A magnetic hinge assembly transitions between flat and deployed states to support portable electronic devices.
Curving the display panel corner toward the center reduces screen distortion in VR headsets by aligning focal distance with optical lenses.
A folding case with a flexible display spans a fold region to enable multiple orientations while reducing device footprint.
A magnetic coupling system secures an input device to a computing display while supporting rotational movement via a physical spine.
A locking structure integrated with pivot mechanisms secures electronic device components against unintended movement.
An arcuate biasing strap with resilient material holds a headset securely, eliminating manual fitting adjustments.
A docking station uses a magnetic engaging lever to secure portable computing devices.
Vertical touch pad actuation via a rotatable guiding component resolves fulcrum leverage issues by triggering switches regardless of force application point.
Segmented plates with crease areas adjust viewing angles while magnets stabilize the structure against accidental collapse.
A linkage mechanism rotates a lifting member to raise the screen and expose the rear air outlet.
A pivoting electronic device features a latch assembly that releases the display to slide along the frame.
Segmented reflector regions control light distribution from wide-angle CSP LEDs to optimize illumination intensity and prevent leakage.
A foldable electronic apparatus employs a pivoting supporting portion with a bias component to counterbalance display weight and prevent overturning.
Placing the circuit board in a rotating shaft housing increases the screen-to-body ratio without thickening the device structure.
A notebook cooler creates an airtight space with a soft seal and turbofan, forcing pressurized air through internal holes to resolve poor heat dissipation.
A curved portable biometric reader uses frustrated total internal reflection to capture high-resolution fingerprints, palm prints, and footprints.
Coil springs in the cushioning mechanism absorb impact forces after movement restriction, preventing gear tooth skipping and reducing mechanical stress.
Updating reference data based on signal disturbances resolves trade-offs between detection precision and processing time for metal surfaces.
A wearable device deep learning accelerator processes sensor data using neuromorphic memory to lower power consumption.
Movable support portions guide the flexible display into a curved receiving space, preventing sharp creases and screen damage during folding.
Segmented rod parts in a binder cushion absorb external impacts, resolving the trade-off between display flexibility and durability.
Metal foam or honeycomb structures in low form factor devices increase thermal resistance to reduce heat transfer while maintaining mechanical strength.
A hover touch interface detects pre-touch events via proximity sensors to enable direct spatial input.
A head mountable display uses a segmented fan housing to direct airflow through internal volumes for thermal management.
Segmenting the display from the main housing allows external status viewing without requiring users to don the headset.
Processor maps key inputs to camera functions based on detected folding angle changes, resolving usability risks when holding the device.
Segmenting the housing and nesting a speaker chamber along a curved surface resolves thermal management trade-offs while maintaining structural robustness.
Segmenting the hinge cover from the bracket protects the flexible circuit board from external damage during cleaning operations.
A retractable support bar deploys from a docking station housing to stabilize connected devices.
Notched cover components create a shared accommodation space for pivots, eliminating separate molds for clamshell and convertible types.
Dynamic thermal profile adjustment increases processor speed by raising skin temperature limits when a housing provides insulation.
Automated system detects user location and device status to generate visual activity representations for messaging interfaces.
Interconnected supporters guide a flexible screen through nested folding paths, reducing bending stress and extending lifetime.
Circuit board surrounds bracket to mount electronic parts without separate wires, reducing device volume and assembly complexity.
Parallel arm latch engages metal base hooks to maintain coupling strength while preventing damage during thin resin chassis assembly.
A micro acceleration biometric system filters user gait patterns to authenticate identity without active participation.
A modular IoT sensor system uses custom USB Type-C pin definitions to enable detachable expanded modules for flexible configuration.
A removable component engages a hinge structure to lock cover rotation, preventing unauthorized operation of the portable electronic device.
A rotatable hinge connects a display to a computer body, enabling the screen to flip and rotate between landscape and portrait orientations.
A laser sensor aligns with a frame through hole to enable signal transmission without front panel openings.
A tri-fold portable electronic device uses a sliding input module to uncover the central hinge section for flexible operation modes.
An arc-shaped track guides a moving component to prevent host module scratching during display pivoting.
Merges hand grip and belt into a single flexible unit to cut manufacturing costs and simplify assembly.
Temporary fixation aligns hinge fixing members via engaging portions, reducing assembly time while maintaining stability.
Speaker system serves as adjustable stand for AIO computer, enabling mode switching to resolve complexity trade-offs.
Rotatable and slidable input devices nest within the shell, resolving volume constraints while maintaining ergonomic usability.
An instrument eject system automates stylus access via a hinged cover, preventing touchscreen contamination and loss during mode transitions.
An embedded controller transforms interaction data into a compatible format for host systems without specific drivers.