Electronic device senses side surface direction to display partial panoramic images and provide orientation information.
Dynamic disparity adjustment compensates for head roll angles, preventing image distortion and crosstalk during oblique viewing.
An optical path selector switches between reflection and transmission states to merge dual subsystem images, reducing device complexity and production costs.
Segmented display regions isolate on-screen overlays from 3D content, preventing viewer discomfort caused by conflicting depth cues.
A processor adjusts left and right eye disparity in 3D video data based on user distance and display dimensions to map content within a comfortable perception range.
A liquid crystal lens uses a segmented refractive index profile to accelerate switching between two-dimensional and three-dimensional display modes.
A rotating display screen integrates an optical assembly to transform divergent light into collimated beams perpendicular to the panel face.
Rotating 3D dioramas adjust occlusions against environment objects to convey asset nature without increasing interface complexity.
Segmenting the depth map reduces bandwidth and computational effort while maintaining image quality.
Circuit segments multicolour image sequences into basic colour channels to process data in parallel, maintaining brightness while serving multiple observers.
A control system detects observer position to display stable stereoscopic images.
Automated flowchart extraction system detects closed-shaped data nodes and localizes enclosed text to generate structured interactive diagrams.
Shifts pixel horizontal coordinates to align stereoscopic image parallax range with display device limits, resolving mismatch issues.
A volumetric display uses a scattering volume to project light into real 3D space for simultaneous multi-angle viewing.
Integrating a parallax barrier into sub-pixel electrodes eliminates additional grating layers, reducing production costs for 3D displays.
A modified vertex shader displaces pixel locations based on viewing angle to generate stereoscopic views from mono graphics content.
Liquid crystal modulators rotate polarization axes to align with circularly polarized eyewear, resolving fidelity and complexity trade-offs.
Optimized tilt angles in a single viewpoint divider suppress moiré patterns while supporting portrait and landscape modes.
Liquid crystal switching eliminates parallax barrier brightness loss, enabling 2D and 3D display modes without fixed slits.
Iterative color refinement adjusts pixel values across multi-camera images to enhance spatial alignment and disparity map generation.
Vertical and horizontal track actuators position the display apparatus to accommodate varying user anatomical features without complex manual adjustments.
A scanning camera system captures images along curved paths using tilted mirrors and multiple sensor assemblies.
A polarization converting element and optical path folding units transmit linearly polarized light to a micro-lens array for 3D imaging.
A relay lens array and combiner project image light laterally to form a visual output on a substrate.
A volume imaging system uses cubic-phase modulation to produce high-resolution images across multiple focus ranges.
Segmented subpixels and a rear polarization filter block emitted light to enable undistorted see-through observation alongside 3D content.
An autostereoscopic display device uses overlapping viewing zones with specific width fractions to enhance stereoscopic image rendering.
Dynamic pop-out control modifies parallax displacement over time to resolve viewer discomfort caused by large static parallax in 3D images.
A ghost cancellation signal counteracts display filtering effects in anaglyph images.
Merging touch sensing with three-dimensional display functions into a single electrode structure reduces assembly complexity and device thickness.
A passive three-dimensional image sensing system uses chromatic focal differentiation to detect object distance through wavelength-dependent light focusing.
A stereoscopic display device uses inwardly inclined mold frame sidewalls to redirect light into the enclosed space between dual LCD panels.
Alternately disposed electrodes shift the barrier pitch dynamically to match viewer eye positions, expanding the viewing angle beyond fixed limits.
A setting apparatus determines settable parameter ranges for virtual viewpoint videos based on user operations.
Varying black matrix opening shapes minimizes luminance differences between views and reduces 3D crosstalk without requiring view overlap.
An image processing apparatus generates disparity images by selecting source data based on detected viewer viewpoints.
Depth-based layering automates pixel selection for seamless content integration without manual intervention.
Time-multiplexed birefringent prisms deflect light from single pixels to increase apparent resolution and reduce focus errors in autostereoscopic displays.
Angled rubbing alignment reduces lateral electric field distortion to achieve symmetrical parabolic optical paths in liquid crystal lenses.
A head-up display projects visual cues in the peripheral vision area using a fixed projector and processor.
A conversion device processes ultra high definition video signals into 3D formats for active shutter, FPR, and naked-eye displays.
Merging geometry buffers across segmented zones reduces distant object viewpoints, mitigating clipping artifacts and improving rendering efficiency.
Integer-based [h,v,t] notation assigns view numbers to autostereoscopic display elements, eliminating rounding errors in high-resolution phase calculations.
A wearable display controller manages video capture regions using graphic indicators for user framing.
Virtual reality systems correlate gaze paths with moving target patterns to eliminate accidental selections from unintentional targeting.
A 3D display apparatus acquires optical attributes from viewing glasses to adjust displayed image parameters.
Segmenting 3D video data into self-contained frame units resolves the contradiction between handling diverse formats and maintaining reliable synchronization.
Dynamic parallax barriers adjust stripe patterns via eye tracking to resolve spatial separation precision versus crosstalk contradictions.
Stereoscopic camera pairs evaluate distance measurements to isolate misaligned units, correcting alignment without user intervention.
A video generator applies visual effects to 3D models based on scanned object attributes.