A media editing application uses a smoothed curve to retime selected clip portions between playback speeds.
Five-element aspheric lens system corrects optical aberrations through precise surface curvature optimization.
Motorized infrared sensor maintains steady measuring point distance to resolve cost and coverage trade-offs in wide asphalt paving.
A camera module uses a movable image sensor to support auto focusing within a constrained exposure area.
A multi-sensor image acquisition system separates luminescence signals from background light using dedicated narrowband and broadband illumination sources.
Altering content bitplanes to embed structured light patterns enables continuous projector calibration without show interruptions.
Automated redaction system applies blur filters to digital video files, reducing manual processing time for FOIA requests.
A signal transmitting unit rearranges image capturing signals using line memories and control units.
Segmenting operation members into designated wake-up and non-wake-up categories reduces power consumption while maintaining operational responsiveness.
A routing assembly guides cables along circuit boards while shielding components and securing device parts.
A linear matrix operation unit sets coefficients to adjust RGB signals toward ideal characteristics.
Dual camera electronic binoculars switch to a wider angle view when the subject is lost in the narrow field of view.
Mapping table tracks logical-to-physical block relationships to avoid data copying overhead and maintain high-speed real-time recording.
Segmenting image computational tasks between a dedicated ASIC and the device processor reduces power consumption while maintaining imaging data quality.
A timestamp projector encodes machine-readable time data into optical signals for camera image capture and decoding.
A broadcast apparatus identifies users via control signals to retrieve personalized settings from a database.
A pixel correction circuit identifies and corrects image pixels affected by ghost light crosstalk using interpolation from surrounding pixels.
A stepping motor centers a shared rotating magnet on the optical axis to drive lens groups via stationary coils.
A stereo camera system reduces parallax using homography transformation parameters derived from reference lines in captured images.
A terminal device adjusts RGB luminance and fuses multiple HDR frames to restore image detail.
Determines pose changes of image and calibration acquirers to synchronize clocks, eliminating external wiring complexity in autonomous vehicles.
An automatic license plate recognition camera adjusts exposure time and gain to maintain image clarity.
Rotation restricting parts in a dome camera housing prevent cable twisting by limiting rotation.
A digital micromirror device projection system integrates a holographic optical element to redirect waste light and control beam intensity.
Segmenting infrared images into low, mid, and high frequencies allows independent scaling to preserve detail while compressing dynamic range for display.
Twisted ridgelines on a shared lens cover cause light distortion that the processing circuit resolves by identifying and interpolating blurred pixels.
A vehicle night vision system merges visual and infrared images into a single display.
A source device adjusts communication signal electrical characteristics to maintain stable content delivery.
A digital scanning apparatus uses a dedicated focusing sensor to detect contrast values and determine optimal focus position during operation.
A display controller divides a full screen into multiple independent areas using remote input signals.
Combining segmented frames via heuristics to overcome single-axis wedge limitations and generate circular bokeh effects.
A luminance correction system uses CCD imaging to calculate pixel values and reduce display mura.
A video preview browsing interface slides sequential previews onto a display to replace static box art images.
Dynamic bit assignment maintains DC balancing and legacy compatibility while transmitting auxiliary data in video streams.
A CMOS imaging element captures blurred images while moving the in-focus position at constant speed to enable distance measurement.
A spatial light modulator uses optically-sensitized carbon nanotubes to form conductive patterns that generate optical vortices.
An interface unit extracts vsync signals from video data to generate control signals for any 3D viewing device.
Characterizing pixel crosstalk with characteristic functions and optimizing spectral response curves to maintain spatial resolution and sensitivity.
A wireless transmission system routes camera image streams to mobile visualization media for crew members.
Segmenting unit sensors into high and low sensitivity regions expands dynamic range while maintaining signal accuracy without adding complex circuitry.
Asymmetric pixel patterns minimize light interference between image capturing and detection units.
Composite resin shafts in the mirror holder equalize lateral stress, suppressing twist deformation and improving display image quality.
Secondary cameras direct a primary imaging device to capture high-resolution data only when motion is detected.
Phase modifying elements introduce image attributes into optical images for independent signal processing.
A server apparatus transmits photographing instruction signals to viewer terminals based on acquired conditions.
A white-balance patch redefines reference regions to adjust camera exposure for variable LED spectra, resolving blackbody curve deviations.
A DMB reception apparatus establishes a return channel to request missing data from the broadcasting station.
Chamfers on lens holders guide curable adhesive application for precise optical alignment.
A heterodyne starring array imager uses waveguide components to separate light collection from photo detection for high signal-to-noise ratio imaging.