Roller-guided bobbin motion replaces leaf springs to speed autofocus, improve stability, and fit smaller camera modules.
Clamp sensors and timed motor engagement identify slide rack type, height, and orientation to prevent glass slide damage during scanning.
Overlapping connector and driving-voltage layers boost capacitance to hold gate voltage and reduce color deviation and crosstalk.
Real-time audio analysis blends source EQ profiles with user preferences to deliver smooth playback adaptation across genres without manual tuning.
Periodic superposition on microscanner drive signals corrects non-uniform beam trajectories to improve scan homogeneity and image resolution.
Phase-shifted delay-line clocks spread charge-pump ripple over time, reducing supply noise and stabilizing image sensor readout voltages.
Periodic phase-shift adjustment tracks amplitude changes to keep self-oscillation stable while lowering drive signal amplitude and power.
Precomputed dual correction functions in the frequency domain correct chromatic dispersion and polarization distortion with lower processing effort.
A rotating prism shifts the tele field of view to track moving objects and improve wide-tele stitching in dual-aperture zoom cameras.
Offset pixel columns and a synchronized scanning mirror raise AR image resolution while matching accommodation and vergence cues.
A monocentric lens, conical mirror, and DMD modules capture panoramic high-resolution images while cutting bandwidth and avoiding moving parts.
A larger scan window and perf-based image analysis recover stable 35/32 film frames despite warped film, damaged perfs, and variable transport speed.
Tilted focusing and imaging line-scan cameras build and clean a focus map in real time to keep slide scanning fast and sharp.
Two perpendicular prism scanners expand tele camera field of view while avoiding POV aberrations, Roll effect, and bulky mobile layouts.
A compensation layer and metamaterial structure boost near-infrared absorption while preserving visible-light transmission in image sensors.
Fiducial marks captured during film exposure enable automatic digital repositioning despite mechanical positioning errors.
A control module manages power saving status using a sensing module to detect user presence and operation signals.
Jointly compressing stereo pairs using parametric skip functions reduces bitrate by exploiting inter-image correlations without increasing encoding complexity.
A display device color filter incorporates a fourth dot between first and second peak wavelengths to enhance image resolution.
A burn-in prevention module detects static image areas and applies frame mixing to alter displayed content.
A beam position determination component compensates for time variant amplifier characteristics in scanning projection systems.
Actuator tunes scanning mirror resonant frequency via flexure tension to synchronize with video frame rates without complex locking mechanisms.
A dielectric reflector structure redirects incident light back into pixel regions to boost quantum efficiency in image sensors.
Sequential color activation of the embedded linear array reduces thermal load and device volume while maintaining high luminosity for augmented reality.
A scanning device uses a first mirror for discrete angular positions and a second mirror for continuous rotary motion to deflect light beams.
A retractable pico projector screen integrates with a keystone-correcting display unit for compact vehicle installation.
A switching liquid crystal panel divides a display into regions to control light transmission for simultaneous 2D and 3D image output.
Radiator plate under LED mounting substrate dissipates heat from backlight unit, resolving localized overheating when reducing LED count.
A display control device detects scaling state changes in moving-image portions to select appropriate screen modes automatically.
Loading an ROI table updates sensor regions between scan lines, improving fundus imager adaptability.
A GPU-based two-pass process converts video data through an intermediate format to reduce CPU resource usage.