A local metal interconnect forms a parallel plate capacitor to store charge from the photodiode.
Multi-view interactive digital media representations enable dynamic content modification based on user sensor inputs.
A stress relaxing member with a specific linear expansion coefficient protects an imaging element chip from thermal deformation.
Image signal processing unit calculates adjusted luminance using a gain function applied to an input transfer function.
A CMOS image sensor uses orthogonal polarizers to split incident light, enabling readout circuit subtraction for signal extraction.
A spectral filter uses patterned cavities between metal reflection layers to selectively transmit specific wavelength regions.
A microphone array detects acoustic incidence angles to dynamically control adaptive filter update rates for precise signal processing.
An interactive thermographic display system captures residual body heat and projects visible light representations onto a screen in real time.
A hybrid pixel design merges buffered direct injection and dynamic vision circuits to capture frame-based and event-driven signals simultaneously.
A recessed door mirror housing positions the camera lens inward to shield it from external precipitation.
A holographic generator partitions 3D scenes into vertical sub-planes to accelerate Fresnel hologram creation.
Segmented pixel unit potential barriers enable true correlated double sampling with single exposure, resolving signal discrimination and saturation trade-offs.
Dynamic capacitor switching in this HDR CTIA pixel resolves the trade-off between low noise and large well capacity while preserving spatial coherence.
A set-top box generates subscriber channels by combining external media content with cable network signals for direct broadcast.
Minimizing carbamate impurities in polycarbonate reduces electrostatic charging without compromising mechanical properties or increasing production costs.
A camera module stores lens aberration data in memory to correct image resolution through digital signal processing.
A remote active antenna circuit regulates low noise amplifier gain using a feedback loop to prevent tuner overloading.
A dynamic softclipping transfer function applies high gain to dark regions while compressing light levels to maintain output within displayable ranges.
Embed retouched image file information within original image metadata to enable sequential display of related files.
A deinterlacing apparatus selects interpolation schemes using correlation data confidence measures to reconstruct missing pixels accurately.
An ocular detection portion automates movable mirror and display switching to resolve operability complexity during live view mode.
A matching free dynamic digital pixel sensor uses a single transistor input stage to eliminate fixed pattern noise in CMOS image arrays.
An image processing apparatus calculates a standard error ratio from pixel tone data to quantify binary region clarity.
A video stabilization filter estimates physical camera movement to distinguish intentional panning from unintentional jitter.
A single tuner unit processes digital terrestrial and cable signals, eliminating separate tuners and RF splitters.
Main device appends remote controller ID to retrieved information, preventing unauthorized viewing of sensitive data on public displays.
Segmenting the lens base into a substrate and side plates creates notches closed by adhesive layers, reducing module width for narrower screen frames.
A mounting mechanism with segmented engaging and locking portions secures accessory holding units to an imaging device main body.
Digital photo devices merge graphical templates with subject images in real time, eliminating complex computer editing steps.
Digital image capture system authenticates remote worker identity via facial recognition, eliminating physical supervision costs.
Shared imaging optics project intermittent light patterns to resolve user positioning ambiguity without adding separate screens.
An integrated sensing display merges image capture with visual output using a unified pixel array.
An image capture apparatus determines optimal ISO, shutter speed, and aperture settings to achieve a user-specified target noise level.
A stacked solid-state imaging device separates ordinary and motion detection pixels across semiconductor substrates.
Embedding a self-camera module within the display panel aligns the user's line of sight with the lens, preventing eyelid closure during natural pose capture.
A processing module calculates a non-uniformity correction map on a pixel-by-pixel basis using empirically derived coefficients and focal plane array temperature.
A blending mask interpolates overlapping camera images to create a seamless driver assist view.
Resetting the floating diffusion region below power supply voltage accumulates overflow charges, expanding dynamic range without enlarging pixel area.
Co-processors embed frame identifiers in corner pixels to validate digital image integrity during mobile device data transmission.
A mobile camera module detects frame blurring and measures object motion to store only clear images with significant movement.
A broadcast receiver adjusts horizontal sync frequency via blanking period changes to maintain display stability.
Local processing at sensor nodes reduces bandwidth requirements and eliminates time delays from centralized video stream transmission.
A camera apparatus displays shake information superimposed on a live view image during exposure.
A global shutter image sensor pixel uses a buried channel memory node to facilitate efficient charge transfer between photodiodes and readout circuits.
Predefined affine transforms correct rolling shutter skew and wobble in CMOS sensors, eliminating the need for extensive per-frame parameter determination.
A digital micromirror device varies effective integration times across photodetector arrays to capture high dynamic range video signals.
Corrects parallax image color imbalance using opening mask displacement and pixel position data.
Adaptive spatial and motion-compensation temporal filters process video pixels to reduce noise while preserving image details.
Applying a high-contact angle film around the lens forming region enables precise resin volume control, reducing manufacturing costs and substrate loss.
A subtitle navigation system stores address information alongside playback data to enable precise scene replay.
A multi-gain amplifier unit processes image signals sequentially to expand dynamic range and improve signal-to-noise ratio.
Segmented spherical shell vents heat from camera assembly while maintaining calibration stability.
A variable frame rate camera records micro frames during portions of cinematic frames to capture multiple lighting setups.
Dynamic row duty cycle reduction limits motion blur while periodic panel duty cycle modulation maintains constant brightness in augmented reality headsets.
A thermoplastic alignment member couples a sensor board to an optics unit via a heating element that softens the material.
A movable infrared cut-off filter adjusts position via a switching module to maintain optical alignment.
A front-side reader detects sub-scanning color shifts in read data using stored conditions and corrects the data to align RGB channels.
Stationary focusing chart eliminates lens damage risk during automated focus adjustment tests.
A set-top box detects portable device presence to initiate hands-free media playback.
Aerial payload platform carries multiple cameras and audio devices using motor-reel lines to capture crisp 3D images while reducing equipment weight.
A detachable screen guard assembly uses a hooking member and bracket member to attach a transparent protector to a monitor frame.
A band-gap reference circuit uses a mode control unit to adjust bias currents and voltage levels across operational states.
A face clustering algorithm groups photos by facial similarity to enable collective annotation operations.
Transforming fisheye images into rectangular views resolves the contradiction between overall situation visibility and individual image operation complexity.
A digital cinema camera system stores optical effect parameters as metadata alongside raw image data for flexible post-production processing.
A screening component isolates the image sensor from actuator drive signals to reduce electromagnetic interference.
An adaptive exposure control apparatus calculates pixel saturation levels across an image frame to reset target brightness values.
Higher-order statistics enable accurate signal detection at low SNRs, resolving the trade-off between measurement precision and computational complexity.
A holding member secures a transparent optical component above a protective layer to maintain parallel alignment.
A rifle scope controller applies independent stabilization parameters to visual data and reticles, resolving human jitter issues during target selection.
A CMOS sensor corrects image shift errors using divided photoelectric conversion portions and microlenses.
Electronic device displays variable images based on user distance to guide iris alignment.
Processor adjusts background image color temperature to match ambient light, resolving wall mismatch and maximizing transparent effect quality.
A lens control apparatus moves an imaging lens unit along an optical axis using an autofocus actuator.
A dual conversion gain pixel circuit switches between high and low gain modes to manage signal levels.
Segmented zoom restrictions adapt dynamically to aspect ratio changes, preventing subject image defects during photography and display.
Grouping pixels via an averaging circuit suppresses moiré fringes and reduces random noise while maintaining low power consumption.
A variable magnification image processing apparatus selects discrete display settings to adjust live view size without switching modes.
A pixel with two photoelectric conversion units and adjustable accumulation capacitance improves signal output quality.
A security camera cable assembly integrates image and power circuitry into a compact processing module.
Slew rate limiting field-effect transistors control charging rates to reduce impact velocity and extend MEMS device lifespan.
Angle-of-view correction unit processes source image data to maintain constant angle of view during focusing operations.
Elongated holes in the passivation layer provide directional rigidity to eliminate bulge effects and ensure uniform membrane deformation.
A UAS carries a flexible projection screen and projector to display images in windy conditions.
Automated classification system processes multimedia data to generate incident reports, reducing manual labor time while maintaining documentation accuracy.
A video processing apparatus specifies start frames using type-specific rules to segment diverse media.
Fusing compute kernels keeps intermediate data in on-chip memory buffers, reducing off-chip access and power consumption.
A stacked solid-state image sensor uses a vertical transistor to generate pixel signals.
A double-sided liquid crystal display enables image observation from opposing surfaces of an electronic device body.
A variate acquisition unit captures action content and context data to calculate an evaluation score for specific movements.
A video mosaic client parses screen data to mask blacked out objects and block associated audio within the display grid.
A digital photographing apparatus generates preview images using specification information from replaceable lenses to simulate optical effects on the current scene.
An optical system uses an aspheric lens and a light absorption portion to impart gentle light reduction near image contours.
An electronic apparatus uses real-time audio analysis to automatically switch between rear and front image collection devices.
Segmented lens blocks with specific power distribution reduce manufacturing sensitivity and improve aberration correction in compact camera modules.
Variable continuous period lengths for whole, main, and support shots resolve unnatural switching flows caused by constant timing in automated broadcasting.
Electronic tags transmit real-time location data to camera systems for establishing dynamic privacy zones within the field of view.
Pre-computed correction parameters resolve geometric accuracy and processing time trade-offs while minimizing information loss during zoom adjustments.