Fluid suspension and electromagnetic drives enable smooth, frictionless rotation of an inner sphere within a sealed shell, eliminating wear from external gears.
A data processing device automatically reads and decodes video frames to render excerpts without manual intervention.
A solid-state imaging device uses an address event pixel to trigger distance measurement generation in a second pixel.
A dual focus lens uses central and peripheral zones with different focal lengths to capture wide and narrow field-of-view images.
A multiscale optical system uses an array of individually controllable microcameras to relay image regions onto focal-plane arrays.
Segmenting images into regions reduces computational complexity while maintaining geometric matching accuracy.
A web camera integrates a compression module between the sensor interface and USB port to process digital image data.
A camera control apparatus displays peripheral camera information alongside active video to facilitate seamless switching between multiple networked cameras.
A projection mechanism generates texture images by mapping polygon rear faces to perpendicular sight lines.
A gimbal controller synthesizes angular velocity signals and relative angles to generate rotational shift correction data.
An oblique pixel array combines color filter and clear pixels to resolve the trade-off between color reproducibility and resolution.
A particle beam apparatus uses a control device to dynamically form detector segments from individually actuatable detection units.
A camera control unit switches between flicker detection modes to maintain accurate exposure timing during continuous shooting sequences.
A motion adaptive deinterlacer filters video signals using luma and chroma motion detection to remove cross-chrominance artifacts.
A processing circuit calculates variation ratios between consecutive image rows to detect flicker conditions.
Decenterable diaphragms in parallel lens systems dynamically adjust the stereo base, resolving the trade-off between camera size and stereoscopic effect.
A rotational operation member uses electrostatic capacity detection electrodes to distinguish touch and turning actions without mechanical contact.
Spherical coordinate segmentation enables unique client views while reducing bandwidth requirements for multiple users.
Axially movable cylinders engage camera and lens claws, eliminating rattling from multiple bayonet interfaces.
A camera module identifies photography objects and transmits images to mobile devices using NFC or IP addresses.
Subtracting dedicated overscan rows from active imaging data removes vertical scan streaks while maintaining high frame rates.
A DVR data migration management system generates a second DVR data set based on the first to associate with a new device.
A dual camera system uses sensor segmentation to detect phase differences for rapid focusing.
Replacing heavy lenses with diffraction gratings or Fresnel lenses reduces system weight while maintaining wide field of view and fast optical speed.
A terminal displays mirror and non-mirror selfie previews for user selection.
A pixel circuit uses double sampling to condition video signals from an image sensor array.
A four-element lens assembly uses aspheric surfaces and specific refractive powers to correct optical aberrations.
A visual line detection device merges display and reflected light paths through shared optical members to improve gaze tracking accuracy.
A passive pixel super-resolution technique harnesses natural subpixel shifts from frequency mismatch to enhance resolution.
Deep trench isolation structures electrically isolate adjacent photodiodes, reducing crosstalk and improving signal-to-noise ratio in high-density pixel arrays.
An image processing apparatus uses metadata flags to selectively apply sharpness enhancement and noise removal filters.
Illuminance sensors detect light changes to trigger camera functions, eliminating device shaking from button presses that causes blurry images.
Repeated signal accumulation segments exposure time, eliminating image artifacts and improving depth resolution under flickering light.
A suppression portion with extension and guide portions mechanically constrains the image stabilizing movable portion to prevent inclination.
A spherical display device detects user line of sight and posture to dynamically adjust the displayed video viewpoint.
A solid-state imaging device uses separate charge accumulation circuits to output full-resolution and reduced-resolution pixel signals simultaneously.
Segmentation and intermediary principles distribute camera capture and control logic between the wearable and mobile terminal, resolving complexity trade-offs.
Segmenting magnetic flux into dedicated fields eliminates cross-interference between sensors, ensuring accurate image orientation control.
Segmented lens groups with an aperture stop suppress distortion and astigmatism while blocking stray light for high dynamic range images.
Synchronizing screen marks with sample stage movement simplifies operator positioning and reduces measurement errors in X-ray fluorescence analyzers.
Control device analyzes moving image data to identify important scenes using subject and composition metrics.
Thinning video signal pixels to half resolution enables portable playback while maintaining copyright protection against illegal copying.
Detachable smart mounts integrate sensors and processors to reduce camera body weight while maintaining high optical performance.
A display device determines picture presentation characteristics using calculated weighting values derived from user interaction data.
Segmented chassis air ducts drive convection cooling, preventing overheating during continuous 360 degree camera operation.
Signal processor rotates stored images using a displayed orientation symbol to guide user input, eliminating manual correction and gravity sensor costs.
Internal conductors reduce dragging forces during rotation, enabling compact camera modules to compensate for hand-shaking motion.
Mobile housing unit dispenses food, water, and medicine while monitoring animal location to resolve remote care reliability issues.
A zoom control unit adjusts camera position and angle based on user attention data to keep targets in view.