A motor, gears, and rack move one camera between internal and external positions, saving smartphone space while supporting front and rear shooting.
Spring bumpers cushion OIS platform travel before impact, reducing collision damage, electrostatic buildup, and acoustic issues.
A bracket-mounted camera placed away from the antenna widens coverage, reduces blind spots, and helps detect objects that can cause PIM.
Sliding base and side plates let a camera switch to portrait orientation without support shift while preserving clearance for attached cables.
Separated heat absorbers create dedicated thermal paths for continuous and intermittent components, improving heat transfer and limiting hot spots.
Dedicated microlens pixel groups detect light incidence angle to identify and compensate stray light that degrades camera image quality.
Optical tags and onboard cameras enable long-range, multi-angle positioning when GPS and QR codes fall short in urban autonomous navigation.
Aggregated smart-device data locates a fire, triggers coordinated mitigation actions, and guides occupants along safer escape routes.
A clamped disk-and-shaft adapter uses o-rings or bonded seals to fit standard connectors to glass pressure housings without threading or heavy polishing.
An elastic thrust element and orthogonal constraint lock let users precisely adjust video camera belt tension and prevent slippage.
Distributed circuits near the pixel array process values in parallel, cutting sensor-to-CPU data transfer, power use, and timing constraints.
A two-piece bracket and protective housing secure a video doorbell to a door without permanent changes, helping renters avoid damage and theft.
A rotatable joint and magnetic coupling make the imaging unit easy to fold, detach, and reposition for stable multi-angle scanning.
Multi-wavelength pulse delays and interference fringes capture continuous 3D topography during ultrashort laser-material interaction.
Movable neutral density filters help self-driving cameras avoid overexposure and sensor damage in rapidly changing daylight.
A back-cover mounting hole and detachable fixer let large displays attach securely to standard tripods while enabling quick setup and dust protection.
A float-mounted camera maps basin geometry and missed areas so the pool cleaner can adjust its path for faster, full-surface coverage.
A cam-driven counterweight moves opposite the lens group to limit center-of-gravity shift during zoom and focus without adding a dedicated motor.
Different support-member stiffness and sensor placement suppress natural vibration in lens drives, improving AF feedback and OIS stability.
A rotatable two-rod mount adds flexible angle adjustment and threaded attachment points for lamps, monitors, and microphones on digital video cameras.
SLAM-based camera control maps object positions and adjusts focus and view angle so robots capture clearer target images for recognition.
Modular biological and mechatronic subsystems use neural networks to transfer human-like perception while managing integration complexity.
Audio channels are rerouted and mixed as the screen rotates, keeping speaker direction aligned for a natural sound field and stable stereo.
A hollow core heatsink cools sealed outdoor camera electronics by passive conduction and natural convection, avoiding fans, weight, and venting.
Multiple appliance-specific bridge units placed near targets cut IR output power, improve placement flexibility, and extend battery life.
Routes power and signal cables through the stand while enabling flush wall mounting to improve appearance, save space, and feel stable.
Real-time image result feedback lets a drone detect failed shots and trigger in-flight re-imaging to avoid redundant flights and delays.
Tilted rotating mirrors let aerial cameras capture nadir and oblique views along curved scan paths for efficient 3D mapping and orthomosaics.
A tilt-before-rotate mount lets a display switch between portrait and landscape without image distortion or interference with the support protrusion.
A built-in follow-configuration button lets users change gimbal follow speed and acceleration directly, avoiding phone pairing delays.
Active sensor heating and a concave front face help an outdoor camera resist cold, rain, and direct sunlight for stable image quality.
A wearable camera identifies an external device by triggering a visible response, enabling lightweight pairing without heavy onboard processing.
Geofenced operating modes restrict UAV video viewing and recording in sensitive areas, reducing privacy exposure while preserving access.
Two locking stand elements let a display switch between tabletop and wall mounting without separate hardware or tools.
A monolithic multi-camera chassis integrates shielding and mounting features to shrink module size, improve heat flow, and block stray light.
Mobile sensing shifts from fixed monitoring to route and vehicle health checks that trigger continuous inspection and autonomous control when damage is detected.
Pre-adjusting gimbal posture during mode changes prevents image jitter and keeps video capture smooth and stable.
A movable UAV carrier uses actuators and a gimbal to reposition and flip the payload for unobstructed panoramic imaging.
A motor-driven gear and rack mechanism lets one camera protrude, retract, and rotate, replacing multiple fixed cameras while saving phone space.
A removable concealing cover hides wall-mount holes, blocks dust entry, and preserves display appearance during installation and relocation.
A movable clamp secures a cable-mounted monitor, enables tool-free memory access, and shields the insert port from environmental damage.
Sliding slots and a locking bracket let gimbals adjust camera center of gravity quickly while improving mounting stiffness and precision.
Varying support-member stiffness and routing longer elastic members helps camera modules suppress AF oscillation and maintain stable OIS motion.
Motor movement during sensor thermal conditioning signals that gimbal calibration is still running, helping prevent user interruption and preserve accuracy.
Arc-shaped FPC sections aligned to pan and tilt axes simplify camera wiring, improving durability while reducing outer diameter and height.
Guide grooves and pins let a compact display head switch between landscape and portrait modes without losing stability or needing extra space.
A mobile imaging unit ranks grid locations by visible area to capture panoramic views efficiently for remote security and object checks.
An adjustable common module aligns stereo cameras and LiDAR in one windshield-mounted ADAS housing for cross-vehicle calibration.
Camera image parameters are matched to reference data to recognize equipment events in real time and support safer control in airport operations.
Integrated connector sealing replaces bulky cord grips in machine vision camera enclosures, improving IP67 protection and cable signal reliability.
A projector uses a stereo camera to measure distance and estimate the target plane for precise focusing adjustment.
Rearranging section generates addresses for image signals based on block information to store data in a divided storage section.
Digital radiographic detector stores calibration data locally to maintain consistent image quality across different imaging systems.
A video signal processing apparatus estimates positional differences and performs motion compensation to increase pixel density in output frames.
A programmable remote control stores user-selected data in memory to restore television receiver settings via a dedicated switch.
Separable kernel decomposition processes image strips line-by-line, reducing memory usage and power consumption in CMOS sensors.
Dynamic exit pupil tracking matches the operator's eye position, eliminating vignetting and stabilizing the field of view without increasing device weight.
A serpentine readout method digitizes adjacent pixel outputs using sigma delta modulators to minimize image artifacts.
Hall sensor detects actuator position for closed-loop feedback that compensates for non-linear characteristics.
A color space converter circuit detects out-of-range pixel components to prevent invalid values.
Dynamic camera allocation balances processing loads across nodes, resolving static mapping inefficiencies in distributed video surveillance.
A mobile device interface consolidates image capture applications into a single launch hub.
Dynamic power adjustment prevents battery voltage droop and component shutdowns at low temperatures while maintaining image quality.
A modular anamorphic lens system pairs a fixed front section with detachable rear units to create variable focal lengths.
Imaging unit divides light-receiving portions into distinct pupil directions to generate alternating pixel signals for focus detection and display.
Switching between full and thinned reading modes stabilizes processing time while maintaining motion detection accuracy.
Combines radar timing data with visual feeds to resolve frame rate blurring and obstruction issues in sports event detection.
Pre-emitting strobe light illuminates subjects to enable accurate face detection and optimal exposure in low brightness conditions.
Positioning gears apart along the optical axis enables diverse accessory compatibility without deteriorating operability of other rings.
A control unit generates dynamic effect videos that change according to spectator reactions received from outside the venue.
A light sensing sub-circuit converts ambient intensity into a voltage pulse signal for frequency-based detection.
Dynamic camera selection adapts imaging hardware to ambient light levels.
Information processing system records game moving images alongside synchronized event metadata for precise video segment extraction.
A focus detection apparatus inhibits level differences at AD converter mode boundaries to ensure consistent signal output.
Camera illumination control method adjusts multiple lighting units to maintain image brightness within a predetermined range.
A robotic vehicle navigates lawn borders by linking infrared and visible light sensor readings to identify surface boundaries.
A mobile communication device generates multimedia messages using synchronized multimedia integration language to display consecutive still images as moving video.
A polarization camera captures images with rotating polarized light to generate high-resolution normal images using computational processing.
A vertically stacked imaging system merges detector and display arrays with integrated readout circuitry to eliminate external processing components.
Segmenting HDMI lines into dedicated channels resolves the contradiction between low CEC transmission speed and high-speed control requirements.
A photoelectric conversion element uses organic compounds with specific energy levels to reduce dark current generation.
A playback system adjusts video speed using a motion information linked list to filter static frames and focus on dynamic content.
A CMOS pixel array uses a buffer amplifier to enter a high impedance state, isolating defective rows from the column output lines.
A radiation detector uses dynamic memory allocation to manage particle counting across multiple energy bins.
High refractive index elements resolve the contradiction between size reduction and aberration correction in fast lens systems.
A control unit erases display icons when touch inputs occur within a predetermined inhibited area on the panel.
Electronic program guide system transmits selected program notifications to remote devices via a communications network.
An on-chip system derives image-kernels to stabilize pixel shifts in vehicle imaging sensors.
Stowing the optical diaphragm in a concave lens surface reduces barrel depth without adding complex mechanisms or increasing costs.
A zoom lens with a dedicated inner focus unit minimizes aberrations across the entire zoom range.
An adapter apparatus translates communication protocols between camera bodies and interchangeable lenses to manage device power states.
A focal plane array calibration system applies supplemental flat field correction values to thermal image data using temperature-dependent scale factors.
A panel driving circuit generates test patterns and control signals internally using a system clock.
A lens barrel uses a switching-operation ring to move a connection ring between engagement and disengagement positions for precise focus control.
A viewfinder controller adjusts display power states based on eye proximity detection to optimize energy usage.
Perpendicular press plates in the shield cover position the resin package, preventing entanglement during mass production.
A resiliently deformable control housing holds a mobile device while a magnetic emitter moves relative to the device sensor upon deformation.
Active filter circuit uses dual current mirrors to charge and discharge a capacitor, enabling precise control of filter constants without increasing device scale.
Optical imaging lens with five elements uses controlled refracting powers and air gaps to achieve a compact form factor.
A method captures images at two shutter speeds to generate a composite photo with a clear subject.
Segmenting the sensor into distinct cells resolves dynamic range limits by capturing dark and bright subjects simultaneously without overexposure.
A projection lens unit uses a reflector to change light direction between lens sets, enabling a compact optical layout.
A pavement condition mapping system links GPS data to video and audio for accurate asset assessment.
Synchronizing central pixel exposure with lens stop timing resolves non-unique exposure issues across CMOS pixels, improving focus detection precision.
A dual-mode sensor captures images using a compressive measurement basis set adapted by extracted context knowledge.
Controller adjusts standby power to display communicator based on network settings, eliminating unnecessary energy consumption when Wake On LAN is inactive.
Zooming and moving video signals prevents image sticking while removing black border regions that cause user inconvenience.
A computing device generates speech videos by synthesizing AI-generated facial images with pre-recorded standby video segments.
Saving raw data as incomplete files on external media prevents buffer exhaustion during continuous shooting.
A flexible wiring board with a bent section connects a stacked element to a signal cable, reducing stress during ultrasound bonding.
A hold-type display method redistributes luminance across sub-frames to enhance moving picture quality.
A set-top box detects wireless devices and receives media content using a Simple and Extensible Transmission Protocol for playback.
Detects specific images within moving data and assigns sounds to overlapping playing regions, reducing camera position restrictions.
A representative icon indicates the focus area range on a display while a processor adjusts that range based on the icon size.
Merging the housing top part and lens carrier into one piece eliminates position tolerances between separate components.
Ring buffer shared memory coordinates image data movement between native and Java layers, resolving transfer delays that cause disconnections.
An imaging apparatus generates moving image files by associating RAW data sets with specific incidental information for efficient handling.
A mobile service system selects unicast, multicast, or broadcast channels based on user viewership statistics to optimize delivery.
Calculating frame displacement values to segment video sequences into cuts, removing redundant frames while minimizing viewer-perceived discontinuities.
A portable terminal display buffer stores an enlarged thumbnail in a zoom buffer to allow continuous image quality improvement during decoding.
A processing system overlays virtual content onto video streams of venue patrons based on real-time gesture detection.
A 4x4 pixel array integrates color-specific polarization pixels with non-polarization pixels to calculate unpolarized and diffuse reflection components.
An image display apparatus classifies ambient illuminance into stable or unstable states to determine optimal brightness adjustment intervals.
Asymmetric fixing members create distinct resonance frequencies for X and Y axes, eliminating scan trajectory distortion in endoscope imaging.
Laminating a rigid support plate with a printed circuit board resolves warpage during thermo-compression bonding, ensuring precise camera chip alignment.
A pixel structure divides photoelectric conversion portions into isolated accumulation regions to manage saturation charge during global electronic shutter operations.
Imaging device delays automatic focusing execution to allow photographer positioning, resolving the trade-off between imaging speed and focusing accuracy.
Segmenting image sensor pixels into dedicated phase detection and imaging groups resolves the trade-off between autofocus speed and image quality.
Segmenting pixel rows into distinct reading cycles reduces read time and power consumption while maintaining phase difference detection accuracy.
Wireless transmission of audio content to mobile devices complements projected visuals, eliminating the setup complexity and cost of large electronic displays.
Direct charge transfer from photodiode to floating diffusion eliminates parasitic storage node leakage and light sensitivity in solid-state image sensors.
A camera control unit adjusts electrical charge accumulation time on a storage-type sensor to match subject luminance for accurate focus detection.
Switching display categories via directional buttons resolves program selection accuracy trade-offs by combining automatic processing with user verification.
Automated scene categorization identifies media boundaries using thematic and cinematic criteria.
Asymmetric xy polynomial surfaces on three mirrors correct optical aberrations, enabling a large field angle and small F-number simultaneously.
A display control unit automatically adjusts thermal image view parameters based on user-indicated temperature reference areas.
A method extracts cross talk coefficients from image data to characterize electrical interference in color solid-state sensors.
A single indoor camera tracks pet movement across multiple detection zones to generate action logs, eliminating the need for separate beacon apparatuses.
Concurrent pixel-by-pixel dynamic range compensation and noise reduction prevent graininess in high-ISO images by adjusting gain factors.
Sequential card presentation reduces user effort and time spent locating options within complex interactive television interfaces.
Segmenting DRAM into independent superblocks allows simultaneous data writing and reading, resolving throughput bottlenecks in stacked-wafer image sensors.
A movable light shielding plate tracks pupil movement to prevent optical and electronic image misalignment.
Auxiliary power extends recordable duration for critical front and rear camera images during main power loss, preserving essential data.
Bounding box history analysis determines blob tracker confidence values, reducing false positive outputs and minimizing tracking delays in video analytics.
Dichroic fold mirror overlays infrared images onto visible light paths, resolving parallax and alignment errors in firearms sights.
A transmitting apparatus inserts a reference signal component into the image data stream to synchronize frequency with the receiving unit.
A six-element imaging optical lens assembly uses aspheric surfaces to converge light and correct aberrations.
A vehicle backup safety mapping system generates a three-dimensional model of the space behind the vehicle using rear-view camera images.
An integrated infrared cut and color filter layer reduces solid-state imaging device thickness while maintaining visible light detection accuracy.
Auto-exposure circuit segments analog and digital gain to reduce amplification noise while maintaining picture lightness.
AI machine learning analyzes video feeds to automatically control camera positioning and mixing, reducing labor costs in dynamic screen configuration.
Synchronizes image capture timing with minimal light change periods to resolve exposure unevenness caused by flickering artificial light sources.
A movable camera sensor unit on a rail enables automated washing, resolving late identification and high maintenance costs in harsh port environments.
A processor distributes image data across multiple circuits to combine focus positions.
Server-triggered activation reduces power consumption while maintaining monitoring reliability through scheduled checks.
Segmented deep trenches apply bias voltage to generate electric fields that suppress dark current and noise in backside illumination sensors.
A lens control method uses distinct virtual scales for coarse and fine parameter adjustments.
A single tuner isolates essential broadcast data packets to generate a recording stream while routing remaining segments via broadband connections.
A photoelectric conversion device extracts holes via a first electrode layer to enhance external quantum efficiency.
Per-column readout circuits adjust pixel conversion gain independently, resolving saturation and noise trade-offs across mixed-brightness scenes.
Separate drive unit accelerates image capture slide independently, reducing framework weight and vibration for precise crash pulse simulation.
Adjusting focus pixel readout modes based on object brightness improves detection efficiency while maintaining live-view frame rates.
Color correction circuitry analyzes dual-band images in two color spaces to determine light source type and apply specific matrices.
Sensor unit calculates depth cross-sectional images from parallel tracks into a plan view, reducing operator effort while maintaining spatial orientation.
A current stabilization circuit supplies constant current to a second amplifier within a comparing circuit during correlated double sampling operations.
A human detection device generates three-dimensional spatiotemporal images from moving pictures to extract real image fragments for verification.
Analog signal processing partitions pixel arrays into sub-groups, reducing output bandwidth while preserving spatial resolution.
A camera body uses voltage detection at a lens terminal to determine mounting status.
A dual mode image engine combines free-space and optically encoded lens systems to direct light onto a common sensor.
A software pipeline extracts page indices from video frames using optical character recognition to generate chapter files.
CMOS image sensors embed digital watermarks via pixel characteristic variations during capture.
Rotating stereo sensor light receiving surfaces reduces horizontal device volume while maintaining image capture precision.
A stop module uses overlapping blades rotating on separate shafts to form incident holes of different sizes.
A camera uses a dislocated optical axis to overlap the imagery circle and sensing region for expanded coverage.
A digital camera shutter button manages recording states to store moving image data in a single file.
A curved film projection system uses reversible optical paths to align camera and projector views for seamless 3D imagery.
A control section matches component information to template attributes for optimized content display.
A spectrally selective detector uses a diffractive objective lens to split imaging tasks between primary optics and microcameras.
Automated voice-based customer service system decodes user queries via remote control microphones and formulates responses.
A mapping function derives luma codes from HDR luminance to resolve conflicts between rendering quality and device complexity.
Detection unit monitors transfer state to prevent abnormal termination during mode switching, reducing external device load.
Adaptive pixel intensity clipping prevents visual artifacts and data overflow by dynamically adjusting thresholds based on local video content statistics.
A vapor deposited dielectric coating covers the semiconductor element and substrate to provide physical protection.
A radiation image console applies scanning line offset amounts to preview data for uniform brightness display.
A method measures ambient background illumination to generate control signals that adjust display luminance and chroma levels.
A thermal imaging system redistributes image data using a predetermined function to enhance local contrast for specific object classes.
A multistage demodulation pixel uses lateral drift fields to accelerate photo-charge transport across multiple storage sites.
A movable audio-video unit resolves the contradiction between easy access and privacy by swinging sensors out of sight when idle.
A digital video recording apparatus processes MPEG transport streams by extracting data blocks and allocating them to logical units for disc storage.
A generation device creates margin identification information to define regions with and without margins in celestial sphere images.
A distance camera memory module stores multiple image areas of focus in short-term memory to enable seamless user navigation.
A plate spring presses a columnar member to secure a lens case in the tilt direction.
A resize processing unit adjusts image dimensions to a predetermined camera-to-subject distance before feature calculation.
Embedding a modular monitor behind see-through mirror glass reduces operator distraction by displaying images only during critical events.
A television receiver adjusts audio output levels based on programmable criteria to manage sound intensity.
A control system manages wide-angle and telephoto sensor operations based on zoom magnification thresholds to enable seamless image switching.
An automated switching device manages connections between television cameras and control units using integrated power supply line switches and optical switches.