Common operating buttons serve dual functions for image advancing and position moving, eliminating complex multi-step operations during focus checking.
Bends plate metal into a loop shape to distribute stress across engagement portions, preventing deformation when external devices tilt backward.
Processing circuit generates correlated HDR and SDR video signals to maintain brightness consistency across formats.
A rectangular privacy mask system converts endpoint coordinates into spherical space to generate accurate masks across varying camera fields of view.
Multi-size pixel synthesis expands dynamic range while suppressing false color artifacts in solid-state image sensors.
Adaptive pixel selection on a single 2D CMOS sensor resolves autofocus precision degradation from temperature drift and oblique structure orientations.
An electronic device captures images at user-intended moments using AI modules to process feature information and store related data.
Silicon gel dampers suppress resonant vibrations in voice coil motors, stabilizing optics assemblies to maintain image quality during external disturbances.
A lens mounting mechanism uses engaging parts to bond a holder and case, ensuring precise alignment of the image pickup lens.
An image signal processor front-end accumulates data in a first memory and outputs it to a second memory via a link when a size threshold is reached.
A speckle imaging unit captures scattered coherent light while a non-speckle unit records reflected incoherent light for precise focal position detection.
Integrating an image capturing unit into a projector detects laser pointer positions on the screen, eliminating external power supplies and manual adjustments.
Segmenting pixels into groups read at distinct timings widens dynamic range without reducing frame rate.
Detection units interrupt power to rotating imaging modules, suppressing battery exhaustion and temperature rise.
A segmented sensor module integrates distinct temperature, gas, and humidity layers on a single substrate to enable precise environmental monitoring.
A three-lens zoom optical system uses a fixed telephoto first unit and movable second and third units to adjust focal length.
A control apparatus reroutes image data from faulty daisy chain units to maintain continuous transmission.
A dual image sensor system uses a dichroic beam splitter to separate color components for distinct sensors.
Inverted mounting reduces module thickness while heat-dissipating substrate manages thermal load from the exposed sensor chip.
Control means extracts section data from moving image reproduction to update composite content, resolving narrow pointer difficulty in long duration playback.
A multi-wavelength image capturing module combines signals from distinct optical systems to generate a single perspective image.
Rotating linear and circular polarizing filters adjust incident light intensity to prevent stroboscopic effects from LED flashes.
A pulsed fluorescence imaging system applies noise-aware edge enhancement to capture high-resolution RGB and fluorescence data using a monochrome sensor.
A global shutter imaging section starts and ends exposure simultaneously across all lines to capture consistent image data during focus lens movement.
A display control device overlays a partial enlarged image on a reduced whole panorama image to show both views simultaneously.
A digital camera detects target subjects to automatically pause moving image recording when they leave the frame.
An integrated shielding double-sided tape secures a flexible printed circuit board to a backlight module, preventing light leakage and reducing material costs.
A bi-convex air lens in a three-unit inner focus system enables rapid focusing along the optical axis.
A lighting device generates visual signatures from image sensor data and wireless identification information.
Control unit calculates alternative target routes when obstacles block the primary path during automatic parking maneuvers.
A portable imaging device docks to a station for wired data transfer and charging while maintaining wireless connectivity.
An image projector generates illumination patterns based on captured subject data to enhance specific visual details.
A hyperspectral imaging apparatus redirects its viewing direction to track a moving scene.
A hermetically sealed optical enclosure uses a sharp edge to compress a soft metal track, forming a moisture-proof barrier around the device.
A multi-spectral clip-on sight merges altered visual content from distinct optical channels into a unified view.
A face-worn monitoring device integrates cameras into eyewear frames for hands-free activation via gestures or audio cues.
A housing assembly stabilizes dual-camera modules using a lug and groove fitting structure.
Automated aerial vehicle with thermographic camera detects solar panel malfunctions by maintaining optimal detection geometry, reducing labor costs.
Multi-layered printed circuit board connects ground layers through vias to create thermal paths, resolving single-sided structure heat transfer limits.
A controller device detects audio emitted by a media rendering device to determine its location within the room.
Sampling a two-dimensional lens shading correction function reduces hardware complexity and storage requirements while maintaining image correction accuracy.
Column amplification units amplify pixel signals to improve sensitivity and reduce chip area despite parasitic capacitance.
Edge-based sound detection enriches image metadata with audio context, reducing cloud computational load while improving multimedia retrieval accuracy.
A 3D shape measuring apparatus sets larger exposure amounts for specific projection patterns used in triangulation.
A computer imaging system adjusts artificial light intensity and color temperature to balance ambient conditions.
Mobile devices extract visual features and GPS data to transmit context for server-side augmentation.
Partial region comparison reduces detection time and transmission delays caused by slow VRAM operations during full frame analysis.
Insulating protrusions create non-uniform stiffness on a MEMS microphone diaphragm, resolving the trade-off between sensitivity and acoustic overload point.
A display device switches between menu and live screens to prevent afterimage generation.