An interlocked rotary hinge lets foldable housings open smoothly while preserving portability, larger screen area, and internal battery space.
Orbit mechanisms, link bars, and tracked shafts let dual displays rotate while minimizing the gap for smoother finger or stylus movement.
Elastic guide members support geared link members in a foldable display hinge, reducing load while holding stable opening angles.
An articulated multi-bar hinge supports the bending region of a flexible display, reducing bezel area while improving folding stability and durability.
Movable support wings and a hinge restriction unit keep a foldable display flat when open while guiding safe curvature during folding.
A weighted base with an external wheel enables pivot, tilt, swivel, and height adjustment while preserving standing and driving stability.
A motorized tilt and support assembly keeps a phone automatically framed during video calls, avoiding hand-holding and selfie stick setup.
A threaded connecting member synchronizes dual hinge shafts without bulky gears, cutting foldable device thickness while keeping motion stable.
Computing components are nested inside a peripheral housing so the display stays unobstructed and can shift orientation for compact portable use.
A pivoted flexible screen winds the camera-hole region into the frame when idle, preserving full-screen display and reducing color inconsistency.
Rotation pivots and stopping mechanisms guide foldable displays through natural motion while limiting bend radius, stress, and folded thickness.
Sliding support plates, clamps, and a fold-out stand create a compact dual-screen mount that fits varied notebook screen sizes securely.
A swing arm and connection rod hinge creates display folding space while keeping folded thickness close to stacked housings.
Preformed extrusion profiles and stamped folds create reinforced mobile enclosure covers with less machining, waste, and processing time.
A sleeve between the hinge cap and shaft shortens laptop hinge caps, improving ventilation, material choice, and repairability.
A slider-crank shaft mechanism creates triangular clearance to increase fold radius, spread stress, and prevent flexible display creasing.
Angle-dependent friction clips raise hinge resistance near fully open or closed positions, improving orientation hold without harder operation.
Magnetic supports and synchronized hinge motion keep a foldable supporting sheet flat under weak external actions and prevent unintended folding.
A weighted two-part base and wheel assembly lets the display pivot, tilt, and elevate independently while maintaining standing and driving stability.
A two-shell bottom housing tilts during screen deployment to improve one-handed grip and reduce drop risk on flexible displays.
A weighted base with a wheel-linked structure stabilizes an adjustable display mount while supporting independent pivot, tilt, swivel, and height motion.
A counterweighted base with through-mounted wheels keeps a display stable while allowing independent pivot, tilt, and swivel adjustment.
A counterweighted wheel base supports pivot, tilt, swivel, and height adjustment while maintaining standing and driving stability.
Dual-laser cutting with reflected-light sensing trims foldable display layers precisely, reducing bezel dead space and layer steps.
A two-axis rotor-follower hinge guides symmetrical folding with precise motion control while avoiding complex gears and high manufacturing cost.
A sliding linkage replaces complex gears in a foldable hinge to improve shaft synchronization, cut assembly errors, and lower cost.
Detachable underside mounts and adjustable prongs raise laptop height and tilt without blocking air vents, while staying compact for case storage.
Segmented support portions, hinge shafts, and path compensation keep a flexible display flat at obtuse unfolding angles while limiting bend damage.
A protective cap and blocking member shield foldable display edges at the hinge gap, limiting ingress, tool damage, and squashing.
A worm-worm gear linkage synchronizes foldable terminal rotation while fitting the thickness direction to keep the body slim.
A movable door opens partially or fully with screen height to limit dust entry, avoid interference, and support safe rollable display lifting.
A triangle-like display accommodation space protects the bent flexible display from extrusion and helps maintain uniform fold curvature.
Adjustable spring tension and multi-axis joints let one monitor arm support varied display loads while staying stable and wall-friendly.
A segmented hinge with a rod, tubular member, and C-shaped lock avoids display-panel interference and simplifies laptop assembly.
Extruded panels with localized thickness features cut CNC machining, material waste, and process steps in mobile device enclosure covers.
A buffer plate, roller assembly, and heat dissipation sheet reduce panel wrinkles, preserve rigidity, and block IC heat in a thinner foldable display.
A sliding fitting member and stopper track lock a rotating body at a preset angle to prevent accidental flipping during use.
Using existing VESA screw holes, this buckling mount fixes screens securely while avoiding external brackets and simplifying assembly.
Segmented metal plates and rotating hinges create usable internal space for added components while protecting the foldable display.
Segmented hinge links and a sliding mechanism guide natural folding motion while keeping foldable displays within safe bending limits.
A multi-constant spring linkage offsets display weight, enabling low-effort height, tilt, and rotation adjustment without complex hardware.
Laser-etched edge ribs increase epoxy bonding on a smart ring inner surface, improving waterproofing while preserving decorative ring aesthetics.
A third rotating assembly adds horizontal orientation control to a mobile phone clip, enabling full-angle adjustment on external equipment.
Segmented hinge torque levels ease one-handed folding while holding a foldable device stable across different opening angles.
Rubber or silicone dust caps and cover protrusions close the hinge gap during folding to block debris and protect display reliability.
Blocking members on rear covers seal hinge-cover gaps in foldable displays, stopping dust and sand ingress during repeated folding.
A protective cap and blocking member shield the foldable display edge at the hinge, limiting foreign substance ingress and deformation.
A torque-limited ring mount lets an HMD expand easily for wearing while maintaining secure holding force and fine circumference adjustment.
A cam-and-roller detent hinge stabilizes folding angles, spreads display loads more evenly, and reduces stress concentration in foldable devices.