An image sensor uses parallax signals from focus detection pixels to estimate focus reliability through evaluation value normalization.
A relay device uses an FPGA with multiple interface units to manage control signal communication between medical system components.
A handheld device switches between dual camera feeds based on speech activity to generate a multiplexed video stream.
A definition calculating device sums absolute values of higher frequency components in compressed images to estimate remaining storage capacity.
A user terminal generates subtitles from voice signals when ambient noise exceeds allowable ranges.
A single column reading circuit processes both rolling and global shutter signals using shared amplification.
A mobile terminal camera module adjusts aperture using a voice coil motor actuator positioned between lens assemblies.
A program renewal system automatically detects successive episodes using common identifiers across channels.
An imaging system adjusts illumination radiation direction based on attached lens unit information to optimize bounce light emission shooting.
Component-level usage data with time intervals resolves synchronization issues between primary and companion devices.
Processor modifies endoscopic images using angle data and generates channel guide overlays for tool alignment.
Integrating a recursive bilateral filter into the video encoder reduces computational overhead while preserving edge details in texture-rich areas.
Autofocus adjusting unit estimates focus position using zoom information to drive the lens rapidly, preventing slow adjustment after zoom operations.
Camera module captures linear images to generate high dynamic range output, eliminating switching delay that compromises real-time process accuracy.
Time divisional multiplexing of buffered and scaled images eliminates shutter lag while maintaining high resolution quality.
A calculation module determines final lens positions by analyzing focus scores for multiple objects simultaneously.
A touch panel detects finger movement to a switch for continuous shooting.
An imaging device classifies video materials using recording support metadata to streamline production workflows.
A monitor circuit tracks functional macro states to enable simultaneous image frame processing.
A hybrid projection matrix combines nano-emitting particles with gold or silver nanoparticles to intensify light emission.
Segments electronics within a camouflage housing to reduce theft risk while maintaining recording reliability.
A camera module uses thermal interface material between a power management integrated circuit and a metal fixing member to conduct heat away from the substrate.
Computer-generated reality system analyzes recordings to detect objects of interest and generates modified content based on user preferences.
A control unit dynamically adjusts output forms of display data to match detected image formats.
A messaging client application passes augmented reality content identifiers between devices to apply visual effects.
Tetra patterns at image sensor edges reduce noise amplification during lens shading correction.
A sample-hold unit sets operational amplifier transconductance to minimize kTC noise.
Segmenting sensing tasks across multiple independent sensors maintains high frame rates while achieving multi-megapixel resolution through parallel readout.
A CMOS image sensor uses shared read nodes and alternating column exposure times to reconstruct high dynamic range images.
Discrete tone gain functions process specific luminance ranges to eliminate saturation and clipping artifacts.
Sub-sample information boxes document IRAP pictures and non-VCL NAL units to enable efficient random access without complex bitstream parsing.
A lens control apparatus calculates correction values for optical element movement to maintain precise focus positioning.
A photosensor pixel structure uses amorphous silicon films to detect light without a signal read switching transistor.
Block-level stress estimation prevents OLED burn-in by dynamically adjusting display parameters based on frame differences.
Multi-level seat surfaces on a spacer adjust optical axis tilt, eliminating the need for multiple washers and reducing assembly complexity.
A television receiver controller manages a single decoder to process multiple data streams by selecting resolution modes.
A visible light imaging system extracts captured images and videos from local acquisition circuitry for immediate transfer to a centralized data repository.
A data processing system detects timing differences across multiple video cameras using a display object with changing characteristics to apply precise timing corrections.
Mirroring distorted presenter views helps portable device users correct participant image orientation without requiring technical knowledge of camera angles.
A projector uses a second volatile memory to retain display object data during standby for rapid retrieval upon resumption.
Selective update of preferred media assets in interactive grids reduces computational load on mobile devices by skipping non-preferred source refreshes.
An angled horn guides high frequency sound away from the device body, reducing acoustic collision and preserving audio clarity.
A crank-shaped lens holder nests within a barrel body to secure optical components without protruding from the image pickup unit.
A six-element optical imaging lens configuration with specific surface curvatures and refracting powers to achieve compact system dimensions.
A color correction apparatus adjusts video output using a lookup table derived from peripheral brightness levels.
A camera actuator uses separated magnet driving parts to enable optical image stabilization.
Compositing multi-view data creates a virtual curved focus surface, enabling shallow depth of field for objects at different depths.
Segmented thermal barriers prevent equipment shutdown at elevated temperatures while reducing system complexity.
A virtual personal video recorder synchronizes home recording metadata with a central server for remote mobile access.
A wireless display screen integrates a unified audio/video signal receiving module to decode and convert signals for synchronous image display.