An object-space telecentric varifocal microscope objective extends depth of field without parallax errors from variable magnification.
A thermal camera employs a stable reference device to compensate for environmental interference, ensuring precise fever detection across extreme temperatures.
An electrical wall plate integrates a camera and power connector to capture video images while securely mounting to an electrical device.
Replaces manual alignment with automated synchronization that detects audio beats and amplitude to manipulate visual components, reducing editing time.
A projector shifts a projection lens and reflector to redirect light through a folded optical path.
A distance calculation apparatus evaluates confidence using contrast change amounts in local image regions.
A video device analyzes signal properties to determine 3D status and enable automatic playback mode switching.
An imaging apparatus detects specific visual patterns to automatically control high-speed memory storage timing for accurate slow-motion recording.
A video multiviewer system uses parallel scalers and a processing unit communicating through a serial digital interface to perform scalable video processing.
A content sales device generates composite image data from multiple adjacent cameras to sell angle-specific visual content.
An exposure determination engine adjusts long and short exposure times for image sensors to capture high-dynamic-range images.
A media guidance application generates a guide shadow that aligns with video object shadows to create a visually cohesive interface.
A pixel signal reading device randomly selects imaging elements to lower power consumption.
Media device monitors network load and switches audio streams to clean channels, preventing degradation during HDMI ARC playback.
A reproducing apparatus coordinates video and animation streams using a dedicated playback management structure.
Curved prediction lines adapt to spherical distortion, reducing residual values and improving compression efficiency for wide-angle images.
An imaging apparatus selects mechanical or electronic shutter operations based on slit width and reset scanning parameters.
Computational calibration detects pixel shifts and time lags across multiple cameras, eliminating rolling shutter artifacts in moving scenes.
A POS device captures check images using OCR to extract account data and generate a unique identifier for future transactions.
Daisy chain control synchronizes master and slave camera modules to resolve video quality deterioration caused by uncoordinated independent recording.
Image recognition filters items to trigger RFID scans only for tagged goods, reducing battery drain and RF interference.
A head-mounted display system stabilizes magnified images of objects of interest using real-time head tracking and image processing.
Similarity detection unit assesses target region similarity to correct moving subject likelihood values against random noise interference.
A collaborative image control system synchronizes command execution across mobile devices using calculated time delays between local and remote clocks.
A continuous data generator converts discontinuous pixel signals into continuous image data using output stop position signals.
A face detection system calculates expression change amounts between frames to extract best shot images.
A pixel array uses distinct filter patterns for phase difference detection and standard imaging to maintain consistent hue and luminance.
A seed mechanism enables secure file transfer between storage devices and portable media players.
Nested gimbal frames tilt an optical element to displace DMD images, increasing resolution fourfold without expanding projector volume.
A video switching mechanism uses task identifiers to manage display device playback transitions.
A detection circuit analyzes main and sub-tones to identify audio standards in intermediate frequency signals.
A local dimming method adjusts backlight PWM duty cycles to optimize image contrast.
An image sensor uses adjacent pixel groups with distinct transmittance distributions to capture multiple viewpoint images simultaneously.
A reflecting module moves a mirror to stabilize images without shifting the lens barrel.
Recording units switch between sensors and buffer frames to resolve the contradiction between real-time adaptability and system complexity.
FPGA segments image data flows across distinct storage units, expanding handling capacity while managing system complexity.
An image sensor processor generates color channel transmission maps to identify white pixels for accurate white balance adjustment.
An image processing device detects angle of view or aspect ratio changes during playback to apply predetermined transition effects.
A lens module structural member includes a pulling portion that enables manual extraction of the lens assembly from the terminal device housing.
Segmented dark nodes retain reference data during readout to minimize errors from power supply noise without increasing device complexity.
Dynamic mode switching allocates shared circuits between independent video channels, reducing unused hardware and lowering device complexity.
A control apparatus adjusts camera orientation to track moving objects while maintaining optimal exposure periods.
Continuous image caching allows users to extract previous states for modification, resolving the bottleneck of restarting failed light-painting attempts.
A television display mode switching mechanism automatically adjusts output between overscan and underscan modes based on detected content type.
An aspheric image pickup lens corrects chromatic aberration across the image plane using a specific two-lens configuration.
A signal transmission apparatus maps pixel samples to sub-images using vertical rectangular region sampling.
Processor analyzes speckle patterns to distinguish high-energy photons from visible light, enabling simultaneous radiation detection and image capture.