This case standardizes webcam bokeh comparison by measuring blur-circle and star-chart diameters at the bokeh point.
Alternate visible and fill-light frames to boost brightness while preserving true color.
Unify metadata for sequential media segments to reduce file overhead and improve cDVR recording scalability.
Adaptive regions improve film grain comparison while reducing bandwidth demands.
Inertial data filters low-quality mobile-camera frames before object recognition, reducing processing power while preserving accuracy.
Per-pixel change detection and sensor-level time signals reduce redundant data while producing time-surface frames for machine vision.
Dynamic pixel readout thinning adapts to changing angles of view, preserving resolution during real-time subject tracking.
An image sensor captures long, medium, and short exposures, pre-merges them, and improves HDR range and signal-to-noise ratio.
Pre-generated streams for discrete spherical viewpoints avoid real-time clipping, preserving image quality while reducing server load.
This distributed recording approach aligns audio from wireless terminals, reducing setup complexity and cost in noisy environments.
Dynamic VSYNC_APP timing accelerates frame production when buffers are low, supporting smooth display without added power consumption.
This case prioritizes camera streams by historical usability and cost, storing analysis for high-priority feeds to speed searches.
A display driver IC uses area-specific gamma signals to correct luminance and color differences caused by unequal pixel density.
The circuit detects gradation-voltage faults during blank periods without disrupting display output.
This case uses combinational integer logic for ASTC color interpolation, reducing hardware resources, circuit size, and processing time.
Orientation sensors and animated transitions keep pipe inspection video upright while avoiding display gaps and image distortion.
This case shifts delay from video to metadata, preserving real-time output while reducing memory needs for frame synchronization.
This case uses movable optical modules, magnetic vision-correction lenses, and gaskets to fit users and block dust and moisture.
Electronic eyewear detects persistent physical markers to place 2D or 3D snapshots and AR content for connected users.
This case matches HDR metadata to scene brightness and display peak brightness, preserving bright detail during playback.
The electronic device detects preset motion, selects the key clip, and changes frame rate to preserve highlight moments in playback.
An effect server recommends attire from user context, synthesizes it on detected body regions, and supports face-only video calls.
A wearable camera uses a light pipe and shared field of view to detect privacy LED tampering and stop recording.
A stored pixel reference and live shielded-area readings compensate for heat-driven black level variation across the sensor.
Multiple viewpoint videos can complicate presence cues; angle-dependent sizing of specific information responds to viewer perspective.
Frame-differencing LCOS patterns maps CCD pixel planes and corrects sensor position or orientation without costly custom lenses.
One shared encoder produces multiple portrait effects in a single inference, reducing delays.
RFID tag readings link target identification to video timestamps, enabling scene retrieval without exhaustive image recognition.
A rotating accessory mount uses angled bearing surfaces to reduce axial force, wear, and tear during attachment and removal.
A camera phases light transmission or combines rapid exposures to preserve a clear subject with trailing motion blur.
Remote, biometric, or facial identification lets a media access device adapt program and DVR listings to each user's habits.
This case integrates browsing and camera preview so users can shoot videos with webpage content as the background.
Self-supervised video views reduce labeling needs for accurate group activity recognition.
A rotatable second frame and slit direct audio toward the display area while posture sensing maintains consistent sound and visuals.
This depth system switches from stereo vision to PDAF for close objects, reducing latency and easing occlusion-related errors.
A camera and projector use surrounding brightness and perceptual distance to update images for more realistic color and texture.
A drag-threshold interface switches from live preview to buffer display so users can retrieve moments missed at shutter press.
A wearable captures spontaneous moments while cloud pipelines automate editing and formatting for playback across devices.
A virtual set-top box emulates physical STB functions on standard hardware, preserving IPTV compatibility and viewing quality.
Integrated processing selects a target object, converts user video, and composites it with a real-time background on mobile devices.
Column-based timing separates terahertz illumination events, making shadows from concealed objects clearer during inspection.
Support columns and air release grooves distribute diaphragm stress, helping preserve microphone sensitivity during pressure impacts.
This camera module moves the lens between positions to capture real sub-pixel images and synthesize higher-resolution output.
One circuit processes multiple image streams, cutting hardware and memory costs.
Reproduce transmission-display visuals by composing images with display-specific brightness data.
Different focal-length cameras capture overlapping fields and synthesize intermediate images for compact, reliable mobile zoom.
Preference learning reduces repetitive editing by recommending edited images during capture.
A wearable camera captures images, sends them to a mobile app or cloud, then deletes local copies to protect evidence.
Overlayed zoom frames enable simultaneous subject checking on one camera display.
A two-phase learning approach combines general and personalized image data to improve viewpoint conversion for unspecified users.
A high numerical aperture optical attachment couples to camera phones to enable portable high-resolution microscopy.
A remote control system with a touch interface receives user inputs and displays supplemental content simultaneously.
A camera module separates the gyro and driving IC from the imaging unit to reduce size while maintaining optical image stabilization.
A down-converter and high-frequency-band-edge detection unit combine edge signals with lower resolution images.
Segmenting the pixel array into subarrays with rescue pixels captures high-dynamic range images by balancing saturation and noise.
A digital imaging device uses a touch-sensitive display screen with toolbar icons to select image control functions.
Multi-driving boards cut block data by identification code to route specific signals, reducing network complexity in expandable display systems.
A reading circuit uses a compensation module to adjust the threshold voltage of a first transistor for consistent light intensity detection.
A vital sign monitoring system uses targeted illumination to measure physiological data from specific skin regions.
Merges visible light and infrared signals from separate sensors to expand dynamic range while maintaining high frame rates under low illuminance.
A terminal layer management module identifies topmost image layers by analyzing preset region pixel values against target thresholds.
A solid-state imaging device integrates a sub-chip within an opening of a second substrate bonded to a pixel-bearing first substrate.
A compact optoelectronic module uses a non-circular image sensor face to minimize housing volume for endoscopic insertion.
Switchable demodulating terminals adapt to tuner placement, resolving fixed wiring constraints that increase system size and cost.
A video system applies adaptive dewarping to wide angle frames using dynamic parameters derived from detected crop regions.
A four-element aspheric lens assembly reduces total track length and system sensitivity through specific refractive power distribution.
A wireless communication device integrates a touch sensitive display and multiple radio frequency transceivers for real time unmanned aerial vehicle control.
Openings in the shield case exhaust electromagnetic fields to reduce interference between tuners, enabling closer component arrangement.
Analyzing live view images directs users to capture missing document sections, ensuring complete coverage for accurate OCR processing.
Identifies programs within acceptable viewability windows to convey targeted ads, resolving the trade-off between ad availability and promotional effectiveness.
A shooting control apparatus adjusts image parameters using non-saccade eye movements to stabilize captured frames.
An imaging apparatus detects photographer position to acquire candidate object information for display.
A step-stare imaging system uses a rotating shutter unit to sequentially align apertures with beam splitters for stationary image capture.
Charge accumulation region prevents blackening in high-luminance areas by storing signal charge before correlated double sampling.
A six-lens image pickup lens uses a sixth element with an aspherical surface containing inflection points to correct optical aberrations.
System retrieves video streams using incident timeline data for machine learning model training.
An imaging apparatus detects information overlaid on illuminating light by analyzing contrast patterns within the captured image signal.
A blocking unit between the photoelectric conversion layer and electrode controls charge injection polarity.
Capacitive voltage divider reduces ramp signal output swing to lower horizontal noise and improve power supply rejection ratio in CMOS image sensors.
Parallel photocharge accumulation in subpixel groups resolves the trade-off between image quality and frame rate by managing integration time dynamically.
An imaging element reads multiple frames in parallel to combine image data based on focus speed and rolling shift parameters.
A display control unit maintains image enlargement factors and positions during touch-based switching operations.
Smart cameras assess patient environments to detect fall risks, reducing false alerts through image processing that masks personal features.
A mobile device manages audio video display settings through wireless communication and a dedicated user interface.
Assemble multiple sensors with overlapping fields of view to eliminate gaps and correct displacement errors for seamless high-resolution image stitching.
Video capture elements record document features for remote authentication, resolving the trade-off between verification reliability and customer convenience.
A video processing apparatus generates a picture-in-picture synthesized video by superimposing sub videos onto a main video within a single stream.
An image sensor adjusts its entrance pupil distance relative to exit pupil distances to maintain a secure baseline length.
A media guidance application detects multiple users and overrides content change commands based on user profiles.
A tilted rolling shutter sensor dynamically adjusts its angle during readout to reduce motion blur and defocus in moving cameras.
A vision assistance apparatus captures front scenes and analyzes them with a learning model to generate tailored notification signals.
A controlling device adjusts laser irradiation parameters for a second recording layer based on the first layer's recorded status.
RGB-IR image sensor converts single-color pixels to full RGB using precalculated lookup tables for rapid interpolation.
A tunable liquid crystal lens employs a buffer substrate and frequency-dependent layer to resolve slow autofocus speeds and high power consumption.
A light-shielding film moves along a bar to wind around a roller, adjusting the rear surface visibility of a transparent display panel.
A compact imaging apparatus uses a light blocking member to prevent stray light from reaching the image sensor.
Electronic control unit rotates revolver-type plate to align eyepieces, preventing telescope sway during manual exchange.
A dual integration time image sensor uses conditional sampling to manage charge transfer between photodiode and storage node.
A thermally-directed imager derives an optical processing region from thermal signals to compress image data.
Dynamic scanning synchronizes with a rolling shutter detector to resolve non-uniform illumination and shadows in large specimen imaging.
Segmenting pixels into independent photodetectors extends dynamic range up to 10,000,000:1 without resolution artifacts.
Segmenting the fourth lens group allows independent vibration correction and focusing movements, reducing system size while maintaining long focal lengths.
An electric motor drives planetary pinions and a rack member to extend a mobile phone camera, solving space constraints in full-screen designs.
Varying counter widths in memory cells compensate for IR drop, ensuring sufficient voltage differential for central cells at high frequencies.
A measuring module integrates an omnidirectional camera and triaxial accelerometer to calculate 3D positions via vector synthesis.
A multi-imager assembly coordinates optical zoom across multiple imagers to produce a seamless composite image.
Head pose estimation eliminates facial recognition to resolve privacy concerns while maintaining tracking accuracy in crowded retail environments.
An electromechanical actuator moves the locking mechanism via remote signals, resolving bicycle theft through secure wireless control.
Aerodynamic housing structure guides airflow to suppress rainwater adhesion on external mirror cameras.
A display device divides the screen into movable regions for independent filter processing.
An enlarged motion mask aligns long-exposure and short-exposure images to correct misregistration and distortion of moving objects.
Inclined ferrule and resin protect fibers, reducing stress while maintaining image quality.
Focal plane array elements sample foveal regions faster than peripheral areas to yield optimized image data.
A pressure sensor joins an SOI wafer to a CMOS circuit wafer, forming a sealed cavity for accurate measurement.
A motion-based exposure control system fuses image pixels from multiple exposures to balance illumination and clarity.
An infrared image-detecting apparatus derives temperature data from lens-frame images of detected objects.
A processor generates depth maps from two-dimensional video frames using sharpness and motion analysis modules.
Wireless RFID reader detects viewer identifiers to present personalized programming, resolving manual credential entry bottlenecks.
An elastic member cushions the lens barrel against housing impacts while rolling members reduce friction during auto-focusing.
An image sensor uses an average switch to merge pixel data from adjacent columns during low power operation.
A video replay controller adjusts playback speed based on detected information content changes.
A lens optical system with distinct focusing properties directs light to specific pixels via an array-shaped element.
Recording circuit stores display settings to reproduce luminance and color consistency across different devices.
A polarizing pixel array with distinct transmission axes enables precise polarization component separation in image sensors.
A motion estimation algorithm calculates directional weighting terms from motion blur information to penalize inconsistent candidate vectors.
A lens-free imaging system uses a mask and image processor to estimate scene images from electromagnetic radiation signals.
A control device adjusts lens focus position using temperature sensor data to maintain optical alignment during continuous photography sessions.
A method corrects pixel signals using temperature-dependent adjustment factors applied to reference dark currents measured at a known baseline.
Nested dual-rotation structures eliminate dead spots in smart home coverage without compromising the sleek appearance of the enclosure.
Segmented connectors attach cameras to displays without frame damage, resolving space occupation trade-offs.
A seven-lens optical imaging group with specific refractive powers and aspheric surfaces achieves large imaging planes.
Relocating a monochrome sensor to the distal end resolves handpiece misalignment risks while enabling hyperspectral imaging through pulsed wavelength capture.
A vehicular vision system adjusts graphic overlay transparency to display relevant driving information.
A portable terminal captures wine label images to extract characters and match visual features against a database for rapid identification.
A winding piezoelectric element on an uneven support plate directs sound forward, eliminating interference from reflected acoustic waves.
A noise amount prediction unit calculates expected noise from RAW data and color parameters before processing.
A game program implements a scenery mode to move a virtual camera across multiple positions within the game space.
A reference distance-calculating unit determines spatial separation from a user-defined position to classify captured images into coherent event groups.
A backward recording system copies buffered video segments to storage based on program type analysis.
A video hosting service associates media content with geographically-based broadcasts to enable real-time synchronization.
Background engine embeds timestamps to generate lightweight state-snapshots, enabling real-time seeking without bulky keyframes that inflate file size.
A MEMS sensor arrangement uses a common-mode read-out circuit with capacitive coupling to process measurement signals from movable electrodes.
A portable magnifier camera uses pivotally interconnected housing components to switch between reading, writing, hand-held, and inspection viewing configurations.
Atomic switching between 2D and 3D surround views prevents display freezes during HLOS crashes.
A subsampling wideband RSSI circuit digitizes input signals to concentrate power in a narrow bandwidth.
A reflection module uses a holder with a cover portion to manage light paths and prevent flare in camera systems.
A vehicle-mounted display unit rotates via a drive mechanism to minimize light reflection on the screen surface.
Window cameras feed flexible cabin displays to provide panoramic views for passengers seated away from windows.
A/V receiver calculates output time difference using HDMI ARC feedback to synchronize audio and video signals.