A ToF camera device captures distance and intensity data using a beam splitter to separate light wavelengths.
A rotating front camera positioned behind a display housing gap captures images from multiple angles to resolve the screen-to-body ratio bottleneck.
Segmenting the photosensing area with conductive bias patterns maintains photoelectron generation capability while reducing pixel volume for higher resolution.
Processor analyzes light source intensity to detect and reduce artifacts in under-display camera images.
A composite pane design incorporates a recess in the thermoplastic layer to accommodate an electrical consumer after lamination.
Segmenting pixels into interleaved subsets with grey filters extends dynamic range without motion artifacts from multiple exposures.
Segmenting the display into distinct regions resolves the contradiction between imaging quality and composition checking capability in dark environments.
An augmented reality display device adjusts imagery brightness using camera sensors to detect ambient light and user eye openness.
An interpolation frame signal with a specific coefficient reduces motion blur on hold-type displays without sacrificing brightness or introducing flicker.
Recording devices embed temporal markers during capture to automatically align multi-device video streams, eliminating manual post-recording synchronization.
A tilted autofocus image sensor samples fewer pixels to measure focus position, reducing computational load and increasing whole slide scanning throughput.
Direct wireless links between main and subdevices bypass encoding processes to eliminate transmission delay in real-time broadcasting.
Asymmetric surfaces in the fourth lens unit suppress aberration variation, enabling high optical performance without increasing assembly sensitivity.
Parallel channel decoding during CPU boot reduces digital broadcasting receiver startup time.
A readout unit separates pixel signals to generate phase difference data for focus lens calculation.
A pulsed lamp system modulates light output to encode lower significance bits during reduced illumination periods.
A standard graphics controller uses a frame buffer to add or discard disposable frames, achieving frame-accurate synchronization without specialized hardware.
An image processing apparatus generates a main image by determining preliminary composition conditions to include desired background objects within the frame.
Distinct waveguide heights optimize pupil separation and light sensitivity while preventing oblique light leakage.
Applying weighted compensation curves to low luminance areas improves image quality while avoiding line memory hardware requirements.
A feed forward command aiding architecture generates angle and rate commands from inertial data to stabilize a beam steering element.
Independent multiplexer control routes signals through redundant column circuits, maintaining image quality when specific readout paths fail.
RFID tag reading enables dynamic overlay presentation, eliminating static labeling costs and update delays.
A pulverizer unit captures firearm identification numbers and destruction images for automated database logging.
Segmenting depth and color data reduces processing complexity while maintaining efficient resolution adjustment for multi-viewpoint rendering.
A face detecting unit identifies subjects in image data to trigger specific processing routines for width adjustment and visual enhancement.
A wearable camera deletes stored communication settings after a timer lapse to reset pairing state.
A latch on a module cover engages a fixing pin on a bracket to secure the assembly, preventing head misalignment during operation.
Television set-top box receives and displays home security event data through a client application.
Server segments microphone arrays into audio zones and mutes irrelevant background noise based on viewer-selected regions of interest.
A video stabilization method measures inter-frame camera motion based on relative view direction differences to generate a precise motion path.
An image processing apparatus calculates luminance differences across focal depths to generate three-dimensional information of observation targets.
A reference voltage correction unit adjusts conversion standards based on pixel ground potential changes.
A shifting unit moves incident light flux on an image sensor during charge accumulation to generate focus detection signals.
A wireless power transmitter uses sensors to detect receiver paths and transmit electromagnetic waves only when unobstructed.
Independent three-axis movement of the convex mirror decouples position and size adjustments, resolving coupling issues in optical member arrangement.
Multi-region imaging optics form distinct focus zones to capture clear images of moving objects across varying distances.
Hardware processor adjusts display positions of infrared and visible images for direct comparison on a single screen.
A server mediates application modules to reduce hardware complexity and cost in image displays.
A take-off capture method filters image frames to identify the highest jump point.
Interpolative dividers generate local oscillator signals for multiple tuner channels using a shared frequency synthesizer.
Local gradient pattern thresholding detects specific shapes in camera images by comparing central and peripheral pixel gradation differences.
Precomputed lens profiles and metadata enable automatic unwarping of feature points, resolving alignment errors from excessive distortion in wide-angle imagery.
A venous positioning projector uses infrared light to detect subcutaneous veins and projects visible guidance patterns onto the skin surface.
Positioning cameras at vehicle edges creates overlapping fields of view for three-dimensional object identification while reducing computational load.
Optical imaging replaces slip-prone wheels to eliminate stretch errors and wheel wear in wireline depth measurement.
Camera detects visual markers on lighting infrastructure to resolve indoor positioning accuracy limits of RF signals.
A tapered sapphire light guide directs optical signals to align with receiver apertures for seamless image integration.
Screen printing replaces gold wires with conductive paste to connect sensor pads, reducing packaging time and foreign body defects.