Placing the operating lever beside the touchscreen lets UAV users control flight and screen functions without changing hand position.
Multiple UAV gimbals with independent or synchronized control capture infrared and visible data in one flight, avoiding camera swaps.
Preplanned gimbal trajectories and shooting templates automate complex lens rotation while cutting post-editing time and improving video quality.
A rack-and-pinion camera retracts and rotates for front and rear shooting, freeing the full front surface for display use.
Multiple image channels let UAVs stream and display several camera views at once, reducing operator interference and aiding obstacle avoidance.
GPU-accelerated image processing drives a carrier to adjust payload pose across multiple axes, keeping fast-moving targets in frame with less operator skill.
Map-based localization and heat-map tracking monitor people or animals without wearable sensors, improving action detection in robotic spaces.
A lateral knob rotates the camera mount for angle adjustment without touching the lens, reducing contamination and cleaning work.
A push-cable camera with pressurized jetting clears pipe obstructions while preserving interior visibility for faster inspection and cleaning.
A four-wire SMA lens actuator uses a biasing element to support autofocus and optical image stabilization with lower wire count and cost.
By relaying sensor-detected positions and speeds of nearby non-communicating vehicles, this case improves future traffic prediction accuracy and coverage.
An integrated monitor frame and ceiling interface simplify mounting, cut redundant parts, and improve airflow for heat management.
Four corner-mounted cameras and a quick-attach fixture cut tiled display setup time while improving pixel seam alignment.
A nested three-motor gimbal cuts size and weight while stabilizing closely spaced cameras for seamless 360° drone footage.
Real-time image display on the gimbal handle lets users adjust camera attitude directly while keeping the control structure integrated.
An adjustable coupling links a wall-mounted display and speakers, keeping horizontal alignment and controlled spacing without extra brackets.
A harness-mounted camera uses a damped positioning arm and stabilizer to deliver hands-free subjective recording with lower weight and steadier images.
Magnetic curved contact surfaces replace spring-based alignment parts, enabling precise camera pivot adjustment in a compact mount.
Angle-of-view feedback lets the gimbal adjust speed, acceleration, and sensitivity as focal length changes to keep images stable.
Camera image processing recognizes equipment events in real time, enabling responsive control actions and image transmission to network clients.
Forward error correction and packet prioritization keep video and distance-map streams usable for low-latency remote vehicle control over cellular links.
Angled pin holes spread load across thin walls, securing electronic devices without pillar support and simplifying horizontal alignment.
A magnetic coupling lets one rest stand attach securely to different objects, combining quick interchangeability with stable support and compact storage.
Captured context images let a moving robot learn floor-related stuck events and reroute to avoid repeated navigation failures.
Base acceleration and camera motion are used to vary gimbal response speed, keeping fast targets smooth and slow targets in frame.
Localization-guided ROI exposure adjusts autonomous vehicle camera brightness for roads, pedestrians, and signs under changing light.
Geofenced operating modes restrict UAV video viewing and recording in selected areas, reducing privacy abuse without blocking legitimate use.
A server relays multimedia, commands, and status data so operators can safely control self-driving vehicles without line-of-sight access.
Multiple sound, vibration, gas, flame, smoke, and image sensors pinpoint plant faults remotely for faster response and safer diagnosis.
Direct-drive motors and inertial sensing cut gear-delay response, reducing vibration and shake to keep imaging platforms stable.
A driven pushing mechanism moves and rotates one camera module to support front, rear, and panoramic shooting while preserving screen space.
A linear drive, connector assembly, and guide mechanism rotate the screen and auto-adjust height for easy landscape-to-portrait viewing.
A vertical pan axis lets one pan-tilt camera work on walls or ceilings while keeping images level without a third roll mechanism.
Real-time preview feedback shows the angle between UAV heading and camera direction, helping pilots align flight with gimbal rotation.
A light shielding plate, diffuse white coating, and guide rail improve lighting uniformity and color saturation in panoramic imaging.
Remote optical inspection detects deposits inside high-temperature aseptic heat exchanger tubes before burn-on affects product quality.
Multiple diffused LEDs, removable battery housing, and heat sinking improve tube inspection image quality, frame rate, and runtime.
Beam-split light paths and fused multi-exposure images give welders a clear 3D arc view without frequent filter replacement.
A hybrid magnetic and mechanical connector lets assistive wearables rotate to set angles while staying securely attached during use.
Direction data from a tagged external device rotates the display automatically, simplifying mirroring and preserving full-screen viewing.
Three pre-clamped elastic grommets and a split damper isolate an optical bar from shock and vibration to keep optical elements stable and calibrated.
A bracket link moving through the rear cover enables display tilting and sliding while preserving stand stability and easier repair.
Timestamp updates and per-frame sample adjustment keep audio playback synchronized across independently clocked devices without extra oscillator hardware.
A rotatable quick-release mount lets UAV gimbals attach or detach cameras without tools while keeping electrical connectors securely aligned.
Sealed MEMS baffle channels redirect gas or liquid near the sensor to limit sediment buildup without slowing pressure response.
External signal analysis drives gimbal motion and camera settings in sync with music, making rich video effects easier for consumers.
A flexible anchored carriage moves inspection and repair tools through turbine airfoils, expanding in-situ access beyond borescope limits.
Axis-aligned motorized tilt and swivel keeps the camera lens at the rotation intersection, reducing panorama stitching distortion.
A barrier-separated optical path lets multiple light sources handle different surface reflectivities without corrupting image sensor detection.
A buoyant tethered retrieval approach lets a mobile tank inspection platform neutralize charge below the liquid surface and avoid spark risks.
Write control sections arrange image data in specific sequences within memory to enable direct reading for rotated output.
Electronic adapter unit detects connected output devices to apply stored modification profiles for tailored audio frequency response and video visual characteristics.
A single imaging device uses free-form lenses to generate images with varying view angles and resolutions on one sensor.
Binary Sensory Effect Metadata directs reproduction engines to apply precise color correction parameters.
Audio processing device estimates noise levels using drive instruction timing to suppress lens operation noise.
An optocoupler isolates a lens barrel from a drive unit, preventing ground potential differences that cause positional information errors.
A wireless surveillance system uses single click-select functions to establish secure communication between input capture devices and digital recorders.
A translucent enclosure wall projects internal light to create visible animated images on its exterior surface.
A storage device converts user data into three-ary symbols to suppress intersymbol interference and increase information density.
Computer-implemented method identifies subtitle timing errors relative to shot changes, eliminating viewer re-reading and flickering effects.
Segmenting the image signal across multiple displays achieves high effective frame rates without increasing driving circuit speed.
A finder unit display controller adjusts transmission ratios in outer regions to overlay information on subject images.
An electronic device coordinates multiple capturing devices to compose images from predetermined angles.
An autonomous robot system replaces manual climbs to inspect and repair cell tower components, eliminating worker safety risks.
A solid-state imaging device uses an overflow preventing section to control reading-out switches in pixel portions.
Automated mixing energy ratio profile generation analyzes video segments to adjust soundtrack volumes without manual intervention.
A vehicle video recording system applies metadata weights to synchronize event importance with footage for differential quality storage.
Segmented obstacle sensors and a central server track drones to resolve tracking precision versus system complexity.
A video mail system enables non-residents to initiate communication with inmates through asynchronous media uploads.
An image-capturing assembly reconfigures optical filter and holder positions to minimize overall thickness.
Integrated camera and API analyze captured skin images to resolve the trade-off between monitoring precision and device complexity.
An information carrier stores dummy data in additional regions to obscure noise level differences and protect access information.
A white balance setting unit classifies light sources using image and optical sensor signals to determine adjustment reliability.
A global shutter image sensor divides integration periods into sub-integration periods using a timing generator and row driver to manage photocharge accumulation.
Serial lighting interface bus controls integrated current sink MOSFETs, reducing circuit complexity and heat concentration in local dimming systems.
An electronic viewing device alters sensed images using local Fourier transformations to create hybrid visual experiences.
A dual field of view telescope uses a fixed fold mirror to divert radiation toward a secondary detector via relay optics.
A broadcast reception device records program metadata and retrieves video content from a server for playback on portable terminals.
A projector adjusts non-black pixel brightness using a light sensor and processor to adapt to ambient lighting conditions.
Image pickup apparatus determines light amount change characteristics using photometric evaluation values at specific intervals.
Integrating a thermoelectric element into the lens barrel prevents condensation and heat-induced deformation without adding separate heating components.
A vehicle imaging apparatus uses a controlled ultraviolet light source to activate a photocatalyst film on its optical member.
Sequential charge transfer while keeping amplifying transistors active reduces fixed pattern noise and shading in solid-state imaging.
Super pixel segmentation in a time of flight camera increases dynamic range, preventing pixel saturation and reducing measurement errors for dim features.
Context-aware tagging automates metadata association using device location and time, reducing manual organization effort.
Registration elements on the lens holder align with the image sensor chip, compensating for placement tolerance and reducing device height.
A video-based building management system records construction and maintenance processes on a server for transparent oversight.
Interactive overlay system composites dynamic game elements with media content.
A correction curve adjusts image brightness gradients to smooth dynamic range without amplifying surrounding noise components.
A universal adapter identifies analog or digital video signals at a shared input terminal, eliminating separate ports and simplifying cable connections.
A focusing adjustment apparatus calculates correction values from signal and image characteristics to modify the focusing operation.
Single-slope analog-to-digital converter digitizes exposure signals, eliminating additional memory requirements and reducing power consumption.
Predictive viewport selection based on audio spatial metadata reduces lag time during user field of view shifts.
A removable underseat storage bin with a lockable lid resolves security risks when vehicle tops are removed.
Segmented spacer regions increase resolution by balancing mechanical strength with light transmission in head-mounted displays.
Segmenting the distal tip into three viewing elements and nesting service channels expands the field of view while resolving packing constraints.
Multi-directional illumination captures images from varied angles to synthesize high-resolution output, overcoming aperture ratio limits in standard sensors.
Replacing electrical drive lines with optical signals eliminates timing skew in image capturing devices, enabling high precision measurement.
A rotatable anamorphic zoom lens changes magnification to match input aspect ratios, eliminating resolution loss from blank portions.
Segmented tiles on a single target allow parallel camera module testing, resolving throughput constraints without increasing physical target count.
Digital night mode processing replaces mechanical filter extraction to improve sensitivity without disrupting RGB balance or reducing responsiveness.
Feedback control adjusts pulse width and tube voltage during arm rotation to compensate for varying body thickness, ensuring uniform projection data quality.
A display control unit adjusts item positions dynamically to maintain clear visual separation during user interaction.
Dynamic anti-blooming control reduces dark current by adjusting voltage levels according to detected light intensity.
A video file structure embeds user interface data and timeline information within an animation track to preserve interactive playback features.
A coordinated presentation system curates and integrates video streams with interactive image modifications.
Bimetal edge-roll units transform display panels into ornamental structures while protecting fragile edges from damage during transport.
Coordinate transformation maps rotary camera pixels to spherical coordinates, resolving detection accuracy loss caused by shifting fields of view.
Partitioning the screen into independent regions manages image display timing, resolving the trade-off between visual interest and device complexity.
A dual optical correcting unit system moves lens elements perpendicular to the optical axis to stabilize captured images against camera shake.
Dual imagers with a steerable beam splitter capture wide fields of view and zoomed details using minimal moving parts.
Time-division multiplexing assigns periodic slots to distinct viewing perspectives, resolving bandwidth trade-offs in multi-user scenarios.
An image display apparatus recognizes objects and determines menu priority based on set modes.
Processor replaces flash spot pixels with data from adjacent images to recover lost information during mosaicking.
A correction unit adjusts high-frequency values in detected regions to weaken contrast.
Lensless camera captures opposing antenna images to calculate phase angles, reducing processing power required for complex beam tracking.
Insulating film surrounds InGaAs photoelectric conversion layers to prevent signal crosstalk between adjacent pixels.
A display apparatus determines a recommended viewpoint for 360-degree images using composition detection parameters.
Cone-based ray casting NeRF with annealing smoothness regularizes training to resolve accuracy-complexity trade-offs in sparse view rendering.
A timing control unit adjusts the phase difference between imaging and display signals based on lens optical properties.
A VOD server selects video streams with staggered intra-frame intervals to enable precise trick mode navigation.
A sensor assembly uses a heated drain to remove water from the air inlet tube.
A flat panel display motherboard integrates press buttons, LEDs, and a wireless receiver via light guides.
Boundary region pixels exclusively use their own sub-pixels while continuous regions share them, resolving distortion in color contrast.
Pixel segmentation captures intensity and angle data simultaneously, stabilizing spatial resolution across refocus positions.
Segmented lens units with specific refractive powers reduce total length and weight without increasing aberration variation across the zoom range.
Segmenting the pixel array into monochrome and color subsets enables efficient barcode decoding by interpolating missing values at color positions.
An actuator moves the display to block unauthorized camera access.
A headlight control subsystem detects objects via image data and configures vehicle headlights to optimally illuminate them.
A control unit generates driving signals to adjust the bending angle and instrument channel curvature of an endoscope insertion part.
A near-infrared absorbing composition uses a copper complex to reduce optical distortions in camera modules.
Audio processing logic alters pitch, tempo, and volume based on image characteristics.
A video conferencing system switches operating modes to control pan-tilt-zoom cameras based on sensed context.
A device renders image templates on a display to guide target object positioning during capture.
Resilient members between connectors prevent contact breakage while internal signal lines maintain audio quality without external wires.
Server automatically combines user media segments into composite programs, resolving manual upload time bottlenecks through self-service automation.
An event camera sensor outputs data values only when intensity changes exceed a threshold, enabling faster image generation with reduced power consumption.
Detecting electrical resistance changes at the communication port enables shutter release and aperture control without adding dedicated hardware connectors.
A mobile terminal controller displays a partial image preview while capturing the full scene for later editing.
A pixel arranging apparatus extracts and rearranges image sensor data using cyclic line memory selection.
A frequency-dependent bias circuit adjusts current supply based on horizontal drive frequency to optimize analog signal processing.
Visual objects represent data units on a screen to enable interactive grouping and classification by attribute similarity.
A rotating imaging unit captures overlapping images to generate a 3D image from a single camera.
A user interface synchronizes multiple video source windows with an audio timeline for custom track creation.
A zoom lens uses a reflective element and plastic lenses to reduce size and correct aberrations.
A progressive lens focuses images across near, mid, and far zones in a single vehicle camera system.
A projector system authenticates authorized devices using encrypted passwords generated within the display unit.
Segmented conductors and charge pumps cancel atmospheric noise in vacuum-encapsulated MEMS microphones, preserving acoustic signal quality.
Distinct vertical and horizontal curvature radii on an aspherical visor equalize optical power to eliminate astigmatism in head-mounted displays.
A system generates smoothed rendering data for video clips by aligning Bézier points with raw panning inputs to create consistent motion paths.
Non-linear lines with random spacing overlay digital content, preventing unauthorized copying and modification by resisting removal attempts.
An image processor combines still and moving images by designating a moving area via touch input on a display unit.
A console main unit processes logical layer connection requests from a Bluetooth controller to establish communication links.
A pixel cell integrates infrared and visible light photodiodes within a single semiconductor substrate to enable simultaneous sensing.
Position-based weighting coefficients resolve uneven signal distribution in image sensors, ensuring precise average representation.
Deep-drawn sheet metal housing segments replace die-cast parts to align camera optics via internal reference surfaces.
A foldable display panel uses a central edge groove to route data lines and maintain image quality during folding.
Voltage bias controls pixel configuration to enable charge domain binning, resolving parasitic capacitance that reduces sensitivity and signal-to-noise ratio.
An image processing apparatus adjusts orientation and size based on acquired imaging state information to synthesize aligned visual data.
A solid-state imaging device uses a dielectric multilayer color filter to transmit specific light wavelengths.
A compositor arranges encrypted image data portions using metadata to compose frames without decryption.
Replacing voice coil motors with a MEMS actuator reduces power consumption and device size while maintaining optical image stabilization precision.
A correlated double sampling circuit uses a feedback unit to amplify difference signals during programmable gain phases.
A control unit converts target region coordinates between display and camera systems to enable accurate remote image processing.
A media player device accumulates thumbnail images derived from source video key frames to render visual previews for live streams.
A display panel rotates automatically to match image orientation using a drive motor and microcontroller.
A display apparatus uses a controller to select between wired module terminals and wireless communication units for image signal transmission.
A solid-state imaging device uses bi-directional charge transfer sections to move electric charges efficiently.
An imaging system captures visible and infrared images of cargo containers for remote monitoring.
A virtual office receptionist system uses distributed valets and a central concierge to process visitor inquiries across multiple ingress points.
A pop-up flash mechanism triggers the camera display to show light emission settings directly upon physical movement.
A detachable processing unit executes image analysis or storage based on received commands.
Underwater camera system captures visual images and sensor data for benthic habitat analysis.
A control unit deactivates self-timer settings during panning imaging to enable immediate capture.
A television system auto-configures audio output settings based on detected installation type via a graphical user interface.
An image sensor controller selects optimal pulse widths from multiple exposure signals to set precise exposure durations.
A video display device stretches backlight luminance and video signal gain based on detected light-emitting parts to increase perceived brightness.
A vibrating device uses elastic pressing sections to maintain dust-proof member support.
High-resolution timing streams resolve broadcast delay contradictions for accurate user response measurement.
Automated voiceprint recognition identifies acting roles in video frames, replacing manual editing to resolve labeling precision versus efficiency trade-offs.
Embedding readout and display coordinates in headers lets the DSP extract specific areas autonomously, reducing control complexity.
An infrared absorbing layer and precise timing control eliminate near-infrared interference on black reference signals for accurate image sensing.
A dual image sensor system registers RGB and multispectral data to perform color conversion using estimated illumination values.
Automated camera selection uses real-time position data to minimize response delays and enhance officiating accuracy.
A lens barrel recess accommodates a coupling member, reducing overall thickness while maintaining high magnification and low F-number capabilities.
Conditional navigation commands define dynamic paths on optical discs, hindering unauthorized copying by rippers that parse static structures.
A remote control system calculates delay time to adjust controlled object position smoothly.
Separate control line wirings manage pixel readout operations in a photoelectric conversion element, suppressing stripe noise without optical black pixels.
A data processor synthesizes composite images from panoramic and orientable cameras to provide high-resolution detail within a wider field of view.
Dynamic window position detection resolves calibration contradictions by adjusting brightness and exposure across varying ambient light conditions.
A CMOS pixel design uses reflective layers to form an optical cavity that traps light for enhanced absorption.
A dual-tuner external device generates over-the-air signals to supplement satellite reception.
A control apparatus estimates image motion to adjust blurring correction coefficients based on zoom magnification.
Programmable apertures modulate light to enable compressive sampling, reducing sensor count and storage requirements while maintaining image quality.
A shake correction device adjusts filter processing characteristics to limit low-frequency components based on lens displacement state.
A transport of intensity equation method uses a spatial light modulator to generate virtual phase plates for quantitative imaging.
Applies spatial calculations and excessive removal suppression to reduce color fringing around saturated pixels while preserving original object colors.