A user-based program guide system organizes media content using a navigable user axis alongside a time axis to display content accessed by selected users.
A support member pivots an imaging device display panel around multiple axes to adjust its orientation and position relative to the main body.
Automated calibration replaces manual measurements by calculating optical path lengths from captured projection images, resolving installation complexity.
Master electronic device coordinates client devices for synchronized content capture, eliminating post-production editing complexity.
An imaging control device generates second dynamic image data by deleting partial frame images from first dynamic image data.
Image matching apparatus extracts brightness data from overlapping regions to generate corrected target images.
A camera virtual axis application calculates an acquisition trigger rate from motion controller data to synchronize image capture with object movement.
A digital correlated double sampling circuit latches reset and image data to generate effective pixel values.
Embedding a conductive element in the supporting base prevents oxidation and wear of exposed metal coatings while stabilizing conduction performance.
A camera effects shortcut applies visual settings to a live feed.
A/V recording devices send video signals to users who report suspicious activities for review.
A focus detection device switches differential filter frequency bands based on contrast values to enhance signal reliability.
Tilting specific display units adjusts image distance to resolve depth of field limitations without complex computations.
A video signal processing apparatus applies distinct color frames to differentiate primary, standby, and controllable camera outputs on a multi-view display.
A slide show system selects display effects automatically by analyzing characteristic areas within individual images.
A rearview camera system subdivides the field of view into side-by-side sub-regions on a vehicle display screen.
Variable frame rate playback reduces processor loading by dynamically adjusting video thumbnail speeds based on position and user interaction.
An optical intensity reducing block attenuates video image light before sensor capture to prevent flicker artifacts in digital cameras.
A video transmitter reads receiver characteristics via CEC lines while holding the HPD signal level steady.
Digital signal processing replaces analog linear compensation circuits to reduce device complexity while maintaining measurement precision.
Distributed CPLD control in a four-side buttable CMOS imager reduces digital I/O complexity while maintaining high frame rates.
A flicker compensation device calculates line average values to detect subject movement and extract flicker frequency components.
Integrated stacked camera module packaging resolves particle contamination risks while lowering manufacturing costs through simplified structural design.
An adaptive reference picture selection system directs motion estimation using inter-picture motion measurement.
A row parallel processing mechanism reads pixel charge signals and conditionally resets pixels based on real-time thresholds to optimize light level detection.
Dual-mode signal control manages noise in CMOS image sensors, improving signal-to-noise ratio without increasing circuit complexity.
PMOSFET reset transistors and a current mirror unit minimize 1/f noise and hot electron generation in CMOS image sensors.
An optical unit design uses an aperture diaphragm and laser cut-off filter to reduce periodic pattern ghosts in endoscopes.
A video processing system adjusts encoding frame rates using calculated confidence values to optimize storage usage.
A graphics decoder maintains continuous memory management during digital stream transitions on a recording medium.
Spare readout channels replace defective units while averaging unused signals to subtract temporal row noise from pixel outputs.
A jitter buffer controller adapts de-jittering delay using video stream information to manage network conditions.
Blends visible light and infrared image signals into a single display for seamless operator viewing.
Digital correction coefficients align microlens images to pixel blocks, resolving manufacturing errors that degrade distance estimation precision.
A rotatable liquid crystal display unit adjusts its orientation to optimize viewing angles for live view images in bright outdoor conditions.
A universal head camera system adjusts pan, tilt, and zoom positions to maintain object tracking.
A segmented lens system adjusts optical elements during image capture to vary focus and perspective across different sensor regions.
A television adjustment system uses test images to detect over-scanning.
A camera system adjusts exposure settings by classifying the shooting environment as indoor or outdoor using GPS and light sensor data.
Patterned lens portions on under-display cameras capture distinct optical signatures to combine image data.
Lens driving device corrects optical axis tilt via image sensor signals, eliminating extra sensors and reducing structural complexity.
Camera system captures overlapping images from transport device and frame to create a unified bird's-eye view display.
A semiconductor device uses segmented isolation layers with distinct etch selectivities to define functional regions in the substrate.
A broadcast receiver system processes supplementary data channels on a user device display.
A mobile system analyzes video frames to identify suitable instances for high-resolution still image capture.
A power supply block selectively energizes operation blocks within an image sensor to manage energy distribution across different operational modes.
Segmented sensors measure distance via infrared reflection to resolve illuminance precision trade-offs.
A steerable mirror camera adjusts its field of view to capture specific regions of interest within a vehicle's path.
A CMOS video camera uses a control module to determine strobe periods for pulsed light filling based on rolling shutter exposure timing.