A head-mounted display projects meter data into the user's field of vision.
A head-mounted display uses a flexible face-fitting frame to accommodate diverse facial geometries.
Processor consolidates wearable logs into scheduled transmissions, reducing energy consumption while maintaining data availability.
A sliding backbone member bridges the gap between chassis members in a foldable portable information device.
A biometric sensor apparatus performs initial security verification using biometric parameters and switches to subject-dependent parameter detection for ongoing authentication.
Ultrasound and proximity sensors detect a user's finger to reorganize the wearable interface, resolving digital crown accessibility issues for impaired users.
Protrusions on flange members engage apertures in wall portions of a traylike structure, resolving port access complexity while retaining device stability.
Segmented hinge links rotate via magnetic repulsion, preventing display screen damage from excessive bending stress.
A wearable device generates unique virtual codes to enable secure financial transactions without exposing actual card numbers.
Magnetic coupling enables quick cushion replacement on head-mounted displays, solving wear and fit issues for diverse user faces.
A touch screen display device adjusts sensitivity based on insertion status into a connection chamber.
A sensor layer uses dummy contact holes alongside effective ones to minimize light reflection variations across the display surface.
Segmented pistol grip modules with spring-loaded electrical contacts reduce wrist fatigue while maintaining robust mechanical connections.
Lost core injection molding creates seamless single unitary electronic enclosures with integrated undercuts.
A hybrid thermal foot structure houses a pen docking compartment within an IHS enclosure.
A segmented cover window combines a sapphire front part with moldable side parts to enable complex wearable display form factors.
Segmenting a bending display separates content from controls to reduce physical load on the user.
A portable computer utilizes a movable stage guided by pillars to align with handheld devices, eliminating the need for specific transmission cables.
A rotating component uses a movable strip with meshing portions to drive two structures in opposite directions.
A processing device adjusts its performance level based on feedback from a throttled headset to maintain system compatibility.
A head-mounted display uses a sliding linkage to pivot away from the face.
Mapping a virtual mouse model via internal motion sensors eliminates camera occlusion failures and removes external positioning hardware requirements.
A sheet-shaped heat conduction member transfers thermal energy from an image forming device to a holding member in head-mounted displays.
A resistance ring circuit determines folding angles through sliding conductive elements and voltage division.
A segmented flex hinge assembly enables smooth rotation of information handling systems using stacked flexible sheets.
Sealed gas air bags in a foldable terminal provide pneumatic support for the flexible screen bendable region, preventing sagging during folding.
Segmented housing with multi-directional fans draws cool air across thermal components, preventing heat stacking in closely arranged laptop elements.
A rotating door mechanism exposes connection ports via a guide rail, resolving the trade-off between device compactness and port accessibility.
Segmented backlight relocation resolves the trade-off between versatile dual-side display and complex rotation mechanisms.
A supporting structure with side walls houses an elastic switch below the touch display module, preventing display damage while enabling compact device sizing.
Segmented foldable support and elastic sheet minimize wrinkle formation by reducing deformation area at the folding zone.
A mesh pattern layer with specific openings distributes stress in the folding region, preventing crease degradation while maintaining visibility.
A hook structure uses a buffer material to absorb shear stress and protect the hook body from breakage.
Segments the display surface into central and edge areas using distinct sensor types to prevent unintended hand contact errors.
A gesture recognition system detects hand movements in three-dimensional space to generate electronic commands for meeting management.
An elastic bar engages the housing through a sliding locking member, resolving the trade-off between stable wear and easy attachment.
A foldable display support member incorporates a metal pattern layer surrounding the folding area to provide structural rigidity and electrical grounding.
Variable thickness protective layers absorb repulsive forces during folding, preventing cracking and lifting of the display panel.
An eight-shaped fixing unit maintains dual rotary shaft parallelism, eliminating high-precision assembly requirements.
A physical overlay with a rotatable guide wheel enables tactile control of touchscreen functions.
Segmentation and dynamics principles enable a functional assembly to adapt to different user scenarios by reconfiguring movable members.
Segmenting the interface into separate bodies allows consistent hand positioning while switching display output for touch input.
A retractable cap aligns with a camera module to accommodate its extension within a foldable device housing.
A wearable biometric sensor activates only when worn to reduce power consumption.
A handheld device integrates a touchscreen on its peripheral housing surface to enable user interaction.
A processing system classifies device panel descriptors and location data to generate structured objects that define spatial relationships between integrated peripherals.
Relocating driver circuits to non-foldable areas prevents metal wiring fractures in the bend zone, extending service life.