH streaming cut bandwidth waste while keeping viewport changes responsive.
A nested three-screen hinge layout expands laptop multitasking while keeping deployment intuitive and the folded form compact.
A compact earbud smartphone combines voice control, biometric sensing, and adaptive light feedback to deliver hands-free communication in a wearable form.
Resin-filled groove patterns in foldable window glass improve visibility, flatten the folding region, and simplify manufacturing.
Automatic prompt display based on detected inputs cuts confirmatory key presses, speeds control access, and conserves battery power.
A compact overlay lets users adjust multiple app or app-type volumes at once while keeping part of the current interface visible.
Crossing locking protrusions keep the buffer member fixed in a foldable display cover, resisting shear and vertical forces that can crack the screen.
Cross-direction loop groups and via-hole routing reduce wiring interference in foldable digitizers while maintaining uniform sensing coverage.
Antireflection coatings on removable supplemental lenses cut near-infrared reflectance while preserving visible transmission for headset gaze tracking.
Sensors and a processor detect nearby external objects and switch the cover display screen while the object remains in range.
A sliding member and restoring module let foldable hinge cabling retract after stretching, reducing squeeze damage and improving cable life.
Selective width stretching lets third-party app interfaces fit foldable screens without losing content, while preserving aesthetics and lowering processing load.
Direct and reflected laser paths add measurement points for lidar depth mapping while trigonometric correction preserves accuracy without extra projector hardware.
A capacitive touch row brings function controls onto the display, reducing hunt-and-peck key selection in compact convertible systems.
A curved flexible ring display adds top and side input regions while keeping finger-worn electronics compact, lightweight, and battery-capable.
A torsion-loaded hinge stores closing energy and releases opening torque, helping a heavy foldable body open and close with one hand.
When a drop target is occupied on a foldable display, interface elements are automatically exchanged across screen areas to cut move steps.
Detachable keyboard sections and display-based passthrough charging let users reposition the layout for ergonomic comfort without complex setup.
Via-hole loop routing in a foldable digitizer reduces wiring interference, improves sensing uniformity, and shrinks unrecognized areas.
A notebook motherboard, pivoting compute host, and dual-fan cooling cut all-in-one development time while adding flexible display use.
Arc-shaped sliders replace separate slide grooves and sliding pins, simplifying synchronized reverse folding in a flexible-screen display.
An elastic seal blocks liquid ingress yet lifts under internal pressure, allowing electronic housings to vent and stay waterproof.
A lock cam and removable hinge cap keep hinge hardware accessible for repair while preserving clean device appearance and lowering service cost.
Freehand overlays let compact mobile and wearable screens capture image feedback, then match templates to trigger actions or sharing.
Floating icons and non-full-screen windows let an outward foldable screen use both folded displays independently without screen interference.
Spring clips lock a portable display assembly into housing side walls without screws or adhesive, improving robotic assembly and shock resistance.
An asymmetric housing thickness near the hinge keeps a foldable phone slimmer when closed while preserving support for the flexible display.
An off-centered post and scissor hinge link create a housing gap that enables full 180-degree opening without weakening the laptop structure.
Slits and connected segment bodies let a display support plate bend and slide while limiting deformation and preserving panel stability.
Context-aware XR control skips real-world image processing and deactivates sensors when virtual content dominates, cutting power and heat.
Sequentially coupled rotating shafts and bearing frames enable bidirectional folding while supporting the flexible display panel through bending.
Contact surfaces, synchronized gears, and sliding plates limit fold rotation to prevent inadvertent folding and panel damage.
Plate members arranged along the exhaust path cut air collision at the fins, preserving blower airflow and heat dissipation in compact housings.
A modular docking setup adds screen, keyboard, and I/O to phones or tablets, cutting multi-device cost and maintenance.
Automatic-avoidance support plates create display space during folding, reducing squeeze damage and improving flexible display reliability.
Reduced central thickness and compressive stress regions allow small bend radii while preserving impact and puncture resistance.