A mobile terminal captures current TV image settings, compares them with preset standards, and sends automatic adjustments to avoid manual trial and error.
Reverse pre-white balance and remosaicing restore YC-raw data before demosaicing to correct color shifts and improve color reproduction.
Geofenced cameras let guests trigger scenic photos from their phones and retrieve them by device ID instead of printed tickets.
Records a reference screen while a flexible display expands or contracts, preventing cropped capture and preserving content continuity.
A thin heat conduction member preserves a narrow air gap between the display panel and support to spread heat evenly and reduce color and luminance irregularities.
Combining GPS reference positions with object recognition improves virtual overlay alignment on vehicle see-through displays despite recognition and positioning errors.
Client-side tracking uses object recognition or metadata to follow a selected subject and show an enlarged, time-delayed PIP view.
Clipped omnidirectional image areas are synchronized across multiple surfaces to create shared VR spaces without headsets or timing mismatch.
Motion and impact sensing are combined to wake the camera early but store video only for real vehicle impacts, reducing false recordings and memory wear.
Motion-triggered wake-up uses radar or lidar to start parking video only when an object enters a target zone, extending recording time with less battery drain.
Waste heat from display circuitry is converted into stored power for input detection, cutting standby energy use without extra charging circuits.
Specified-time detection triggers relevant multimedia editing templates, improving template selection efficiency, user engagement, and resource use.
Depth maps and optical flow from prior video frames help reconstruct a sharper super-sampled image with better accuracy and processing efficiency.
Motion-based frame rate adaptation applies slow motion only to high-action segments, reducing storage, power, and compute load.
Depth data anchors annotations to real-world locations, reducing input burden while keeping AR markup aligned across changing camera views.
Target-state recognition triggers in-capture speed changes, simplifying slow- or fast-motion video creation without separate editing.
Standard conversion aligns aspect ratio, frame rate, bit rate, and orientation so paired image data remains comfortable to view.
When a dashcam is removed after an accident, GNSS location capture and automatic transmission help preserve evidence and identify who took it.
Synchronized command queues coordinate devices across remote studios, reducing latency-driven timing errors and post-production delays.
Static overlay content is reused in compressed form so video frames avoid repeated uncompressed loads and cut memory bandwidth use.
Real-time editing controls let users create and save personalized video effects, avoiding monotonous preset filters and improving engagement.
Patch-level brightness correction avoids overexposed regions, preserves image details, and improves feature extraction under uneven lighting.
Calculates camera positions and directions to define a usable virtual viewpoint range and improve multi-camera image generation quality.
Biometric user checks and terminal matching limit drive recorder video replay to authorized passengers, preventing privacy breaches.
Shared transistors and transmissive subpixel regions keep images visible over the camera area while improving light transmittance and color balance.
A TWR-based positioning module tracks moved external speakers so the display can retune audio signals and preserve stereophonic sound.
Nonlinear mapping and bit masking shrink raw sensor pixel codes, cutting machine vision compute load and power use while preserving useful image data.
A glass light guide with reflection surfaces extends the optical path to preserve face clearance while converging scanned beams onto the retina.
Tiny invisible light-transmitting openings let an under-screen camera capture and reconstruct images without sacrificing screen-to-body ratio.
A tilting transparent plate and magnetic reluctance actuator shift the image by a fraction of a pixel while saving installation space.
A duration scaling strategy lets one video effect file fit different scene timings, cutting version duplication and supporting real-time rendering.
Extracted audio clips and merged repeats cut cloud traffic and redundant speech recognition while keeping subtitle timing accurate.
An inclined pupil in a reflective-transmissive projection lens evens light distribution and suppresses upper-edge brightness loss.
Event footage is sent only when a dashcam moves beyond a set distance after an incident, protecting accident records without constant data transmission.
Dynamic transmittance adjustment dims bright real-world regions so overlaid virtual objects stay visible without losing scene clarity.
A CNN enhances surround-view camera images in low light by adjusting brightness and color without adding vehicle lamps.
Offset-based scaling and projection-aware inter prediction cut 360-degree image data load while preserving compression efficiency for VR and AR.
Independent channel memory and status feedback let each terminal keep showing prior content when a shared display is switched.
Selective speaker routing pins each remote participant to a display region, improving spatial presence and reducing meeting-room audio interference.
Magnets reinforce a USB co-processor module against vibration-driven unplugging while also conducting heat away from the processor.
Coordinated QoS estimation and timing optimization reduce total degradation time across multiple virtual network flows.
Clock-offset distribution corrects temperature-driven sync drift, keeping vertical timing accurate without added PLL or DLL circuitry.
Directional scaling offsets guide inter prediction and projection-based reconstruction to compress 360-degree VR and AR images more efficiently.
A shared mirror optical path combines display output and infrared eye sensing to shrink VR or AR hardware without losing gaze detection.
Selective high-resolution rendering in the viewer's chosen 3D region preserves frame rate, improving visibility and reducing motion sickness.
Multiple cameras and an HMD synthesize an unobstructed field of view, helping operators see around obstacles and avoid collisions.
A through-hole fastening structure couples the plate and base while preventing panel damage and local hot-spots in ultra-thin OLED displays.
Records multi-view content by detecting view identifiers, storing related stream data, and preserving synchronized playback across view modes.
Mobile key detection filters driver-related motion so parked vehicle recording captures useful events while reducing battery drain.
Pre-assembled fixing screws and a decorative cover simplify dome camera ceiling mounting while reducing re-screwing time and safety risk.