Non-destructive scans locate image regions before high-quality capture, saving headset power.
Refractive diffusion layers sharpen projection images while limiting unwanted reflections.
Deep linking launches customized AR overlays in messaging apps without direct integration.
Compare signals before and after mute intervals to distinguish channel changes from image stops while reducing CPU and memory use.
The case uses folding-angle detection to classify overlapping views and automate wide-angle and panorama capture.
A networked image processing unit uses sheet generators and 2D shift registers to process overlapping stencils in parallel.
The case uses trigger-based, device-specific watermarking on significant live-event segments to address distribution latency.
This case synchronizes music features and camera-detected motion to trigger coordinated visual effects without complex manual controls.
A smartphone captures RFID, NFC, or QR tag data for server verification, then displays authentication results and digital rewards.
A unified capture-editing workflow lets users create single- and multi-segment videos without repeated mode navigation.
A negative Poisson's ratio panel and strain measurement correct image distortion during uniform stretching.
Real-time participant video effects with adjustable opacity and intensity reduce monotony and encourage users to keep video enabled.
Rotating reflectors fold the optical path for compact, high-resolution wide-angle imaging.
This six-lens optical design replaces mechanical focusing hardware with a tunable liquid lens to save space and power.
A correlation engine weights multisensor events, filters irrelevant data, and triggers alerts for critical security events.
This case combines compressed and non-compressed video with blanking signals for simultaneous transmission and copyright protection.
Blockchain-split video blocks resist unauthorized deletion without redundant backups.
The DVS adjusts pixel-integration timespans and combines slow-motion frames while shortening capture for fast motion.
This case uses display-state feedback to identify the last-targeted image and store it with one press across monitors.
A transfer-gate pixel samples background and total signals under different light powers to improve contrast without off-chip subtraction.
The camera switches conversion parameters between viewing and sensing modes to preserve image quality and object recognition.
This case combines different-parameter cameras with selective image processing to improve distant-object detail under bandwidth limits.
Remove objects before capture with real-time segmentation and context-aware image filling.
NIR reflection clustering on a celestial sphere filters false positives and improves 3D mapping of glass and mirrors.
An ECG context controller synchronizes recordings with patient video and audio, helping remote experts interpret symptoms with the waveform.
A TV receiver combines broadcast decoding with videophone encoding for ready calls, echo cancellation, and less switching effort.
The case combines screen images with application IDs, locations, and execution context to reproduce application states across devices.
A locking, biased grip lever lets users advance captured images while maintaining their hold, avoiding touch-panel hand repositioning.
A phosphor wheel aligns sintered layers securely with guide pins.
This case uses category-based antenna selection to maintain wireless communication while accessing a memory card.
A broadcast receiver evaluates copy control, resolution, and transmission data to adjust output protection for diverse content handling.
This case combines location, time, direction, and current terminal data to retrieve and highlight images tied to past memories.
The information processor scores multiple viewers' status to schedule content order and frequency without favoring one audience group.
The case detects video-network discrepancies and adjusts camera bandwidth to stabilize delivery without costly equipment upgrades.
Integrated alignment features position the projector and waveguide, while injection molding supports scalable AR eyewear production.
A wearable captures spontaneous events, while cloud pipelines tailor multimedia processing to user requests and device playback.
A processor uses preview display cues, including color changes, to show each image's position and support composition in multi-image frames.
A trained detection model improves video jitter accuracy and robustness across shot switching and special effects.
A processing unit adjusts blend regions by local luminance differences to connect frames while limiting seam artifacts.
This case selectively displays image effects in foreground or background regions, avoiding poor results from whole-image processing.
Camera overlays reduce navigation burden during multi-view visitor monitoring.
Separate preview and high-quality generation units reduce processing load while preserving selectable virtual viewpoints.
This digital camera shows where an unrecorded preview image will be placed in a multi-image set, helping users plan composition.
A detector and processor adjust equalizer gains to limit inter-symbol interference and maintain HDMI signal quality across cable lengths.
Acceleration and angular velocity data separate capture from reproduction correction to align frames and reduce rotational distortion.
Dual offset recording heads place optical soundtracks between film perforations, enabling wider image formats without magnetic stripes.
A wide-dynamic-range sensor separates reflected and clear regions to correct lens glare and capture usable iris images through glasses.
Half mirrors and lenses combine foveated display panels to reduce screen-door effect, cost, and power use.
A main control module generates OSD data while processing modules overlay it on video for synchronized, maintainable display control.
User-controlled preview changes guide processing across multiple cameras, producing target images with flexible object display.
A spectral polar imager uses a beam displacer and lenslet array to form spatially displaced images for simultaneous multi-band detection.
Coordinates multiple external mobile devices to act as slave flash units, resolving low-light illumination limits without bulky hardware.
Receiving device extracts audio video features to identify content, enabling synchronized application programs across CATV and satellite networks.
Integrated getters absorb outgassed species in MEMS cavities, reducing gyroscope offset shifts caused by unstable internal pressure.
Generating topological data from object motion directions enables reliable camera network tracking when GPS signals fail.
A CMOS image sensor pixel circuit uses a boosted floating diffusion node to stabilize the reset voltage level during read-out operations.
Augmented reality glasses use nosepad and temple sensors to detect head movement and adjust media orientation.
A mobile terminal estimates camera views using sensor data to mask personal content areas before unauthorized photography occurs.
A light pipe encircles a camera lens to channel illumination from behind the glass toward the target object.
Optical path switch element routes laser light through distinct luminance paths, resolving stable low-output operation limits without enlarging device size.
Extracting the actuator from the lens mount area reduces noise interference with encoder detection accuracy.
Television receiver distinguishes specific link destinations to enable accurate access counting for targeted content.
Interchangeable cables with identical connector structures enable flexible signal transmission and power supply across detachable camera units.
Central computer encrypts and transmits digital cinema files to remote exhibitor computers via a communication channel.
Direct memory access transfers video streams to the GPU, bypassing system memory constraints that limit simultaneous display capacity.
A flexible heating film disperses conductive material in a matrix to warm camera lenses evenly.
A wireless synchronous system uses time-division multiplexing to synchronize multiple sensor devices and apparatuses with a single radio unit.
Step-and-stare micro-movements resolve the contradiction between angular resolution and ground coverage area by segmenting scans into multiple passes.
Rasterized Schottky contacts eliminate bulky on-chip antennas to boost detection sensitivity and reduce chip area for low-cost imaging.
A vehicle image processing unit compares luminance values to identify similar frames and excludes them from storage.
A holographic projection device employs a microlens array to redirect light from individual pixels, effectively enlarging the reconstruction volume without increasing pixel density.
A display control unit adjusts playback points using subtitle units and inter-subtitle intervals.
A display device gain generator calculates frame gains to apply image quality controls.
A spectrally encoded endoscopy probe uses a diffractive grating to separate and superpose light beams for spectral data acquisition.
A module normalizes focal plane array system gain and corrects pixel non-uniformity using empirical coefficients.
Genre-based channel grouping reduces selection time by organizing signals into hierarchical sets for faster user access.
Storing notifications on the client device ensures visibility during channel transitions without obstructing programming or requiring manual menu navigation.
A camera mount holds a video sensor in a fixed position above a crib to capture consistent infant sleep images.
A light source controller adjusts plural LED intensities to generate polychromatic illumination.
An optical system uses an aspherical front group and diffractive rear group to form intermediate images through elongated openings.
A video merging method processes clips to unify image quality, picture style, and background sound before combining them.
A camera autofocus method uses face detection to determine initial lens position for faster focus acquisition.
A vehicle headrest cradle secures a tablet unit via electrical and mounting connections, resolving cumbersome handling and impractical charging during travel.
A camera body adjusts its roll correction range based on interchangeable lens capabilities to coordinate blur correction across pitch and yaw axes.
A video processing apparatus adjusts graphical user interface size and configuration to match external display screen dimensions.
White filter areas in image sensor units boost light intake to reduce noise and improve resolution in low light conditions.
A removable memory card embeds a wireless transceiver and controller to process security messages directly from sensor devices.
A content management device preserves original quality during copy-once transfers by disabling source reproduction and outputting attribute information.
Integrating the aperture into optical elements resolves alignment precision challenges while reducing device complexity in photoelectric encoders.
A solid-state imaging device uses an N-type floating diffusion region within a high-concentration P-type well to multiply electrons.
Vector font conversion reduces storage space and speeds up system startup by generating bitmaps on demand.
A communication apparatus captures viewer images alongside display information to enable reaction-based interaction.
A photographing guide directs users to position identity documents correctly within a display frame during capture.
A digital photographing system applies parallel optical and image compensation processes to stabilize captured images.
A recording apparatus adjusts video frame decimation rates based on input signal motion characteristics to reduce encoding amounts.
Microprocessor analyzes image sharpness to provide user feedback through LEDs, resolving the contradiction between precise focus and remote operability.
Visual whiteboard application on smart TVs enables authorized users to post and share content identifiers for local media playback.
Extracting macroblock size information from encrypted video data allows motion detection algorithms to identify movement while maintaining encryption integrity.
A display device overlaps multiple images to show extracted feature areas for rapid visual comparison and selection.
Laminating independent circuit blocks onto pixel arrays eliminates custom mask costs while maintaining uniform image quality.
A broadcast program ranking system calculates user preference degrees using viewing history and concentration metrics.
Magnetic drive forces move the sliding base to retract the camera module into the cavity, preserving front surface space for display.
Parallel processing of high-speed camera frames resolves noise and blooming artifacts while enabling real-time pulse counting.
Segmented heat dissipation frames attached to separate case sections equalize temperature across the imaging device by creating multiple conduction paths.
Automated control mechanism transitions between light and dark states to resolve adaptability versus complexity trade-offs in high-intensity environments.
Longitudinal wire arrangement in a flexible substrate joins light emitting portions, preventing minute cracks from repeated deformation.
A system creates video montages using user-applied markers to identify significant content portions.
Swivelable securing arms enable tool-free assembly and disassembly, reducing production costs.
An IR cut filter actuation system detects mispositioning through image data analysis and triggers automatic correction.
Pre-processing circuit adapts weights on a reduced resolution grid to define a dynamic region of interest.
Classifying RF sample values into levels allows accurate signal quality determination despite jitter circuit malfunction at high recording densities.
Depth-aware image signal processing adjusts capture parameters per scene depth to generate consistent illumination across surgical video frames.
A sound pickup device uses a reference microphone to generate noise-reduced audio signals from porous housing surfaces.
Multi-angle X-ray imaging captures perpendicular planes to calculate 3D coordinates for precise golf ball concentricity determination.
Segmenting the optical train into fixed and movable groups reduces device complexity while maintaining autofocus versatility.
A digital controller manages DAC circuit modules to produce dithered pixel brightness levels beyond preset resolutions.
A resin molding unit integrates camera lens and sensor components into a seamless structure without coupling seams.
A confirmation region determination section identifies high-visibility areas within an image to display graininess effect indications.
Rotating the head carriage increases contact surface area, resolving the trade-off between storage capacity and access time.
Convolutional neural networks segment image content into body and head areas, enabling accurate face detection and focus in backlighting or side-view scenarios.
A television display captures its own output to extract text overlays for media identification without external APIs.
A media guidance application predicts user location to establish local cloud storage for offline media access.
Aggregates multiple image data sets with different exposure times to create a virtual long exposure image.
A stacked-chip image sensor uses vertical conductive interconnects to read out pixel data simultaneously.
Adaptive exposure timing and row differentiation resolve high-brightness flicker by calculating oscillation amplitudes for precise image correction.
Multi-level signal lines serve as shield wires between interconnections to reduce parasitic capacitance coupling without increasing device area.
A dynamic transition mechanism shifts from passive viewing to an active portal, resolving low user engagement without increasing system complexity.
A device-to-device grouping system manages communication node groups by receiving attribute information to define membership status.
An X-ray detector dynamically adjusts its window time based on emission end signals to optimize readout timing.
A viewpoint synthesizer converts video streams to match dynamic camera configurations using digital interpolation and chroma keying techniques.
Retrieves pre-stored voltage feedback data from a lookup table to rapidly adjust backlight brightness, resolving slow DC/DC converter response times.
Automated optical detection replaces manual marking to resolve position identification accuracy versus operational complexity.
Voltage-controlled modulator adjusts light transmission through color filters to capture images.
A content-presentation device determines input-buffer switching delay using mapping data to facilitate precise content modification operations.
Video processing device synchronizes student commentary with presentation feeds to generate annotated class discussion videos.
A motor vehicle camera uses a conductive contact element to electrically connect the lens housing and backplate.
A management system allocates video processing operations across multiple locations based on real-time resource availability.
A video adapter device overlays network graphics onto passthrough signals.
Histogram metadata enables dynamic backlight scaling that lowers power consumption while preventing flicker during video playback.
A display controller switches to a wider angle virtual viewpoint image when user instructions change the viewing position.
A rotation estimation method calculates global XY alignments and local corner differences using integral projection vectors.
Rotating lens disk directs pulsed laser beams to project high-resolution images, replacing bulky LCD panels with a compact portable design.
An intermediary terminal manages communication between image capturing devices and servers to enable flexible service utilization.
An image processing system classifies moving and still images into groups to determine optimal frame extraction and visual layout.
Spatial audio mappings align directional sound with multi-camera video regions, resolving synchronization mismatches between visual and auditory data streams.
A control circuit selects pixel subassemblies to measure ambient luminosity in a second operating mode.
A video messaging application selects front or rear cameras automatically to simplify user interaction.
An image sensor adjusts luminance of repeated live view frames during still capture priority periods.