A torque-limited ring mount lets HMD users enlarge, reduce, and finely hold head circumference for easier fitting and removal.
Angle-switched dual motion assemblies vary hinge torque and friction, enabling one-handed laptop opening with stable operation.
A pivoting stand with locking openings and a front flap balances compact transport with stable multi-angle support for flat electronic devices.
Cam-guided hinge motion removes friction stop sections, letting foldable displays move smoothly between fully closed and fully open states.
A hinged top and bottom case improves portable display storage while adding rigidity, heat dissipation, shock buffering, and drainage.
A gear-linked rotating rack hinge simplifies foldable housing assembly while reducing screen stress through virtual shaft placement.
Elastic detent pins in a compact foldable hinge hold the display housing at specific angles without adding excessive structural complexity.
Ultrasound-guided hinge locking detects objects during lid closure to prevent display damage and support controlled angles for thermal efficiency.
A retractable hinge with sliding links and recessed ends lets a computing display fold flat with minimal gap and less hinge bulk.
Separated elastic pieces and cam convex portions tune opening force and hold resistance for smoother switching and stable open support.
A low-profile arcuate rail-and-groove hinge uses radial biasing force to deliver bistable open and closed support without consuming chassis space.
A movable shaft cover adjusts flexible circuit slack during folding to prevent wire break and bending fatigue in foldable devices.
A bendable flex-rod stand holds tablets at many angles while resisting deformation and improving stability for users with limited motor control.
An integrated hollow elastic member and concave cam simplify shaft assembly, stabilize torsion force, and extend terminal hinge life.
Multiple nested leaf springs deliver tunable force and high displacement in tight spaces, enabling compact assemblies with high stiffness.
A bendable flex-rod stand holds tablets in many orientations while resisting deformation and slippage for users with limited motor control.
Elastic arms and protruding portions create friction-based torsion, simplifying hinge assembly while allowing easy replacement and position holding.
A sliding support-plate hinge forms a display accommodation space that prevents extrusion and keeps fold curvature uniform for longer display life.
Groove-and-protrusion supports constrain hinge brackets against shock-driven misplacement, improving foldable device stability.
Multiple hinge segments guide folding and unfolding to support a large flexible screen while preventing unnecessary load and reverse folding.
Protruding and recessed support plate features keep contact with the floating plate during folding, preventing sticking and enabling smooth unfolding.
A lift-and-lock mounting assembly adjusts device height and viewing angle while maintaining stable support for video watching and online conferences.
A weighted base with through-mounted wheels enables pivot, tilt, and swivel adjustment while maintaining display stability during movement.
Stacked shielding plates with sliding links and magnetic joining protect the hinge while keeping foldable devices thin and smooth to open.
Integrated side supports, linkage, and rotating members simplify foldable display assembly, cut part count, and improve connection reliability.
A thermosetting resin layer replaces high-temperature welding in foldable display mounting, preventing surface deformation and mold marks.
Meshed gears and sliding connecting rods synchronize swing arms to distribute fold stress evenly and protect flexible displays from deformation.
A preformed 3D foldable substrate matches housing contours to cut adhesive strain and extend flexible display folding life.
An articulated connector with a built-in cable reel enables tilt, swivel, pivot, and height adjustment while keeping display cables managed.
A sliding clamping portion switches between two rotating portions to prevent torque-loss opening errors and keep support-angle adjustment stable.
Magnetic attraction and repulsion switch support plate angles to expand operable space while keeping a foldable electronic stand stable.
Angle-triggered magnetic attraction and repulsion let a foldable support expand usable space while keeping electronic devices stable.
A separable hinge core and mount simplify laptop housing disassembly, selective torque tuning, and hinge component reuse.
Arc-shaped shaft geometry aligned with the display neutral layer matches folding motion, reducing stretching, wrinkles, and reliability loss.
A segmented hinge torque profile keeps opening effort low at first, then raises friction to hold foldable screens at usable angles.
A weighted base and wheel layout lets a display move while keeping stable support and independent pivot, tilt, and elevation adjustment.
Movable structural assemblies let two connected display bodies switch between forms, expanding screen area without locking the device into one layout.
Two magnetic attachment points let a pen shift automatically with chassis posture, improving access in use and secure carry in narrow frames.
A sliding holding part supports the fold zone and frees slot space during folding to speed creep recovery and reduce screen creases.
Opposing rotating housing parts create an accommodating space that limits screen bending radius and supports the fold region to reduce damage.
A dual-rotation hinge with sliding support and a coupling rod prevents support float, improves screen flatness, and reduces wedge-shaped gaps.
A nested swing-arm and translation linkage cuts hinge thickness and avoidance space while preserving smooth, reliable folding.
Nested cams and elastic members let a foldable hinge stay thin while preserving damping force, support, and stable opening motion.
An articulated connector integrates a cable reel and nested covers to support pivot, tilt, swivel, and height adjustment without cable dislocation.
A rotating body guides the flexible substrate through the hinge axis to limit bending stress, preserve cable life, and keep the foldable chassis slim.
An articulated connector with a cable reel and detachable covers enables pivot, tilt, swivel, and height adjustment while protecting cable routing.
A deployable spine support gives a book-style foldable tablet a stable base on surfaces while staying stowed for handheld use.
An elastic blocking member bridges protection covers and shields the foldable display edge from debris and lifting damage near the hinge.
Multiple rotation pivots and stop mechanisms guide natural folding while limiting display curvature and preserving flatness in folded and open states.
Helical-slot sliders link two torque swing arms to keep foldable screens synchronized while shrinking hinge space for smaller devices.