Inverting the fifth group refractive power reduces optical system diameter while maintaining high imaging performance.
Automated port mapping and universal remote control eliminate manual configuration complexity in home entertainment systems.
Segmenting the lens into regions with varying spectral and polarization characteristics reduces configuration complexity while maintaining high resolution.
A focusing control device determines a specific region by comparing face and eye regions detected at different times to drive a focus lens.
Local event detection filters video streams, reducing cellular data usage while preserving remote access capabilities.
A region determining unit checks if a position falls within designated areas to prevent accidental sharing of personal location data during image capture.
A zoom lens uses a single optical element in the third unit to maintain high optical performance across the zoom range.
A transparent chuck table enables dual-side imaging for precise workpiece alignment.
A beam splitter routes off-pixel light back to the illumination source for reuse while directing on-pixel light through projection lenses.
A digital platform enables direct transactions between celebrities and fans.
A recording medium data structure manages multiple audio streams using multiplexed transport packets with unique identifiers.
Asymmetric cross-sections and offset axes guide the image pickup cable into correct orientation, preventing incorrect fitting during assembly.
A media guidance application presents selectable alternate source indicators for content listings.
A display apparatus generates an electronic program guide with thumbnail images for visual content selection.
A color filter array detects visible and infrared light using specific wavelength intersections to isolate signals.
Segmented photoelectric converters within each pixel enable multi-directional phase detection, resolving the trade-off between framerate and spatial resolution.
Rotatable range finder measures distance trends to calculate correction angles, resolving trapezoidal distortion from inclined mounting.
Parallel command processing reduces total delay time in multi-device imaging systems, enabling efficient operation of multiple slave devices.
A zoom lens uses cemented elements to correct chromatic aberration while maintaining a compact form factor.
A 1/4 wave plate modifies light polarization to prevent reflection components from re-entering the optical path.
An image processing apparatus compares pre and post processing data to determine original resolution.
A broadcast receiving device merges air interface and internet electronic program guide data into a unified database for selective information retrieval.
Wireless links adjust time base and frame rate to synchronize multimedia capture across heterogeneous cameras.
Deriving a taste signature from media libraries matches users with content, resolving complexity trade-offs in automated recommendation systems.
Capacity planning system determines optimal media server configuration to maintain service quality during peak loads and node failures.
A webpage artifact design system identifies style patterns from HTML structures to determine editing operations for rendering customized visual outputs.
Segmenting the sensor into independent areas with staggered start times captures parallel exposures, reducing motion blur and synthesis complexity.
A single control button selects and executes menu actions via press duration and sliding gestures.
Luminance and color regime metadata encodes descriptive pixel data to resolve visual inaccuracies across varying display types.
Selective imaging of necessary regions reduces power consumption and data transfer by switching between interleaving and full-screen reading modes.
Embedding identification signals in non-active pixel areas eliminates manual wafer tagging errors while preserving active image capture integrity.
A display driver compression section adjusts data ratios to maintain constant transmission speed.
An exposure controller moves an aperture diaphragm between two positions within an exposure period to maintain apodization.
A head-mounted image capture device detects ocular movements and forward fields of view using multiple integrated cameras.
A photographing icon computes self-timer values from touch duration and release coordinates for direct camera control.
Interleaved subarrays enable concurrent pulse biasing to resolve the trade-off between measurement precision and frame rate in thermal imaging.
Automatic color grading aligns standard dynamic range and ungraded images spatially and temporally to generate higher dynamic range output.
A mobile terminal controller outputs a preview screen on a touchscreen to display camera images before transmission.
A video display region extends dynamically to encompass edited subtitle areas within an application interface.
Terminal analyzes audio video signal characteristics to dynamically adjust display and sound parameters, resolving cumbersome manual interface complexity.
A processing unit applies tint correction coefficients to align captured image color with ambient light conditions.
Segmenting the video pipeline from the application processor reduces waiting time and improves photographic function performance.
Shared floating diffusion regions merge disabled pixels into one active node via bridges, increasing sensitivity without adding device complexity.
An arc rail guides a mounting base to rotate a light deflection element, reducing friction resistance that degrades optical stabilization performance.
An additional GOP stores the signed hash of the final segment, resolving missing authentication data.
Audio video devices detect orientation and position to synchronize recording across a network.
An intermediary resin layer buffers stress on the piezoelectric vibrator, preventing cracking while enabling effective water droplet removal from camera lenses.
Dynamic gamma adjustment resolves contrast-response errors under varying environmental light, ensuring accurate medical image gradation.
A delay compensation unit models sensor dynamics to provide immediate expected reaction data.
A single prismatic lens with a square exterior shape consolidates optical functions, reducing device complexity and enabling smaller insertion diameters.
Correlated double sampling in a digital pixel cancels reset noise and comparator offset, extending dynamic range for accurate light intensity measurement.
Interleaved odd and even frames with vertical offsets fill scan gaps, restoring full vertical resolution at image sides.
Random address generation resolves UHF signal conflicts by ensuring unique identification and preventing inadvertent control of unintended electronic devices.
Weighted background frame updates remove non-uniform detector sensitivity without mechanical shutters, preserving real-time display.
A biometric station uses integrated lighting and real-time screen feedback to guide user positioning during data capture.
Segmented lens groups move out of the optical axis to reduce camera thickness without collisions.
A solid-state imaging device positions phase difference detection pixels at corresponding locations across multiple same-color sub-blocks within a block.
A media guidance application generates custom keywords from viewed assets to recognize user voice commands.
Feed-forward control adjusts the multiplication register unit based on real-time charge detection, resolving timing delays inherent in feedback systems.
A wireless communication apparatus suspends data transmission to switch networks for parameter configuration.
An endoscope imaging apparatus outputs pixel signals from a specified area containing the subject image.
Image differencing detects turn signals through color and brightness changes, resolving misalignment and occlusion issues.
A cover photography apparatus corrects image data using motion information received from a portable terminal.
A stacked liquid crystal light control element uses multiple voltage-controlled layers to regulate light transmission in imaging devices.
Segmenting charge transfer into multiple portions extends dynamic range while maintaining high light sensitivity and preventing temporal smearing.
A camera module rotates a lens holder about three axes using electromagnetic coils to stabilize image recording.
A program information display apparatus overlays user interest markers onto a tabular guide using priority-based color coding.
Segmenting images into blocks reduces computational load and memory requirements by processing smaller subsets instead of a full matrix.
Segmented charge holding units prevent blooming by distributing accumulated electric charges, extending dynamic range without saturation.