A phased buffer-switching readout amplifier speeds filter-capacitor charging in CMOS sensors while keeping low-light readout noise low.
Differential clock buffers preserve duty ratio and rectangular waveforms in image sensor ADC paths despite parasitic capacitance and process variation.
Low-voltage counter outputs and regenerative latches cut power dissipation and substrate noise while preserving fast column-parallel ADC counting.
Switchable normal and low-noise amplifier modes let one angular velocity sensor detect camera shake and intentional motion accurately with lower power.
Separate voltage terminals and directional supply paths shrink wiring loops that pick up magnetic fields, improving image signal integrity.
A classAB current-mirror feedback loop speeds active pixel sensor column settling while limiting power use and preserving voltage headroom.
Monitored local oscillator shifts trigger frequency-plan resets that widen VCO spacing, reducing pulling, spurs, and de-sensing in DOCSIS reception.
Separate data pipes with adaptive coding and OFDM framing balance broadcast data load, QoS, and reliable mobile or indoor reception.
A clustered SDR architecture replaces separate demodulator blocks to support multiple analog and digital standards with lower power and chip area.
Audio and video cues jointly tune suppression, voice level, and beamforming to improve speech clarity while preserving useful ambience.
A common reference regulation branch balances reset and pixel currents to cut noise and improve imager sigma-delta conversion accuracy.
A variable reference slope lets pixel signals be AD-converted with fewer bits, cutting comparator variation errors, circuit area, and power.
Signal-intensity-based switching splits one-seg and 12-seg decoding to cut power use and prevent frame drops during TV reception.
A wideband and narrowband reception path keeps network channels continuous during mode changes while reducing power use.
A synchronized two-stage AGC lets TV tuners use coarse gain steps while avoiding image loss, glitches, and DVB-T impulsive noise issues.
Phase-shifted clocks with gray-coded high bits limit counter skew errors, keeping image sensor A/D conversion highly accurate.
Structural vibration sensing estimates autofocus and OIS camera noise, enabling accurate subtraction from microphone signals with low complexity.
A segmented in-pixel ADC counts charge packets and digitizes residue to cut reset noise, power use, and pixel complexity in large arrays.
Predefined {k1-k2-k2-k1} control symbols keep serial streams synchronized and delineated even when single-bit errors occur.
Synchronization pulses generated from image exposure timing let the camera module drive lens focus accurately without host-side timing control.
A shared latch control path and phase-shifted clocks prevent timing skew that can degrade AD conversion accuracy in solid-state image sensors.
Multiple sampling and averaging improve small-signal detection while clocked comparators cut ground current in delta-sigma modulators.
Ordered detection of lower phase signals prevents simultaneous-change encoding errors in TDC AD conversion while preserving count clock flexibility.
Measured power, signal quality, and temperature guide varactor tuning and impedance matching to reduce coupling in dense small antenna arrays.
A feedback low-noise amplifier decouples noise figure and return loss in TV tuner chips while preserving output linearity.
Multiple comparators with different ramp slopes raise gradation and frame rate, while sample-and-hold isolation blocks kickback noise on the vertical line.
Multiple optical modulators compress image data during acquisition, cutting measurement volume and sensor cost across wavelengths.
A Schmitt trigger inverter with current-controlled hysteresis stabilizes ring oscillator frequency against element variation while keeping power low.
When a call request arrives, the entertainment system lowers TV or receiver volume so phone alerts remain audible and missed communications are reduced.
Dynamic gain switching and resolution correction improve image-sensor ADC precision under reset noise while preserving dynamic range and SNR.
A multiplexer and capacitor array cut reference-voltage settling errors in image-sensor ADCs without external decoupling capacitors.
Stored final ramp values are reused as the next step's start point, keeping ADC ramp transitions continuous and preventing missing codes.
Tracks hand and arm motion in 2D images to infer depth from elbow position, enabling 3D gesture recognition without depth cameras.
A retained-count column ADC cuts latch circuits and signal lines, enabling continuous image-sensor conversion with high speed and compact area.
Mode switching in shared-bias image sensor column circuits cuts power use while avoiding noise during amplifier operation.
Scaled intermediate power domains reduce analog-digital voltage mismatch, limiting offset, gain loss, and power noise in CMOS image sensors.
Parallel functional units and a crossbar let one circuit handle multiple polyphase filter tap sizes while reducing silicon area.
Dual current-sinking at the output node suppresses clock feedthrough noise and speeds pixel signal sampling in CMOS image sensors.
Fixed ADC sampling with adaptive down conversion lets a digital PLL track optical disc signals across speed changes with lower power and delay.
A volume controller converts and aligns HDMI audio levels between connected devices, avoiding separate remote adjustments when CEC is unavailable.
A single-ramp pixel array ADC captures analog differences in one cycle, avoiding counter direction changes and reducing area for TDI accumulation.
Timestamp-based packet buffering skips lost audio and video segments to mask signal loss and avoid blank or frozen playback.
Preamble-based frame discrimination enables carrier correction for T2 signals while avoiding unstable correction on FEFs during initial reception.
Auto-zero calibration stores comparator offset data so column-parallel single-slope ADCs can cut CFPN without slowing image conversion.
Magnetically differential tracking filters help TV tuners reject noise and strong interferers while maintaining tuning across wide VHF and UHF bands.
A two-layer EPG compression scheme removes redundant text by indexing unique entries and shared prefixes, cutting broadcast bandwidth and set-top memory use.
Variable detection and shift volumes along the luminance axis improve color enhancement accuracy across brightness levels and more color ranges.
Power spectrum analysis finds candidate TV channels before tuning, cutting service scan time across satellite, cable, and terrestrial bands.
A modem-generated HPD signal confirms HDMI connection status while voltage conversion protects portable terminal modems from surge damage.
Autocorrelation and cross-correlation guide OFDM interpolation filter control to improve channel estimation accuracy with lower calculation load.
A track-mounted camera system captures high-resolution undercarriage images by dynamically adjusting frame rates to match real-time train speed.
A multispectral color filter array sensor captures images in multiple color modes to enhance white balance processing accuracy.
A mirror tilt actuation system uses Lorentz forces to adjust the optical path and stabilize images in miniature cameras.
A dual-mode millimeter wave transmitter generates RF signals to map environments and transmit video data simultaneously.
An image corrector shifts and resizes display areas to manage pixel activity without extra memory.
Integrated multifunctional plastic frame with movable covers reduces part count and assembly complexity in backlight modules.
Mirrors with differentiated reflectance zones route light through a two-part guide, eliminating non-uniform image quality caused by inefficient distribution.
Pre-computed lookup tables resolve oscillation in brightness correction by replacing iterative feedback loops with stable, rapid adjustments.
Embedded video bridge distributes signals to intelligent displays via DDC channels, eliminating centralized server complexity.
Deep buried cavities isolate suspended structures, reducing thermomechanical stress and simplifying 3D integration.
Virtual tap points replace analog resistor ladders to provide smooth, continuous contrast enhancement without visual artifacts.
A color pixel array captures high and low conversion gain signals in a single exposure to expand dynamic range.
A photosensor uses charge blocking layers to retain electric charges within a photoelectric conversion layer for capacitance-based light detection.
Android TV interface expands main channel icons into sub-icons to present relevant live content directly under the selected network.
A control unit acquires driving frequency information from attached accessories to manage image stabilization functions.
A multi-camera system with prime lenses achieves lossless zoom by selecting modules based on target magnification.
Optical up-conversion of millimeter-wave signals enables three-dimensional scene reconstruction through cross-correlation detection.
A single sensing unit merges image capture and illuminance measurement into one pixel array, eliminating separate units to reduce size and cost.
Dynamic cell merging resolves fixed configuration limits by allowing users to drag and associate multiple video sources into custom layouts.
A camera control device associates image processes with eye proximity and rear display touch states for intuitive operation.
Dynamic threshold adjustment reduces auto-focusing time for moving subjects while maintaining precision for stationary targets.
A three-element photographing optical system uses aspheric lenses with inflection points to reduce total track length.
An image processing apparatus records type data indicating the specific combining processing mode within Exif-compliant metadata structures.
Segmented pixel arrays use line-optical black pixels to output dark-level offset signals, subtracting row noise from active pixel data.
A stray light suppressing structure intercepts optical transitions between adjacent beam-deflecting facets in a multi-aperture imaging device.
Automatically captures diverse image subsets using different parameters, eliminating the need for users to select complex algorithms before shooting.
A beamsteerer generates deep nulls in 3D beam patterns to detect sound sources with high angular resolution.
A digital broadcast receiver groups interactive applications using a unified application information table for efficient processing.
A ternary pulse generation circuit outputs three voltage levels using sequential switching control to minimize through current.
An image stabilization control circuit digitizes vibration signals via an analog-to-digital converter to drive optical components.
Mapping 3D effect plane images via a viewpoint and view window eliminates complex multi-image splicing and costly panoramic cameras.
Redundant column current mirror circuitry with programmable memory selectively activates supply circuits to mitigate fixed pattern noise in image sensors.
A solid-state imaging element shares pixel drive wires across adjacent unit pixel regions to reduce readout control wiring complexity.
Segmented welding sections join lens and image pickup frames, preventing thermal misalignment during high-temperature sterilization cycles.
A terminal device controller resolves DLNA synchronization gaps by sharing connection information and transmitting real-time sync signals for group playback.
A lens holder assembly bonds a waterproof member to a protrusion on the lens body, creating a unified sealing structure for camera modules.
Dynamic UAV positioning resolves insufficient coverage from static cameras while maintaining calibration speed through automated self-service procedures.
Binning analog charges before readout improves signal-to-noise ratio without increasing illumination power that damages optics.
Embedding dynamic metadata in the first picture of each group of pictures prevents unnatural luminance changes during random access playback.
A semiconductive structure integrates MEMS devices in separate sealed cavities using an outgassing layer to adjust internal pressure.
A drone crops image data to a predicted field-of-view for transmission to a VR headset.
A display apparatus combines illuminance and infrared sensor outputs to detect user presence and commands without physical buttons.
A system translates directorial hints into camera configurations and editing optimizations using a graph model.
Nested rolling balls in V-shaped grooves replace shafts to minimize height changes during lens module rotation.
Image sensor divided into areas with independent exposure control based on local camera shake levels.
A vehicle camera adjusts its optical search window using seat acceleration signals to maintain driver tracking.
Threaded holder segments adjust lens barrel position to resolve manufacturing precision costs while maintaining high image quality.
Dummy analog-to-digital conversions stabilize converter outputs, eliminating linear noise at integrated image boundaries.
A receiving apparatus selects between moving image and digest data based on processing capabilities to ensure smooth playback.
A solid-state imaging element reduces pixel data transfers by computing differences within storage units.
Single lens directs light to multiple regions on a solid-state imaging element for simultaneous capture.
Detecting visible clocks in photographs determines capture time, retrieving user location history without active GPS receivers.
A digital camera controller automatically associates user-supplied data, location information, and ambient conditions with captured images.
Merging infrared and color sensing into a shared pixel circuit reduces semiconductor device size while maintaining signal quality.
A camera module design uses a joining material buffer space to protect flip-chip bumps from mechanical stress.
Shared reset-sampling capacitors reduce dark current noise by isolating reset levels from image storage during global shutter operation.
Automated motors extract selected connectors from cabinets, resolving identification bottlenecks and reducing connection errors.
A digital television receiver executes a triggered declarative object to record and transmit usage information over a separate communication path.
A recording apparatus merges buffer and calibration areas to generate sufficient buffer space for stable dual-layer media operations.
A luminance conversion curve adjusts dynamic range to preserve image saturation and hue during brightness correction.
A video motion detection method adjusts field lengths in the temporal domain and selects configurable spatial patterns to separate moving pixels.
Integrating auto-focus and optical image stabilization via a 6-pin Hall element resolves the trade-off between device complexity and measurement precision.
A system parses configuration files to identify nodes associated with locked features in imaging devices.
Fitted positioning portions on the connecting member and camera modules ensure accurate image alignment while simplifying the complex assembly process.
A video server sends a push trigger to a camera, instructing it to stream live video to a recorder.
Preprocessing circuitry aligns pixel streams from single-color and multi-color sensors to generate unified image data.
Single sensor stereo imaging uses asymmetric pixels and microlenses to resolve device complexity while maintaining spatial resolution.
Segmented power distribution across six lens units corrects distortion and lateral chromatic aberration while maintaining compact size.
Merges multiple display screens into a unified twin mode interface, resolving the trade-off between expanded display area and increased operation complexity.
A channel control device displays multiple broadcast video images simultaneously on a screen to facilitate visual channel selection.
A staggered shared readout circuit layout offsets adjacent instances to balance pixel symmetry and reduce capacitive load on the column bus.
A video imaging system maintains display orientation using acceleration and gravitational sensors.
Digital system replaces physical intermediaries with automated authentication to resolve trust gaps in classic car sales.
SDV manager coordinates channel requests to provide tuning information, resolving bulk package constraints.
A brightness-compensated quantized image system matches items using HSV signal-to-noise ratios.
A two-dimensional image sensor produces paired signals from individual pixel lines to calculate defocus amounts via correlation data aggregation.
Mobile devices detect proximity to a transcription console and redirect incoming audio calls to enable real-time text generation.
A Dox application captures visit videos to automatically extract information for client records.
A facial image detection method uses grayscale intensity analysis and adaptive boosting classifiers to locate face regions in input images.
An edit script system applies user-defined modification actions to original content files without transmitting complete modified versions.
A biasing circuit uses a replica front-end to calibrate transistor threshold voltage variations in image sensors.
Consolidating individual channel images into composite views reduces manual review time and storage space while maintaining complete testing coverage.
Rotating mirrors redirect light from multiple directions to a single lens, eliminating space-consuming dual cameras while maintaining high resolution.
A messaging system creates short video messages from segmented still images and audio tracks for asynchronous communication.
A zoom lens divides its fourth unit into three groups to correct lateral chromatic aberration.
An image sensor uses analog differencing to subtract ambient light noise from charge amounts before digital conversion.
A digital video recorder computes error values on video data to confirm successful storage writes without requiring a dedicated playback channel.
A camera device generates separate image frames using distinct manual and automatic mode settings to preserve user control while optimizing capture parameters.
Stabilizes autofocus by blending current subject metrics with historical priority rankings to reduce frequent main subject switching.
A mobile video camera apparatus uses a tool-less coupling mechanism to secure the device to a stationary base.
An imaging apparatus switches program diagrams based on apodization filter presence to calculate optimal aperture and shutter speed settings.
Temporary imaging determines accurate exposure and focus settings from divided signals, shortening intervals while maintaining quality.
A smart television displays screen shot thumbnails alongside content recommendations identified through image analysis.
Direct optical fiber connections bypass serialization processes to resolve bandwidth limitations and reduce heat generation in endoscopic imaging systems.
Modulated LED pulses synchronized with GPS signals increase detectable range from a quarter mile to over 20 miles in fog.
Local object detection via depthwise separable convolution reduces power consumption and false alarms.
Triangular support member arrangement reduces sliding friction and eliminates high processing accuracy requirements while preventing resonance.