An optical reflector and beam splitter align display light with the lens axis, enabling single-device teleprompting and imaging with less setup.
Pre-acquired panoramic sub-videos and a POI route graph let users preview indoor navigation remotely while reducing real-time capture power use.
Matched capacitance ratios in a correction pixel enable precise line noise subtraction during high-frame-rate radiation imaging.
AF and AE are limited to selected divided image regions in one shooting mode, then expanded in another to match aspect-based capture needs.
Direct pre-recording to non-volatile media extends capture time beyond internal memory limits while preserving a seamless switch to instructed recording.
Photorealistic face overlays combine morphable models and neural networks to cut mobile AR latency and power use in real time.
Multiple fixed-focal-length cameras create synthetic zoom in mobile devices, avoiding moving lens parts that add space, cost, and failure risk.
Mapped glyph positions keep overlays aligned across base and enhancement layers, cutting residuals and bitrate while preserving visual quality.
Fade data extracted during graphics rendering guides weighted prediction on selected frames, cutting encoder computation in cloud gaming.
A bridging metal layer in supporting post via holes prevents poor connections and circuit breaks caused by tapered dry-etched profiles.
Automatic camera-to-cloud transfer with AI tagging and rating cuts manual upload time while keeping DSLR media secure and organized.
Adaptive event-based recording starts, extends, or stops image capture by detection timing to cut unnecessary monitoring data volume.
Multiple camera feeds are previewed and merged into one frame so selected participants stay visible during video calls despite movement or framing limits.
By distinguishing divided clips from other clip types, playback control shows key file information faster without loading every video file.
Separate flow identifiers and encoders let one camera record both a full-frame video and a focus-tracked close-up at the same time.
Sound generators placed in the non-display area drive front-directed audio, improving immersion while easing speaker layout constraints.
A gallery entry triggers automatic portrait-based moment videos, reducing manual photo navigation and making memory recall easier.
Master-client timing and multicast coordination keep shared video playback aligned across multiple displays despite changing network latency.
Stored setup scripts let an ECU configure camera modules flexibly and securely, avoiding fixed firmware limits as hardware changes.
A detachable FPGA module lets a camera detect available image analysis functions and adapt its interface to the current processing setup.
A suspended piezoelectric wake-up element triggers inertial MEMS only under shock or vibration, cutting standby power with minimal size increase.
Staggered gain updates across image channels cut load-induced signal fluctuations and noise, improving infrared signal detection.
A camera view recorder backgrounds the messaging client and pauses on return, preventing ephemeral messages from being captured.
Overlaying camera views and visitor indicators on primary content cuts interface switching, cognitive burden, and processor and battery use.
Optical FOV steering lets a multi-camera device retarget a narrow zoom view by touch without moving the hardware, reducing blur.
Selective restoration sharpens aberration-blurred images while preserving expressive bokeh in high-luminance regions.
Wide and telephoto capture are combined to keep a large panorama while preserving clear zoom-in views of selected objects.
A vehicle recorder switches between narrow and expanded camera views based on driving conditions to capture critical scenes without exhausting storage.
Phase-controlled vertical sync keeps zoomed picture-in-picture video smooth when the target region or zoom scale changes.
Playback status from user terminals changes the visibility of projected content-linked images to encourage engagement and further viewing.
Unsupported edits are composited into replacement clips so lower-capability clients can open and continue editing shared video drafts.
A slidable rear-mounted camera bracket hides the module behind the display, enabling narrow bezels and flexible cable routing.
Quick capture by voice or long press adds subtitles during recording and sends the video through a conversation message with fewer steps.
A MEMS resonator strain-couples diamond nitrogen vacancy centers to improve orbital-state control while detecting small magnetic field changes.
Nearby fleet vehicles are searched by location and time to retrieve alternate camera views when one vehicle's recording misses key event details.
An integrated camera in the projector measures curved-screen distortion and applies geometric transformation without separate camera setup.
A split timeline and preview layout lets users re-record camera content from a selected timeline point without switching editing screens.
Focus tracking keeps a selected subject visible across recording windows, reducing manual video editing on multi-camera terminal devices.
Tracking icons move and resize masks over moving video objects, cutting frame-by-frame editing while maintaining complete obscuration.
Shared MEMS process steps and a porous membrane integrate pressure and inertial sensors on one die, cutting space and packaging cost.
A home screen widget surfaces trending and relevant visual effects from an effects server, reducing search time while keeping content fresh.
Delay compensation aligns independently processed video and graphics frames before mixing, reducing output image noise.
Securely stores personal video messages and releases them only after death verification, preserving privacy and intended delivery.
An elastic insert and fixing member isolate motor vibration in a rotating body mount, reducing noise while preserving attachment accuracy and stability.
Combining an image with same-axis 3D data helps detect trick-shot fakes by checking subject unevenness against spatial measurements.
Skin-tone-based pre-capture calibration and post-processing improve image quality for darker skin tones across changing lighting conditions.
When DC output drops, coordinated shutdown signals align module power cutoff to prevent uneven brightness across a modular display.
Dynamic CPU-GPU switching handles multimedia special effects with lower CPU load, less heating, and stable video quality.
Installation-state sensing limits projection image shifting to reduce ghosting and bright reflections in embedded projector setups.
Dynamic digital and physical space views use presence-aware avatars to sustain hybrid teamwork while preserving privacy and social awareness.
Mobile carts capture shelf images to monitor stock levels, avoiding expensive fixed camera installations.
An imaging control apparatus obtains irradiation field information to calculate area doses in radiation imaging systems.
An integrated digital camera system combines object recognition with GPS positioning to insert location-specific advertisements into captured images.
An image capture apparatus transmits face identification data to coordinate with other devices for direct subject image acquisition.
Adjacent 1x2 on-chip lenses over a 2x2 sub-pixel array improve focus accuracy in low light by optimizing signal-to-noise ratio.
A companion device detects actionable text in video streams using pattern matching, eliminating manual recall of brief content.
A recording method manages AV stream packets to enable flexible playlist control on optical media.
Array lens overlaps adjacent pupil images on the image sensor to increase pixel count.
A system predicts high-latency user viewing areas using low-latency data to adjust video content delivery.
A control unit adjusts stereoscopic display parameters based on lens focus detection values to synchronize left and right eye image signals.
A digital camera system extracts subject features from stored image data to compute precise focus and exposure settings.
A reference voltage generating circuit uses a feedback node and control mechanism to stabilize output levels across varying power supply conditions.
Enhanced block matching technique reduces processing time by utilizing spatially proximate blocks and adaptive search patterns.
Parallel processing in a stacked image sensor extracts specular reflection components during readout, reducing white balance correction latency.
A digital microscope adjusts illumination settings per focus position to generate high-quality image stacks.
Aligning outer focal points of hyperbolic mirrors positions the camera viewpoint to eliminate blind spots in ceiling-mounted imaging systems.
Vision software enables handheld scanners to decode alternate fonts by generating font description files, resolving accuracy versus adaptability trade-offs.
A camera control unit adjusts subject weighting to maintain detection targets within defined margin ranges.
Small pixel groups with different optical sensitivities read out signal charges simultaneously using multiple AD converting units.
Overlay processor combines broadcast and application image layers using adjustable translucency settings to display both simultaneously on a portable device screen.
A control apparatus calculates tilt angle using a Kalman filter to separate gravity from vibration acceleration.
Kernel density estimation weights sub-populations of gray patches to compensate for dominant color outliers and improve white balance accuracy.
A sliding time window buffer retains recent ambient media content in a computing device memory.
A data conversion device compresses display data by replacing pixel components with average values to reduce frame memory capacity.
A CMOS imager captures sharp images of moving targets using dynamic integration time control and synchronized light source pulsing.
Image synthesis unit combines current and previous frames to generate evaluation values at high frame rates.
A spherical window imaging system uses a paraboloidal reflector to direct light onto an image sensor.
Predictive analysis anticipates speaker transitions to eliminate the three-second delay in upgrading video quality during multiway conversations.
Segmenting the camera sensor pixel array into independent groups decouples exposure times, reducing motion blur while maintaining signal-to-noise ratio.
Detecting questions in audio bitstreams marks video segments with tags, resolving the trade-off between segmentation complexity and search result relevance.
A light status detector monitors a movable barrier operator lamp to trigger camera capture, addressing security vulnerabilities in motorized garage systems.
A digital video recorder message system enables users to associate and display content preferences on recorded programs.
Segmenting memory by color filter adjacency stores addresses of adjacent defective pixels, correcting more low-level defects without exceeding storage limits.
Hierarchical motion vector estimation reduces computational load while maintaining high accuracy for correcting hand-movement blur in imaging devices.
A dynamic motion path blur kernel uses curved shapes and mesh representations to constrain visual effects on single images.
Image capturing apparatus fuses overlapping regions from multiple sensors to generate seamless panoramic views.
Aligned via holes through cover, adhesive, and polarizer layers eliminate optically clear adhesive thickness differences that cause bubbles around blind holes.
Extraction processing unit identifies critical playback positions by comparing learner test results against playback operation data.
A video playback system synchronizes content with user movement using joint position tracking and matching functions.
A telecine detection system analyzes field differences to restore original frame rates from interlaced video signals.
System analyzes sharpness and contrast metrics against baseline thresholds to identify partial lens obstruction caused by dirt or grease.
Segmented VCSEL emitters reduce coherence noise and eye safety risks while maintaining high illumination power.
A zoom lens uses four independent lens groups to move along an optical axis, enabling high-speed focusing and compact design.
Unified camera view switching interface manages multi-view feeds alongside visitor identification controls.
Asymmetric layout positions similar signal lines adjacent to reduce interference without complex shielding.
A micromechanical sensor uses an elastic stop element to absorb kinetic energy, preventing seismic mass adhesion and deformation during mechanical overload.
A lens barrel mounts to a fixing wall body end using an adhesive bond structure for accurate positioning.
Orthogonally crossed receiver polarizers remove specular reflections from returned signals, preventing camera sensor saturation and expanding dynamic range.
Partial port receivers decode content protection signals at idle ports, eliminating re-authentication delays and reducing hardware complexity during switching.
A multi-prism camera separates incident light into distinct wavelength bands to drive dedicated image sensors for precise optical signal capture.
A camera controller calculates an infrared light ratio to adjust lens focal position and infrared quantity for stable image quality.
Binary read-write testing classifies storage devices by bit rates to prevent DVR malfunctions from insufficient performance.
Server calculates optimal shooting parameters from image meta-information, resolving the trade-off between high image quality and manual operation complexity.
An intermediate unit electrically connects an endoscopic image sensor to a substrate using matched thermal expansion materials and solder balls.
A pivotable image capturing assembly rotates within a device shell cutout, eliminating the need for multiple camera modules and reducing structural complexity.
A reset transistor with a thinner gate insulating film reduces on-resistance and improves oxide film capacitance.
Waveguide directs visible and thermal radiation through separate paths to eliminate parallax errors in composite images.
A video amplifier system dynamically adjusts gain stages to compensate for signal loss over unshielded twisted pair cables.
A switchable optical element with controllable layers manages display viewing angles through transparent and self-luminous states.
An asymmetric voice coil arrangement enables larger movable amounts without enlarging the driving device diameter.
A suspension wire with a curved section absorbs impact stress to protect the optical unit.
Integrating a linear optical scanner into a cellular phone resolves low camera resolution limits by enabling precise text imaging and OCR processing.
Sequential display element switching balances measurement resolution with detectability, resolving identification difficulties in captured images.
A mobile terminal designates a screen region via touch input to activate the camera unit for immediate image capture.
Segmented state tracking cushions against data loss during disconnects, restoring accurate session context without increasing system complexity.
High level syntax signals video coding order information to resolve ambiguity in view_id assignment and decoding errors.
A body-mountable camera with a sliding cover conceals the lens to maintain public comfort while exposing it to ensure transparency during active recording.
A camera system calculates focus correction values using reference data to align contrast peaks with best-in-focus positions.
A panoramic photographing device shifts pixel positions using depth information to correct image distortion.
A light convertor in an endoscope uses a detector to monitor primary light conversion for real-time operational status estimation.
A display driver detects still images in compressed bitstreams to lower decoding frequency and reduce power consumption.
A polarized imaging system applies matrix calculations to pixel signals, removing crosstalk between optical regions to produce clear multi-view images.
Gyroscope offset values filter focus data distorted by terminal jitter, ensuring accurate contrast-detection autofocus.
A recording apparatus buffers main and added data in predetermined units before transferring them to media.
Micro-channel plates amplify reflected emissions to generate 3D images, resolving the trade-off between system complexity and capture speed.
A protruding first lens element captures light from wider angles to reduce screen opening size while maintaining high pixel performance.
Inversely synchronized active filters in a dual projector system eliminate flicker artifacts while maintaining redundancy against single-point failures.
A dual camera system uses a lower definition sensor for continuous monitoring and activates a higher definition unit only when specific events occur.
Synthesizing RAW data before demosaic processing reduces power consumption and calculation load while maintaining high-resolution wide-angle image capture.
A transparent ultrasonic emitter uses electrostatic transduction to deliver directional audio signals through a display screen.
A controller adjusts frame synchronization signals to align image capture timing across multiple camera modules.
A secondary imaging device detects translational and rotational motion to stabilize primary camera data when fixed reference points are unavailable.
A detection unit identifies flash bands across frames during zooming operations to trigger adaptive correction algorithms.
Server processes panoramic video streams to generate suggested fields of view, reducing bandwidth consumption while maintaining high-quality playback.
A sensor array with pseudo-randomly ordered pixels and distinct sensitivities captures high dynamic range images from a single exposure.
A video transmission network adjusts frame rate and resolution using a global clock for synchronization.
A transform method applies inverse rotation operations to vertex coordinates for panoramic image rendering.
Clients monitor presentation timestamps against local clocks to detect data impairment and restore accurate playback synchronization.
Handheld bar code verification reader captures 1D, 2D, and DPM symbols using a camera assembly and illumination dome for quality assessment.
An omnidirectional camera system replaces manual inputs with automatic subject centering based on detected user cues to resolve operation convenience issues.
A communication terminal generates a predetermined area image from spherical video data for display.
An image pickup apparatus expands compressed data using coding parameters to drive autofocus processing.
A display driver sync extraction circuit generates internal vertical sync signals based on external period start instructions to maintain panel synchronization.
Wafer-level inspection and segmentation ensure precise positioning of the image pickup unit, eliminating defects during cutting.
Scale invariant feature extraction enables rapid object recognition in unconstrained environments while reducing computational power requirements.
A panoramic video recording method uses spherical projection templates and anti-distortion camera images to render distortion-free frames.