A wearable computer monitors road finishing process data and generates alerts when values exceed predetermined limits.
A solid-state imaging device uses MOS transistors to transfer and accumulate charge within a single pixel circuit.
Optimizing refractive powers and movement amounts across five lens units maintains high optical performance while achieving a compact form factor.
Adjusting circuit reduces control signal amplitude to synchronize analog-to-digital conversion across pixel columns.
Orthogonal mirror sets expand beam width while oblique incidence reduces reflection losses.
A multi-polarization image sensor selects the lowest brightness pixel within each group to filter glare and improve vein pattern extraction.
Integrating the back cover with a reflective coating eliminates separate mechanical reflectors, reducing component count and device thickness.
A recording system adjusts playback start and end times by monitoring collective user consumption patterns to align media content with actual program duration.
Self-refreshing volatile memory preserves software state during stand-by, eliminating cold boot delays and reducing power consumption spikes.
Separates visible radiation into color components to enable independent motion estimation and high-resolution image synthesis.
A digital camera uses a 3D touch panel to detect object depth and plane coordinates for intuitive control.
Multi-wavelength calibration compensates for surface roughness and coating variations, improving measurement accuracy beyond single-wavelength limits.
A marine display device georeferences a camera image stream by projecting location information onto the visual field.
A multiviewer arranges sensor signals in a two-dimensional matrix by extracting characteristic feature vectors to group similar data points.
A radiation imaging apparatus generates correction images upon power reception to enable immediate portable operation.
A single imaging device uses an anamorphic lens to deploy digital images with variable angular resolution.
A dual-lens module moves two independent lens sets in tandem to expand the photographing range without adjusting focal length.
Dual imaging sensors capture visible and infrared light for simultaneous stereo matching to extract precise three-dimensional spatial data.
A high conductivity heat transfer member connects a circuit board to a chassis within an image pickup apparatus.
Thermally induced shape changes in memory wires replace bulky mechanical linkages to reduce device volume.
A block-based method calculates differences between reference blocks to identify occlusion areas in video frames.
A video restore filter blends original and processed frames using spatial noise estimation to reduce compression artifacts.
A flash control circuit synchronizes illumination with sensor exposure windows.
Metallic nanoparticle optical filters eliminate streaks and bands from spin-coating processes, improving manufacturing yield.
Simultaneous dual camera captures eliminate ghost artifacts from moving objects, ensuring stable HDR image quality.
An adaptive cleaning system monitors grain impurity ratio to adjust sieve opening and fan speed, resolving inefficiency in high-yield rice harvesting.
A server application computes employee hours from punch-in and punch-out data to provide real-time operational visibility.
Analog high-definition transmission eliminates compression artifacts and latency while preserving full-resolution video signals over existing analog cables.
A lighting device connector uses a switching unit to dynamically reconfigure a second terminal for power input or signal detection.
A controller adjusts the live view image capture cycle to an integer multiple of continuous shooting speed.
Wedgelet partitioning divides video blocks into triangular regions, allowing precise motion vectors that improve coding efficiency over fixed macroblocks.
A liquid lens control circuit measures capacitance between electrodes to regulate interface curvature and focal distance.
Automated video event detection system analyzes human behavior using computer vision technologies.
Text annotations project onto 3D building surfaces to resolve the conflict between readable overlays and immersive street-level viewing.
Independent infrared light-emitting diode zones recalibrate auto-exposure parameters per region to eliminate hot spots from strong reflections.
Wireless acknowledgment packets confirm command reception between a camera and flash unit, preventing desynchronization errors during photometric operations.
Automatic conversion gain circuitry adjusts pixel capacitance to retain detail in bright highlights and dark shadows.
An interleaved dual sensor processing architecture corrects defective pixels and lens shading artifacts while maintaining demosaicing speed.
Merging multiple camera views into a composite image enables remote smoke detection without physical sensor proximity, resolving detection delay issues.
A linear actuator uses a transfer gear guide way to convert rotational movement into precise linear motion for camera components.
Integrating a pattern generator into the LCOS panel eliminates external driver circuits, reducing device complexity and manufacturing costs.
A peak image generating unit extracts focus areas from raw data to create composite images for clear display.
A unified discovery interface presents broadcast and non-broadcast media content through customizable virtual channels.
Continuous sensor exposure with a damping filter detects short light pulses while preventing saturation from bright ambient conditions.
A video freeze distortion assessment method calculates a freeze event distortion value using frame rate and freeze feature parameters correlated with freeze duration.
A motorized stand autonomously positions interchangeable cameras using dedicated sensors to track user movement.
Real-time pictorial indexing enables non-linear scene selection, resolving linear navigation limits.
A camera system calculates device orientation using sensor data to provide real-time position feedback.
Digital projection onto a photochromic film replaces mechanical masks, improving occultation precision while reducing manufacturing costs.