Symmetry detection filters identify object location and scale using locally maximal symmetry scores, reducing false positives from illumination changes.
A system overlays semantic annotations on moving objects within interactive video frames to enable real-time user interaction.
An image processing apparatus reproduces color grading results using normalized metadata derived from external provisional grading parameters.
Reference difference encoding reduces bit width for multiple polarization directions, resolving low correlation between adjacent pixels to minimize data volume.
A streaming media interface buffers and decodes short content previews to enable channel surfing browsing.
A PCMCIA card modem integrates a cellular transceiver with an internal antenna for compact universal installation.
An electronic device groups images acquired before and after a representative image to preserve moment context.
Camera device uses parallel processing with temporary storage to reduce image processing time.
A video display system adjusts projector rotation angles around the optical axis to align important image regions with background projections.
A video processing system creates audio transcripts to enable keyword-based content search and user rating integration.
Storing relative positional data between micro-lenses and sensors allows focus detection systems to compensate for alignment deviations during manufacturing.
Segmented pixel groups with varied exposure times expand dynamic range in TDI sensors, resolving the trade-off between device complexity and image clarity.
A piezoelectric image stabilizer uses an elastic plate to press vibration axes, adjusting lens position via movable frames.
A MEMS sensing device uses a deformable waveguide arm to detect inertial changes through optical path length variations.
Phase detection pixel groups integrate autofocus capability directly into the image sensor array.
Inductance-based position detector removes noise components using a reference coil, eliminating hall sensors to reduce manufacturing costs.
A lens carrier integrates a serial bus interface circuit to route control signals through suspension wires for optical path modifiers.
A web camera transmits infrared codes and captures target device images to enable remote two-way control.
Segmented voltage pumps overdrive reset, transfer, and row select transistors to reduce leakage current and compensate for fabrication differences.
Reformat media streams by removing data to insert auxiliary information while maintaining consistent size and minimal quality impact.
A method extracts key images from recorded sequences to identify document boundaries.
Microlens array decomposes light rays into aliased views for super-resolution reconstruction.
A display controller identifies input devices capable of control and displays their connection status on the screen.
Camera rotation drives a conversion component that shifts a hook module, eliminating separate buttons and preserving device aesthetics.
A media guidance application monitors external component status to automatically trigger recording and playback actions for media assets.
A phase trajectory function interpolates carrier phase between pilot symbols using demodulated data estimates.
Decoder selects adjustment schemes based on missing bit patterns to fill data gaps, preventing image quality degradation across encoding cycles.
Integrated isolation circuits filter optical pulses to reduce timing control complexity and focal plane array size.
A computer vision sensor uses a repeating color-opponent and luminance pattern to detect light directly.
A video camera splits full spectrum data into grayscale display and analytics streams using an infrared blocking filter.
A server system groups user-generated tags to extract personalized video clips from raw streams.
Integrated clock wiring protrusions eliminate gaps between adjacent pixels, preventing crosstalk and color mixing from oblique light.
A low refractive index filler sits between the image sensor and filter to minimize surface reflections.
Analyzing image data to identify interference sources for 5G New Radio signals enables precise Self-Organizing Network adjustments.
Multi-frame analysis identifies wounded pixels by comparing brightness across frames, preserving fine details while correcting defects.
A multispectral decorrelation model maps pixel values to visible outputs using synthetic spectra and quantum efficiency curves.
A focusing apparatus calculates lens driving amounts using phase difference detection results acquired at multiple positions.
A display controller adjusts window size, location, and visual effects to customize multi-screen layouts based on user settings.
A tearing-protection bus arbiter coordinates memory access by prioritizing read operations over writes when address overlap occurs.
Upconversion nanoparticles shift near-infrared light to visible wavelengths for capture by standard silicon CMOS image sensors.
A position information server directs distance sensors to transmit only necessary data for subject detection.
Strobe patterns distinguish light sources while Kalman filters combine image and inertial data for accurate six-degrees-of-freedom tracking.
Pattern coils on a driving frame generate electromagnetic forces to move an imaging unit in pitch, yaw, and roll directions.
A camera subject determination method uses multi-color space binarization to calculate evaluation values for precise position, size, and shape specification.
Pixel readout reordering distributes signals across multiple analog-to-digital converters to reduce correlated noise in image sensors.
Controller applies sensor-specific correction values to focus detection data, resolving aberration-induced accuracy loss in interchangeable lens systems.
Processor compares brightness histograms to measure subject speed and display a tracking mark on the monitor screen.
A proximity sensor reads track barcodes to align virtual reality video playback with physical car position.
CW-TOF camera acquires multiple images with different modulation frequencies to detect multipath interference, correcting distance measurement errors.
An adaptive exposure compensation method stabilizes mobile camera luminance by dynamically adjusting filter weights based on current frame error.
A camera body selects a single representation format from an interchangeable lens to request optical characteristics data.
Contiguous track segmentation eliminates frequent position changes during reproduction, maintaining bit rate stability for optical disc playback.
Dedicated analog-to-digital conversion units process signals from pixels of a single color, reducing correction complexity and increasing frame rate.
Radial separation of control and drive units prevents mechanical interference during holding unit rotation, enabling flexible projection direction adjustment.
A video processing system segments frames into object and background portions to reduce bandwidth consumption.
An interactive community alert network system captures incident data via mobile devices and automated surveillance.
A dual-pixel sensor generates infrared and color images to isolate object targets using skin-color identification logic.
A detection device selectively converts image signals into object features or full image data based on control signals to reduce transmission volume.
Main processor identifies matching video and graphic frames using assigned identification information to synchronize output timing.
A graphical diagram maps video objects to spatial elements, resolving inefficient chronological navigation by enabling direct object-based segment targeting.
A dual digital image stabilization method applies distinct processing algorithms to preview and stored images.
A monitor system merges interface and background data onto a single transmission channel to simplify processing module architecture.
A network camera sends multiple video streams at different bitrates and resolutions.
An image processing device captures frames via an inter-IC sound serial bus interface using word select signals.
A stacked imaging device separates visible and infrared light signals using an intermediate absorption layer.
A forward tapered insulation structure penetrates a silicon layer in solid state imaging apparatuses to prevent dicing damage.
A PTZ camera disc valve system aligns rotating bearing vents with static base slots to direct airflow over electronics.
An image stabilizer shifts video frames in X and Y directions to generate special effects during capture.
A TOF camera check apparatus uses a delay line to simulate distance measurements for pixel testing.
Embedding cameras and microphones into sports equipment captures intimate action angles.
A television widget obscures objectionable media content using overlay objects and audio modification scripts.
Tiled pixel arrays on separate substrates synchronize column data output by reversing readout order, eliminating wait states and reducing imaging frame time.
A spherical video system applies visual and audio effects to guide users toward events of interest.
A video-based hand tracking method locates palm centers using distance transforms to extract postural characteristics from image contours.
A/V doorbell uses a shunt circuit to limit power consumption.
A 3D particle effect generation system configures emitter and affector parameters for real-time editing.
A display controller adjusts audio parameters using reinforcement learning to optimize sound output.
An image processing apparatus selects exposure pixels based on object movement direction to compose high dynamic range images.
A segmented touch detecting face executes distinct functions based on the specific area touched during user interaction.
Six-axis adjustable lens modules align precisely with the image sensor before UV-glue fixation, eliminating assembly alignment errors.
Mute circuit blocks sound signals after microphone contact detection to prevent howling from incomplete plug insertion.
A camera controller adjusts the diaphragm aperture based on visible and infrared light intensity ratios to align optical image planes.
Dynamic phase control replaces mechanical rotation in holographic displays, enabling larger stationary screens with full viewing angle coverage.
A medical video processing system synchronizes multiple video streams and timelines for simultaneous editing.
A head-up display device uses a single projector with negative and positive refractive power units to extend and shorten projection distances for separate screens.
A memory controller disperses writing data across different rewritable non-volatile memory modules to enable parallel access.
A video decoder scales sub-pictures to match aspect ratios for clear display.
Computing devices associate zoomed-in images with panoramic views using computer vision to identify matching areas.
An image sensor system sets resolution, exposure time, and gain independently across multiple regions of interest.
A transparent display device uses front and rear sensors to detect viewer line of sight and background conditions for image compensation.
A vehicle imager module uses a lens holder to align the circuit with the optic lens for precise image capture.
A control device determines target device states before transmitting commands to ensure accurate activation and deactivation.
A combined video stream system segments content for independent viewer control via handheld devices.
A generation unit creates image files containing data and inference results while a storing unit records management information in a separate file.
A camera autofocus method estimates focus position using face detection and distance data to reduce lens sweep operations.
A detection model optimization system generates site-specific models using annotated imaging data to enhance surveillance accuracy.
Automated sensor processing detects objects within swinging extents of mining shovels, resolving visibility limitations in dusty conditions.
A digital imaging system calculates statistical focus data from full-resolution image streams to maintain continuous autofocus accuracy.