A sensor layer uses alternating electrode groups to detect touch inputs and folding states via capacitive coupling.
Offsetting the hinge axis prevents cable tension spikes and insulation wear, enabling compact electronic device designs.
Sensors detect user activity to transmit status data, enabling the server to select and provide relevant widgets without manual input.
Processor adjusts display ratio to match stylus input area, eliminating proportional distortion from inconsistent touchpad dimensions.
A detection device with a rotatable collector and integrated test paper supplier.
A laptop hinge design featuring a torque mechanism and lock section for stable rotation.
A conductive adhesive tape with a nonwoven fabric layer bonds flexible circuit films to lower modules in display panels.
A dynamic authentication engine adjusts security layers based on detected nearby devices to verify user identity.
A dynamic air diverter redirects fan exhaust based on display housing rotation, preventing heated air exposure to users.
Segmenting the digitizer into a detachable component reduces device thickness and weight while maintaining precise electronic pen operation.
Rotating protection portions cover curved display sections, distributing stress and preventing damage while increasing structural complexity.
A pivot structure uses an elastic member to expand a bracket while a positioning assembly guides the linkage.
A flexible display backplane moves relative to a protection plate within a rotating housing assembly.
A physical crown input device rotates virtual objects on small displays.
Segmented hinge units with multiple rotary shafts enable bidirectional folding and adjustable curvature radii, reducing manufacturing complexity.
A hinged multi-display device uses a transparent window to reveal a mini-display, resolving clutter and multitasking limits in clamshell computing.
An accessory slot accepts slot-mating features to resolve the trade-off between device complexity and versatility by enabling easy swapping.
Varying support film thickness reduces adhesive bubbles and prevents cracks in bent areas.
Segmentation maps display regions to lighting cells, resolving the trade-off between enhanced user experience and increased device complexity.
A sliding backbone member bridges foldable chassis gaps, preventing internal element exposure while maintaining device durability.
Segmented capacitive and inductive touch sensors enable simultaneous finger and pen detection through overlapped screens, reducing sensor system complexity.
Segmented flat cable routing absorbs rotation angle changes between chassis while preventing severe curvature and noise.
An intelligent wireless fan dock provides extended cooling airflow to mobile information handling systems through dynamic speed adjustments.
Segmented fixing components use curved wedging geometries to join bezels and touch panels, preventing structural separation under load.
A guide apparatus with a receiving plate and retainer aligns protective films on portable devices.
Magnetic fixing members stabilize sound output units to maintain folded state and improve sound pressure intensity.
A transmission module lifts the display module away from the body to create a frameless look while generating a gap that improves heat dissipation.
Integrating a light seal module with head securement arms enables customizable face engagement and adjustable tension.
A dual-screen handheld device switches display modes via off-screen gesture inputs.
Laser sintering stainless steel hexagon patterns into aluminum recesses reduces weight and thickness while maintaining structural integrity.
Sliding backbone member spans chassis edges to prevent internal exposure and preserve durability across the hinge gap.
An extendable stand elevates the display to resolve ergonomic strain and thermal constraints in clamshell devices.
A dual screen smartphone dismisses the action bar to display media across a contiguous surface.
Integrated watchstrap sensors convert analog voltages to digital color data, automating face illumination matching and eliminating manual user adjustments.
A transparent display adjusts interface visibility based on detected movement speed to balance information access with user awareness.
A wearable facial interface uses a cushion with varying stiffness regions to distribute pressure across different facial areas.
A covered multi-pivot hinge assembly integrates structural covers with friction engines to control sequential rotation across multiple axes.
A multi-screen display device integrates a circuit board within a clamping frame to route internal wire harnesses for data and power distribution.
A hinge device adjusts torque magnitude based on rotation angle to stabilize display screens.
An orthogonal intermediate helical gear engages parallel gears via line contact, resolving wear and stability issues in large-angle rotation.
A display panel integrates a pixel defining pattern contacting a barrier wall side surface to enhance structural integrity.
An extendible support assembly allows the screen to retract or expand, resolving the contradiction between miniaturized portability and large viewing area.
A laptop movable door exposes the internal fan impeller for direct user access.
Comparing filtered air-conducted and bone-conducted speech components at the articulation rate resolves speaker identification accuracy issues.
An elastic pressing part generates uniform friction force in a pivoting hinge, resolving unstable operation and complex assembly issues.
Matching vents on the speaker module and segmented printed circuit board enhance air elasticity to boost volume without increasing device complexity.