A contrast patch behind telltales preserves visibility on user-selected vehicle backgrounds without limiting display design freedom.
White pixels handle luminance while color pixels supply chrominance, reducing chromatic-aberration jaggies and improving image resolution.
Feedback-based frequency division generates accurate I/Q signals, suppresses unwanted components, and avoids high-power analog phase shifters.
Programmable low-pass corner frequencies create a sliding bandpass response that amplifies desired signals while rejecting unwanted frequencies.
Weighted frame luminance guides camera and light-source adjustment to reduce hotspots, shadows, and blackouts in endoscopic imaging.
Separate neural networks enhance color and texture from raw sensor data to create high-resolution zoom images with lower processing load.
Two stacked photosensitive modules combine filtered and unfiltered image data to improve brightness, color, and noise performance in compact mobile cameras.
Dynamic scene brightness can change viewfinder contrast; this case keeps tone characteristics fixed while adjusting maximum display luminance.
This case compares images captured under different environments to build a 3D LUT for accurate cross-lighting color conversion.
Adaptive photodiode selection and gain control support HDR imaging while reducing readout time and data processing demand.
This case averages global luminance and applies delta corrections to align front and rear exposures across spherical-image stitch lines.
This image processor keeps brightness detail at full resolution while lowering color resolution to reduce power and processing time.
Color-skew metrics guide exposure updates for subsequent frames, preserving detail and color accuracy in color-biased images.
A transform coefficient decoding unit processes luminance and chrominance data within a single unified structure to reduce coding overhead.
A thru-converter transforms frame luminance signals into drive outputs using updatable conversion factors.
Optical engine uses scanning mirrors and un-patterned phosphors to form spatial images from laser diodes.
A calculation unit estimates dispersed light intensities from surrounding pixels to correct target pixel brightness values.
Intensity-separated local gain lookup tables provide pixel-specific corrections that resolve mixed lighting color casts without global processing complexity.
Segments chrominance and luminance correction modules to reduce false color artifacts while minimizing buffer memory requirements.
A 2D comb filter system blends horizontal and vertical filtering directions to separate luma and chroma components in video signals.
Separating brightness and color signals allows independent vertical filtering, resolving format conversion distortions in DVD players.
A white balance adjustment method combines exposure parameters with pixel color values to determine gain.
A panel control device adjusts anti-burn-in processing degrees based on self-refresh commands from upstream devices.
An image corrector ascertains color luminance-value ratios using predetermined ascertainment data to generate corrected images.
Segmented mesh power lines reduce voltage drop variations to eliminate brightness non-uniformity across the display area.
Separating luminance and chrominance streams into dedicated memory regions eliminates double decoding bottlenecks while reducing overall storage requirements.
A computing system determines primary color gains using measured secondary chromaticities to achieve target white output on three-color displays.
A method separates luminance and chrominance signals using motion detection and image feature analysis to select appropriate filtering operations.
A color sequential light source uses a switching disk to control irradiation timing and prevent color mixing in projection systems.
Selective filtering on black character luminance prevents color blurring while reducing wasteful computation across non-target pixels.
A cross-component adaptive loop filter refines chroma samples using luma data through selective filtering and parameter sets.
Weighted least squares processing extracts Y, Cb, and Cr components from composite video signals to improve decoding accuracy.
A video processing method fuses temporal and spatial virtual fields to reconstruct interlaced frames without vertical combing artifacts.
A 3D comb filtering method generates interpolated pixels to separate luma and chroma components in video signals.
A display method transforms RGB grayscale values into brightness values to generate compensated signals for RGBW subpixels.
A YC separation circuit detects sampling frequency deviations to select appropriate inter-frame processing modes.
A vehicle image processing device calculates modulation gain values for global and local areas to create a correction intensity map.
A head-mounted display controller switches between two brightness levels based on elapsed time to manage information visibility.
Applying a low-pass filter to dequantized chroma components removes blocking artifacts from decompressed images while preserving compression efficiency.
A projection system adjusts color gamuts to maintain visual consistency across varying lighting conditions.
A solid-state imaging element uses white spectral response pixels to generate luminance signals independently from color-filtered chrominance pixels.
A scanning probe apparatus uses a timing controller to adjust multi-color light emission ratios for optimized image brightness.