Staggered enable timing across ADC output circuits spreads transient current peaks and helps prevent voltage drops in high-resolution image sensors.
By amplifying and discharging the residue signal at once, this hybrid ADC improves resolution and conversion speed with lower power use.
Holding comparator control lines at a fixed potential suppresses crosstalk and AD conversion errors, improving image pickup quality.
Grouped counters with synchronized clock inputs reduce propagation-delay mismatch, enabling faster image-sensor conversion with lower power.
Reads photodiode bias changes during exposure to extend CMOS pixel dynamic range and preserve image quality across varying illumination.
Multiple pull-up and pull-down voltage paths curb transition ripple and row-wise temporal noise in CMOS image sensor arrays.
A dark-signal timing offset shifts second-frame ADC ramp start to cut OPB conversion time, raising frame rate with less power and noise.
Optimized up- and down-sampling filters cut aliasing and reconstruction error in multi-standard video format conversion.
A pixel readout switches between single and multiple ramp conversions to cut low-light noise without increasing image sensor conversion time.
A 2D array of autonomous ADCs digitizes focal plane signals on-chip to raise frame rate, cut noise, and lower power in infrared imaging.
Ambient noise sensing lets a mobile device adjust audio volume automatically, reducing distraction risk without manual user input.
Transient-based gain control cuts amplification of masked audio bands, reducing energy use while preserving perceived sound quality.
Current subtraction shrinks the feedback capacitor in CMOS image sensor ramp generation, cutting chip area and power for single-slope ADCs.
Internal resonance shifts stored energy between vibrational modes so a MEMS oscillator holds frequency and amplitude after power loss.
A bidirectional ripple counter extends effective photo-charge capacity in small image sensor unit cells while supporting accurate motion detection.
A shared inversion and phase-correction circuit stabilizes dual-phase clocks at near 50:50 duty cycle with lower area and current use.
A shared bit-memory selection and output switching scheme compensates column ADC defects while limiting circuit area growth and image-quality loss.
β estimation signals calibrate cyclic ADC gain in image sensors, preserving conversion precision despite manufacturing variation.
A pixel cell stores one measurement current and subtracts the next, enabling faster charge measurement and sensor data processing with accuracy.
A variable-resistance charge path cuts bias spikes and power noise in delta-sigma image sensor readout while enabling faster integration.
Difference data from two sensing periods removes leakage-current and fixed-pattern noise, improving small photodetector image accuracy.
Detected band levels automatically retune filter and impedance characteristics, suppressing interference across regional TV broadcast bands.
Built-in timing detection lets the comparator adjust differential-pair current by state, cutting A/D conversion power and external wiring.
Multiple sampling and averaging help delta-sigma comparators resolve small voltage differences with lower power in memory and sensor readout.
Segmented current sources and storage circuits generate a ramping signal with lower glitch power, better linearity, and compact low-power design.
Camera-guided face detection steers speaker direction and volume to reach a target listener while reducing disturbance and saving space.
A split shunt inductance and series resonance create an RF cold point that suppresses low-frequency resonance and widens amplifier bandwidth.
Separate wideband and narrowband paths keep network channels continuous during video mode changes while reducing power consumption and glitches.
Real-time DSP power limiting caps peak and sustained load by speaker group to prevent surround speaker overheating and overdrive.
A partitioned time-interleaved ADC and multi-band selector enable simultaneous TV channel reception with lower complexity and better signal quality.
Comparison-guided variable gain sets pixel amplification without saturation, avoiding re-reading while improving low-light signal conversion.
Serially connected multiplexers enable high-speed bitwise data transfer in image sensors while preventing short circuits and preserving signal integrity.
A shared network clock and delay calculation align audio time indices across devices, improving synchronized playback and composite audio.
Passive routing lines and buses identify identical IC blocks without active circuits, cutting connection pads and interconnection complexity.
Randomized ADC pedestals in correlated multi-sampling reduce image sensor conversion non-linearity, improving dynamic range and resolution.
Multiple A/D conversions and staged correlated double sampling suppress kTC noise in image pickup elements without full depletion.
Selective gating blocks pixel signals and counter clocks in unused columns during binning, reducing power draw and voltage drop.
Pre-measuring sound level and guiding microphone distance helps avoid clipping while preserving dynamic range in recordings.
By aggregating pixel signals with random-basis sampling, this 3D line-scan approach cuts measurements and speeds industrial range imaging.
Combining SAR for MSBs with ramp conversion for LSBs cuts ADC clock cycles and enables multisampling to reduce CMOS image sensor noise.
Ambient noise sensing lets a mobile device adjust audio volume by context to reduce distraction and preserve situational awareness.
A secondary playback device forwards volume input through the bonded zone so grouped speakers change level together without audible hiccups.
Voice-recognition radio tuning lets pilots set the target radio and frequency without display changes or manual input, reducing workload.
Non-linear scaling corrects illegal video and audio values while preserving contrast, dynamic range, and visual or audio fidelity.
Gradual control-signal transitions smooth tuner switch impedance changes, preventing spike noise and signal degradation during band changes.
Separate level shift and buffer circuits raise pixel drive voltage while limiting through-current noise and protecting image quality.
Face-based hearing profiles and user position are combined to adjust speaker output so multiple viewers hear balanced sound.
Integrated displays and localized backlighting in a medicine cabinet mirror door provide bathroom information access while reducing wasted lighting energy.
Pixel-level ADC arrays convert current-mode sensor signals inside the focal plane, cutting analog noise and power while supporting high frame rates.
A multiplexer shares converting units across S-video, tuner CVBS, and line-in signals to cut digital TV chip size and complexity.
An image encoding method derives luminance and chrominance prediction values to optimize bit allocation.
Replacing voice coil motors with shape memory alloy actuators reduces moving mass to accelerate focusing speed while suppressing vibration noise.
An image processing apparatus generates frequency distribution images and superimposes statistical luminance values onto input frames for visual confirmation.
An image receiving terminal measures elapsed packet times to dynamically switch communication channels.
A transparent lens cap heater warms the air volume around an ADAS camera lens to prevent ice and fog accumulation.
An image processing apparatus dynamically switches interface layouts based on detected imaging situations to simplify tag selection.
An in-place FMP4 to MP4 conversion mechanism reassigns the initial moov atom to an mdat designation without duplicating media data.
A secret image processing apparatus disperses luminance values across multiple images while synchronizing a shutter control signal to manage light transmission.
A media device associates remote control buttons with program metadata fields to retrieve similar television programs.
Hardware processor adjusts video capture and packet generation parameters based on network connectivity status to reduce latency and packet loss.
Optical disk player decodes video streams via web browser, eliminating hard drive complexity while enabling personalized content recommendations.
A back-surface convex light shield and insulating trench isolate adjacent pixels in a solid-state imaging device.
A non-contact loop antenna system transmits power and data between rotating camera segments without physical cables.
A video conference playback system segments source streams to preserve original resolution and aspect ratios during interactive viewing sessions.
A dual-mode imaging receiver uses a focal plane array to detect optical signals without precision mechanical gimbals.
Transparent scale marks on the insertion case allow direct visual measurement of nail curvature, eliminating expensive laser equipment.
A light field image display apparatus differentiates reconstructable and non-reconstructable images using distinct color tones.
A bandwidth management system presents user-selectable options to resolve network conflicts and optimize media delivery streams.
Interactive media guidance system detects inconsistent user actions across similar assets to enforce access restrictions.
FPGA applies machine learning corrections to sensor data, preventing deterioration from degrading measurement precision.
A black level correction technique adjusts dark calibration pixel exposure time based on measured dark current ratios to ensure accurate imaging pixel values.
A camera actuator couples a supporting plate spring to suspension wires, absorbing impact energy to prevent wire damage during device drops.
Overlapping exposure periods of stereo cameras prevents information loss from flickering light sources.
A server distributes image capture missions to user terminals and evaluates submitted images to determine achievement levels.
A photosensitive film layer on a microlens array substrate increases light absorption capability in an image capturing module.
Camera and RFID sensors count occupants to generate a security indicator, resolving the trade-off between access control reliability and device complexity.
An imaging apparatus overlays sequential wireframes to guide framing, zooming, and alignment for professional-quality photography.
A video search interface displays camera positions on a map to visually track object movement paths across multiple recorded channels.
A power characteristic measurement device uses a comparison circuit to match modeled impedance with an image sensor for accurate extraction.
Server stores multi-resolution images allowing terminals to overlay high detail on low base views, reducing data transmission time.
Central server merges individual streams from participants into one composite feed, bypassing the processing limits of client devices.
A row driver overlaps preliminary and main shutter operations across pixel array rows to reset charges efficiently.
A panel camera integrates a two-dimensional lens array with light detectors to capture remote images directly on the display surface.
Overlapping collimating elements with varying transparent substrate thicknesses absorb large-angle light beams to reduce crosstalk in fingerprint sensors.
A color correction circuit generates independent grids to fix periphery color imbalance.
An inclined guide member directs removal tools along a precise path, preventing damage to internal sound devices while maintaining exterior cleanliness.
A vibration sensor feeds signals to a VCM driver applying reverse bias to halt the actuator and reduce motor-induced noise.
A multi-stage exposure time determination method uses histogram analysis to optimize image brightness signals.
A remote control system logs user interactions and adjusts command sets to optimize device control based on usage patterns.
A pixel biasing device generates a ramp ground noise signal and combines it with a reference current to create a corrective bias.
A head-mounted display notification block detects user wearing time and triggers alerts to external guardians.
A data supplying apparatus manages wireless connections to transfer image files using dynamic mode switching between automatic and selective operations.
Controller analyzes image data to determine aim stability and generates a control signal with an aim stability indication for the image sensor.
A star quad cable transmits high-resolution image data through differential signaling within a compact endoscopic shaft.
A notification unit signals extraction readiness based on positional alignment between the imaging sensor and printed matter.
Stepper motors dynamically reposition cameras to resolve the contradiction between single-camera cost and comprehensive surround view capability.
A camera apparatus detects powerful light sources by analyzing pixel gray values in captured images to trigger protective avoidance actions.
Replacing servo mechanisms with a micromirror array lens reduces device complexity while maintaining high-resolution imaging of fast-moving objects.
A light illuminator incorporates a power extraction module to convert and distribute energy from a single data cable.