A digital photographing apparatus uses a handshake correction module to adjust the photographing direction during image capture.
Segmented columnar readout channels dynamically configure pixel selection boundaries to eliminate unnecessary downloads and increase frame rates.
A display panel uses orthogonal polarization states to double resolution without increasing system size.
A zoom lens uses a fixed first positive lens unit paired with moving negative and positive groups to achieve high magnification ratios.
Multi-height lensfree microscopy captures intensity measurements at varying distances to digitally recover optical phase information.
A radiance camera focuses microlenses on the main lens image plane to capture directional light data.
A remote control apparatus uses touch duration to select content retrieval sources.
A smartphone-based image pickup system uses an infrared camera to track user gaze and automatically adjust the recording direction.
A camera module lens holder incorporates a rotatable focal length adjusting unit to modify the distance between the lens and sensor.
A moving picture processing device detects feature points to identify corresponding frames across multiple cameras.
Dynamic mode switching coordinates lens and body correction units to resolve accuracy trade-offs during viewfinder observation.
A window display method maintains first window visibility and command priority while showing a second window on the screen.
Segmenting the radio system into a remote tuner module and head unit reduces wiring costs and weight by replacing coaxial cables with a digital bus.
An upper-wide bottom-narrow heat emission outlet channels thermal energy from the lens insertion hole, preventing deformation during high temperature bonding.
A metallic frame with bent corner portions accommodates an electro-optical panel and transparent plates to release heat.
A detection pin generates a voltage drop upon antenna cable contact, enabling the controller to verify physical connectivity before initiating channel scanning.
A concavely curved camera housing merges with its attachment mechanism to create a low-profile unit.
Sharing sensor data between connected vehicles augments local views, resolving limited detection range and low visibility constraints.
A lens driving adapter controller enables motor rotation only when attached to a lens apparatus.
A camera abnormality detection apparatus analyzes temporal feature point changes to identify installation deviations.
A CMOS image sensor pixel array extracts color and depth data using dedicated processing circuits for parallel or serial output.
A vehicle detection camera uses an electrically controllable infrared filter to switch between visible and infrared light modes for object recognition.
A first electronic device detects a signal from a peripheral unit or second device via a low-power Bluetooth Low Energy link to initiate a high-speed Wi-Fi connection.
A compound eye imaging device recovers high-resolution images using sparse representation algorithms applied to overlapping pixel data from multiple lenses.
A video generation template applies augmented reality elements to automatically group and modify content items.
A device discriminatively displays virtual information on reality images based on object importance values.
An offset calculator subtracts bias from angular velocity signals to drive precise camera shake correction.
Information processing device selects imaging devices for RAW data development based on power supply states.
Automated profile selection resolves the contradiction between parameter flexibility and novice user ease of operation in video streaming.
Segmented metal housing bridges gaps with conductive structures to minimize interference from fingerprint sensors while maintaining compact device size.
Switches between digital and optical anti-shake modes to maintain stability and definition across multiple cameras with different focal lengths.
Camera device integrates identification codes into image sensor memory cells for selective addressing and signal reading.
Segmented sensor modules detect instrument states and transmit location data, reducing battery consumption while surviving harsh sterilization cycles.
A Service Session Manager selects optimal network devices for multimedia content delivery based on subscriber profiles and device location.
A detection circuit uses a transfer mechanism to stabilize integration node potential by moving charges from stray capacitance.
A dual-stage image recognition circuit separates pixel signal processing into low and high resolution paths using charge storage selection.
An image capturing system selects operating modes to adjust imaging sensitivity and light emission levels.
A depth camera assembly uses folding elements to redirect light paths from emitters on a single substrate.
A handheld inspection tool uses excitation light to induce fluorescence in target contamination, enabling real-time visual detection via a mounted video camera.
Electronic device adjusts audio volume using external signal information.
A controller forwards stored audio files to a speaker during power-on intervals.
A shooting device determines subjects via sensor data and image information to establish precise communication connections.
A human tracking apparatus calculates and normalizes similarity indices across multiple parameters to identify individuals in moving images.
A CMOS image sensor uses a boosted voltage signal to enhance charge transfer efficiency within the pixel array unit.
A video annotation engine labels frames using entity probabilities adjusted by metadata scaling factors.
A digital camera divides light into two beams using a half mirror to direct separate paths to the image sensor and focus sensor.
An image processing device switches computational tasks by detecting the user's position within a captured video frame.
A dual-ported photodiode array measures current through second gates to determine average light intensity without full image readout.
A data output apparatus converts video metadata into control information to support dynamic luminance ranges.
A weight-based binning image sensor adjusts pixel values using row and column weights to maintain resolution.