Collocated photodiodes with selectable ADC quantization let one pixel capture multiple light components while preserving spatial resolution.
Varying initialization voltage by row or column suppresses stripe-shaped fixed pattern noise and lateral noise in column-parallel image sensors.
Selective count code transfer in an image sensor ADC limits multi-bit peak current, reducing pixel data deterioration and power use.
Switch-circuit routing and temperature reference sensing cancel current-source and amplifier 1/f noise for more accurate infrared temperature detection.
A DAC-node noise detector corrects pixel power noise in SAR ADC conversion, improving solid-state imaging accuracy without added complexity.
Divided clock selection stabilizes image sensor precharge pulse width across PVT conditions, preserving sensing margin and detection performance.
Switchable reference-voltage lines let each column ADC adjust analog gain without adding circuit area or raising power consumption.
Pixel counters mix photocurrent with local oscillators to detect wide-area AM optical signals at lower frame rates without carrier-rate sampling.
A split-signal amplifier architecture adds real-time signal detection and on-screen intensity display for easier antenna alignment and adjustment.
During source switching, shorter loudness measurement windows let a playback device catch user volume changes and keep replacement audio aligned.
Alternating ADC readout and dual pixel supplies cut image sensor power and die area while limiting cross-talk between adjacent column clusters.
Variable comparator capacitance keeps pixel signals within range at low supply voltage, preserving ADC linearity and reducing streaking.
Voltage data is compared with reference values to flag camera power issues early, helping preserve image quality and vehicle control reliability.
DAC-controlled comparator offset calibration and charge balancing improve weak-light sensing accuracy by limiting parasitic injection errors.
By predicting convergence voltage during settling, this single-slope ADC cuts count time and speeds image sensor readout without losing resolution.
Beacon-guided image capture helps delivery systems find exact drop points and send visual confirmation for secure or hard-to-locate addresses.
Enable-gated constant current cuts pixel differential circuit power during excluded readout without supply restart delay.
Temporarily boosting amplifier tail current raises image sensor bandwidth without increasing total DC current or requiring larger transistors.
Bit reordering before SC or SCL decoding lets polar decoders use future frozen bits and improve finite-length performance without added complexity.
Using flip-flops instead of logic gates and replica circuits, this gray counter cuts ADC delay and differential non-linearity in image sensors.
Capacitors and switch sequencing let multiple pixel circuits share one readout path, cutting image sensor area and power consumption.
Switching around the ADC preamplifier lets the comparator run in shutdown mode, cutting image sensor conversion power when full precision is unnecessary.
By shifting the image sensor in a set pattern, multiple light samples are combined to raise virtual resolution and cut aliasing without extra pixels.
Peak-based tuner retuning uses rise and drop points to find valid signals faster while avoiding full-spectrum scanning.
Digital counting and noise cancellation replace nonlinear analog amplification to keep optical sensor gain proportional and sensing stable.
Alternating normal and inverted pixel output stabilizes readout current, suppressing noise, and protects image quality in large image sensors.
On-screen audio status graphics let viewers adjust volume, mute, and surround settings from the remote without deep TV menu navigation.
Multi-stage auto-zeroing in event-shuttering QIS pixels suppresses noise and cross-talk for reliable single-photon reporting in sub-microsecond intervals.
A pumped control voltage lets the VCO exceed supply-limited frequency, raising image sensor processing speed without major power increase.
Dual Hall signals are combined by subtraction, addition, and ratio correction to keep aperture magnet position detection linear across temperature changes.
Pseudo-Fourier encoding with a random mask preserves spatial information for X-ray multiframe imaging, improving reconstruction and signal-to-noise.
Using DVB-T2 S1 and S2 fields, the receiver identifies T2-Base or T2-Lite early to avoid unnecessary scans and speed tuning.
Oversampling ADCs average dark reference pixel signals in time, cutting row noise with fewer dark pixel columns and less sensor area.
High pixel signals can delay comparator inversion; this case uses threshold-based attenuation and digital scaling to speed column ADC readout.
Separate rising- and falling-edge signal paths improve serial data clock recovery, boosting communication quality with lower power use.
A dual-slope ramp with an adjustable mid-scale start cuts ramp reset overhead, speeding high-resolution ADC conversion and frame readout.
Real-time voltage detection and fluctuation filtering enable mixed power and analog transmission on one cable without signal degradation or device damage.
Shared SAR and ramp buffers stabilize capacitor loading in image-sensor ADCs, cutting DNL error and fixed pattern noise during CDS.
By holding the first gain and adjusting the lower second gain, HDR image composition improves S/N ratio without clipping.
Reconfigurable OR logic shifts and combines SPAD macropixel outputs to offset lens misalignment and improve ToF distance accuracy.
Two ramp rates in pixel ADC readout cut read noise while preserving dynamic range across low and high electron counts.
Merging same-color pixel data before conversion cuts readout noise, data volume, alignment burden, and power use in image sensing.
A split ramp and injection DAC cuts image sensor ADC area and power by adding reset-period voltage only when needed.
Lock-state detection triggers re-locking in an imaging receiver, restoring high-speed serial data synchronization with lower active-circuit time.
Partial-sum lookup tables cut sigma-delta ADC filter additions, reducing peak power and area in high-resolution image sensors.
Parallel sample-and-hold readout lets a shared-pixel CMOS sensor capture bright highlights and dim shadows with faster HDR conversion.
Cascaded sample-and-hold stages enable independent voltage sensing, reducing buffer offset and charge redistribution errors for precise pixel readout.
Visual audio source controls help users aim microphones, reduce noise, and improve recording quality in noisy or distant capture scenes.
Real-time visual microphone controls help users identify audio sources, select mics, and reduce noise during portable recording.
Keeping the same reference signal across drive modes stabilizes slope changes from parasitic capacitance and improves ADC correction accuracy.
Dividing column bit lines into electrically isolated segments reduces capacitance, decreasing settling time to improve frame rate.
A playback device calculates a previous point-in-time to replay missed 6DoF scenes during high-speed navigation.
Dynamic volumetric models update static and dynamic object surfaces from video data, resolving viewpoint freedom limits in traditional media.
A wireless endoscope reduces power consumption during battery replacement to maintain continuous operation.
Dual optical systems converge scanning light on virtual planes to maintain beam diameter and focus for retinal projection.
Controller corrects focus lens position using real-time detection to maintain optical alignment.
A communication apparatus registers partner device Bluetooth versions to transmit appropriate advertising packets.
A gaze-contingent imaging system uses a processor to adjust optical focus via an element with different focal lengths for spatially-uniform angular resolution.
A front-facing camera switches between hyperfocal and macro focus positions to optimize selfie clarity without auto-focus mechanisms.
A management area on the highest density layer records other layer types to select tracking error signals.
Pixel signal generation part uses a comparator and counter to calculate pixel signals by comparing voltages with a reference voltage.
Control circuitry displays rain check notifications in program listings to alert users of postponed recordings.
A phase difference control unit adjusts timing signals between sensor and display generators to maintain precise synchronization.
A video processing system identifies content transitions by analyzing logos and marker frames within the stream.
Image processing device adjusts camera layout based on vehicle speed and environmental data.
A video display device extracts feature information from audio-visual content to retrieve corresponding enhanced services from a server.
Sensor pods combine video, acoustic, and RF inputs to identify drones without complex infrastructure.
Segmenting video data into independent streams enables dynamic picture-in-picture display without returning to a main menu.
Run-in bit pattern excludes high spatial frequencies to enable stable clock locking in optical disc drives.
A dynamic stabilization adjustment system modifies parameter values based on capture context to ensure stable video content.
Segmented impurity concentrations maintain uniform electric fields over long paths, reducing dark current and noise in time-of-flight sensors.
Dividing the display buffer by image type enables parallel decoding, eliminating delays during real-time switching.
Alternating polarization optical filters separate left and right views in a single image sensor array, reducing pixel crosstalk noise.
Pixel circuit measures floating diffusion voltage using sub-threshold currents to enable on-the-fly calibration without external frame memory.
Nested rotating dials on the remote controller select precise time marks and days of the week, eliminating screen switching during program reproduction.
A control circuit adjusts icon display depth using electrostatic capacitance sensors to detect user approach without physical contact.
A digital pixel imager system reassigns pulse counts across an array based on accelerometer data to correct for relative motion.
A common input terminal detects incoming video signal formats to adapt processing modes automatically.
A vibration device integrated into the rolling module actuates the display panel to generate sound waves.
A segmented imaging system merges multiple camera feeds into a picture-in-picture display, resolving position determination errors in confined cavities.
A digital camera system manages buffer memory to suspend and resume photographing operations during continuous shooting.
A polarization imaging apparatus estimates target pixel values using peripheral pixels in different directions to identify defective pixels.
Segmenting pixel output resolves the contradiction between simple structure and versatile information formats, enabling fast event detection.
Merging thermal and visible-light camera inputs reduces equipment bulk while maintaining detection accuracy despite facial movements.
A mounting board with a controlled elastic modulus wire region stabilizes imaging elements.
Air passage bifurcation creates negative pressure that atomizes cleaning liquid into a mist, reducing fluid consumption while maintaining lens cleanliness.
A head mount display uses a mounting sensor to detect user wearing state and controls volume adjustment operations accordingly.
Removing I-frames from compressed video streams blocks fast-forward playback, protecting content provider revenue against unauthorized trick mode usage.
Electronic apparatus manages camera information display through dynamic view mode transitions triggered by zoom input thresholds.
Lens arrays resolve field of view versus resolution trade-offs by combining coded apertures with digital signal processing.
Segmenting the display screen into independent areas fills blank spaces from portrait videos with related content, improving space utilization.
Automatic grouping of overlapping video clips into multiclips resolves manual synchronization complexity while maintaining precise temporal alignment.
Segmenting the screen into priority-based areas resolves conflicts between simultaneous viewing and interface complexity.
A filtering unit with complementary color and whole wavelength band regions processes light signals to generate high dynamic range images.
Back cover penetrating hole routes signal cable to maintain air gap, preventing image distortion from residual heat.
A defective pixel correction apparatus determines correlated directions using same-color and different-color peripheral pixels to generate accurate signal values.
A CMOS image sensor pixel design uses point symmetry to align interconnect structures and metal reflectors around photodetector centers.
An illumination array adjusts unit parameters based on detected surface reflection characteristics to compensate for uneven lighting.
Delocalized computer systems handle complex storage and sharing of user bookmarks, reducing device complexity while improving interaction capabilities.
A slidable restricting member secures camera assemblies via interlocking protrusions and slots.
Translational beam deflection redirects optical paths in a single-row array, enabling image stabilization and focus adjustment while minimizing overall height.
Segmenting overlapping requests reduces processing complexity while maintaining scheduling accuracy for media content.
A video camera uses a single-pass rate control algorithm to compress data in real time.
In situ calibration updates infrared sensor gain tables via temperature-specific reference images to correct pixel aging and spatial non-uniformities.
Limiting fullerene content in the organic layer reduces dark current while maintaining sharp spectral sensitivity for imaging applications.
Active pixel sensors maintain a positive reset voltage during readout to suppress charge injection errors and enhance dynamic range.
A vehicle event recorder modifies detection criteria using GPS and image analysis to identify risky operator behavior at specific locations.
A unified slider control adjusts aperture, shutter speed, and sensitivity simultaneously to maintain optimal image luminance.
Software integrates video, image, and background audio tracks into slide shows by detecting silent segments in content-specific audio.
A reproduction apparatus calculates display head picture timestamps to synchronize audio and caption decoders with video streams.
An adaptive lens system corrects focus drift by monitoring image feature positions on a sensor.
A camera module couples a lens barrel to a holder using epoxy adhesive and low-temperature soldering members.
MPT packets carry validated remote record requests to satellite IRDs, enabling near real-time processing and verification without complex back channels.
A reproducing apparatus decodes an interactive graphics stream to display menu screens only upon user command.
A video noise estimation system identifies homogeneous regions to calculate standard deviation for accurate signal analysis.
An asymmetric image sensor relocates support electronics to one side of the pixel array, enabling a folded optical path within tight spaces.
Blind reference bolometers provide baseline resistance data that compensates for thermal drift, improving signal-to-noise ratio in infrared detection.
Multiple off-axis apertures encode depth via lateral offset, eliminating sensor overcrowding and calibration errors in 3-D imaging.
A pan-tilt image capture system calculates relative rotation angles using object distance and visual angle data to position multiple cameras for accurate mosaicking.
A rearward imaging device barrel protrudes from a concave housing bottom to shield the transparent member.
A printer camera displays internal images on an external screen, allowing users to identify error sources without opening the device.
Aromatic polymer composition with inorganic fillers creates thermal pathways for heat transfer, preventing camera module malfunctions.
Hardware camera control unit bypasses software interrupt latency to ensure deterministic real-time image recording.
A projector generates semi-transparent chart images within sensor viewable ranges to enable precise distance measurement.
An image sensor combines spatial and temporal exposure multiplexing to capture high dynamic range scenes.
A beam steering mechanism directs light beams to specific surface locations using optical elements and relative movement.
Processor extracts frames containing object images and generates reduced thumbnail images for display alongside a progress bar.
Segmented video storage creates reduced quality data for remote archiving.
Segmenting display into metadata and image stages reduces user stress during slow data transfer.
A camera introduces light pulses via wavelength-transforming pixels to embed verification signals directly into the captured image stream.
A hybrid tuner control system switches between individual tuners to select desired broadcast programs without interrupting ongoing content.
Partial calibration before compression and full correction after decompression lower energy consumption while preserving measurement precision.
A navigation system identifies segment transitions in tutorial videos by recognizing interface features and generating associated metadata for precise playback control.
A multi-aperture imaging system uses overlapping fields of view across wide, mid, and long focal length modules to enable smooth optical zoom switching.
An imaging system analyzes location and weather data to automatically set optimal white balance and luminosity.
Three-dimensional color volume mapping separates lightness and hue to prevent chroma inversion and color distortion when transmitting wide color gamut content.
A laser autofocus system moves the lens toward an estimated optimal position before initiating a search operation.
Dynamic thresholds distinguish true from false motion in video signals, eliminating dot crawls and ghosting shadows without losing high-frequency luma data.
A retroreflector recycles stray light in an augmented reality waveguide eyepiece to boost coupling efficiency.
A serialized data stream bundles video and computed streams to enable post-capture editing of artificial reality effects.
A display panel integrates a light valve array to form dynamic mask patterns for capturing images and determining depth.
A wide-angle lens uses a reflection surface to bend the optical axis by 90 degrees toward a back group.
Image receiving device detects wireless communication initiation to automatically control projector power state.
A photoelectric conversion device shares a time counter among pixel groups via a selection circuit to measure photon incidence timing.
Prioritizes overlapping pixel data output to start image synthesis early, reducing computational load from extensive deformation correction.
A vision sensor bias voltage generation circuit provides test bias voltages to pixel arrays for internal light detection testing.
A special-effect processor modifies raw image data during preview mode for immediate display.
Segmented charge pumps with dynamic control adjust voltage levels to reduce dark current and lag in rolling and global shutter modes.
Sink devices negotiate power transfer through HDMI using EDID information and SCDC parameters to manage bidirectional energy flow.