Adaptive packet timing and buffer-based sizing preserve video sync and frame timing for long-range wireless HD links with low latency.
A CMOS tuner packs the amplifier and varactor on-chip while moving inductors outside to cut cost, size, and voltage without losing filtering quality.
Switching photodiode bias below or above breakdown lets one pixel handle bright light integration and single-photon avalanche detection.
Selective re-coding of noncompliant H.264 segments cuts processing load and keeps corrected and original clips playable in sequence.
Timed ROIC switching integrates multiple IR sensor returns within one frame and blanks stray light to improve signal-to-noise ratio.
A sigma-delta and cyclic hybrid ADC captures high- and low-order bits separately to raise image sensor resolution with less area and power.
Differential CMOS clock buffers keep image sensor ADC timing stable by correcting duty ratio drift from process variation and parasitic capacitance.
Gradual counter-driven gain steps and deglitch latching smooth digital AGC transitions in broadband tuners, reducing distortion and noise.
Centralized sound mediation lets one electronic device detect, route, and adjust audio across N-Screen devices for selective listening.
Signal-intensity switching lets one-chip broadcast decoding move between one-segment and twelve-segment TV signals with lower load and power use.
A multi-clock generator enables accurate filter calibration with flexible frequency tuning while reducing clock noise, power use, and test time.
Direct false lock pattern matching in sampled serial data cuts PLL detection time and helps maintain accurate data reception.
Double-quadrature conversion and programmable polyphase filters remove IF harmonics, reduce I-Q mismatch sensitivity, and improve image rejection.
k×k subsampling converts pixel sets at lower ADC resolution, then adds rows digitally to cut color distortion, routing complexity, and memory use.
Selective coefficient-based updates correct nonlinear column A/D conversion, improving image-signal linearity while reducing recalibration power.
Combining RF tuner, decoding, and PVR functions on one chip lowers power and die area while sustaining digital video throughput.
By applying one update table per predictor vector, this case improves sub-pixel motion estimation while keeping computation low.
By switching from m-bit to n-bit conversion at set times, this A/D converter cuts image sensor power use while preserving image quality.
Playback speed is adjusted by interpolation or decimation to handle clock mismatch and unstable IP packet timing while reducing skips and delay.
Maps the same spoken command to different TV actions by current operating state, improving control accuracy without less natural input.
A peak detector derives a Vdd-like reference from SDA and SCL lines, enabling accurate bus decoding without an extra Vdd pin.
Closed-loop timing commands align video frame arrival across multiple ports, improving port switching, picture-in-picture, and A/V sync.
A clip circuit clamps comparator output after latch threshold to cut parasitic-capacitance noise without slowing solid-state imaging readout.
Post-manufacturing lane routing lets any data lane use any clock lane, balancing MIPI D-PHY flexibility with low skew.
Advanced and delayed head-code comparison guides serial data delay adjustment, keeping data-clock phase precise at higher speeds.
An auxiliary driving circuit speeds delayed distributed signal lines while avoiding large dual-end driver logic, reducing area and power.
A capacitor and feedback circuit store reset-voltage offset and subtract it from data output, improving image sensor accuracy under process and temperature variation.
Full-swing serial-to-parallel conversion cuts camera interface pin count and removes differential analog circuits to simplify cost-sensitive designs.
Captures video by integrating luminance across space and time, reducing snapshot data load while preserving fast-motion information.
Reference picture indices guide long-term and short-term motion vector selection to cut bit rate and improve B-picture direct coding after scene changes.
Splitting ATSC broadcast data into continuous and burst streams lets mobile receivers sleep between bursts and reduce demodulator power use.
Dummy bits inserted at set intervals let an embedded-clock transceiver identify data types accurately while preserving serial transmission efficiency.
Temperature-driven MEMS resonator drift is corrected by feedback detection and local oscillator adjustment to keep output frequency stable.
Variable sample rates, MCU control, and digital compensation let one hybrid TV tuner adapt to global analog and digital standards.
A CMOS mixed-signal tuner uses MCU control, variable sample-rate clocks, and digital filters to handle global analog and digital TV standards.
Active pixel ratio per frame triggers different sound levels, improving still-image engagement while avoiding constant audio power use.
Multiple sampling and integration boost image-sensor readout S/N while preserving the wide dynamic range needed for A/D conversion.
Cyclically rotating the mixed RF signal across weighted gain stages improves harmonic rejection while reducing mixer power and area.
Threshold-based SSD compression, adaptive ECC strength, and intra-page XOR recovery improve flash reliability while reducing memory use and writes.
Subband division with wavelet or Haar transforms compresses Bayer RAW data for lower-power transmission with less aliasing noise.
Independent comparator initialization stabilizes column operating points during intermittent readout, reducing P-phase variation and fixed pattern noise.
Unreadable disk segments are replaced from a licensed media repository, enabling continuous playback without changing the physical media.
Flexible grouping of oversampled data across unit intervals improves jitter response, bit recovery, and handling of DVI non-compliant signals.
Recovers wasted termination-resistor power in an HDMI transmitter to run peripheral circuits with regulated or boosted supply and lower system consumption.
Frame rate conversion and time-base emphasis cut hold-type display motion blur while avoiding flicker and excess circuit speed burden.
Header-based coarse recovery followed by frame-by-frame phase and frequency synchronization improves demodulation in low-SNR VCM and ACM links.
A differential-amplifier column ADC cuts ground-bounce x-droop in large image sensor arrays while preserving capacitor area efficiency.
Switchable coherent and non-coherent clock output cuts jitter and improves serial link compatibility with different receivers.
A selectable LFSR and permutation circuit generates 4k OFDM interleaver addresses, improving mobile reception without added complexity.
Synchronizing HFM enable signals with laser diode writing reduces timing delays and noise while maintaining stable light power control.
Timestamps align independent wireless sensor streams with video frames, resolving synchronization complexity while enabling real-time analysis.
Direct wire connections replace switches in a latch circuit, eliminating propagation delay and reducing circuit complexity for faster imaging data output.
Fixing variable-length encoding schemes within continuous units eliminates switching delays and reduces processing loads during video reproduction.
Synchronizing sensor measurement phases with screen off-periods isolates ambient light signals, resolving interference that distorts brightness adjustments.
Virtual control objects overlay controllable electronics to resolve accessibility barriers and eliminate physical interface complexity.
A photo sharing platform pre-stores and sorts images by location to provide users with reference angles for mobile photography.
Camera system detects dirty lenses by analyzing captured image contrast and pixel differences to trigger user alerts or automatic cleaning routines.
A digital optical instrument with a folding bridge uses tilted bounding frames to extract image portions for display.
Pixel-level signal counting eliminates frame memory bottlenecks, enabling efficient black-subtracted image and motion blur acquisition.
Segmenting the pixel array into alternating exposure groups minimizes color smearing while maintaining sufficient light quantity for high-resolution imaging.
A lensless imaging system uses odd-symmetry gratings to project spatial modulations onto photodetector arrays for computational image reconstruction.
A dual focus ring system with a clutch mechanism enables rapid lens movement.
Synchronizing decryption information with independently decodable video sections enables reliable access during abnormal playback modes.
A capsule endoscope adjusts imaging frequency based on detected brightness changes to conserve battery power.
A vehicle image display device detects obstacles using wide angle camera images without distortion correction.
Controller sustains exposure compensation via subject region detection when face tracking fails, suppressing exposure fluctuations.
Segmenting the lens from the motor base reduces inertia for easier panning while a cushioned lip secures thin displays.
Synchronizing image sensor activation with active PWM drive signal periods resolves the contradiction between energy consumption and image quality.
Amorphous organic and inorganic buffer layers protect the light receiving layer in imaging elements from electrode stress.
Processor generates a channel matching table by comparing identifiers, names, and program data to resolve low accuracy caused by data omission.
A segmented illumination optical system directs light through reflective and refractive surfaces to eliminate boundaries between lateral and forward areas.
Dynamic column line switching distributes amplifier noise horizontally, suppressing vertical stripes and maintaining image quality in high-resolution sensors.
Composite back panel exposes insulating layer through cutout to mount circuit board directly, reducing device thickness while maintaining structural strength.
A centralized controller manages signal distribution across multiple display devices using a prioritized user interface.
Embeds authentication data in motion vectors to detect tampering without degrading video quality or violating compression standards.
A decorative film with a camera hole penetrating multiple layers resolves optical interference and image quality issues in electronic devices.
A modular projection lens assembly method combines interchangeable spherical and aspherical lens blocks to adapt to varying image display element sizes.
Local quality and dynamics principles optimize pixel size per region, balancing spatial resolution against image noise for clearer microscopy results.
A TV USB interface selectively activates power or data lines via a main controller to manage external device connections.
A multi-modality image fusion system applies camera-specific scaling factors to normalize textures before merging them via alpha maps.
A pupil orientation sensor drives segmented lens halves to independently focus on multiple subjects simultaneously.
A folding camera module uses thin lenses and mirrors to increase light intake while maintaining compact device dimensions.
Dynamic frame rate adjustment captures high-speed moments without excessive storage usage through adaptive resolution switching.
A multimedia data processing system extracts dimension information from source video to guide shooting parameters.
Image processing apparatus divides captured images into regions to calculate white balance information for dynamic range expansion.
Multi-faceted optical means rotates the capture axis to mitigate optical aberrations, maintaining consistent image sharpness across the entire sensor area.
A color-block image processing method applies distinct interpolation algorithms to separate spatial regions within a single frame.
Movement detecting units generate timing data from subject motion to identify subjects across multiple cameras.
A phase mask uniformizes the modulation transfer function across incident angles and wavelengths within a multi-element lens group.
A control device virtually disconnects digital signal cables during settings to prevent false authentication.
A control unit adjusts lens position based on signal coincidence between horizontal and vertical light receiving units.
A display device identifies running application program types through image analysis to adjust visual and audio output parameters automatically.
A synchronization signal generated at a video sink device adjusts audio playback timing in wireless systems.
Adhesive fills space between fixing member wall portion and image pickup device side surface to resolve mechanical strength versus compact size trade-off.
A lens holder with inner and outer extension parts adjusts the lens unit position relative to an image sensor.
Merged horizontal and power noise compensation circuits reduce sensor size and power consumption while maintaining signal linearity.
An image sensor measures signal delays using pixel clock signals and a time-to-analog convert circuit to generate compensation data.
Computing devices augment panoramic video streams with radio frequency tag data to enable real-time object tracking across wide fields of view.
A communication device combines millimeter wave and WLAN modules for simultaneous video and data transmission.
Scene duration fingerprints synchronize ambilight scripts with video streams, eliminating database access and reducing computational complexity.
A weighted playlist algorithm assigns selection probabilities to media items based on user ratings and actions.
Merging visible and infrared sensing eliminates bulky separate cameras, resolving size constraints while maintaining simultaneous high-resolution imaging.
A video playback device converts additional information into a two-dimensional marker image and inserts it over a predetermined length before the video signal.
Embedding metadata into test patterns enables analyzers to locate distorted features and correct audio-video delays in broadcast networks.
A CMOS imaging element adjusts vertical drive circuit timing to enable parallel read scans of pixel signals.
A working machine display system uses a return switch to transition screens between control units.
Dual-camera system captures user facial expressions to generate emotional metadata tags for electronic device content.
A set-top-box selects advertising items by matching user profiles with content metadata for personalized playlist insertion.
Segmenting video streams into discrete units filters false positives from trivial movements, improving detection accuracy for meaningful events.
Support member maintains flexible circuit board in bent state to prevent connector misalignment and damage during camera module assembly.
Metadata-driven assembly updates ad content in real time, reducing computational costs.
A head-up display device uses a rigid heat radiator to secure the light source unit via screw fastening.
A four-element imaging lens assembly uses aspheric surfaces and specific refractive power distribution to reduce total track length in mobile devices.
A camera controller sets second image stabilization information to maintain continuous operation when lens data is unavailable.
Encoding extended dynamic range video within standard code spaces using inverse gamma and log mapping to maintain backward compatibility with legacy systems.
Segmenting the bitline connection isolates pixels during charge transfer, reducing fixed pattern noise while maintaining stable power supply.
A phase difference detection unit shifts image signals to calculate focus position using segmented pixels.
Merging the lens holder and barrel simplifies injection molding, lowering production costs for compact modules.
Segmented pixel banks with dynamic gain scaling improve signal-to-noise ratio while reducing power consumption.
Multi-angle X-ray particle image velocimetry reconstructs 3D velocity fields directly, resolving poor spatial resolution and two-component measurement limits.
A vehicle-mounted dimensioning system initializes image sensors before arrival using location data.
A mobile apparatus recovers license plate data from optical images using dynamic image processing algorithms.
A reproduction control apparatus transmits synchronized playback instructions across devices to align moving image data streams.
A processing section generates new moving pictures from video signals captured with different exposure times to enhance frame rate and color resolution.
A control apparatus acquires contrast evaluation values across multiple image areas to determine in-focus positions for a focus lens.
Visual guidance instructions align start and end points during image capture, resolving misalignment issues in high precision three-dimensional map generation.
A multi-coil driving circuit controls electric current magnitudes and directions to move a photographing module lens assembly.
A control unit invalidates prior touch operations when an electronic apparatus detects a predetermined orientation change.
Segmenting the screen to show multiple composition options resolves the contradiction between automatic convenience and user preference reflection.
An image reproducing apparatus determines target images by identifying shooting dates with high image density to create event time periods.
Removing the prism and infrared transmitter from a range finder preserves reflected light intensity while lowering manufacturing costs.
An angular subsidiary substrate arrangement reduces vehicular camera module length while accommodating increased component counts.
A mobile terminal simulates long-time exposure by continuously collecting image data and performing addition operations to generate synthetic images.
A remote controller with display capabilities shows program information alongside video output.
Laser-welding and cutting techniques repair defective transmission lines in image sensor arrays, eliminating floating voltages that cause image artifacts.
An HTML5 user agent manages media tracks by interpreting MPEG-2 transport stream resources to enable cross-device session sharing.
A client application aggregates media episodes from multiple sources into a unified interface for immediate user selection.
A camera adaptor converts electric signals to optical signals and back, enabling remote video switching between camera and return feeds.
A media control system processes numeric user inputs to identify alphabetic letters for channel name selection.
A tilt mechanism adjusts lens orientation inside a hemispherical dome while a correction unit processes image data based on the specific lens position.
A position detection apparatus uses a gyro sensor to measure orientation and movement for precise location tracking.
A digital camera detection processor maintains focus and exposure adjustments on the latest detected face area.
A variable voltage row driver adjusts driving voltages to transistors, resolving noise and chip area constraints in shrinking pixel designs.
Dynamic weight adjustment during inter-frame processing reduces color noise and afterimages by adapting to object motion.
A remote commander reads an encryption key from an NFC sticker on a client device and transmits it to a network server via infrared signals.