A chassis structure seals a foam layer between fiber-reinforced plates while joining a thermoplastic frame to the peripheral joint portion.
A foldable display device integrates a keyboard film with raised keys and transparent conductive layers onto the flexible panel surface.
An intermediary cover component moves with the hinge arm to seal recesses, preventing dust entry while preserving device aesthetics.
Liquid flows through internal channels to adjust the center of gravity, eliminating screen shakes during rotation.
Segmented linkage members transfer edge pressure to abut a circuit board against a resilient member, resolving uneven signal registration.
Shafts slide along tracks to adjust display shell position, resolving fixed bracket constraints.
Segmented sensors and validation thresholds distinguish intended inputs from parasitic contacts, maintaining reliability during physical activity.
A foldable display screen segments into sensing and viewing areas to map touch coordinates directly to cursor positions.
A rotating shaft base links two main bodies through decorative members and sliding housings, allowing complete unfolding without damaging abutment.
A liquid crystal display cover switches between opaque and transparent states to protect screens while maintaining visibility.
Distinct folding and unfolding zones with integrated optical layers resolve tensile stress reliability issues while enabling dual-sided image display.
Sliding counterweights on support arms balance front-end assembly mass across rear head brackets to prevent displacement during dynamic movement.
Embedding stainless steel reinforcing columns into the second housing increases bending resistance and prevents battery damage during device flexing.
Movable supporting units guide flexible panels through controlled bending, preventing permanent creases and distortion during folding.
An optically connected hinge transmits data across the moving joint using light signals instead of physical wires.
Segmented touch displays resolve visibility trade-offs by dedicating distinct regions to active programs and selectable icons.
Variable stiffness material transitions from solid to liquid during folding, reducing stress concentration on the bendable portion of foldable displays.
A single display laptop uses a reflective surface to project ambient images for touch interaction.
Dynamic image scaling compensates for hinge rotation angles to prevent visibility obstruction and maintain consistent immersion across connected displays.
A portable electronic device uses a guiding assembly to slide and rotate the first body relative to the second body.
A flexible membrane covers a rigid frame to reduce weight while maintaining infrared transparency for tracking markers.
A flexible sheet supporting structure bends to hold an electronic device housing at a stable angle.
A multi-position latch mechanism secures device panels through distinct engagement positions.
Segmented housings with magnetic connections and wireless links resolve the contradiction between structural stability and usage flexibility.
Nested mounting portions with transition ramps enable smooth rotation between landscape and portrait orientations while protecting devices from physical damage.
A foldable display apparatus manages simultaneous application execution across dual screens through automated startup image detection and screen splitting.
Dynamic mode switching resolves the contradiction between device compactness and touch detection accuracy.
Magnetic elements in the accessory interact with the device to resolve the contradiction between reliable protection from damage and enhanced adaptability.
A master device housing a rotatable bracket and switch assembly detects slave device presence to control component states.
A pivot frame rotates a reflective screen assembly to switch between augmented reality and virtual reality modes, reducing hardware complexity.
A server gathers usage mode and application identification data from terminals to determine recommended applications for specific modes.
Gas springs counterbalance the weight of foldable links to reduce motor torque requirements while maintaining left-right symmetry during rolling.
Segmented multi-rod hinge distributes mechanical stress across multiple connection points, extending service lifetime while enabling 360-degree folding angles.
A blade open-close device uses a voice coil motor to position a stopper that locks the shutter blade, preventing unintended opening from vibration.
Selectable indicators with dynamic visual properties adapt to environmental changes, eliminating cumbersome multi-step navigation sequences.
A head-mountable display incorporates a directional airflow unit to generate controlled air movement.
Multiple bent portions on the flexible substrate reduce connector distance and prevent damage from self-contact, accommodating positional offsets.
Segmented housings connect via a coupling member that guides the hinge shaft through positioning grooves, preventing display deformation during folding.
Segmented spine-like support structure uses rotating vertebrae to prevent acute angles and protect flexible displays from over-bending damage.
A control system adjusts human-machine interaction areas based on device orientation to optimize input functionality.
Spring-loaded tension units on rotating supporting plates prevent panel detachment and image distortion during unfolding.
A dual back cover design lifts one section to form a stand while synchronously opening a gap for thermal management.
A wrist-worn mobile terminal processes voice commands to display vehicle information and transmit control signals.
Rotating foot pad module raises device body to expand clearance, reducing overheating risks during high-performance operation.
A housing integrates a one-piece wristband secured by prongs and a tool-released lid to prevent self-removal.
A support plate with folded flexible portions and protruding bars provides structural reinforcement for display modules.
An ejectable embedded desk folds over the keyboard to provide a stable writing surface while maintaining access to essential buttons and ports.
An eye tracking optical system uses a light reflection unit to couple reflected polarized light to a reception unit for gaze detection.
Discontinuous rigid layers under a continuous flexible overlay resolve the strength-flexibility trade-off in bend regions.