A detachable expansion module couples to a mobile device main body via magnetic force and a movement converter mechanism.
Rotating the first sleeve exposes the touch head, resolving the contradiction between integrated functionality and device complexity.
A dedicated gap detector bridges dual touch panels to distinguish contact from proximity, resolving recognition ambiguity at the hinge joint.
Hollowed-out areas in the supporting layer disperse and buffer impact force, preventing stress concentration that damages display components.
Orientation adjustment mechanism rotates auxiliary display to cover notch, enabling information access when closed.
A stylus pen switches between first and second communication modules based on insertion into a pen housing.
Digitizer uses photosensitive polyimide resin layers with varying storage moduli to resolve visibility and folding contradictions.
A back surface touch sensor allows users to select upper screen icons and manage phone calls without removing the device from their ear.
An adjustable pivoting element resolves thickness conflicts in clamshell devices by enabling smooth rotation across different input module profiles.
Electromagnets and sensors adjust magnetic forces to maintain stable attachment across varying orientations, reducing detachment risks.
An overmolded polymer trim member between the display cover and housing prevents impact damage without increasing device weight or volume.
Side edge sensors on a mobile terminal detect continuous finger sliding to switch task windows, reducing operation steps and improving interaction speed.
A water drop hinge moves support plates away from a flexible display during folding to create space.
Transparent members integrate electronic modules within active display areas, reducing peripheral bezel size to enhance aesthetics and reliability.
A circuit board holder positions a main board end to create a separated space that prevents interference between the flexible board and harness.
Rotating housings adjust the fixing piece geometry to prevent mechanical stress on flexible display screens, ensuring continuous functionality.
A cam-driven support mechanism adjusts the base elevation of a portable electronic device to enhance heat dissipation without increasing thickness.
Processor detects pointing device contact state to toggle touch display input modes, resolving mode switching complexity.
Segmented support plates and cushion layers shield input sensors from folding stress, enhancing durability without increasing device thickness.
A rigid cover guides a flex cable along a hinge mandrel, preventing damage from bending while concealing components in thin devices.
A wearable device notification system detects unworn status to send timely reminders.
A resin support base with a rubber foot protrudes through a chassis notch to transmit radio waves.
Rigid substrate zones enable stable driver mounting on flexible displays, reducing electrical resistance and mechanical stress during folding.
A display unit moves along a base via a hinge and track system while conductive strips maintain electrical connections.
Segmenting the sensor system into independent units prevents uplink signal interference between panels while eliminating routing wire disconnection risks.
A communication terminal slider uses rollers for smooth movement and a pawl lock to prevent swaying during tilting angle adjustment.
Position-varying phosphor thickness in the color conversion layer compensates for LED non-uniformity, reducing display thickness while maintaining brightness.
An acoustic input surface replaces complex visual interfaces with sound wave detection, resolving the trade-off between ease of operation and device complexity.
Nesting the hinge inside the multi-link cover reduces device thickness while maintaining structural durability and aesthetic quality.
Rotation mechanism enables voice input processing mode that maintains system state while lowering maximum power consumption settings.
Curved guide grooves and pins in a folding shaft create intervals that protect flexible displays from damage while simplifying assembly.
Raised portions and integrally molded ribs distribute external pressure to prevent LCD panel deformation without increasing case thickness.
Guiding members constrain rotating screen edges toward the base, eliminating visual discontinuity and interference between displays.
Segmented display panels with a mediator controller resolve ambiguity in multi-layer touch input.
An edge-mounted camera assembly uses a housing recess to distribute stress, improving optical quality without increasing device thickness.
Touch sensor arrays detect mutual coupling signals to determine device orientation without adding dedicated bending sensors.
Processor dynamically adjusts effective input areas based on stylus proximity to resolve fixed sensing limitations.
A detachable acquisition apparatus docks with a processing device to capture multimedia data via matched interfaces.
Pivotable bodies reconfigure a single controller between gesture pad and gaming modes, resolving comfort-versus-adaptability trade-offs.
A display backing component uses a stepwise-thickened central cross-section to distribute mass and resist deformation.
Stoppers along the outer periphery secure the second body against unintentional detachment, preventing damage from excessive external forces.
Hinge assembly couples display and base subassemblies via insertable sections, eliminating top-heavy instability and securing input devices.
A second screen rotates its display image based on device flipping state to maintain a positive viewing direction.
A head-mounted display adjusts virtual image distance based on wearer accommodation to enhance visual comfort.
Segmented fixing members secure components between housing walls, reducing structural complexity and simplifying assembly processes.
A venturi nozzle cooling system accelerates airflow velocity to expel heated air away from sensitive components.
Scissor hinges adjust friction to balance the closing force of a spring-backed flexible display, resolving portability versus structural integrity trade-offs.
Sliding the pivot axis transforms the clamshell into an all-in-one position, resolving ergonomic discomfort and thermal management issues.
Asymmetric magnets guide connector alignment via repulsion to prevent damage from misorientation.
An auxiliary transceiver apparatus splits video streams across multiple channels to enhance transmission reliability.