Low-temperature deposition of a thin film on color filter arrays immobilizes pigment particles, preventing cluster formation and reducing residue defects.
A head-mounted imaging device uses a movable camera unit to capture user face images through an optical filter.
Deep infrared receivers correct visible signals, resolving color reproducibility issues without an infrared cut filter.
A camera body receives silent speed information from an interchangeable lens to generate drive control signals.
Segmenting lens motion into smaller steps with wait times dampens voice coil motor spring vibration, improving focus speed and image clarity.
A processing device estimates pixel depth to project individual camera views onto a spherical coordinate system for panoramic image generation.
A camera control method calculates panning and tilting angles using radar target data and fixed reference points.
Series-connected accumulation circuits sum pixel charges to maintain sensitivity during high-speed moving-picture capture.
A matched array system displays two variables on a unified scale to visualize optimal alignment vectors and guide operator adjustments.
Shared switches couple image sensor pixels to power supply lines, expanding dynamic range without reducing pixel fill factor.
Segmenting the face detection circuit into an independent voltage domain reduces power consumption while maintaining rapid responsiveness.
A digital image stabilization apparatus removes drift errors using characteristic point tracking and motion model adjustments.
A mobile slide projector uses a camera flash to illuminate transparencies through a magnifying lens.
Segmented address electrodes suppress mirror wobbling during posture switching, minimizing light leakage and improving contrast in projection displays.
Trench-type charge storage units segment pixel arrays to reduce optical crosstalk in solid-state imaging devices.
A video-ready Internet telephone uses an external processor to convert digital signals for analog display on a liquid crystal screen.
Passive athermalized lens design corrects monochromatic and chromatic aberrations across temperature fluctuations.
An image processing device reads out divided region data to identify and subtract optical noise from captured images.
Isosceles trapezoid magnets serve as both drive sources and detection targets, eliminating separate position sensors while maintaining shaking correction force.
A video stream proxy converts constant bit rate streams into non-adaptive formats compatible with home devices.
A dual gain digitization circuit selects output digital values based on signal levels to maintain low noise in imaging arrays.
Inward-facing thermal camera captures periorbital temperature data to detect stress levels without bulky external equipment.
An automatic exposure control method uses luminance sub-range mapping to determine precise compensation values for image brightness adjustments.
A thin imaging optical system uses a prism to bend the optical axis and multiple lens groups to relay an intermediate image.
Image processing apparatus derives relative attribute indices from background regions to identify objects across multiple video streams.
A sound object following method localizes audio signals by correlating video object positions with audio features to enhance immersion.
Segmenting analog and digital clock paths reduces periodic noise and radiation interference while maintaining high processing speeds.
A single-shot HDR image sensor weights short and long exposure pixel values to generate high-dynamic-range images.
A tone correcting apparatus adjusts image brightness using block regions and detected face portions.
Segmented processing circuits reduce power consumption and heat generation while maintaining high-definition image resolution.
Embedded indicators let sink devices redo interpolation or remove processed frames to resolve quality inconsistencies.
Nonlinear enlargement of split image areas minimizes distortion from aspect ratio discrepancies, ensuring high quality in the central viewing zone.
A communication apparatus registers authorized devices to manage content data retention during wireless transfers.
A network camera uses digital output terminals to transmit image information and alarm signals via a 4-wire cable.
Mask data supply means provide interim pixel values during memory write cycles, preventing image distortion while reducing display time lag.
A controller superimposes an outer-edge guide image on camera views to show the farthest undercarriage position from the revolution center.
Elastomer biaxial hinge replaces suspension wires to improve OIS sensitivity while maintaining reliability and simplifying assembly.
A photodetector uses surface plasmon resonance in stacked conductive patterns to convert incident electromagnetic waves into current variations.
Graded refractive index in a light path member directs oblique photons to the sensor, resolving sensitivity loss from reduced pixel pitch.
Wheel-driven rotation moves the functional component between extended and retracted states, resolving screen-to-body ratio trade-offs.
An underwater projection system manipulates image content to project visual output through fluid onto surfaces.
A surveillance device uses a diffuser and Fresnel lens to spread narrow LED beams.
Diverging charge transfer channels move signals to independent accumulators, eliminating sequential bottlenecks that limit temporal resolution.
Segmenting a Bayer frame into four quarter-resolution planes enables selective decoding that reduces computational load while maintaining image quality.
A management device measures commodity line length using a distance sensor to determine stock levels.
A server merges video signals from multiple providers into a single browsing interface displayed on one screen.
A pyramid ping-pong operation accelerates texture sampling, enabling real-time removal of human bodies in virtual character videos.
A directional operation component selects detected faces in moving images without adding hardware.
Segmenting the rearview display into priority zones reduces driver processing time by limiting high-resolution data in peripheral regions.
An integrated circuit generates adaptive motion vector candidates using image information to optimize block matching operations.