A distribution device transmits authorized video announcements to passenger user devices on transportation vehicles.
A modular night vision recording head uses a beam splitter to direct light toward both a display and camera for simultaneous viewing.
An electro-active polymer deforms a lens membrane to adjust focal length, reducing energy consumption and system size compared to motor-driven optics.
An imaging device attaches to optical viewing instruments and captures image sequences for automated quality scoring.
A multi-standard video capture card uses dual tuners to downconvert satellite and cable signals into baseband streams for demodulation.
Image capturing apparatus uses synchronization codes to correct timing shifts across multiple transmission paths.
A leveling auxiliary unit with a light-transmitting substrate reduces assembly tilt angle in image capturing modules.
Dynamic modulator positioning adapts to object properties, resolving the trade-off between fixed structure simplicity and adaptive image clarity.
Prestored alternative camera data enables operators to switch video streams instantly when primary feeds fail.
Controller generates a dynamically augmented bird's-eye view by merging camera images with rendered vehicle and path projections.
A dynamic compression ratio selection method adjusts image file size based on local noise metrics derived from gain and lux data.
A row-period compensator controls compensation current to stabilize power rails in image sensors.
A mechanical shutter and control unit synchronize excitation and detection periods to capture fluorescence signals without overlap.
A head-mounted camera records moving image data and biological information to enable automatic editing without manual display observation.
Control unit interrupts reset processes upon detecting irradiation initiation, subtracting offset lag from dark image data to remove residual images.
A camera device guard member features a projecting part that rotates to adjust its position relative to the lens cover.
Flexible printed circuits merge electrical and mechanical functions in wafer level camera modules, resolving packaging complexity for auto-focus.
Segmenting parent and child profiles eliminates password prompts, resolving the trade-off between content protection and ease of operation.
An adhesive barrier structure with a shutter door protects the webcam sensor from damage while allowing controlled light entry.
Segmented diffraction elements with distinct periodic structures resolve brightness asymmetry in liquid crystal displays.
Processor activates pass-thru mode to route ambient sounds through headphones, resolving user isolation from surroundings while maintaining media immersion.
Segmented ducts isolate heat sources to lower component temperatures while maintaining compact device volume.
A zoom lens corrects optical distortion by applying range-specific processing to image data generated from the pickup element.
Segmented catadioptric optics resolve the trade-off between large field-of-view and angular resolution by stitching micro-camera images computationally.
Segmented cover members route air through dedicated channels to cool heat generating components, isolating drive units from dust accumulation.
An imaging apparatus switches between special effect operations to adjust display frame rates.
Dynamic shutter speed adjustment in a second video mode extracts clear still images from moving scenes without motion blur.
A compliant display assembly uses a multi-link hinge to pivot housings while attaching a planar glass sheet.
A dual sensor imaging system combines monochrome and color sensors to capture high-resolution visible light and infrared images.
An imaging element calculates gain and accumulation time from detected luminance values to control exposure independently.
A variable transmittance filter adjusts light intensity to maintain subject brightness during frame rate changes.
Gyroscope measures motion signals to identify low-tremor frames, avoiding mechanical stabilization costs and lengthy digital processing delays.
A digital video cinema system provides personal viewing through headsets with embedded mini screens and speakers at each seat.
Encoded signals in television broadcasts deliver targeted digital coupons, resolving low redemption rates from generic print inserts.
Controller modulates switching device on-time during AC zero-crossing periods to reduce electromagnetic interference in high-resolution image displays.
A segmented optical filter directs visible and near-infrared light to a single sensor array.
A video conference system distributes layout information to terminals so they adjust their own video data parameters before transmission.
A transcoding service adjusts processing rates based on real-time temperature monitoring to manage power consumption in electronic devices.
Holds focus position during integration time and moves lens to neutral during blanking intervals, reducing power consumption while maintaining image stability.
Multi-line signal sampling identifies electromagnetic interference, preventing erroneous radiation detection and ensuring capture reliability.
A TV set transmits pixel data containing type indicators to a second chip for selective motion processing.
A six-element PNPNPN imaging lens system with internal stops manages light paths to achieve low F-numbers and wide fields of view.
A camera motion determination method establishes point correspondence between two-dimensional pixels to derive rigid transformations in three-dimensional point clouds.
A spectral unit laterally bends incident light to direct specific wavelengths toward dedicated photoelectric conversion units.
A camera objective carrier uses magnetic reference elements to define precise inclination and position relative to the sensor chip.
An integrated camera bracket routes high-pressure air through a through-hole to a nozzle, eliminating extra panel holes and ensuring accurate positioning.
A pixel control circuit with adaptive bandwidth adjusts series resistance to match time constants, reducing horizontal noise in CMOS image sensors.
A flicker detection circuit aligns image frames to compare luminance data and generate exposure control information.
Processing unit generates predictive frames using high-frequency event data to reduce communication traffic and VR sickness in cross reality devices.
Automatic synchronization eliminates manual adjustment errors by using a light sensor to measure video display delays and adjust audio timing.