A compressive imaging camera acquires random projections via a digital micromirror array and single detector.
A mobile terminal integrates a low power image sensor with the iris recognition unit to guide user positioning.
A reproducing device displays a frame indicating the partial video area within the wide angle view before switching.
Sensors detect external light direction and intensity to dynamically adjust background images and shadows, removing defects like scratches from the view.
A control device displays discrete and continuous cursors to guide user input.
A smartphone imager with multiple lenses captures 360-degree video using graphic processing units to combine sensor outputs.
Segmenting the pixel array into long and short exposure subarrays reduces low-light noise while preventing bright region saturation.
Spatial light modulators replace mechanical delay lines to enable real-time terahertz imaging without raster scanning.
Independent signal reading and subtraction correct random noise, enabling accurate phase detection in low luminance environments.
Synchronizing two mobile devices to capture separate video and interaction streams for composite generation.
Segmented cameras at varied heights feed selective displays to resolve visibility complexity while reducing blind spot risks.
A detachable rod extends the image capturing range while maintaining portability and storage convenience.
Segmenting spectral channels with non-overlapping filters eliminates crosstalk between red and blue images, improving phase difference detection accuracy.
Pixel acquisition circuit filters redundant background data to reduce bandwidth while capturing high-speed motion trajectories.
Segmenting the lens into regions with different focal lengths allows one camera to acquire both long and short range images, reducing processor burden.
Invisible light emitters transmit encoded data streams to augmented reality devices for precise content positioning.
A camera rear command dial integrates a detection unit with a sub-display to show an image picture of the dial.
A camera image sensor mounts directly onto a rigid metal plate supported by a printed circuit board.
A shared microlens structure aligns with multiple subpixels to enable dense phase difference calculations.
A video analysis system maps gaming objects to real-world coordinates using image processing.
A mobile camera method acquires and processes image data from multiple focus positions simultaneously.
A flicker detecting circuit compares luminance values across frames to generate a curve and extract local minimum points.
Integrated motion vectors distinguish panning from shake to prevent unnecessary image movement during camera operation.
A video transmitting device synthesizes color and alpha frames for H.264 encoding.
Recording control unit stores RAW data and applied processing info in headers, skipping redundant white balance steps during frame extraction.
A photographing apparatus determines input image scene categories to apply corresponding processing technologies.
In-pixel current integration measures depth by timing signal accumulation, reducing computational complexity and motion artifacts.
An integrated voice coil motor drives a sliding lens barrel to adjust magnification while magnetic biasing prevents damage during transport.
A segmented touch panel assigns distinct functions to spatial areas, enabling intuitive control across different display surfaces.
A robotic camera system synchronized with virtual camera paths to composite real and rendered video feeds for broadcast.
Infrared light reflects off dichroic mirrors immersed in a transparent substrate to illuminate the eye.
Multimedia system buffers key frames to enable rapid video stream switching without noticeable delay.
A buffer section stores delayed images while an evaluator determines recording start conditions, preventing missed photography without operator intervention.
Semantic data guides portable devices to render native interfaces, resolving poor content decipherability on small screens.
Rotating a camera module into a device frame maintains a seamless display surface and maximizes screen-to-body ratio.
A universal mount unit fastens interchangeable lenses and external speakers to a single electronic apparatus.
A touch screen control system manages camera pan, tilt, and zoom via direct graphical manipulation, resolving the complexity of traditional remote interfaces.
Walsh-Hadamard mask controls light passage to detector array, increasing pixel density without expanding physical footprint.
A processor compares candidate images against a database of previously saved high-quality images to select optimal context metadata for device configuration.
An FPGA-based camera control unit detects connected sensors and dynamically reconfigures internal logic to support diverse input devices.
Row-dependent grid offset calculation compensates for lens optical center drift, eliminating brightness flicker and correction shifts in captured images.
Segmentation separates urgency streams from programs, allowing playback interruption to prevent outdated weather or event updates.
A multiplexing circuit segments USB signals to allow simultaneous image transmission and host access to portable device storage.
Segmented preliminary images guide user device arrangement to ensure accurate scene representation across multiple screens.
A linearly sliding diaphragm adjusts the aperture size to resolve the contradiction between shallow depth of field and low-light imaging capability.
A dose select line connecting unit coordinates signals across adjacent stitching blocks in an image sensor matrix.
A media stream archiving system directs camera feeds to storage until a user requests real-time access, at which point the dispatcher activates.