Bending the rear flexible display into a watchband eliminates resource wastage from singular usage.
A sliding cover plate absorbs length differences during folding, while magnetic restoring units apply tensile force to ensure complete flat unfolding.
Transparent conductive lines on lenses connect to thermally conductive frames, moving heat away from the user to resolve miniaturization thermal bottlenecks.
Rotating shaft assembly positions camera on display edge to preserve screen-to-body ratio while maintaining consistent orientation.
A four-section articulated link mechanism enables simultaneous sliding and tilting of an information apparatus display part.
Compensation subunits slide relative to rotating plates to prevent flexible display stretching and damage.
A moveable case uncovers an opening to form a thermal pathway when the display rotates.
A metal bridge connects adjacent vapor chambers in a cooling module, redistributing thermal energy across the chassis to eliminate localized hot spots.
Segmented modules connect via universal chassis interfaces to resolve the trade-off between device versatility and user customization capability.
A gear slider hinge converts rotational housing motion into linear display movement.
Counterweight hinge spring balances downward key forces to reduce load on mechanism parts, enabling thinner chassis design without compromising durability.
Segmented media presentation description files enable client devices to request specific viewpoints, reducing switching latency in virtual reality streaming.
Hinge-coupled wings fold over a center panel to form a recess for the base housing, resolving the trade-off between expanded display area and portable volume.
A wearable media device system calculates an engagement score based on display opacity to measure user attention.
Replacing mechanical hinges with elastic shape-preserving members reduces thickness and weight while maintaining stable display angles.
Segmented window structures with optimized bridge thickness resolve the trade-off between structural strength and bending performance.
A rotary interface wheel with conductive pins detects position and rotation on a touchscreen display surface.
A project support system generates model cases to schedule consensus-building tasks and background work.
Magnetic connectors replace mechanical hinges with magnetically active edges, eliminating structural complexity while maintaining connection reliability.
A latch mechanism on a rotatable display member prevents full closure, protecting mechanical couplings from damage during mode transitions.
A linking-up member combines linear and curved strokes to drive a display body rotation between landscape and portrait modes.
Segmenting the strap from the mount via a latching interface resolves wear and fit issues while maintaining secure electrical connections.
A communication system implements a project-based schema to organize user-interface nodal elements and resources.
A mobile terminal authenticates user identity by verifying wearable device signals alongside gesture inputs.
Strain gages on flexible frame legs detect touch position and grip strength without adding device complexity.
A mobile terminal rear input unit integrates a finger scan sensor with button functions using a shared flexible printed circuit board.
Thicker first backplate units in corner areas reinforce curved display modules, raising the stress threshold to prevent warping and structural distortion.
A mobile computing enclosure features a cylindrical cavity to house energy storage modules.
A glass-based article featuring a compressive stress layer extending from the surface to enhance drop performance.
Embedded magnets in an overhanging brim retain a stylus, resolving storage dislodging and interior space conflicts.
Hinged dual display panels rotate to face multiple users, resolving the trade-off between expanded viewable areas and device complexity.
A unified interface manages audio balance and overall volume across multiple displays on a hinged device.
A signal switching method connects electronic apparatus buses via voltage comparison.
A rotary mechanism uses a cam-shaped guiding structure and single shaft to enable large rotation angles in electronic devices.
A folding display content collection panel adds items via drag or capture controls.
Dual adjustment members modify accommodating space volume to resolve limited customization in wearable electronics.
Silicon carbide lenses conduct heat away from sources, maintaining display brightness in space-constrained augmented reality headsets.
Segmented flexible substrates and detachable electronic modules enable customized sizing and positioning for individual wearers.
Varying thickness near the hinge reduces carrying scrapes while maintaining simple manufacturing processes.
A transmission-type head mounted display detects predefined gestures to trigger image recognition and retrieve related information.