An image processing apparatus acquires multiple images with varying depths of field and presents candidate images based on designated object areas.
A stacked compound lens module with tailored Abbe numbers and curvature radii enhances optical performance.
A camera control apparatus adjusts operation sensitivity to enable precise image capture adjustments by multiple operators.
A sensor detects device tilt while processing circuitry applies a uniform correction value to prevent viewer discomfort from image instability.
A pattern-based interpolation system calculates missing color values in spectrally mosaiced images using spatial pixel classification.
Visibility scoring prioritizes rendering of digital objects, reducing memory and bandwidth requirements while maintaining visualization quality.
Inclined attachment portions balance rotational forces to orient an imaging substrate, reducing size requirements while maintaining stable alignment.
Segmenting images into regions with distinct weight factors allows dynamic target selection, reducing saturated pixels and improving brightness accuracy.
Segmenting the image allows applying high-complexity interpolation to the main region while using simpler processing for the rest, reducing computational load.
Selective fusion of near-infrared detail portions enhances visible image contrast while preventing noise artifacts in low light.
A method adapts spatial and temporal filtering to individual X-ray detector noise profiles.
Computational correction replaces mechanical stabilization by deriving pixel positional states from IMU data to eliminate motion-induced geometric distortion.
Dynamic frequency adjustment prevents speed reduction at the center of spiral trajectories, eliminating uneven brightness without increasing rotation counts.
A mobile device buffers and displays video feeds based on viewer behavior.
A camera body detects accessory connection by changing data levels in synchronism with a clock signal.
A CMOS active pixel uses a capacitor transistor to pump the floating diffusion node voltage above external power levels.
Replacing electrical cameras with fiber-optic bundles eliminates continuous power dependency and maintenance costs while enabling reliable position detection.
A time-multiplexed encryption system processes multiple digital streams through a single module to boost throughput.
Buffer memory preserves event timestamps across a pixel array, eliminating image artifacts caused by asynchronous signal processing.
Dynamic adjustment of horizontal and vertical blanking intervals resolves alternating color and luminance inclusion issues in limited bandwidth transmission.
A panoramic camera rotates around a subject to capture video, extracting and stitching hemispherical images into a fixed viewpoint.
A six-piece camera optical lens design achieves ultra-thin total length while maintaining wide field of view and high imaging quality.
A method for displaying video streams using a superimposed graphic element to define custom display areas.
A fingerprint recognition module adjusts acquisition parameters to capture multiple images and selects the best quality target for unlocking.
A light guide plate with selectable deflection portions directs image light to an observer's pupil based on real-time position detection.
A signal converter unit processes diverse input signals to enable unified external output through a single terminal.
A wafer level stepped sensor holder uses a thinned spacer wall to encapsulate an image sensor within a recessed structure.
A pixel circuit uses a negative feedback control loop to manage charge transfer between the photosensor and floating diffusion node.
A hybrid camera stabilization system combines optical and electronic image stabilization to correct camera shake.
An image processing apparatus generates specular and diffuse reflection data to determine surface height of layered objects.
Oxide support structures maintain uniform color filter thickness through surface tension within image sensor arrays.
Handy devices record augmented reality moments using inertial measurement units to determine position and orientation without external signals.
A multi-lens imaging module uses pupil division to capture overlapping subject images on a shared sensor array.
Segmented laser positioning resolves the contradiction between measurement precision and equipment weight in construction documentation.
A control section adjusts margin time between exposures to maintain a constant continuous shooting frame speed in an imaging apparatus.
Asymmetric phase detection pixels with matching color filters enable accurate depth sensing in single image sensor arrays.
Horizontal thinning-out readout maintains the angle of view and resolution while increasing frame rate, avoiding image distortion from vertical subsampling.
Optimizing asymmetric transistor channel ratios in column amplifiers resolves the trade-off between high slew rate and low current consumption.
A content recording apparatus downloads programmed settings from a server to execute automatic broadcast scheduling without manual user intervention.
A camera module uses a piezoelectric plate to dynamically adjust lens spacing for precise focus control.
A relay connector joins a rear substrate to an external circuit via mechanical pressing, eliminating soldering time and assembly complexity.
Extracts metadata to generate movie-in-short lists, resolving the bottleneck of pre-existing summary requirements.
A calibration system derives transfer functions between input grayscale voltage and output luminance to adjust gamma registers for precise display control.
A display control device processes image data to present candidate and main subject areas in distinct forms.
A camera adjusts AF auxiliary illumination emission based on focus position to maintain optimal light quantity for image pickup.
A video processing timing controller adjusts synchronization signal pulses and data enable blanking periods to maintain precise signal alignment.
A head-mounted display system detects optical axis position via smartphone imaging to adjust moving image regions on the display surface.
A mobile device establishes a video connection while receiving display elements from a support terminal for concurrent interaction.
A zoom lens uses specific refractive power arrangements to achieve high optical performance and reduced size.
A playback control system calculates frame-skip and frame-repeat parameters from Group-of-Pictures indices to manage trick mode speeds.
An interchangeable lens stores vignetting information at specific image heights and transmits this data to the camera body.
A retinal projection device uses a single light source to emit image and checking beams for concurrent display and eye tracking.
A system transcribes recorded online meetings and indexes the text to enable interactive querying by users.
A standby tuner receives operation signals on a distinct frequency to trigger power supply switching in receiving apparatuses.
A CMOS image sensor applies a boosted voltage to the charge transfer unit for efficient electron movement.
A moving picture storage system uses a DTMF detector to identify start and end recording signals from terminal devices.
A video playback system associates moving images with display objects tagged by time stamps and scores for rapid scene access.
A pixel array merges high and low conversion gain signals through a single readout circuit to generate output image data.
A digital image processing method applies vignetting removal to stabilized video frames.
An adaptive illumination system uses imaging and processing to project light beams that match detected object shapes.
An imaging apparatus adjusts line addition numbers to reduce noise in focus detection signals.
A lens barrel information transmitter reduces data volume to enable higher image sensor frame rates.
Controlled pixel apertures in array cameras introduce aliasing that super-resolution algorithms exploit to recover high-frequency image data.
Aperture control hold values stabilize iris positioning against unstable auto iris systems by rejecting invalid luminance changes.
A focus controller adjusts cooling fan operation using pre-measured correction data to maintain optical alignment.
Segmenting support circuitry onto a separate chip and using vertical gates for isolation increases fill factor while reducing dark count rates.
A camera module integrates the lens barrel and holder into a single molded component to simplify assembly.
Source device transmits transport stream containing multiple sub-streams representing independent display layers.
Modifying blanking intervals synchronizes independent video sources, eliminating large buffer memories while ensuring disturbance-free display.
A vehicle image processing system transforms perspective views into top views and stitches floor and wall regions to generate synthetic surroundings.
A video signature system captures signer facial features to embed biometric data into documents.
A touch-type portable terminal controller moves an on-screen indicator to track lens view angle changes during auto focusing.
Integrating a feeding coil into the camera module lens holder along the optical axis couples with the metal housing to function as an antenna.
A unit pixel integrates photoelectric conversion and mode control to generate analog and digital signals, reducing power consumption and device size.
Dynamic voltage management stops power to the detecting unit while maintaining circuits, reducing pixel degradation risk without disrupting read operations.
Pinhole apertures hide camera modules behind colored cover glass, resolving the trade-off between imaging versatility and device thickness.
A recommendation system selects video content by maximizing relevance and diversity through recursive number updates.
A solid-state imaging device incorporates a low-index scatterer within the pupil dividing portion to redirect light toward photoelectric conversion regions.
Driving unit overlaps first and second sampling operations to maintain consistent signal characteristics across radiation sensor units.
A method determines bad pixel data from an image sensor and performs interpolation using only normal pixel data.
A single operating member controls insertion and transmittance of a variable neutral density filter in an imaging apparatus.
A system identifies products in video content and converts them into interactive elements using curvilinear outlines that match object movement.
A camera shield features a corner cavity that contains solder to connect the grounding pad.
A control unit issues commands to an external camera based on battery and storage capacity.
Multi-resolution disparity map generation reduces computational complexity by refining shrunk images into accurate depth maps for stereo vision systems.
A remote control device broadcasts discovery messages to locate available electronic devices and configures itself to pair with a selected target unit.
A lens system calculates a focus region using optical parameters to trigger refocusing actions.
A lens driving control device adjusts motor speeds based on real-time position data to prevent optical component interference.
Discrete wavelet transforms identify temporally stationary background data in multi-sensor video streams to remove redundancies and reduce storage size.
A media guidance application identifies and compares plot segments across different story versions using unique metadata identifiers.
A selection unit chooses a reference image to minimize positional deviations among captured frames.