A moving image reproduction apparatus calculates an interpolated shake amount to correct camera shake within a defined range.
A pulse detection imaging circuit uses a non-linear passive load to compress signals for simultaneous energy pulse detection and high-resolution imagery.
A door mirror heater warms a cut filter to prevent fogging, while the filter reduces backlighting glare that obscures the camera image.
Computing gain and offset parameters from reference imaging data corrects photometric imbalances caused by manufacturing tolerances.
A panoramic video stitching system aligns unstructured camera arrays using feature-based registration and optimal warping ordering.
A cradle reorients a projection device using posture data from a portable terminal to enable intuitive video display.
Combines acoustic and motion sensing functions on one chip to reduce package size, lower costs, and eliminate stress-related reliability issues.
Optical cameras detect height changes in elastic layer protrusions to determine touch position and force.
A tension pole mounting system with a universal clamp secures televisions without wall drilling.
Integrating a mold sealer with the circuit board to enhance rigidity and flatness in dual lens camera modules.
A current mirror circuit compensates power supply ripple in image sensor pixel cells using a second current source responsive to rail variations.
A display apparatus shows live view images immediately upon release notification before full image data reception completes.
A receiver projector uses a camera to capture surface images and derives a correction matrix for accurate visual output.
Automated video analysis identifies candidate insertion zones using shape, size, duration, movement, and color attributes for seamless content integration.
Directional compensation preserves high spatial frequency image quality by correcting artifacts at focus detection pixel positions.
A wireless intelligent remote control system manages video channels, internet browsing, and email display through a single unified interface.
A video processing method selectively repeats only corrupted pixels to maintain seamless motion during frame rate conversion.
Segmenting the sensor array and merging signal conversion with encoding reduces chip area and pin count while maintaining high image quality.
A flicker correction unit dynamically adjusts the number of past reference frames to synchronize with image sensor driving state changes.
Segmented pixel regions process frame differences via comparators to reduce power consumption while maintaining image quality.
An image processing apparatus generates additional images and adds them to moving data using pixel depth information.
A camera drive device uses a magnetic convex partial sphere to enable free rotation and precise image stabilization.
A high thermal conductivity wiring board transfers heat from an image pickup device to a metal housing.
A zoom lens focus group with negative refractive power moves during focusing to adjust optical path distances for image formation.
Backend server analysis of low-power feeds triggers high-resolution capture, resolving battery life versus detection reliability.
Segmented server architecture delivers preview content alongside program guides, resolving information loss without increasing system complexity.
Transmitter calculates signal path delays to synchronize secondary media content with primary audio at the receiver.
An imaging system switches between conventional and photon counting modes to optimize image quality across varying lighting conditions.
Symmetrical field effect transistor placement in CMOS image sensor pixels reduces optical gain fixed pattern noise while maintaining high optical fill factor.
A wireless video display system couples multiple source dongles to shared screens via a central controller.
A device attachment housing a multi-wavelength image sensor assembly captures infrared and visible light data.
An articulating camera unit secures in multiple orientations via a rotatable mount, enabling access to confined spaces without rigid housing constraints.
A computing system adjusts display brightness and color to maintain virtual content appearance.
A dual-mode image signal processor switches between perception and feature detection circuits to reduce energy usage.
A camera captures a viewer's face to automatically identify and share images with the correct recipient.
Image processor embeds post-processing metadata into image files, enabling quick retrieval of preprocessed images among many stored files.
Stabilizes false color overlay heatmaps on endoscopic video streams using adaptive persistence algorithms.
Entry point headers embed control parameters in video bitstreams to resolve the contradiction between adaptability and signaling complexity.
A chroma-key mixer overlays real-time video onto prerecorded content using a video switcher and control circuitry.
Segmenting the color filter array into intra-sub and inter-sub blocks maintains zero interpolation distance, reducing image information loss during remosaic.
A multi-lens image-pickup apparatus controller sets output pixel number and frame rate based on stored function relationships.
Adjusting one sensor's timing relative to another eliminates rolling shutter asynchrony, reducing stereoscopic depth mapping errors.
A video receiver module absorbs multiple streams simultaneously to pre-process unrequested content before user interaction occurs.
A computing device display emits light to illuminate the user's face during video calls.
Central server matches passenger data with X-ray security images through automated tray binding, reducing manual labor costs.
Asymmetric overlap between transparent and opaque front cover units minimizes internal airflow, preventing color deterioration from trapped air pockets.
A media presentation description file manages multimedia streaming service switching for flexible multi-stream content delivery.
Asymmetric magnetic element arrangements and shielding members reduce interference between dual-lens camera modules, enhancing focus speed and accuracy.
A processor dynamically shifts control subregions on a touchscreen to isolate the shutter command area from other interface icons.
Dynamic camera positioning uses dwell and track timers to prioritize relevant events while avoiding distraction from uninteresting objects.