Precisely positioned accessory terminals align clock and data paths for reliable lens communication, autofocus, and continuous position updates.
Motion tracking and image scoring help mobile cameras select the intended barcode, avoiding duplicate decoding and conserving battery power.
A waveguide substrate and polarization reduction plate attenuate leaked image light, limiting unintended emission and glowing-eye appearance.
Different image areas receive tailored interpolation time points and frame rates, reducing motion judder across mixed-rate scenes.
Segmented digest comparison helps align recordings with different start times, preventing duplicate storage without requiring source metadata.
Flexible panels overlap transparent regions and curve together to expand display area, reduce visible gaps, and preserve efficient power feeding.
Automatic calibration aligns projected content with animatronic movement, reducing manual setup and mechanical alignment complexity.
Prompt images guide users to capture adjustment patterns from varied angles, improving projector image geometry correction on non-flat surfaces.
Music-aware processing separates voice from non-voice audio and adjusts output power to improve voice clarity while preserving overall sound balance.
Luminance-specific chroma gains encoded as metadata help control saturation and reconstruction errors in SDR and HDR display signals.
Alternating exposures, selective AI processing, LOG curves, and LUT correction improve night video luminance, noise, and color.
An arcuate rail and latch let users position and secure a helmet combiner for viewing across different postures.
Ghost removal, patch segmentation, and neural image fusion improve mobile zoom clarity while reducing noise and increasing resolution.
Motion-aware trimming combines still images, brief video, and stabilization data for real-time capture on resource-limited devices.
Photovoltaic DVS pixels merge detection and logarithmic conversion to reduce area and energy use.
A background camera and event-driven motion camera enable adjustable light trails while reducing frame capture, power use, and heat.
A server-hosted application and lightweight wireless client extend interactive media guidance across devices without limiting user mobility.
Line image data and blank synchronization signals enable memoryless display upscaling, reducing data transmission and power consumption.
Display prompts and automatic image-quality checks guide multiple captures for accurate projector geometry correction on non-flat surfaces.
A workflow creates patient-specific directive tokens with scripted video, simplifying emergency access while preserving legal documentation.
A 3D polyhedral layout combines accelerometers and magnetometers to reduce spacing, deformation, and navigation errors.
This case uses event-based app recommendations and unified control to connect fitness devices without obstructing TV viewing.
Real-time projection alignment keeps animatronic visuals synchronized without manual calibration.
Depth-based region processing sharpens selected bokeh areas while preserving a natural blur effect.
Synchronize OIS and DIS with Vsync-timed motion data for broader device compatibility.
Green-screen actors and matched background plates enable realistic multi-camera scenes without transporting crews to location.
Divided-aperture IR channels acquire multiple wavelength images simultaneously and use thermal references to calibrate detector arrays.
Modulating optical signals above the noise knee frequency helps ROIC demodulation reject low-frequency noise and improve image SNR.
RF tuning and local decoding deliver broadcast TV to vehicle displays, with stored content available for offline playback.
This case combines different-FOV camera views before shake correction to reduce cropping-related sharpness and frame loss.
Measure each camera’s optical center for accurate distortion correction without checkerboards.
Mode-specific HDR gradation compression preserves recognition while reducing image data.
The camera adapts ISO, shutter speed, and aperture to processing location, balancing image quality and noise across workflows.
A template aligns live and previously captured images while adjusting composition, brightness, and tinge to reduce recapturing effort.
A variable storage time range keeps only accessible broadcast content, reducing description parsing time, bandwidth use, and memory demand.
This case combines zoom-dependent camera output modes with digital zoom and electronic stabilization to reduce shake and blur.
Adjust video count and server-side composition to ease client load and bandwidth limits.
This case adjusts vertical sync timing to reduce composition delay and improve display fluency without raising processor load or power use.
A control unit adjusts image size and position during extension, preserving full content visibility and enabling extra functions.
This image processing case adds effect covers beside icons on a separate interface, helping users understand and select effects faster.
A rolling live playlist and full-program segment list support local high-resolution OTT recording while preserving adaptive streaming.
A control apparatus converts fixed-camera rotation into zoom-camera positioning to capture designated areas completely and accurately.
Dual cameras fuse local high-definition views for extra-large-aperture imaging.
A two-stage photographing workflow shows a low-resolution preview first, then replaces it with the high-resolution image when ready.
Periodic I-frame transmission and local P-picture storage reduce network load while preserving high-quality on-demand video delivery.
Scene-change values and DCT coefficients guide selective frame removal so commercials meet transmission timing requirements.
Feature-point matching synthesizes partial image areas, balancing clear subjects, facial expressions, and dynamic motion.
A locating-feature mount simplifies ISLA assembly while forming watertight seals.
Combining reframed participant video with digital content reduces separate stream processing and simplifies conference viewing.
Sensors pre-process depth data and periodically evaluate criteria, simplifying media capture controls while reducing device power use.
Motor-driven mechanism replaces external adapters to enable precise remote angle of view adjustment while reducing system complexity.
Convex partial sphere fits depressed portion under magnetic attraction to enable three-axis rotation and reduce mechanical backlash.
Universal image segmentation applies diverse hair dyeing effects via parameters, reducing training time and device complexity.
Horizontal synchronization detection triggers clamping at the black level, resolving noise sensitivity and voltage drift in composite video processing.
Multiple tuners in a terminal device switch video sources via touch input, resolving insufficient user experience from limited control capabilities.
Segmented version numbers in AIT tables resolve update complexity by allowing users to compare changes before downloading.
The system displays an estimated movement range calculated from deceleration and steering angle to correct inaccurate pseudo-parking frames at low speeds.
Segmenting the floating diffusion region into areas of varying capacitance resolves the dynamic range versus sensitivity trade-off in CMOS image sensors.
Opaque barrel segments light path to exclude ambient interference, enabling accurate average white balance value measurement.
A dual-pixel image capturing apparatus corrects pixel values in autofocus images using data from a separate detection pathway.
An optical pulse detection device converts pixel array signals into multi-bit digital values using an AD converter and control circuit.
A deep learning model extracts center coordinates from overlay key images to enable precise semiconductor substrate alignment.
Light blocking material fills adhesive trenches between image sensors to prevent optical crosstalk in array cameras.
Separating pixel electrodes reduces capacity to allow high-speed voltage variation, resolving sensitivity trade-offs that limit dynamic range.
An asymmetrically tilted dome illuminator eliminates camera reflections on shiny surfaces, enabling accurate ID code decoding and shape inspection.
A strain-sensitive impact sensor uses metal-containing carbon material to detect vehicle collisions via resistance changes.
Bi-concave optical image stabilization coils generate magnetic interactions with lateral magnets to move the optical package relative to the image sensor.
Transfer gates separate charge storage from read-out nodes in a time-of-flight sensor, reducing noise while maintaining measurement precision.
Blur detection system uses inertial measurement unit data to calculate camera rotation and transformation matrices for real-time image analysis.
An in-vehicle display device uses an image discriminator to route video signals based on content characteristics.
A modulation coefficient setting unit adjusts infrared luminance based on visible light ratios to generate accurate color images.
An image providing apparatus extracts device format information to process and transmit optimized images for external display.
Nanotube arrays emit infrared light to eliminate thermal inertia artifacts in scene projection.
An image processing device converts images into frequency components and extracts amplitude data to calculate distance information.
Dynamic GOP interval adjustment balances frame rate and signature generation time, ensuring real-time image integrity verification.
Non-uniform pixel warp preserves object proportions and scene coherence during format adaptation, eliminating unnatural distortions.
An image processing apparatus estimates random noise amounts using feature data to correct pixel values in image sensors.
Merging standby and main power circuits into one board reduces OLED TV power supply size while maintaining stable output timing.
Interactive media guidance displays substitute video frames during fast forwarding to maintain ad visibility.
Variable-phase optical elements introduce controlled phase delays into light wavefronts for direct signal demodulation.
A lens control apparatus dynamically adjusts focus drive direction based on defocus amounts to maintain continuous tracking.
A sound output control unit switches between original and time-extended audio signals during video playback.
Automated scheduler assigns content to priority queues, resolving manual scheduling errors and reducing operational costs.
Computing system transcribes audio to text and overlays captions while preserving original word timestamps for accurate synchronization.
A projector light source unit extends a heat dissipating member from an internal case to an external environment for thermal management.
A folded tele camera uses a floating lens group driven by shape memory alloy actuators to adjust focal length within a compact volume.
Illumination control data compensates for chromatic errors in projector optics by adjusting edge pixel brightness, reducing color aberrations.
A cable card integrates a network interface to route decrypted media content across multiple residential devices.
Analog control circuit digitalizes sensor signals to drive lens movement, reducing circuit area and power consumption compared to CPU-based designs.
Storing scan start location data in a shift register allows dynamic region selection without degrading signal quality at block boundaries.
A mobile terminal controller overlays a translucent second screen layer to display touch trajectories for note input.
Guide grooves in the camera module housing fit over solder balls on the circuit board, eliminating mechanical holes to preserve board rigidity during assembly.
An alternating pixel array merges visible and infrared sensing on one substrate, reducing device weight and power consumption for mobile machine vision.
An autofocus system adjusts lens motion parameters based on device orientation detected by an accelerometer.
Voltage detection and running information reporting identify device connections to resolve complex power management bottlenecks.
Broad-spectrum LED illumination replaces expensive lasers to triple camera frame rates while reducing motion artifacts in colored scenes.
A media device anticipates user actions by receiving in-use signals from remote electronic devices to perform pre-operations before initial interaction.
A camera system consolidates control signals for image capture and functional units into one architecture, reducing component count and cabling complexity.
A signal receiver switch unit bypasses the low noise amplifier during sleep mode to maintain loop-through functionality.