Bonding material connects base body and lens holding section to maintain image formation position stability.
Cloud server mediates communication between HTML web browsers and dental x-ray sensors, eliminating browser-specific plug-in requirements.
An imaging apparatus dynamically adjusts exposure conditions based on environmental changes to maintain image quality during time-lapse capture.
Modular scene selection customizes digital video sequences for individual viewers, resolving the trade-off between personalization and production complexity.
A detachable electronic view finder connects wirelessly to the camera body, enabling independent positioning of the display unit.
Pixel shifting doubles effective resolution, reducing lens size and cost while maintaining image quality.
Analog-to-digital converter uses a dynamic up-down counter to process pixel signals from shared photodiodes.
Paired security and calculation modules manage independent control words to prevent counterfeited module attacks while maintaining regular key renewal.
A camera module uses a driving device to rotate reflectors, directing light from separate inlets to a shared lens.
A control unit calculates play amounts by multiplying jog dial steps with fractional step values to advance time positions on a video timeline.
A video recorder cluster merges independent nodes into a shared resource pool to distribute processing tasks across available hardware.
Proximity filtering blocks spoofing attempts by measuring object distance before analysis, conserving battery life and reducing unauthorized access risks.
A mobile processor differentiates foreground subject matter from background scenes using digital matting operations for precise layer separation.
A sensor arrangement uses a shutter matrix and segmented filters to capture spatially resolved photometric data.
Adjusting timing gaps per exposure time reduces ghost effects while maintaining high frame rates and low power consumption.
Encoder modulates digital video frames using luminance adjustments to transmit carrier signals without interfering with existing broadcast standards.
A vehicle camera control device divides the image range into regions and accumulates extracted feature points over time to identify lens adhesion.
An image reproducing apparatus displays cutout images at larger scales by reading rotation information from recording media.
Sequentially varying R, G, B gains detects white portions to select precise values, correcting bluish drawing effects in recorded images.
A distribution system updates image packages via heartbeat communications to client displays.
Trapezoidal magnets in an actuator module stabilize camera lenses, reducing component volume while maintaining optical image stabilization performance.
A lens arrangement uses wedged engagement to lock optical components in place.
A display controller clips video data to show the lower part of following vehicles in electronic rearview mirrors.
Participants initiate private breakout sessions while maintaining audio and visual connections with the main group.
Series discharge driving units prevent charge backflow during still image exposure to maintain high-quality imaging.
An ontology-based search system categorizes essential qualities of searched subject matters to enable integrated and accurate results.
Image processing apparatus separates subject and background frames to synthesize video with varying zoom ratios.
A signal processing device calculates mean square errors across time, frequency, and spatial domains to correct baseband signals.
Polynomial curve fitting estimates optimal lens position from sparse data points, eliminating redundant measurements and reducing computation time.
A TV display system merges social media content and targeted advertisements into a unified scrolling thumbnail array for seamless user navigation.
A transparent cover with a continuous curved sidewall refracts light to expand the camera field angle while maintaining image clarity.
A homography matrix calculation method using triangle area ratios to determine transformation matrices from feature points.
Shared diffusion regions connect multiple photosensitive elements to a single inter-wafer interconnect in stacked CMOS image sensors.
Circuitry digitizes video signals using a local clock frequency distinct from the source broadcast to generate formatted data blocks.
Operational switch assigns communication functions to stop, standby, or executing modes based on user interaction duration.
A second video signal processing unit segments a high-resolution image pickup signal into smaller blocks to generate a lower resolution display output.
A transmitting system leverages unused bandwidth in unidirectional networks to distribute additional digital content.
Multi-sensor fusion on moving platforms detects subsurface defects at highway speeds without requiring road closures.
Segmenting the photodiode into separate conversion and accumulation zones resolves the trade-off between integration capacitance and sensitivity.
Integrating a wall mounting through-hole into the flat back cover eliminates separate brackets, enabling close contact with walls.
Embedded application in Blu-ray package directs second digital content to mobile devices via network server.
An encoder adjusts quantization coefficients using previous frame data to stabilize visual output.
Segmented resistor network applies position-dependent bias voltages to eliminate sensitivity unevenness and border artifacts in large infrared imaging arrays.
An image reproduction apparatus detects decompression errors and complements unit data with implement image information for output.
A hybrid zoom system switches between optical and digital magnification based on detected lens positions to maintain image clarity.
Image processing device adjusts detection sensitivity based on real-time lens opacity and solar elevation data.
Dynamic function item allocation prevents accidental operations and maintains favorable operation feel across multiple registered settings.
A surveillance device integrates multiple cameras into a single housing with adjustable mounting brackets for flexible 360-degree imaging.
Dynamic control selection reduces display clutter by removing unnecessary elements, preserving visual content preview area for efficient operation.
Interleaved output lines equalize crosstalk noise, enabling smaller chip sizes while maintaining image quality.
A camera module uses a reinforcement member in the same layer as image sensors to maintain precise alignment.
Interactive display system generates viewable content from multimedia collections using gesture inputs to apply desired effects.
A calibration method modifies luminance distribution in captured images to estimate camera parameters with high accuracy.
A video streaming system aggregates user annotations to track objects across frames.
A radiation-hardened read-out integrated circuit accumulates charge via time-delay integration to detect faint objects in space.
Parallel amplification transistor fingers increase signal voltage to suppress noise and improve image quality in micronized pixels.
A vertical overflow drain coupled to a pinning layer manages charge saturation in backside illuminated pixels.
An imaging device captures multi-exposure image data and compresses gradation values to generate high-quality output.
An application programming interface enables instant switching between movie playback and video game execution on a single digital medium.
A CMOS pixel incorporates a gated storage node between the photosensor and floating diffusion to reduce kTC noise during reset while increasing dynamic range.
A communication apparatus transmits representative image data and group metadata to reduce network traffic.
A vector interpolator selects an optimal angle to interpolate luminance values across pixels.
A set-top box detects TV video output signals to synchronize power states and switch inputs automatically.
Periodic counter resetting expands dynamic range without increasing pixel size or wiring complexity in image sensors.
A camera system merges film and electronic modules to capture high-resolution images.
A reflective display module uses a light guide plate and optical structure to direct illumination beams toward a reflective polarizer for image formation.
Control equipment synchronizes HDMI audio and video by acquiring time delay data from a cloud server based on playback device identifiers.
MEMS infrared resonant sensors measure frequency shifts to reduce Johnson noise in uncooled arrays.
Segmenting image capture into independent wide-angle and detailed units allows longer charge accumulation for low-light sensors without reducing frame rates.
Slow liveview mode adjusts capturing start timing to resolve user operation delays and missed shots of moving objects.
Segmenting protection between a transparent member for optics and molding resin for circuits eliminates gaps that cause moisture ingress.
Transparent and opaque film segments resolve the contradiction between structural integrity and light leakage in display devices.
Idle transfer gates apply boosted voltage levels to the shared floating diffusion, reducing image lag during charge transfer operations.
An X-ray absorber shields signal evaluation electronics from radiation damage while a sensor carrier manages thermal stress for stable operation.
A modular image sensor acquires form information from mounted lens and imaging modules to perform distortion aberration correction.
Controller maintains display brightness by deriving ambient light data from the panel itself, eliminating costly external sensors.
A system collects parental feedback on watched videos to train machine learning models for personalized content recommendations.
A usage data queue buffers client signals from multiple devices before forwarding them to a central storage site.
A digital video camera captures interspersed test images by moving the lens or sensor to a test position for quality evaluation.
Pixel array output circuits generate frame difference information directly within the image sensor chip.
A work machine information processing device compares operator manipulation data with actual state signals to trigger image recording upon detecting discrepancies.
Calculating motion information between images selects compositing targets based on reliability to resolve loss of imaging context in moving picture playback.
Estimates cyclic noise components via mutual relationships between exposure conditions, reducing hardware complexity and processing time for flicker correction.
A solid-state imaging apparatus transmits test signals while converting analog pixel data to digital format.
A detachable control unit and auxiliary camera enable continuous surveillance while the insulating band lifts the main unit for safe ground-level repair.
Sound detection replaces manual timing to capture accurate motion transitions and reduce processing delays.
Trapezoid correction aligns perspective between background and target images, enabling accurate superimposition for training identification models.
A media guidance application monitors available storage and user viewing progress to dynamically adjust series recording instructions.
A backlight correction unit adjusts tone conversion characteristics based on spatial position to increase luminance levels of dark regions in captured images.
Rear-mounted camera imaging through a light-transmissive display panel resolves spatial conflicts between user eye contact and monitor obstruction.
Segmenting thermal images into line-based pipeline stages eliminates centralized memory bottlenecks while switch fabric routing prevents bus contention.
Inverting the second lens group movement direction resolves the contradiction between telephoto capability and lens diameter, enabling compact miniaturization.
A learning database trains on incomplete feature blocks to boost recognition accuracy.
A display chassis uses a recessed first member and plate-shaped second member to hold the panel while maintaining a thin profile.
Replacing capacitors with pinned photodiodes reduces power consumption and increases configurability in image sensor signal processing circuits.
A radiation imaging apparatus adjusts transistor conducting voltage timing during sequential reset operations to manage signal charge accumulation.
A bifocal lens directs light to weighted light-receiving element groups for characteristic-specific image generation.