A finger-wearable device captures manipulation data to determine user engagement scores for gesture tutorials on electronic displays.
Predicting saccade targets generates foveated video streams, resolving bandwidth and computational complexity trade-offs in immersive XR environments.
A wearable display device calculates empathy degrees using movement information from body parts detected by a sensing unit.
Front-facing camera detects facial gestures to control rear camera, resolving stability trade-offs during one-handed operation.
A display system generates adaptive responses using user context information and avatar images.
A display system modifies visual content to mimic eye strain symptoms and induce natural blinking behaviors.
Electronic gaming machines use gaze detection to dynamically display additional information based on player eye direction.
A PSOG assembly detects saccades and predicts final gaze positions using peak velocity data to render foveated images.
A mat speaker generates vibration signals from object detection to provide tactile feedback.
A digital pen delivers tactile feedback to confirm user interactions with interface points of interest without occupying display space.
A bi-directional tap communication device detects finger positions on arbitrary surfaces to map combinations to characters.
Cutting key screens from one flexible substrate merges support and wiring functions, resolving assembly complexity while preserving display reliability.
Electronic system scans images to detect subjects and displays targeted graphical overlays for composition adjustments.
An optical wand replaces mechanical joysticks, projecting patterns to detect pose and reduce latency in robotic surgery.
A dual handling field system enables three-dimensional manipulation of display parameters on smart devices.
A driver IC supplies distinct optimal voltages to main and sub-display panels using liquid crystals with different electrical properties.
Server-generated configuration files synthesize native and browser interface elements, eliminating separate code development for each operating system.
A drone retrieves a light field capture puck from a charging station and attaches it to a modular VR headset.
A vehicle input device uses a touch sensor and controller to display a gauge bar aligned with user gestures for menu selection.
A display method selects between low and high complexity modes to determine information placement on an electronic device screen.
Active connectors merge power and data interfaces within the light seal of head-mounted displays to support flexible sensor configurations.
Segmented region extraction isolates human body features from background noise, improving posture estimation accuracy without excessive computational overhead.
Augmented reality system correlates acoustic signals with visual data to identify sound sources.
A head-mounted display adjusts user interface element positioning based on detected head movement speed thresholds to enable intuitive hand-free navigation.
Information processing device detects user gestures to generate operating instructions for multiple display objects.
A combined circuitry component integrates keypad and touchpad functionality to enable efficient one-hand alphanumeric input.
A piezoelectric actuator assembly uses a flexible polymer substrate to mount the active element and conductors for efficient electrical connection.
Image capture device and processor analyze user movements against sensor thresholds to distinguish intended gestures from unintended actions.
Segmented bridge structures maintain mechanical strength while reducing weight and thickness of portable computer housings.
A fixed foveated compression method partitions visual content into central and peripheral regions with varying detail levels.
Audio processing system applies transfer functions to spatialized signals for immersive mixed reality environments.
A voice search system captures user gestures to disambiguate quoted content queries.
Merging a haptic actuator with a sensor electrode reduces device weight and volume while enhancing functionality through shared structural components.
A wearable device band detects shape changes to generate interaction signals.
A computer program updates object pose using 3D scene feature points and a known model.
A processor architecture uses dedicated notification lines and parallel data matching circuits to update register values across multiple cores simultaneously.
A virtual sign language system translates user inputs into written text outputs via a dedicated keyboard interface.
Physical buttons on the handle collect user instructions to control display images during exercise.
A ring controller detects movement using inertial sensors to adjust visual content in user interfaces.
Distance-dependent haptic feedback guides user interaction with touchscreens, reducing ambiguity and driver distraction during vehicle operation.
A 3D human-computer interface system projects spatial controls and uses optical markers to detect hand movements with high precision.
A client adjusts a video visible region by calculating size changes and displacements from user posture data.
External sensors detect real-world spectators and render their physical states as avatars in virtual reality environments.
A computing device generates user-specific summaries by analyzing application data to determine skill levels and content complexity.
A tactile feedback wheel translates ultrasonic range data into precise physical position cues for intuitive environmental navigation.
A body joystick system detects user movement to generate control inputs for virtual reality applications.
A neck-mounted wearable computer uses automatic magnetic connections to link smart glasses and batteries, enabling seamless human-computer interaction.