Pivoting keyboard housing resolves uneven tactile feedback while corner bumpers improve shock absorption.
Elastic sliders stretch the display panel away from the rotating shaft, minimizing visible creases that degrade user experience during repeated folding.
A retractable touchpad button assembly moves between input and bumper positions to protect the display panel.
Foldable shielding portion covers the ocular lens to prevent light damage and extend service life.
A titanium-nickel alloy baffle changes shape based on temperature to close the air duct, preventing hot air backflow and reducing system surface temperatures.
Pneumatic airbags resolve the flatness versus flexibility trade-off in foldable displays.
Segmented optical modules and a composite support structure distribute HMD weight, alleviating facial pressure and improving wearing comfort.
A sliding hinge plate spring assembly forces a portable device cover to open fully.
Matched annular bodies lock rotating shafts step-by-step, resolving weak strength and short service life in notebook computer mode switching.
Removable keyboard attaches between foldable display surfaces, resolving the trade-off between thin device profiles and tactile input efficiency.
Replacing rigid glass substrates with flexible polyethylene terephthalate films reduces device weight while enabling attachment to curved surfaces.
Rotating bracket assembly shifts shafts outward during folding to increase accommodation space and reduce stress on the flexible screen.
A dual-stage thermal system circulates a working medium through primary and secondary plates to dissipate heat from electronic components.
Multi-finger touch gestures on eyewear enable hierarchical menu navigation, resolving the contradiction between device complexity and ease of operation.
Dynamic joints in the facial interface distribute pressure across varying facial profiles, resolving structural stability versus comfort trade-offs.
Flexible display segments adjust camera orientation to resolve portability and viewing area trade-offs.
A smart keychain device switches between communication connections to perform tasks independently.
A flexible photo panel detects vein patterns through direct contact, resolving the trade-off between authentication accuracy and device size.
A flexible thermal pad conducts internal heat to a pivotable cooling stand, eliminating fan noise and energy consumption.
Segmented transmission base walls position large batteries to prevent keyboard damage during angle adjustments.
Segmented base plate fixed portions absorb chassis deformation to maintain the circuit board gap and ensure normal operation.
Carbon nanotube coatings suppress stray light reflections while minimizing volatile organic compounds.
Composite electrodes using graphene and metal mesh layers resolve the trade-off between light transmittance and crack resistance in folding portions.
A hinge mechanism with arc-shaped link members and friction generating means enables smooth rotation of flexible display panels.
A foldable display buffer layer uses a thickness gradient to enhance impact resistance.
A rotating support structure holds an electronic device upright on a flat surface.
A connecting device uses a magnetic mechanism to couple a coating layer, ensuring smooth rotation of electronic apparatus main bodies.
A detachable projection housing uses a waterproof and dustproof gasket between covers to define an accommodating space.
A slide mechanism enables a device body to move in multiple directions, providing direct access to distinct input interfaces.
A multi-functional accessory transitions between a protective cover and an upright support stand for portable electronic devices.
A retractable foot mechanism extends from a laptop base to provide angled support via a hinge-linked cam system.
A clamping positioning structure secures optomechanical modules to touch glass without adhesive bonding.
Vibration motor generates incremental signals for smartwatch authentication using dynamic time warping and nearest neighbor models.
A single physical key integrates volume and navigation functions using touch sensing to reduce structural holes while adapting controls to device posture.
Segmented cover windows apply harder materials at non-folding zones and softer polymers at folding areas, reducing stress while maintaining image continuity.
A nested guide channel routes electrical connections through the hinge assembly, shielding cables from damage during rotation.
A wearable audio output device adaptively adjusts microphone mute states based on detected input types to streamline user interaction.
A hinged dual-screen mobile device switches to group mode when folded back-to-back, displaying local and remote video feeds on both screens simultaneously.
Lever arms pull support plates to hide the hinge mechanism, resolving exposed structure issues.
An auxiliary opening mechanism uses electromagnetic components to drive magnetic attraction between display and host modules.
A portable auxiliary display system uses a movable support assembly to elevate the screen above the laptop keyboard.
A removable tablet stand uses a hinged foot portion to provide stable support at adjustable angles for larger devices.
A one-way clutch hinge mechanism uses rollers and a cam to manage torque within a tablet computer base.
A flexible display hinge uses stopper projections to restrict rotation angles.
A biometric sensor on the outer surface enables voice access to a portable electronic device while it remains physically closed.
Relocating a control circuit onto a protection layer reduces dummy areas and manufacturing costs while protecting components during sliding operations.
A portable device stand uses pivotable plates that switch between connected and separated states.
A light field camera captures directional light remissions from forearm tissue to enable synthetic focusing on deep vein structures.
A hinge assembly with a sliding mechanism adjusts its length to transition between folded and flat states in mobile terminals.