Parallel illuminating systems regulate individual light intensity via superimposed signals, reducing power consumption and heat production in endoscopes.
An image-processing microprocessor connects multiple cameras to an application processor via intermediary instructions.
Control unit thins divided video signal information to reduce CPU load and improve response time.
A wide area image generator combines video frames from a flying body to create comprehensive ground coverage.
Pre-characterized optical data guides rapid bonding head positioning, resolving the trade-off between high assembly speed and manufacturing precision.
Segmented video camera housing mounts to a face guard and shell to enable recording without compromising NOCSAE safety standards.
A stereoscopic video processing apparatus adjusts perceived depth using scene detection and frame insertion to manage visual transitions.
A text detection system identifies overlaid characters in video streams using optical recognition techniques.
A processor generates depth information from image pixels to determine a focusing area and displays a graphic indicator on the subject within that area.
Dynamic concealment resolves the contradiction between aesthetic appearance and ease of operation by hiding exposed key-presses behind a translucent shell.
A liquid crystal panel modulates linearly polarized infrared light to integrate camera and projection elements within the display area.
Segmenting the image into a center focus area and peripheral change area minimizes unnecessary focus operations during treatment.
A server detects television program endings by identifying specific subtitle string sequences during scheduled intervals.
Dynamic potential control of the separation portion maintains signal integrity and focus detection accuracy when photodiode sensitivity varies.
A 3D morphable model manipulates human body shape and proportions directly within digital video sequences.
A shared microlens architecture aligns multiple subpixels to enable multi-directional phase detection autofocus in image sensors.
An adaptive antenna assembly shapes radiation patterns to amplify line-of-sight signals.
Tilted polarizing beam splitting films inside a transparent member shorten the optical path, reduce heat generation, and enhance light transmittance.
A current and voltage mode active pixel sensor moves the addressing switch outside the pixel to reduce transistor count.
Stitch multiple angled images into a simulated 3D view to resolve the trade-off between expanding field of view and increasing device complexity.
Direct fixation of the heat radiating member to the frame stabilizes contact pressure and improves thermal efficiency.
Internal data sample compression in digital video cameras reduces power consumption and cost by minimizing bandwidth needs for external memory transfer.
A real-time video stabilization method uses corner detection and correspondence to correct camera jitter in input frames.
Segmenting image channels allows selective resolution reduction, lowering data traffic while maintaining detection accuracy in driver assistance systems.
A light guide directs illumination toward the eye pupil and collects reflected signals for gaze detection.
A digital transmission device inserts mode information into transport streams to support additional data processing.
A planar electroluminescent illuminator directs uniform light through aligned apertures to illuminate recessed surfaces.
Segmenting 2D look up tables into hierarchical zones resolves the contradiction between color accuracy and hardware memory limits.
A segmented camera mount arm extends to position the imaging device at a distance while folding into a compact profile.
A mobile terminal image sensor combines color and infrared elements to capture sharp images across varying lighting conditions.
Segmenting the interface into category cards resolves the trade-off between ease of operation and menu complexity by enabling direct favorite channel access.
An eccentric camera position improves image quality by moving closer to the user's face, resolving trade-offs between device complexity and optical performance.
Parallel coding streams generate web-ready low quality files during capture, eliminating post-processing conversion delays.
A camera apparatus stores lens communication capability values in a dedicated storage region for host retrieval.
Segmenting infrared wavelengths into a dedicated channel increases signal strength and resolves blurriness in endoscopic imaging.
Broadened VCSEL cavity reduces temperature-induced wavelength shifts, minimizing bias errors and enhancing distance measurement accuracy.
A video processing apparatus selectively decodes macroblocks within a reduced-image portion to lower energy usage.
Segmented imaging module extends beyond device dimensions to reduce camera shake and improve image quality.
A unified electronic program guide merges availability metadata from multiple content providers into a single interface.
Places thumbnails in the mdat box header to reduce display latency while managing file structure complexity.
An image processing device extracts common photographic attributes to automatically associate photographed images with specified objects.
A system configures image frames using state information to create a three-dimensional first person view.
A portable projection video conference device integrates camera, audio, and display assemblies for seamless cloud-based meetings.
Cameras and sensors detect obstacles during distracted use, transmitting alerts to prevent collisions.
An APL restrictor lowers peak brightness based on image statistics to reduce eye glare and fatigue during video playback.
Computational light field processing replaces bulky corrective optics by detecting directional light to resolve focusing and aberration trade-offs.
Inclining a lens alters the effective region shape to create asymmetric pixel distribution across an image sensor.
A television control circuit loads and parses menu settings from memory to initiate displays based on control tags.
A camera system captures image sequences and analyzes object metrics to automatically decide selective capture settings for important objects.