Active thermal management and hinge braking protect flexible displays from damage during folding by maintaining optimal operating temperatures.
Motors adjust optical assembly spacing based on interpupillary distance data from the removable light seal to resolve user-specific alignment issues.
A biasing component dynamically adjusts keyboard height to resolve ergonomic operability versus housing interference.
Resilient members drive the sliding module to rise while a torsion member rotates the display 90 degrees, eliminating manual lifting.
A fisheye lens at a computer hinge captures wide-angle imagery, reducing stitching complexity.
Segmented hinges connect a tablet body to a separate keyboard dock, reducing weight in tablet mode while maintaining versatile orientation.
A switchable artificial reality device uses a polarization switch and reflective polarizer to control image light states for seamless mode transitions.
Segmenting the terminal body from a detachable ring band balances large display area with reduced volume.
A portable device hinge uses elastic members to automatically raise the display screen and reveal a physical keyboard.
A flexible display panel uses a curved rear surface to expand the total visible area while maintaining a compact device footprint.
A foldable display device uses a pivot coupling and support member to enable stable Z-shape folding between chassis sections.
An electromechanical system automates headband sizing, reducing manual effort required to fit diverse user heads.
Rotatable arms with high-friction grips hold devices horizontally, preventing button obstruction while ensuring secure centering.
Segmented adhesive layers create air gaps between the digitizer and display module to minimize surface roughness in folding areas.
An integrated cover member design merges protective functions into a single structure, reducing manufacturing costs by eliminating separate liners.
An inclined cavity in the handle deforms to absorb shock, preventing display panel damage from direct impact.
Dual pivot connecting elements expand the lens shooting angle without moving the entire device.
A pivoting upper machine body exposes a battery casing to enable rapid battery swapping in wearable devices.
A device executes applications by communicating with multiple external devices and dynamically adjusting functions based on their characteristics.
A sliding cover driven by an electric motor and linkage set exposes base vent holes to enhance thermal management.
Flexible thermal spreader layers extend through the hinge mechanism to dissipate heat from components, reducing localized hot spots.
A mobile device moves application icons between external and internal foldable touch-screen regions using a curved-surface transition zone.
Information handling system detects orientation and external display connection to manage input and output device states.
Deployable bridges adjust length to maintain minimum bend radius, preventing crimping and stress damage on rotating flexible displays.
Differentially-mounted pressure transducers beneath a floating lens determine touch coordinates via flex film connections.
A VR helmet lens distance adjusting module shifts optical lenses along the optical axis to adapt focal length.
An airflow detector measures internal air velocity to trigger cooling only when a closed cover restricts flow and temperature exceeds a threshold.
Nesting a convex base into a concave glass cover reduces laptop thickness while maintaining structural durability.
An inflatable airbag tilts the laptop case to expose a ventilation gap, preventing thermal throttling without reducing processor frequency.
A multi-functional notebook incorporates two detachable joysticks that switch operation modes upon connection to the main body.
A hinge assembly with a moving axis shifts its shaft position to enable tablet mode conversion.
A radio frequency system dynamically adjusts operational parameters based on detected housing and accessory characteristics.
A portable computing device uses an integrated temperature sensor to measure external ambient conditions and adjusts cooling fan speed accordingly.
An elastic member rotates a hook to increase fastening force, preventing thin housings from popping out.
A dual-part connection assembly enables independent flipping and rotation modes for electronic device bodies.
Inclined support projections distribute stress to prevent creases and structural breakage during repeated folding.
Deformable elastic clamping parts and suction cups secure electronic devices in VR goggles, preventing device shifting during head movements.
A friction device uses an electropermanent magnet to vary torque, reducing torsional strain on lightweight housing.
A contoured touch sensor accommodates the thumb's natural motion to detect movement inputs.
Traction mechanisms drag innermost screen layers to prevent arching and adhesive detachment during repeated folding.
A foldable mobile terminal uses an angle sensor to detect folding orientation and control application execution across linked display zones.
A head-mounted display overlays a virtual keyboard within the user's field of view to enhance typing interaction.
A flexible bezel buffer absorbs compressive forces from inner wheel difference, preventing loosening and wrinkling while maintaining appearance quality.
Ledges on the rear display cover mount the camera and secure the bezel to prevent bonding degradation under harsh conditions.
A dual readout sensor captures frequency and zero-frequency signal patterns to generate wrapped phase maps.
A laptop rear cover features a light-transmissive film illuminated by an active LED source to produce dynamic full-color visual effects.
Tilting elastic modules and push members manage inward and outward folding of flexible display panels, preventing screen damage during transitions.
Dual linear polarization plates guide display light while blocking external glare in head-mounted displays.
A spacer member abuts a connector portion and cover sheet to distribute bending forces, preventing peeling of flexible wiring board lead-out connections.