An elastic positioning assembly creates a gap to cut sliding friction, absorb tolerances, and keep dual displays aligned at set positions.
A sliding hinge links two integrated screens to expand notebook display space while folding compactly and avoiding external screen misalignment.
Coordinated sliders, gears, and a locking mechanism constrain hinge motion, hold user-set fold angles, and help protect flexible displays.
Side-face riveting columns free hinge thickness space, strengthening shaft-support joints while keeping a slim mobile terminal hinge.
Different rotation radii in wound linear components cut shaft rotation and frictional wear, improving laptop opening and closing durability.
A dual-hinged mount switches a peripheral between monitor, surface, and handheld use while keeping tilt adjustment stable.
A preformed 3D foldable substrate keeps the display near a neutral state, reducing adhesive stress and extending folding-cycle durability.
A sliding plate and rotating leg unit simplify casing angle changes while keeping stable engagement in standing or lying positions.
A dual-slide frame and pivot joint let an attachable screen stay compact in transit while rotating and extending for flexible multi-device use.
A nested gear, bracket, and detent hinge supports folding in narrow display areas while maintaining angle stability and suppressing torsion.
A gear-rack rotating shaft coordinates folding motion to prevent flexible-screen wrinkles, extend screen life, and save space when closed.
A biased ring and adjustable elastic force widen hinge torque tuning without overdeforming springs, helping electronic devices hold stable angles.
A coupling cover and rotating metal-plate hinge layout creates inner space for added structures while protecting the flexible display during folding.
Nested leaf springs replace bulkier coil springs to deliver tunable stiffness and high displacement where space is limited.
Pinion-linked internal links and a hinge let a large display unfold with small force while folding into a compact, cleaner form.
A synchronized three-cylinder hinge and support arm moves an all-in-one display from raised viewing to stable horizontal writing positions.
Bezel-mounted friction bands give foldable computing hinges high rotational hold without extending under the displays, preserving thinness and display coverage.
A guide unit with rotation, connection, wire, and elastic parts sets fold order to limit interference and keep multi-fold display sections aligned.
Magnet units attract the support structure during unfolding to counter fold-region deformation and keep the display surface flat.
Different winding radii create torsion force in a laptop hinge linkage, reducing shaft rotation and improving opening-closing durability.
A scalable linkage and separated bending area keep a foldable flexible panel from stretching or squeezing during repeated folding.
A sliding member and supporting link compensate hinge bending to reduce tensile force on a flexible screen and lower damage risk.
Layered arms, rails, and rotary brackets fit hinge support into a narrow fold area while enabling stable multi-angle use and torsion control.
A semi-cylindrical hinge shaft with sliding supports keeps a foldable display aligned, reducing wrinkles and enabling gap-free folding.
Distance sensors in a cradle switch a mobile display off when held too close to the face, then restore it at a safer viewing distance.
A dual-axle rail hinge uses integrated torque engines and a spring to keep kickstand thickness at 3 mm or less without losing support strength.
Bellows, magnetic strips, and micropores protect a foldable screen in full folds, hold stable angles, and keep internal space isolated.
Springs and a crankshaft counter-balance display weight to keep torque nearly neutral and make rotation feel almost weightless.
A built-in rotating stand uses a click stop and stopping portion to hold device orientation securely without extra support parts.
Embedded shear thickening material along housing edges absorbs transport shock and vibration without adding protrusions or extra thickness.
A slide regulator coordinates two hinge shafts to enable stable 360° opening without complex mechanisms or high machining accuracy.
A dual-axis hinge, support portions, and an elastic connection member keep a foldable screen flat and protected during folding and obtuse-angle unfolding.
Staggered magnetic units and support bars hold the folding area flat, reducing deformation damage in foldable displays.
A gear-linked hinge uses controlled friction to keep an integrated support plate stably closed or angled without unwanted protrusion.
An adjustable pole with sliding brackets and hooks mounts photobiomodulation devices securely on doors, walls, or mobile stands.
A telescopic clipping structure fixes the invariant display area during bending to prevent warping and sliding while simplifying dismounting.
A retractable standoff sets the display at a 15°-35° drawing angle to cut glare, improve posture, and trigger drawing mode automatically.
An offset two-joint hinge places rotators at different panel distances to spread folding stress and improve display durability.
A cavity-based peripheral housing keeps both display surfaces unobstructed while nesting components inside for compact, flexible computing layouts.
Standardized BIDT metadata lets industrial data carry its meaning, simplifying integration and enabling contextualized real-time visualizations.
A hinged stand with stopper-defined angles lets the device mount conveniently while preserving internal component arrangement space.
A hinge-integrated smartpen slot improves foldable device portability while balancing full storage, easy retrieval, and compatibility with pen shapes.
A threshold-driven hinge and linkage opens the auxiliary screen only at larger notebook angles, avoiding screen interference and enabling smooth lifting.
Geometric cut and recess patterns let rigid enclosure sections bend without separate hinges, reducing size and manufacturing complexity.
A compact cam, detent, and gear hinge layout supports accurate folding, angle holding, and torsion suppression in narrow fold areas.
A rotatable link and pivoting support member increase stand freedom and angle adjustment while keeping the portable device compact.
An external dual-axis hinge uses side-by-side shafts and sleeves to enable 360° rotation without recesses that disrupt device appearance.
Rubber or silicone dust caps and back-cover protrusions close hinge gaps during folding to block debris and protect the display module.
Touch-sensitive side panels replace physical buttons to improve one-hand input, preserve slimness, and protect the foldable hinge.
Moving support plates pivot on a cam to support a flexible display when open and create a large-radius service loop when folded.