A recessed, extendable I/O module in the display adds larger ports while hiding them when unused to improve security, durability, and appearance.
Diagonal reflection from coordinated concave surfaces cuts double images and improves virtual image visibility without wedge glass.
Before a device raises brightness or volume, the transmitter boosts wireless power first to prevent shutdown from power shortfalls.
A modular in-wall TV mount avoids stud cutting and uses an external emergency release to restore latch access when front cords fail.
A rotatable video-output connector lets the holder face either side, simplifying cable layout and avoiding cable bending during setup.
A locking member fills the stand-hole gap to simplify fastening while keeping large display modules stable during movement or rotation.
Sensors and motorized rotation let the projector detect user intent and wall conditions, then auto-adjust angle, height, and image size.
A floating gimbal sleeve with spring dampers isolates high-frequency aerial vehicle vibrations to stabilize video and reduce audio noise.
Tilted mounting surfaces, terminals, and magnets join front and side panels for seamless side-screen display and pivotable viewing angles.
A rotating holder locks a stand stud into a key hole, cutting screw-based assembly time while supporting a slimmer display structure.
A lever and elastic wire lock a display to multiple protrusions for quick fastener-free mounting without sacrificing attachment stability.
Portable x-ray and thermal imaging combine automatic exposure control and dynamic collimation to cut dose and speed extremity surgery.
Interconnectable rails, supports, and carriage modules cut setup time while keeping camera motion equipment portable and versatile.
An elastic lever and multi-point protrusion interface secure a display for quick attachment and removal without screws or accidental dislodging.
Multiple drone images with location data are fused into interactive multi-view media, improving visual fidelity while keeping indexing and processing efficient.
Generates center-directed acceleration from velocity and angular velocity inputs so flight vehicles can make intuitive, safer circular turns.
Real-time image analysis adjusts altitude, overlap, and speed to keep mobile-body capture stable under wind, obstacles, and backlight.
By combining real video feeds with a 3D roaming scene, this case enables remote machine room patrol with lower labor intensity.
A fixed upper mount and pivoting lower mount keep display-mounted cameras aligned through re-mounting and thermal changes without recalibration.
Coordinated switching between visible and infrared camera feeds helps drones maintain clear viewing in fog, haze, and low-visibility conditions.
A spring-driven elastic block locks the display stand neck to the base without tools, simplifying assembly and disassembly while keeping a secure connection.
Switching visible and thermal drone camera feeds based on poor visibility conditions helps reduce pilot workload and maintain safer control.
Predicted vehicle overlays compensate for delayed video in teleoperation, helping drivers judge actual position and uncertainty more safely.
A pipe-clamp sliding seat lets the rear bracket and guide tube detach as a module, speeding camera swaps while keeping teleprompter support stable.
Adjustable upper and lower frames secure different screen sizes while adding accessory mounting points for flexible wall installation.
A guide groove and mounting guide make close-to-wall display installation visually alignable and adjustable without full disassembly.
A gear-linked rotation driver changes stand angles during screen rotation, enabling stable portrait-landscape switching without separate stand adjustment.
Lowering illumination in overlap regions prevents stitching artifacts and bleaching while preserving quantitative composite imaging.
Selective power gating keeps event detection active while shutting off video capture and image processing to cut parking-mode battery drain.
A screw-driven connection bracket lets adjacent display units slide into alignment, correcting step differences while keeping connectors engaged.
A counterbalanced mount lowers and reorients TVs from high wall positions to improve viewing height, angle, and reach around obstacles.
By steering the camera toward localization-feasible areas, drones can maintain accurate self-position estimation without GPS.
Sliding hooks and elastic members create a slim display-stand mount that simplifies assembly while keeping the connection stable.
A drone captures overlapping images with location data, then fuses them into interactive multi-view media for efficient visual search and indexing.
Transforms overlapping camera feeds into a controllable common bird's-eye view, improving surveillance coverage without stitching all streams at once.
A processor detects instant power drops and resets the memory controller in time to prevent display boot failures.
Adjustable upper and lower frames fit different TV sizes and mount accessories on one stable wall structure with easier installation.
A vertical stand tower houses AV components in a compact footprint while using natural convection to cool concealed electronics without fans.
Convection openings in a compact display stand tower cool concealed AV components while preserving a small footprint and clean cable routing.
A bridge remote adds direct controls for volume and playback while preserving smart app access for complex appliance commands in shared spaces.
An elastic support arm with inner and outer arms balances the panel for smooth tilt, height adjustment, and stable pivoting.
Automatic axis inversion prevents gimbal light-beam shielding at high pitch angles, keeping imaging continuous without manual intervention.
A swivel guide and latch assembly lets a wall-mounted display pivot up to 90 degrees for better audience alignment and glare reduction.
Predictive markers and a virtual UAV overlay compensate for delayed video, helping operators maneuver remotely with fewer collisions.
Dual linear actuators lift and swivel a thin TV wall mount to improve viewing angles, avoid collisions, and prevent overheating.
Frame time stamps and sample counts are adjusted to keep independently clocked media players synchronized without extra oscillator hardware.
Dynamic camera exposure and selective illumination improve low-light autonomous navigation while preserving battery life and operating speed.
Integrated bracket and protective panel reduce impact damage, glare, and radiation while adding sensor and network functions.
Automated docking, charging, and facet-based scan planning let a UAV capture consistent structure images with less human intervention.
An elastic clamping lock lets display modules snap in and pull out from the front while absorbing displacement and external force.
Carbon particles in the electrode maintain ion adsorption while fibrous metal reduces resistance, cutting charging time constants.
A lens controller performs up-sampling on driving amount signals to suppress higher-order resonant frequency components in focus lens drive units.
Dynamic screen brightness and camera exposure control resolves overexposure contradictions, ensuring legible content for in-person and remote audiences.
Segmenting the barrel wall into light-transmissive and shielding portions reduces weight while maintaining concentricity.
An automated video stabilization system detects stationary camera modes using motion thresholds, reducing unnecessary image processing and noise-induced jitter.
An information processing apparatus manages pulldown patterns during asynchronous interlaced to progressive video signal conversion.
A 3D stereoscopic camera module uses electromagnetic coils and magnets to drive lens housing movement and tilting for precise optical alignment.
A ramp signal generator uses replica current to maintain constant output voltage.
Intermediary circuit applies boosted gate voltage to hold transfer transistor in pseudo pinch-off, suppressing dark current and fixed pattern noise.
An integrated light shielding layer blocks flash lamp radiation from entering the lens protection film, resolving image quality degradation in night scenes.
An image sensor switches between readout modes to independently control charge accumulation in imaging and focus detection rows.
An asymmetric guide aligns an intubation tube with a trachea entrance while a display shows a target mark to resolve alignment accuracy issues.
A detachable medical camera interface transmits image data via optical signals across a patient isolation barrier.
Matrix face image displays with timestamps resolve long video navigation bottlenecks by enabling rapid start position selection.
Segmented display areas preserve color finish while visualizing focus distribution, enabling depth of field confirmation during composition.
Computational depth analysis replaces dedicated hardware sensors, resolving the contradiction between spoof detection reliability and device complexity.
A single control device determines playback operations by detecting the current time position within media content segments.
A label creating apparatus associates video-recorded data with program metadata to generate organized labels using configurable templates.
Accurately estimates noise in mixed HDR signals by applying exposure time ratios to sensor coefficients, resolving accuracy limits from varying exposure times.
A guide spectacle integrates image and voice sensors to process environmental data for user assistance.
A recording device schedules media assets using personalized options and displays unique user lists for independent playback management.
Smart vision architecture adjusts pixel parameters non-uniformly across image frames based on semantic context and saliency detection.
A photo sensor design with a compensating unit corrects voltage changes from external noise to ensure accurate brightness control signals.
Segmented terminal layout isolates power and clock contacts, reducing noise interference and wear while maintaining stable data communication.
Performance measuring devices integrated into athletic wear monitor real-time motion data and positional information.
Anisotropic wet etching of [110] silicon creates deep, narrow isolation trenches that reduce dark current and prevent image blooming.
A projector adjusts focus depth by varying the projection numerical aperture through dynamic optical path changes.
A processing system generates digital records of environments by capturing interactions and operations for accurate replay.
An obstruction detector triggers an elevator to raise the camera when spectators stand, preventing the support structure from blocking adjacent seat views.
Automated imaging and sensor fusion resolve low-resolution field characterization by constructing feature vectors for accurate hydrometeor classification.
A lens module uses a swing lever and bump to move the optical element laterally, enabling compact storage within a slim barrel structure.
Synchronizing short and long exposure times with the fluorescent light period minimizes color errors and flicker in double exposure imaging systems.
A wavelength multiplexed Fourier ptychographic microscopy system uses a three-color LED array and RGB camera to capture multi-wavelength images.
A lighting device uses beam splitters and projection optics to redistribute light components across an illumination pattern.
A wide angle lens uses a lightweight moving second group to enable fast focusing speeds and high optical performance.
A transition tree module determines navigation paths and requests specific video chunks to display continuous panoramic imagery.
Multi-point thermal imaging analyzes facial temperature differences against thresholds to resolve accuracy issues from single-point readings.
A camera device coordinates mechanical movement and digital extraction to manage specified image areas.
Corner-mounted magnets and nested coils in a lens driving apparatus reduce volume by over 45 percent while maintaining auto-focusing functions.
Grouping participants by signal path equalizes latency, ensuring fair competition across diverse reception routes.
TOF laser sensors establish invisible light shields to detect vehicle breaches, reducing false positives and manual review time.
Moveable light redirection devices segment optical chains to capture composite images, reducing camera weight while maintaining high image quality.
A dark current compensation circuit processes analog sensing signals using a reference signal to generate an analog compensated signal.
A browsing apparatus groups moving picture news reports by content and selects representative segments based on user preference information.
Embedding UV and IR data in standard video feeds decouples FPGA logic from processor dependencies, enabling universal bridging without custom hardware updates.
A system modifies recording start and end times to capture complete multimedia segments.
Grounded stiffener with insulative sidewalls supports camera circuit boards while dissipating static electricity to prevent short circuits.
Transverse flexible substrate mounting utilizes unused chassis volume, improving heat radiation efficiency while reducing camera head size.
An always-depleted photodiode structure directs photocharge to in-pixel storage using a permanent electric field.
Convex and concave free-form reflecting members project images onto a transmissive display member within a compact housing.
A mobile display device uses dual screens on opposite faces to toggle between 3D and 2D viewing modes by flipping the unit.
A network-based clickstream capture system forwards user commands from set top boxes to a central television network component.
V-shaped light condensing grooves direct incident photons to lateral charge collection zones in thinned semiconductor substrates.
A camera control system automatically determines the main camera using image recognition and positional information from multiple cameras.
A controlling unit manages high-speed frame advancing and reverses the display order upon a stop operation.
Shielding structures between alternating analog circuit blocks reduce electrical interference, enabling high integration density without signal degradation.
A dedicated control module processes camera data locally to reduce computational load on the vehicle ECU.
A portable device places annotations on images by combining sensor data with computer vision feature detection to determine precise object locations.
Wireless emission permitting signals synchronize radiation generation and detection apparatuses for precise imaging operations.
The system matches content attributes to reduce computational burden and processing time by eliminating the need for complex individual habit monitoring infrastructure.
Shared floating diffusions enable low-noise readout without increasing pixel complexity or reducing the active fill factor.
An energy accumulator supplements limited external power, enabling a monitoring camera to switch to high-power processing states during detected events.
A pivoting arm holder rotates about two axes to position a vehicle display accessory while maintaining its set position despite vibrations.
A solid state imaging device controls the charge reset unit drain potential to manage saturation levels.
Universal input devices control IPTV graphical user interfaces over network connections, resolving limited versatility in traditional remote systems.
Integrating optical and chemical sensors in one probe reduces installation space while maintaining measurement coverage.
Scanner captures identity document images under white, UV, and IR light to enable server-side verification that reduces manual processing errors.
A content receiver tracks user viewing habits to identify scheduled program content matching established patterns.
A camera setting system provides a user interface to manage multi-profiles across multiple channels.
Intermediate pixel sampling reduces motion blur in UHD displays while maintaining light sensitivity and avoiding strobe effects.
A media processor presents icons to indicate marketable items in video streams.
A signal processing device matches subject images with sound sources to automate video feed selection.
A sensing device fuses depth information from two sensors with distinct sampling rates and precisions using a computing unit.
A focus control device calculates autofocus evaluation values and bright spot influence rates to adjust lens positioning.
A moving lens actuator adjusts focus using contour component signals compared against mode-specific thresholds.
A camera system adjusts pixel density requirements based on gain and exposure time changes to maintain object identification accuracy.
A portable device generates a snapshot file containing an audiovisual signal and the source network address for efficient resource sharing.
Photonic lightwave circuits couple lenslet array light to waveguides for real-time 3D spatial and spectral data capture.
A focus adjustment device switches between contrast and phase difference detection systems to determine the focused state.
A unified interface aggregates multimedia content from multiple websites into a single index for client playback.
A self-configuring computer deployment system retrieves configuration data from remote network devices to automate server setup.
A software program communicates audio data to a remote server for song identification and video retrieval.
Parallel wires suspend optics on a base, reducing parasitic motion in small cameras.
Electronic device couples user reaction video to original content at corresponding visual points, resolving limited feedback diversity.
Segmenting the television apparatus into independent signal and network blocks reduces hardware redesign complexity when adding new content providers.
A system delivers synchronized complementary information to video programs via a queryable database.
Through-holes in the annular light-shielding member enable air circulation to prevent condensation on dome covers without compromising light shielding.
Segmenting refractive power across seven lens elements corrects on-axis and off-axis aberrations while maintaining a short total optical length.
A tunable filter dynamically adjusts its transmission spectrum to match light source spectral drift.
Directional filters detect image edges to calculate mean pixel values for precise correction value application.
A composition detection unit calculates timing to issue image pickup instructions before the target frame is reached.
A solid state imaging pixel sets connecting and barrier potentials equal via charge injection to prevent lag.
System determines geographic location to recommend image capture settings, resolving novice operation complexity through self-service automation.
A 3D display apparatus uses a projection system to enlarge images from a liquid crystal panel onto a primary modulator for observer viewing.
Mobile terminal with dual cameras captures simultaneous user and subject images, resolving posing constraints during self-portraiture.
Corrects geometric distortion and eliminates ghosting by computing displacement vectors from gridded calibration of disk centers.
Asymmetric vertical signal line division reduces readout time while suppressing moire patterns in solid-state image sensors.
Dynamic illumination angle adjustment compensates for liquid surface meniscus variations, ensuring consistent high-contrast imaging of cells in culture vessels.
External pins fit into grooves on rigid printed circuit board edges to reduce camera head diameter while simplifying assembly complexity.
An automated television production system uses an IQ layer to link and update device parameters in real time.
A coviewing system merges phone audio with provider video streams for simultaneous playback.
Periodic transmission of reference voltage signals reduces common mode noise interference in long cable transmissions.
Potential barriers and charge draining units prevent readout pulse noise from superposing on signal charges, enabling electronic shutter functionality.
A media guidance application selects local or network storage for assets based on detected trick-play likelihood.
Feedback loops in imaging pixels clamp floating diffusion voltage, reducing reset noise and enabling deeper photodiodes for improved light conversion.
A mobile video display system segments live and recorded streams into distinct viewing modes for efficient remote monitoring.
Relocating the monitor to the handle lower surface resolves side obstruction issues while maintaining manual ring access.
A combined MEMS sound transducer and pressure sensor package integrates two cavities in a single substrate to minimize assembly space.
Multi-camera object authentication resolves recognition accuracy issues by performing joint verification when initial single-view checks fail.
Elastic shock-absorbing members stabilize vehicle camera modules within their housings.
Information processing apparatus activates a second application program to obtain data format and attribute information from an external apparatus.
A PC media center extension device receives and displays recorded television broadcasts from a personal video recorder via a home network.
An integrated housing merges multiple cameras and a processor to capture spherical video, reducing hardware complexity and improving system reliability.
Three mirrors redirect light from a rear-mounted engine, reducing housing thickness and the non-display section.
Correction circuit calculates coefficients from pulse widths to count incident photons accurately, mitigating undercounting in bright environments.
Information processing apparatus determines evaluation values for virtual viewpoint images based on captured viewpoint data.
A vehicle lamp camera discharges air via a guide duct and nozzle to remove rainwater, resolving image distortion caused by lens contamination.
Merges segmented landscape surveys into a centralized platform, resolving stakeholder misalignment through immersive three-dimensional visualization.
A display control apparatus adjusts peak luminance based on a user's region of interest to optimize energy usage.
A trained model maps vocal features to font attributes, conveying prosodic and paralinguistic information in text.
A 360-degree panoramic background replaces the original video feed during calls.
Sequential power removal from bias, address, and signal circuits drains residual charge from floating nodes, reducing imaging artifacts during shutdown.
Embeds configuration data in video signal invalid intervals to prevent split displays and ensure synchronization without separate channels.
A view finder screen portion moves via a four-bar rotation link mechanism to maintain constant orientation.
Deflector plate shifts focal point on sensor array to capture multiple offset images, enhancing resolution beyond Bayer pattern limitations.