Sliding connection frames and a geared bending structure compensate display slippage during folding, enabling a stable frameless form.
Oblique rail-guided arm sections synchronize dual pivot motion with fewer parts, reducing assembly tolerance, idling travel, and mechanism bulk.
A sliding hinge hidden beneath a flexible display reduces hinge exposure, cuts thickness, and improves screen-to-body ratio in foldables.
Movable central and peripheral supports keep a foldable panel fully backed when open and create space to reduce stress during in-folding.
Sliding rails let the display module shift under corner or fold-area impact, distributing stress and reducing damage in foldable displays.
An angled rotation mount lets double-sided signage switch cleanly between landscape and portrait modes without deviation or complex support structures.
An off-axis hinge rotates and translates a display to keep camera offset constant across portrait and landscape transitions.
A sliding-groove hinge uses guided shafts and interference-fit damping to spread folding loads and protect flexible screens across wide angles.
A chamfered metal foam cushion plate cuts edge impact and moisture intrusion while preserving heat dissipation and shock absorption in narrow-bezel displays.
Sliding shaft sleeves and crossed rods adapt folding width changes to reduce screen deformation, wrinkles, and wear during repeated use.
Pre-positioned cushioning in the hinge housing lets the flexible display move under impact while preventing rigid-contact damage in the bending area.
An elastic plate and rotatable hinge structure help foldable displays stay thin and light while improving impact resistance and durability.
Lost-motion hinge links and magnetic or elastic biasing members reduce folding stress, noise, and angle instability in foldable displays.
A stop-pin latch lets a heavy display tilt and flip horizontal for easier signal cable insertion and removal without moving the whole unit.
A segmented stand and separable dock cut packing thickness while preserving display stability, cable handling, and portability.
Guided sliders and a link arm coordinate hinge motion to limit panel deformation and preserve a smooth foldable display surface.
Independent sub-hinges rotate separately to suppress foldable device twisting, improve coupling uniformity, and help prevent hinge damage.
Sliding rails between the display module and supports absorb corner impacts, limiting stress transfer to the folding area.
Sensors detect nearby object contours so a retractable bezel can extend or retract automatically for precise fit across different sizes.
A spring mechanism lets one enclosure fit different display sizes while limiting coupling tension to avoid damage and visible gaps.
A shifting rotation center and spring counterbalance let large displays move between portrait and landscape with a balanced feel and fewer adjustments.
Pressure sensors and a motorized tensioner automatically fit a VR/AR headset strap, cutting manual adjustment time and discomfort.
A rotor groove and follower mechanism guides foldable display motion smoothly while reducing friction wear and supporting modular hinge assembly.
Multiple springs and a crankshaft maintain near-zero torque, giving a rotatable display weightless adjustment and stable touch use.
A stretchable mesh protective layer blocks foreign substances at the foldable display hinge, improving bend-area reliability and durability.
An off-axis hinge shifts the display during rotation to keep camera alignment stable, while damping and spring elements smooth motion.
Magnetic damper members hidden inside a foldable hinge absorb external impacts while preserving display area and stable folded or unfolded states.
A Scotch yoke counterbalance matches display potential energy change to reduce adjustment force, friction, and hysteresis.
Large and small spacers keep continuous contact in a rotating display stand, preventing rattling during portrait-landscape adjustment.
A cantilevered plate lock replaces adhesives, enabling compact electronic assemblies to be detached with less damage and faster repair.
An angled stripe-shaped hanging hole improves display panel mounting stability by resisting lateral sliding while keeping installation simple.
Protruding housing features mechanically lock into adhesive to resist shear-driven delamination of a bonded friction member.
Electromechanical slip rings replace wear-prone flexible circuits to keep foldable display segments connected through repeated folding.
Magnetic centering and retractable latches let a display mount from the front side without rear access while controlling unintended rotation.
Magnetic coupling lets LED modules detach from the main frame for repair access without removing the mounted display or risking separation damage.
A sliding movable assembly extends or retracts a flexible display, adapting screen size to different usage scenarios without a bulky form.
Varying adhesive force across the fold zone and flat areas keeps a foldable display module uniformly curved and aligned in folded and flat states.
A sliding rail and elastic telescopic assembly lets a flexible screen expand for larger display area while keeping the device compact and flat.
A rotating-handle unloading mechanism lets display modules detach from the mounting frame without motor power, improving user control at short mounting positions.
A rack-and-gear counterbalance moves an auxiliary support member with the display frame to keep the center of gravity stable during adjustment.
Adjustable rods and a flexible adsorption plate match panel curvature to prevent layer staggering and detachment while lowering attachment cost.
A movable stand and connecting member let the screen lift and rotate, matching vertical mobile content while exposing the speaker when needed.
A peripheral filler seal and conformal coating protect mobile displays from shock and water ingress without adding bulky sealing parts.
A gear-and-cam hinge replaces magnetic fixation to stabilize folded states and prevent EMR pen errors in foldable electronics.
A pivoted bearing frame and bending mechanism let a flexible display switch between curved viewing and flat touch use to reduce arm fatigue.
Arc-guided slide and support members stabilize folding, reduce gap volume, and protect flexible monitors from wrinkles or separation.
A main cover plate between double shaft hinges hides flexible cables and graphite sheets at the fold, improving appearance and user safety.
Inflatable deformable members push flexible screens into seamless alignment when flat, reducing folding stress and visible gaps.
Lubricated spacers between aligned springs and the slider cut noise and vibration in a motor-driven rollable OLED lift assembly.
Interlocking components between a flexible layer and rigid member prevent separation, smooth bending strain, and extend foldable display life.