A magnet biasing mechanism attaches input components to internal chassis ledges using magnetic attraction and elastic force.
A transparent elastic supporter prevents module deformation in a penetration hole design, reducing bezel area while maintaining durability.
A hinge assembly with a central rotating shaft allows links to slide within receiving portions, maintaining aesthetic unity.
Support plates stabilize flexible displays in foldable devices, preventing level differences and positional deviations that cause surface wrinkles.
A dual display electronic device keeps the first component visible on a stationary body while the second activates upon opening.
Integrally molding a touch-sensitive portion into a curved mobile device cover to eliminate separate side keys and reduce thickness.
Segmented elastic layers distribute bending forces to prevent wrinkling and cracking in foldable mobile terminal displays.
A foldable computing device uses a bendable display to switch between operating modes like phone and tablet configurations.
A wire locking system secures wearable display components using a routed cable and mechanical stops.
A dual-axis hinge mechanism pivots an electronic display screen to enable flexible viewing angles and multi-user accessibility.
A rotating lock mechanism uses shape memory alloy wire to securely connect separable device portions.
Annular wearable device embeds electronic components in a cured package material to reduce volume and weight while maintaining reliability.
Segmenting the rear cover allows users to remove contaminants while maintaining display protection.
A portable computer system activates keyboard mode when a proximity sensor detects the display screen resting on a surface.
Optical distance measurement and capacitive finger detection filter unintended forearm contact to prevent false activation of wearable device rotary inputs.
A curved display design expands the viewing area while maintaining a compact device footprint.
Cam members cooperate with a resilient frame to generate recovery force, eliminating manual retraction steps.
Varying hole densities in a titanium flexible frame resolve curvature mismatch and breakage risks at boundaries between adjacent portions.
Segmented rigid ribs and elastic pieces eliminate particle contamination from scraping while stabilizing the panel against vibration.
Electric latch assembly drives stylus movement via switch element, eliminating manual grasping to prevent mistouch during retrieval.
Processor rotates specific display objects based on device orientation events, resolving text readability conflicts during screen adaptation.
A notebook computer with dual displays and a hinge switch module activates electronic components based on rotation.
Ion exchange forms a compressed surface layer on glass cover edges, reducing crack initiation susceptibility while maintaining thin device profiles.
A pivoting mechanism uses magnetic attraction to connect detachable tablet modules, enabling rotation without complex mechanical joints.
A hinge mechanism with a translatable display support adjusts its position relative to the spine during rotation.
A handheld apparatus uses a light guide member to illuminate transmissive icons while a separate touch module detects input signals.
Mounting the light-emitting element directly on the flexible printed circuit board reduces touch module volume while maintaining icon illumination.
V-shaped supports and a blocking layer enable large deformations in a foldable mobile terminal without impairing exterior continuity.
A dual touch display system derives noise compensation from a secondary electrode array to isolate stylus signals.
Transparent plates and a concealed film member hide opaque components, resolving the conflict between structural stability and the floating display appearance.
A pressing member applies tension across a gap between chassis plates to suppress wrinkles in the folding region of a flexible display.
An integrated conductive plate prevents foreign material ingress between housing structures, eliminating display defects caused by folding gaps.
Magnetic alignment joins the detachable input unit to the main body, resolving stability versus assembly friction trade-offs.
An asymmetric tablet design places the battery in a rear recess to shift the gravity center, reducing rotating torque and improving one-handed holding comfort.
Hinge mechanism stows physical keyboard between dual screens, eliminating external accessory bulk.
A wearable device uses a connector with projecting members to engage holes in a flexible strap, forming specific conducting channel connections.
A cooling module integrates a Peltier element, blower, and fan to circulate air through ducts inside the viewing module.
A bi-stable hinge uses elastic deformation to snap flexible display platforms between open and closed positions.
A collapsible multimedia terminal uses a four-bar linkage to elevate the screen and camera assembly during operation.
Replacing multiple inertial sensors with segmented rotational capacitors reduces device complexity while maintaining precise hinge angle detection.
Segmenting the central rotary structure into independent snap-fit mechanisms allows horizontal movement of each display module to accommodate asymmetrical eyes.
An integrated tilt stand in a lightweight laptop case resolves the weight-strength trade-off by merging support functions into the shell structure.
A multi-fold computing device uses segmented housing and magnetic hinge assemblies to enable dynamic reconfiguration across multiple usage modes.
A detachable expansion module uses a pivoting supporting plate and deformable connecting member to store an expansion unit within the device body.
A mobile terminal uses a rotatable bracket to mount detachable sub-units at specific angles.
A wearable device gathers biometric data to generate validated sleep profiles, replacing unreliable self-reporting with automated chain of custody verification.
Conical boss extensions increase screw thread engagement to resolve torsion and flexure failures in low profile portable information handling systems.
Thickness gradients and nested grooves form secure storage for pens and cards, resolving portability versus capacity trade-offs.
Alternating magnetic elements align tablet modules with docking bases, eliminating manual hook positioning.